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2246cbc2 1// SPDX-License-Identifier: GPL-2.0 OR Linux-OpenIB
1738cd3e 2/*
2246cbc2 3 * Copyright 2015-2020 Amazon.com, Inc. or its affiliates. All rights reserved.
1738cd3e
NB
4 */
5
6#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
7
8#ifdef CONFIG_RFS_ACCEL
9#include <linux/cpu_rmap.h>
10#endif /* CONFIG_RFS_ACCEL */
11#include <linux/ethtool.h>
1738cd3e
NB
12#include <linux/kernel.h>
13#include <linux/module.h>
1738cd3e
NB
14#include <linux/numa.h>
15#include <linux/pci.h>
16#include <linux/utsname.h>
17#include <linux/version.h>
18#include <linux/vmalloc.h>
19#include <net/ip.h>
20
21#include "ena_netdev.h"
838c93dc 22#include <linux/bpf_trace.h>
1738cd3e
NB
23#include "ena_pci_id_tbl.h"
24
1738cd3e
NB
25MODULE_AUTHOR("Amazon.com, Inc. or its affiliates");
26MODULE_DESCRIPTION(DEVICE_NAME);
27MODULE_LICENSE("GPL");
1738cd3e
NB
28
29/* Time in jiffies before concluding the transmitter is hung. */
30#define TX_TIMEOUT (5 * HZ)
31
32#define ENA_NAPI_BUDGET 64
33
34#define DEFAULT_MSG_ENABLE (NETIF_MSG_DRV | NETIF_MSG_PROBE | NETIF_MSG_IFUP | \
35 NETIF_MSG_TX_DONE | NETIF_MSG_TX_ERR | NETIF_MSG_RX_ERR)
36static int debug = -1;
37module_param(debug, int, 0);
38MODULE_PARM_DESC(debug, "Debug level (0=none,...,16=all)");
39
40static struct ena_aenq_handlers aenq_handlers;
41
42static struct workqueue_struct *ena_wq;
43
44MODULE_DEVICE_TABLE(pci, ena_pci_tbl);
45
46static int ena_rss_init_default(struct ena_adapter *adapter);
ee4552aa 47static void check_for_admin_com_state(struct ena_adapter *adapter);
cfa324a5 48static void ena_destroy_device(struct ena_adapter *adapter, bool graceful);
ee4552aa 49static int ena_restore_device(struct ena_adapter *adapter);
548c4940
SJ
50
51static void ena_init_io_rings(struct ena_adapter *adapter,
52 int first_index, int count);
53static void ena_init_napi_in_range(struct ena_adapter *adapter, int first_index,
54 int count);
55static void ena_del_napi_in_range(struct ena_adapter *adapter, int first_index,
56 int count);
57static int ena_setup_tx_resources(struct ena_adapter *adapter, int qid);
58static int ena_setup_tx_resources_in_range(struct ena_adapter *adapter,
59 int first_index,
60 int count);
61static int ena_create_io_tx_queue(struct ena_adapter *adapter, int qid);
62static void ena_free_tx_resources(struct ena_adapter *adapter, int qid);
63static int ena_clean_xdp_irq(struct ena_ring *xdp_ring, u32 budget);
64static void ena_destroy_all_tx_queues(struct ena_adapter *adapter);
65static void ena_free_all_io_tx_resources(struct ena_adapter *adapter);
66static void ena_napi_disable_in_range(struct ena_adapter *adapter,
67 int first_index, int count);
68static void ena_napi_enable_in_range(struct ena_adapter *adapter,
69 int first_index, int count);
838c93dc 70static int ena_up(struct ena_adapter *adapter);
548c4940
SJ
71static void ena_down(struct ena_adapter *adapter);
72static void ena_unmask_interrupt(struct ena_ring *tx_ring,
73 struct ena_ring *rx_ring);
74static void ena_update_ring_numa_node(struct ena_ring *tx_ring,
75 struct ena_ring *rx_ring);
76static void ena_unmap_tx_buff(struct ena_ring *tx_ring,
77 struct ena_tx_buffer *tx_info);
78static int ena_create_io_tx_queues_in_range(struct ena_adapter *adapter,
79 int first_index, int count);
1738cd3e 80
0290bd29 81static void ena_tx_timeout(struct net_device *dev, unsigned int txqueue)
1738cd3e
NB
82{
83 struct ena_adapter *adapter = netdev_priv(dev);
84
3f6159db
NB
85 /* Change the state of the device to trigger reset
86 * Check that we are not in the middle or a trigger already
87 */
88
89 if (test_and_set_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags))
90 return;
91
e2eed0e3 92 adapter->reset_reason = ENA_REGS_RESET_OS_NETDEV_WD;
1738cd3e
NB
93 u64_stats_update_begin(&adapter->syncp);
94 adapter->dev_stats.tx_timeout++;
95 u64_stats_update_end(&adapter->syncp);
96
97 netif_err(adapter, tx_err, dev, "Transmit time out\n");
1738cd3e
NB
98}
99
100static void update_rx_ring_mtu(struct ena_adapter *adapter, int mtu)
101{
102 int i;
103
faa615f9 104 for (i = 0; i < adapter->num_io_queues; i++)
1738cd3e
NB
105 adapter->rx_ring[i].mtu = mtu;
106}
107
108static int ena_change_mtu(struct net_device *dev, int new_mtu)
109{
110 struct ena_adapter *adapter = netdev_priv(dev);
111 int ret;
112
1738cd3e
NB
113 ret = ena_com_set_dev_mtu(adapter->ena_dev, new_mtu);
114 if (!ret) {
115 netif_dbg(adapter, drv, dev, "set MTU to %d\n", new_mtu);
116 update_rx_ring_mtu(adapter, new_mtu);
117 dev->mtu = new_mtu;
118 } else {
119 netif_err(adapter, drv, dev, "Failed to set MTU to %d\n",
120 new_mtu);
121 }
122
123 return ret;
124}
125
548c4940
SJ
126static int ena_xmit_common(struct net_device *dev,
127 struct ena_ring *ring,
128 struct ena_tx_buffer *tx_info,
129 struct ena_com_tx_ctx *ena_tx_ctx,
130 u16 next_to_use,
131 u32 bytes)
132{
133 struct ena_adapter *adapter = netdev_priv(dev);
134 int rc, nb_hw_desc;
135
136 if (unlikely(ena_com_is_doorbell_needed(ring->ena_com_io_sq,
137 ena_tx_ctx))) {
138 netif_dbg(adapter, tx_queued, dev,
139 "llq tx max burst size of queue %d achieved, writing doorbell to send burst\n",
140 ring->qid);
141 ena_com_write_sq_doorbell(ring->ena_com_io_sq);
142 }
143
144 /* prepare the packet's descriptors to dma engine */
145 rc = ena_com_prepare_tx(ring->ena_com_io_sq, ena_tx_ctx,
146 &nb_hw_desc);
147
148 /* In case there isn't enough space in the queue for the packet,
149 * we simply drop it. All other failure reasons of
150 * ena_com_prepare_tx() are fatal and therefore require a device reset.
151 */
152 if (unlikely(rc)) {
153 netif_err(adapter, tx_queued, dev,
154 "failed to prepare tx bufs\n");
155 u64_stats_update_begin(&ring->syncp);
156 ring->tx_stats.prepare_ctx_err++;
157 u64_stats_update_end(&ring->syncp);
158 if (rc != -ENOMEM) {
159 adapter->reset_reason =
160 ENA_REGS_RESET_DRIVER_INVALID_STATE;
161 set_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
162 }
163 return rc;
164 }
165
166 u64_stats_update_begin(&ring->syncp);
167 ring->tx_stats.cnt++;
168 ring->tx_stats.bytes += bytes;
169 u64_stats_update_end(&ring->syncp);
170
171 tx_info->tx_descs = nb_hw_desc;
172 tx_info->last_jiffies = jiffies;
173 tx_info->print_once = 0;
174
175 ring->next_to_use = ENA_TX_RING_IDX_NEXT(next_to_use,
176 ring->ring_size);
177 return 0;
178}
179
180/* This is the XDP napi callback. XDP queues use a separate napi callback
181 * than Rx/Tx queues.
182 */
183static int ena_xdp_io_poll(struct napi_struct *napi, int budget)
184{
185 struct ena_napi *ena_napi = container_of(napi, struct ena_napi, napi);
186 u32 xdp_work_done, xdp_budget;
187 struct ena_ring *xdp_ring;
188 int napi_comp_call = 0;
189 int ret;
190
191 xdp_ring = ena_napi->xdp_ring;
913b0bfd 192 xdp_ring->first_interrupt = ena_napi->first_interrupt;
548c4940
SJ
193
194 xdp_budget = budget;
195
196 if (!test_bit(ENA_FLAG_DEV_UP, &xdp_ring->adapter->flags) ||
197 test_bit(ENA_FLAG_TRIGGER_RESET, &xdp_ring->adapter->flags)) {
198 napi_complete_done(napi, 0);
199 return 0;
200 }
201
202 xdp_work_done = ena_clean_xdp_irq(xdp_ring, xdp_budget);
203
204 /* If the device is about to reset or down, avoid unmask
205 * the interrupt and return 0 so NAPI won't reschedule
206 */
207 if (unlikely(!test_bit(ENA_FLAG_DEV_UP, &xdp_ring->adapter->flags))) {
208 napi_complete_done(napi, 0);
209 ret = 0;
210 } else if (xdp_budget > xdp_work_done) {
211 napi_comp_call = 1;
212 if (napi_complete_done(napi, xdp_work_done))
213 ena_unmask_interrupt(xdp_ring, NULL);
214 ena_update_ring_numa_node(xdp_ring, NULL);
215 ret = xdp_work_done;
216 } else {
217 ret = xdp_budget;
218 }
219
220 u64_stats_update_begin(&xdp_ring->syncp);
221 xdp_ring->tx_stats.napi_comp += napi_comp_call;
222 xdp_ring->tx_stats.tx_poll++;
223 u64_stats_update_end(&xdp_ring->syncp);
224
225 return ret;
226}
227
228static int ena_xdp_tx_map_buff(struct ena_ring *xdp_ring,
229 struct ena_tx_buffer *tx_info,
230 struct xdp_buff *xdp,
231 void **push_hdr,
232 u32 *push_len)
233{
234 struct ena_adapter *adapter = xdp_ring->adapter;
235 struct ena_com_buf *ena_buf;
236 dma_addr_t dma = 0;
237 u32 size;
238
1b698fa5 239 tx_info->xdpf = xdp_convert_buff_to_frame(xdp);
548c4940
SJ
240 size = tx_info->xdpf->len;
241 ena_buf = tx_info->bufs;
242
243 /* llq push buffer */
244 *push_len = min_t(u32, size, xdp_ring->tx_max_header_size);
245 *push_hdr = tx_info->xdpf->data;
246
247 if (size - *push_len > 0) {
248 dma = dma_map_single(xdp_ring->dev,
249 *push_hdr + *push_len,
250 size - *push_len,
251 DMA_TO_DEVICE);
252 if (unlikely(dma_mapping_error(xdp_ring->dev, dma)))
253 goto error_report_dma_error;
254
255 tx_info->map_linear_data = 1;
256 tx_info->num_of_bufs = 1;
257 }
258
259 ena_buf->paddr = dma;
260 ena_buf->len = size;
261
262 return 0;
263
264error_report_dma_error:
265 u64_stats_update_begin(&xdp_ring->syncp);
266 xdp_ring->tx_stats.dma_mapping_err++;
267 u64_stats_update_end(&xdp_ring->syncp);
f0525298 268 netif_warn(adapter, tx_queued, adapter->netdev, "failed to map xdp buff\n");
548c4940
SJ
269
270 xdp_return_frame_rx_napi(tx_info->xdpf);
271 tx_info->xdpf = NULL;
272 tx_info->num_of_bufs = 0;
273
274 return -EINVAL;
275}
276
277static int ena_xdp_xmit_buff(struct net_device *dev,
278 struct xdp_buff *xdp,
279 int qid,
280 struct ena_rx_buffer *rx_info)
281{
282 struct ena_adapter *adapter = netdev_priv(dev);
79890d3f 283 struct ena_com_tx_ctx ena_tx_ctx = {};
548c4940
SJ
284 struct ena_tx_buffer *tx_info;
285 struct ena_ring *xdp_ring;
548c4940
SJ
286 u16 next_to_use, req_id;
287 int rc;
288 void *push_hdr;
289 u32 push_len;
290
291 xdp_ring = &adapter->tx_ring[qid];
292 next_to_use = xdp_ring->next_to_use;
293 req_id = xdp_ring->free_ids[next_to_use];
294 tx_info = &xdp_ring->tx_buffer_info[req_id];
295 tx_info->num_of_bufs = 0;
548c4940
SJ
296 page_ref_inc(rx_info->page);
297 tx_info->xdp_rx_page = rx_info->page;
298
299 rc = ena_xdp_tx_map_buff(xdp_ring, tx_info, xdp, &push_hdr, &push_len);
300 if (unlikely(rc))
301 goto error_drop_packet;
302
303 ena_tx_ctx.ena_bufs = tx_info->bufs;
304 ena_tx_ctx.push_header = push_hdr;
305 ena_tx_ctx.num_bufs = tx_info->num_of_bufs;
306 ena_tx_ctx.req_id = req_id;
307 ena_tx_ctx.header_len = push_len;
308
309 rc = ena_xmit_common(dev,
310 xdp_ring,
311 tx_info,
312 &ena_tx_ctx,
313 next_to_use,
314 xdp->data_end - xdp->data);
315 if (rc)
316 goto error_unmap_dma;
317 /* trigger the dma engine. ena_com_write_sq_doorbell()
318 * has a mb
319 */
320 ena_com_write_sq_doorbell(xdp_ring->ena_com_io_sq);
321 u64_stats_update_begin(&xdp_ring->syncp);
322 xdp_ring->tx_stats.doorbells++;
323 u64_stats_update_end(&xdp_ring->syncp);
324
325 return NETDEV_TX_OK;
326
327error_unmap_dma:
328 ena_unmap_tx_buff(xdp_ring, tx_info);
329 tx_info->xdpf = NULL;
330error_drop_packet:
cd07eccc 331 __free_page(tx_info->xdp_rx_page);
548c4940
SJ
332 return NETDEV_TX_OK;
333}
334
335static int ena_xdp_execute(struct ena_ring *rx_ring,
336 struct xdp_buff *xdp,
337 struct ena_rx_buffer *rx_info)
838c93dc
SJ
338{
339 struct bpf_prog *xdp_prog;
340 u32 verdict = XDP_PASS;
4cd28b21 341 u64 *xdp_stat;
838c93dc
SJ
342
343 rcu_read_lock();
344 xdp_prog = READ_ONCE(rx_ring->xdp_bpf_prog);
345
346 if (!xdp_prog)
347 goto out;
348
349 verdict = bpf_prog_run_xdp(xdp_prog, xdp);
350
4cd28b21 351 if (verdict == XDP_TX) {
548c4940
SJ
352 ena_xdp_xmit_buff(rx_ring->netdev,
353 xdp,
354 rx_ring->qid + rx_ring->adapter->num_io_queues,
355 rx_info);
4cd28b21
SJ
356
357 xdp_stat = &rx_ring->rx_stats.xdp_tx;
358 } else if (unlikely(verdict == XDP_ABORTED)) {
838c93dc 359 trace_xdp_exception(rx_ring->netdev, xdp_prog, verdict);
4cd28b21
SJ
360 xdp_stat = &rx_ring->rx_stats.xdp_aborted;
361 } else if (unlikely(verdict == XDP_DROP)) {
362 xdp_stat = &rx_ring->rx_stats.xdp_drop;
363 } else if (unlikely(verdict == XDP_PASS)) {
364 xdp_stat = &rx_ring->rx_stats.xdp_pass;
365 } else {
838c93dc 366 bpf_warn_invalid_xdp_action(verdict);
4cd28b21
SJ
367 xdp_stat = &rx_ring->rx_stats.xdp_invalid;
368 }
369
370 u64_stats_update_begin(&rx_ring->syncp);
371 (*xdp_stat)++;
372 u64_stats_update_end(&rx_ring->syncp);
838c93dc
SJ
373out:
374 rcu_read_unlock();
4cd28b21 375
838c93dc
SJ
376 return verdict;
377}
378
548c4940
SJ
379static void ena_init_all_xdp_queues(struct ena_adapter *adapter)
380{
381 adapter->xdp_first_ring = adapter->num_io_queues;
382 adapter->xdp_num_queues = adapter->num_io_queues;
383
384 ena_init_io_rings(adapter,
385 adapter->xdp_first_ring,
386 adapter->xdp_num_queues);
387}
388
389static int ena_setup_and_create_all_xdp_queues(struct ena_adapter *adapter)
390{
391 int rc = 0;
392
393 rc = ena_setup_tx_resources_in_range(adapter, adapter->xdp_first_ring,
394 adapter->xdp_num_queues);
395 if (rc)
396 goto setup_err;
397
398 rc = ena_create_io_tx_queues_in_range(adapter,
399 adapter->xdp_first_ring,
400 adapter->xdp_num_queues);
401 if (rc)
402 goto create_err;
403
404 return 0;
405
406create_err:
407 ena_free_all_io_tx_resources(adapter);
408setup_err:
409 return rc;
410}
411
412/* Provides a way for both kernel and bpf-prog to know
413 * more about the RX-queue a given XDP frame arrived on.
414 */
415static int ena_xdp_register_rxq_info(struct ena_ring *rx_ring)
416{
417 int rc;
418
419 rc = xdp_rxq_info_reg(&rx_ring->xdp_rxq, rx_ring->netdev, rx_ring->qid);
420
421 if (rc) {
422 netif_err(rx_ring->adapter, ifup, rx_ring->netdev,
423 "Failed to register xdp rx queue info. RX queue num %d rc: %d\n",
424 rx_ring->qid, rc);
425 goto err;
426 }
427
428 rc = xdp_rxq_info_reg_mem_model(&rx_ring->xdp_rxq, MEM_TYPE_PAGE_SHARED,
429 NULL);
430
431 if (rc) {
432 netif_err(rx_ring->adapter, ifup, rx_ring->netdev,
433 "Failed to register xdp rx queue info memory model. RX queue num %d rc: %d\n",
434 rx_ring->qid, rc);
435 xdp_rxq_info_unreg(&rx_ring->xdp_rxq);
436 }
437
438err:
439 return rc;
440}
441
442static void ena_xdp_unregister_rxq_info(struct ena_ring *rx_ring)
443{
444 xdp_rxq_info_unreg_mem_model(&rx_ring->xdp_rxq);
445 xdp_rxq_info_unreg(&rx_ring->xdp_rxq);
446}
447
32109c70
Y
448static void ena_xdp_exchange_program_rx_in_range(struct ena_adapter *adapter,
449 struct bpf_prog *prog,
450 int first, int count)
838c93dc
SJ
451{
452 struct ena_ring *rx_ring;
453 int i = 0;
454
455 for (i = first; i < count; i++) {
456 rx_ring = &adapter->rx_ring[i];
457 xchg(&rx_ring->xdp_bpf_prog, prog);
548c4940
SJ
458 if (prog) {
459 ena_xdp_register_rxq_info(rx_ring);
838c93dc 460 rx_ring->rx_headroom = XDP_PACKET_HEADROOM;
548c4940
SJ
461 } else {
462 ena_xdp_unregister_rxq_info(rx_ring);
838c93dc 463 rx_ring->rx_headroom = 0;
548c4940 464 }
838c93dc
SJ
465 }
466}
467
32109c70
Y
468static void ena_xdp_exchange_program(struct ena_adapter *adapter,
469 struct bpf_prog *prog)
838c93dc
SJ
470{
471 struct bpf_prog *old_bpf_prog = xchg(&adapter->xdp_bpf_prog, prog);
472
473 ena_xdp_exchange_program_rx_in_range(adapter,
474 prog,
475 0,
476 adapter->num_io_queues);
477
478 if (old_bpf_prog)
479 bpf_prog_put(old_bpf_prog);
480}
481
548c4940
SJ
482static int ena_destroy_and_free_all_xdp_queues(struct ena_adapter *adapter)
483{
484 bool was_up;
485 int rc;
486
487 was_up = test_bit(ENA_FLAG_DEV_UP, &adapter->flags);
488
489 if (was_up)
490 ena_down(adapter);
491
492 adapter->xdp_first_ring = 0;
493 adapter->xdp_num_queues = 0;
494 ena_xdp_exchange_program(adapter, NULL);
495 if (was_up) {
496 rc = ena_up(adapter);
497 if (rc)
498 return rc;
499 }
500 return 0;
501}
502
838c93dc
SJ
503static int ena_xdp_set(struct net_device *netdev, struct netdev_bpf *bpf)
504{
505 struct ena_adapter *adapter = netdev_priv(netdev);
506 struct bpf_prog *prog = bpf->prog;
548c4940 507 struct bpf_prog *old_bpf_prog;
838c93dc
SJ
508 int rc, prev_mtu;
509 bool is_up;
510
511 is_up = test_bit(ENA_FLAG_DEV_UP, &adapter->flags);
548c4940
SJ
512 rc = ena_xdp_allowed(adapter);
513 if (rc == ENA_XDP_ALLOWED) {
514 old_bpf_prog = adapter->xdp_bpf_prog;
515 if (prog) {
516 if (!is_up) {
517 ena_init_all_xdp_queues(adapter);
518 } else if (!old_bpf_prog) {
519 ena_down(adapter);
520 ena_init_all_xdp_queues(adapter);
521 }
522 ena_xdp_exchange_program(adapter, prog);
838c93dc 523
548c4940
SJ
524 if (is_up && !old_bpf_prog) {
525 rc = ena_up(adapter);
526 if (rc)
527 return rc;
528 }
529 } else if (old_bpf_prog) {
530 rc = ena_destroy_and_free_all_xdp_queues(adapter);
838c93dc
SJ
531 if (rc)
532 return rc;
533 }
838c93dc 534
548c4940
SJ
535 prev_mtu = netdev->max_mtu;
536 netdev->max_mtu = prog ? ENA_XDP_MAX_MTU : adapter->max_mtu;
537
538 if (!old_bpf_prog)
539 netif_info(adapter, drv, adapter->netdev,
540 "xdp program set, changing the max_mtu from %d to %d",
541 prev_mtu, netdev->max_mtu);
542
543 } else if (rc == ENA_XDP_CURRENT_MTU_TOO_LARGE) {
544 netif_err(adapter, drv, adapter->netdev,
545 "Failed to set xdp program, the current MTU (%d) is larger than the maximum allowed MTU (%lu) while xdp is on",
838c93dc 546 netdev->mtu, ENA_XDP_MAX_MTU);
548c4940
SJ
547 NL_SET_ERR_MSG_MOD(bpf->extack,
548 "Failed to set xdp program, the current MTU is larger than the maximum allowed MTU. Check the dmesg for more info");
549 return -EINVAL;
550 } else if (rc == ENA_XDP_NO_ENOUGH_QUEUES) {
551 netif_err(adapter, drv, adapter->netdev,
552 "Failed to set xdp program, the Rx/Tx channel count should be at most half of the maximum allowed channel count. The current queue count (%d), the maximal queue count (%d)\n",
553 adapter->num_io_queues, adapter->max_num_io_queues);
554 NL_SET_ERR_MSG_MOD(bpf->extack,
555 "Failed to set xdp program, there is no enough space for allocating XDP queues, Check the dmesg for more info");
838c93dc
SJ
556 return -EINVAL;
557 }
558
559 return 0;
560}
561
562/* This is the main xdp callback, it's used by the kernel to set/unset the xdp
563 * program as well as to query the current xdp program id.
564 */
565static int ena_xdp(struct net_device *netdev, struct netdev_bpf *bpf)
566{
838c93dc
SJ
567 switch (bpf->command) {
568 case XDP_SETUP_PROG:
569 return ena_xdp_set(netdev, bpf);
838c93dc
SJ
570 default:
571 return -EINVAL;
572 }
573 return 0;
574}
575
1738cd3e
NB
576static int ena_init_rx_cpu_rmap(struct ena_adapter *adapter)
577{
578#ifdef CONFIG_RFS_ACCEL
579 u32 i;
580 int rc;
581
faa615f9 582 adapter->netdev->rx_cpu_rmap = alloc_irq_cpu_rmap(adapter->num_io_queues);
1738cd3e
NB
583 if (!adapter->netdev->rx_cpu_rmap)
584 return -ENOMEM;
faa615f9 585 for (i = 0; i < adapter->num_io_queues; i++) {
1738cd3e
NB
586 int irq_idx = ENA_IO_IRQ_IDX(i);
587
588 rc = irq_cpu_rmap_add(adapter->netdev->rx_cpu_rmap,
da6f4cf5 589 pci_irq_vector(adapter->pdev, irq_idx));
1738cd3e
NB
590 if (rc) {
591 free_irq_cpu_rmap(adapter->netdev->rx_cpu_rmap);
592 adapter->netdev->rx_cpu_rmap = NULL;
593 return rc;
594 }
595 }
596#endif /* CONFIG_RFS_ACCEL */
597 return 0;
598}
599
600static void ena_init_io_rings_common(struct ena_adapter *adapter,
601 struct ena_ring *ring, u16 qid)
602{
603 ring->qid = qid;
604 ring->pdev = adapter->pdev;
605 ring->dev = &adapter->pdev->dev;
606 ring->netdev = adapter->netdev;
607 ring->napi = &adapter->ena_napi[qid].napi;
608 ring->adapter = adapter;
609 ring->ena_dev = adapter->ena_dev;
610 ring->per_napi_packets = 0;
1738cd3e 611 ring->cpu = 0;
8510e1a3
NB
612 ring->first_interrupt = false;
613 ring->no_interrupt_event_cnt = 0;
1738cd3e
NB
614 u64_stats_init(&ring->syncp);
615}
616
548c4940
SJ
617static void ena_init_io_rings(struct ena_adapter *adapter,
618 int first_index, int count)
1738cd3e
NB
619{
620 struct ena_com_dev *ena_dev;
621 struct ena_ring *txr, *rxr;
622 int i;
623
624 ena_dev = adapter->ena_dev;
625
548c4940 626 for (i = first_index; i < first_index + count; i++) {
1738cd3e
NB
627 txr = &adapter->tx_ring[i];
628 rxr = &adapter->rx_ring[i];
629
548c4940 630 /* TX common ring state */
1738cd3e 631 ena_init_io_rings_common(adapter, txr, i);
1738cd3e
NB
632
633 /* TX specific ring state */
13ca32a6 634 txr->ring_size = adapter->requested_tx_ring_size;
1738cd3e
NB
635 txr->tx_max_header_size = ena_dev->tx_max_header_size;
636 txr->tx_mem_queue_type = ena_dev->tx_mem_queue_type;
637 txr->sgl_size = adapter->max_tx_sgl_size;
638 txr->smoothed_interval =
639 ena_com_get_nonadaptive_moderation_interval_tx(ena_dev);
0e3a3f6d 640 txr->disable_meta_caching = adapter->disable_meta_caching;
1738cd3e 641
548c4940
SJ
642 /* Don't init RX queues for xdp queues */
643 if (!ENA_IS_XDP_INDEX(adapter, i)) {
644 /* RX common ring state */
645 ena_init_io_rings_common(adapter, rxr, i);
646
647 /* RX specific ring state */
648 rxr->ring_size = adapter->requested_rx_ring_size;
649 rxr->rx_copybreak = adapter->rx_copybreak;
650 rxr->sgl_size = adapter->max_rx_sgl_size;
651 rxr->smoothed_interval =
652 ena_com_get_nonadaptive_moderation_interval_rx(ena_dev);
653 rxr->empty_rx_queue = 0;
654 adapter->ena_napi[i].dim.mode = DIM_CQ_PERIOD_MODE_START_FROM_EQE;
655 }
1738cd3e
NB
656 }
657}
658
659/* ena_setup_tx_resources - allocate I/O Tx resources (Descriptors)
660 * @adapter: network interface device structure
661 * @qid: queue index
662 *
663 * Return 0 on success, negative on failure
664 */
665static int ena_setup_tx_resources(struct ena_adapter *adapter, int qid)
666{
667 struct ena_ring *tx_ring = &adapter->tx_ring[qid];
668 struct ena_irq *ena_irq = &adapter->irq_tbl[ENA_IO_IRQ_IDX(qid)];
669 int size, i, node;
670
671 if (tx_ring->tx_buffer_info) {
672 netif_err(adapter, ifup,
673 adapter->netdev, "tx_buffer_info info is not NULL");
674 return -EEXIST;
675 }
676
677 size = sizeof(struct ena_tx_buffer) * tx_ring->ring_size;
678 node = cpu_to_node(ena_irq->cpu);
679
680 tx_ring->tx_buffer_info = vzalloc_node(size, node);
681 if (!tx_ring->tx_buffer_info) {
682 tx_ring->tx_buffer_info = vzalloc(size);
683 if (!tx_ring->tx_buffer_info)
8ee8ee7f 684 goto err_tx_buffer_info;
1738cd3e
NB
685 }
686
687 size = sizeof(u16) * tx_ring->ring_size;
f9172498
SJ
688 tx_ring->free_ids = vzalloc_node(size, node);
689 if (!tx_ring->free_ids) {
690 tx_ring->free_ids = vzalloc(size);
691 if (!tx_ring->free_ids)
692 goto err_tx_free_ids;
1738cd3e
NB
693 }
694
38005ca8
AK
695 size = tx_ring->tx_max_header_size;
696 tx_ring->push_buf_intermediate_buf = vzalloc_node(size, node);
697 if (!tx_ring->push_buf_intermediate_buf) {
698 tx_ring->push_buf_intermediate_buf = vzalloc(size);
8ee8ee7f
SJ
699 if (!tx_ring->push_buf_intermediate_buf)
700 goto err_push_buf_intermediate_buf;
38005ca8
AK
701 }
702
1738cd3e
NB
703 /* Req id ring for TX out of order completions */
704 for (i = 0; i < tx_ring->ring_size; i++)
f9172498 705 tx_ring->free_ids[i] = i;
1738cd3e
NB
706
707 /* Reset tx statistics */
708 memset(&tx_ring->tx_stats, 0x0, sizeof(tx_ring->tx_stats));
709
710 tx_ring->next_to_use = 0;
711 tx_ring->next_to_clean = 0;
712 tx_ring->cpu = ena_irq->cpu;
713 return 0;
8ee8ee7f
SJ
714
715err_push_buf_intermediate_buf:
f9172498
SJ
716 vfree(tx_ring->free_ids);
717 tx_ring->free_ids = NULL;
718err_tx_free_ids:
8ee8ee7f
SJ
719 vfree(tx_ring->tx_buffer_info);
720 tx_ring->tx_buffer_info = NULL;
721err_tx_buffer_info:
722 return -ENOMEM;
1738cd3e
NB
723}
724
725/* ena_free_tx_resources - Free I/O Tx Resources per Queue
726 * @adapter: network interface device structure
727 * @qid: queue index
728 *
729 * Free all transmit software resources
730 */
731static void ena_free_tx_resources(struct ena_adapter *adapter, int qid)
732{
733 struct ena_ring *tx_ring = &adapter->tx_ring[qid];
734
735 vfree(tx_ring->tx_buffer_info);
736 tx_ring->tx_buffer_info = NULL;
737
f9172498
SJ
738 vfree(tx_ring->free_ids);
739 tx_ring->free_ids = NULL;
38005ca8
AK
740
741 vfree(tx_ring->push_buf_intermediate_buf);
742 tx_ring->push_buf_intermediate_buf = NULL;
1738cd3e
NB
743}
744
548c4940
SJ
745static int ena_setup_tx_resources_in_range(struct ena_adapter *adapter,
746 int first_index,
747 int count)
1738cd3e
NB
748{
749 int i, rc = 0;
750
548c4940 751 for (i = first_index; i < first_index + count; i++) {
1738cd3e
NB
752 rc = ena_setup_tx_resources(adapter, i);
753 if (rc)
754 goto err_setup_tx;
755 }
756
757 return 0;
758
759err_setup_tx:
760
761 netif_err(adapter, ifup, adapter->netdev,
762 "Tx queue %d: allocation failed\n", i);
763
764 /* rewind the index freeing the rings as we go */
548c4940 765 while (first_index < i--)
1738cd3e
NB
766 ena_free_tx_resources(adapter, i);
767 return rc;
768}
769
548c4940
SJ
770static void ena_free_all_io_tx_resources_in_range(struct ena_adapter *adapter,
771 int first_index, int count)
772{
773 int i;
774
775 for (i = first_index; i < first_index + count; i++)
776 ena_free_tx_resources(adapter, i);
777}
778
1738cd3e
NB
779/* ena_free_all_io_tx_resources - Free I/O Tx Resources for All Queues
780 * @adapter: board private structure
781 *
782 * Free all transmit software resources
783 */
784static void ena_free_all_io_tx_resources(struct ena_adapter *adapter)
785{
548c4940
SJ
786 ena_free_all_io_tx_resources_in_range(adapter,
787 0,
788 adapter->xdp_num_queues +
789 adapter->num_io_queues);
1738cd3e
NB
790}
791
c2b54204 792static int validate_rx_req_id(struct ena_ring *rx_ring, u16 req_id)
ad974bae
NB
793{
794 if (likely(req_id < rx_ring->ring_size))
795 return 0;
796
797 netif_err(rx_ring->adapter, rx_err, rx_ring->netdev,
798 "Invalid rx req_id: %hu\n", req_id);
799
800 u64_stats_update_begin(&rx_ring->syncp);
801 rx_ring->rx_stats.bad_req_id++;
802 u64_stats_update_end(&rx_ring->syncp);
803
804 /* Trigger device reset */
805 rx_ring->adapter->reset_reason = ENA_REGS_RESET_INV_RX_REQ_ID;
806 set_bit(ENA_FLAG_TRIGGER_RESET, &rx_ring->adapter->flags);
807 return -EFAULT;
808}
809
1738cd3e
NB
810/* ena_setup_rx_resources - allocate I/O Rx resources (Descriptors)
811 * @adapter: network interface device structure
812 * @qid: queue index
813 *
814 * Returns 0 on success, negative on failure
815 */
816static int ena_setup_rx_resources(struct ena_adapter *adapter,
817 u32 qid)
818{
819 struct ena_ring *rx_ring = &adapter->rx_ring[qid];
820 struct ena_irq *ena_irq = &adapter->irq_tbl[ENA_IO_IRQ_IDX(qid)];
ad974bae 821 int size, node, i;
1738cd3e
NB
822
823 if (rx_ring->rx_buffer_info) {
824 netif_err(adapter, ifup, adapter->netdev,
825 "rx_buffer_info is not NULL");
826 return -EEXIST;
827 }
828
829 /* alloc extra element so in rx path
830 * we can always prefetch rx_info + 1
831 */
832 size = sizeof(struct ena_rx_buffer) * (rx_ring->ring_size + 1);
833 node = cpu_to_node(ena_irq->cpu);
834
835 rx_ring->rx_buffer_info = vzalloc_node(size, node);
836 if (!rx_ring->rx_buffer_info) {
837 rx_ring->rx_buffer_info = vzalloc(size);
838 if (!rx_ring->rx_buffer_info)
839 return -ENOMEM;
840 }
841
ad974bae 842 size = sizeof(u16) * rx_ring->ring_size;
f9172498
SJ
843 rx_ring->free_ids = vzalloc_node(size, node);
844 if (!rx_ring->free_ids) {
845 rx_ring->free_ids = vzalloc(size);
846 if (!rx_ring->free_ids) {
ad974bae 847 vfree(rx_ring->rx_buffer_info);
8ee8ee7f 848 rx_ring->rx_buffer_info = NULL;
ad974bae
NB
849 return -ENOMEM;
850 }
851 }
852
853 /* Req id ring for receiving RX pkts out of order */
854 for (i = 0; i < rx_ring->ring_size; i++)
f9172498 855 rx_ring->free_ids[i] = i;
ad974bae 856
1738cd3e
NB
857 /* Reset rx statistics */
858 memset(&rx_ring->rx_stats, 0x0, sizeof(rx_ring->rx_stats));
859
860 rx_ring->next_to_clean = 0;
861 rx_ring->next_to_use = 0;
862 rx_ring->cpu = ena_irq->cpu;
863
864 return 0;
865}
866
867/* ena_free_rx_resources - Free I/O Rx Resources
868 * @adapter: network interface device structure
869 * @qid: queue index
870 *
871 * Free all receive software resources
872 */
873static void ena_free_rx_resources(struct ena_adapter *adapter,
874 u32 qid)
875{
876 struct ena_ring *rx_ring = &adapter->rx_ring[qid];
877
878 vfree(rx_ring->rx_buffer_info);
879 rx_ring->rx_buffer_info = NULL;
ad974bae 880
f9172498
SJ
881 vfree(rx_ring->free_ids);
882 rx_ring->free_ids = NULL;
1738cd3e
NB
883}
884
885/* ena_setup_all_rx_resources - allocate I/O Rx queues resources for all queues
886 * @adapter: board private structure
887 *
888 * Return 0 on success, negative on failure
889 */
890static int ena_setup_all_rx_resources(struct ena_adapter *adapter)
891{
892 int i, rc = 0;
893
faa615f9 894 for (i = 0; i < adapter->num_io_queues; i++) {
1738cd3e
NB
895 rc = ena_setup_rx_resources(adapter, i);
896 if (rc)
897 goto err_setup_rx;
898 }
899
900 return 0;
901
902err_setup_rx:
903
904 netif_err(adapter, ifup, adapter->netdev,
905 "Rx queue %d: allocation failed\n", i);
906
907 /* rewind the index freeing the rings as we go */
908 while (i--)
909 ena_free_rx_resources(adapter, i);
910 return rc;
911}
912
913/* ena_free_all_io_rx_resources - Free I/O Rx Resources for All Queues
914 * @adapter: board private structure
915 *
916 * Free all receive software resources
917 */
918static void ena_free_all_io_rx_resources(struct ena_adapter *adapter)
919{
920 int i;
921
faa615f9 922 for (i = 0; i < adapter->num_io_queues; i++)
1738cd3e
NB
923 ena_free_rx_resources(adapter, i);
924}
925
c2b54204 926static int ena_alloc_rx_page(struct ena_ring *rx_ring,
1738cd3e
NB
927 struct ena_rx_buffer *rx_info, gfp_t gfp)
928{
929 struct ena_com_buf *ena_buf;
930 struct page *page;
931 dma_addr_t dma;
932
933 /* if previous allocated page is not used */
934 if (unlikely(rx_info->page))
935 return 0;
936
937 page = alloc_page(gfp);
938 if (unlikely(!page)) {
939 u64_stats_update_begin(&rx_ring->syncp);
940 rx_ring->rx_stats.page_alloc_fail++;
941 u64_stats_update_end(&rx_ring->syncp);
942 return -ENOMEM;
943 }
944
0f505c60
AK
945 /* To enable NIC-side port-mirroring, AKA SPAN port,
946 * we make the buffer readable from the nic as well
947 */
ef5b0771 948 dma = dma_map_page(rx_ring->dev, page, 0, ENA_PAGE_SIZE,
0f505c60 949 DMA_BIDIRECTIONAL);
1738cd3e
NB
950 if (unlikely(dma_mapping_error(rx_ring->dev, dma))) {
951 u64_stats_update_begin(&rx_ring->syncp);
952 rx_ring->rx_stats.dma_mapping_err++;
953 u64_stats_update_end(&rx_ring->syncp);
954
955 __free_page(page);
956 return -EIO;
957 }
958 netif_dbg(rx_ring->adapter, rx_status, rx_ring->netdev,
959 "alloc page %p, rx_info %p\n", page, rx_info);
960
961 rx_info->page = page;
962 rx_info->page_offset = 0;
963 ena_buf = &rx_info->ena_buf;
838c93dc 964 ena_buf->paddr = dma + rx_ring->rx_headroom;
548c4940 965 ena_buf->len = ENA_PAGE_SIZE - rx_ring->rx_headroom;
1738cd3e
NB
966
967 return 0;
968}
969
970static void ena_free_rx_page(struct ena_ring *rx_ring,
971 struct ena_rx_buffer *rx_info)
972{
973 struct page *page = rx_info->page;
974 struct ena_com_buf *ena_buf = &rx_info->ena_buf;
975
976 if (unlikely(!page)) {
977 netif_warn(rx_ring->adapter, rx_err, rx_ring->netdev,
978 "Trying to free unallocated buffer\n");
979 return;
980 }
981
0f505c60 982 dma_unmap_page(rx_ring->dev, ena_buf->paddr - rx_ring->rx_headroom,
548c4940 983 ENA_PAGE_SIZE,
0f505c60 984 DMA_BIDIRECTIONAL);
1738cd3e
NB
985
986 __free_page(page);
987 rx_info->page = NULL;
988}
989
990static int ena_refill_rx_bufs(struct ena_ring *rx_ring, u32 num)
991{
ad974bae 992 u16 next_to_use, req_id;
1738cd3e
NB
993 u32 i;
994 int rc;
995
996 next_to_use = rx_ring->next_to_use;
997
998 for (i = 0; i < num; i++) {
ad974bae
NB
999 struct ena_rx_buffer *rx_info;
1000
f9172498 1001 req_id = rx_ring->free_ids[next_to_use];
ad974bae
NB
1002
1003 rx_info = &rx_ring->rx_buffer_info[req_id];
1004
1738cd3e 1005 rc = ena_alloc_rx_page(rx_ring, rx_info,
453f85d4 1006 GFP_ATOMIC | __GFP_COMP);
1738cd3e
NB
1007 if (unlikely(rc < 0)) {
1008 netif_warn(rx_ring->adapter, rx_err, rx_ring->netdev,
1009 "failed to alloc buffer for rx queue %d\n",
1010 rx_ring->qid);
1011 break;
1012 }
1013 rc = ena_com_add_single_rx_desc(rx_ring->ena_com_io_sq,
1014 &rx_info->ena_buf,
ad974bae 1015 req_id);
1738cd3e
NB
1016 if (unlikely(rc)) {
1017 netif_warn(rx_ring->adapter, rx_status, rx_ring->netdev,
1018 "failed to add buffer for rx queue %d\n",
1019 rx_ring->qid);
1020 break;
1021 }
1022 next_to_use = ENA_RX_RING_IDX_NEXT(next_to_use,
1023 rx_ring->ring_size);
1024 }
1025
1026 if (unlikely(i < num)) {
1027 u64_stats_update_begin(&rx_ring->syncp);
1028 rx_ring->rx_stats.refil_partial++;
1029 u64_stats_update_end(&rx_ring->syncp);
f0525298
SA
1030 netif_warn(rx_ring->adapter, rx_err, rx_ring->netdev,
1031 "refilled rx qid %d with only %d buffers (from %d)\n",
1032 rx_ring->qid, i, num);
1738cd3e
NB
1033 }
1034
37dff155
NB
1035 /* ena_com_write_sq_doorbell issues a wmb() */
1036 if (likely(i))
1037 ena_com_write_sq_doorbell(rx_ring->ena_com_io_sq);
1738cd3e
NB
1038
1039 rx_ring->next_to_use = next_to_use;
1040
1041 return i;
1042}
1043
1044static void ena_free_rx_bufs(struct ena_adapter *adapter,
1045 u32 qid)
1046{
1047 struct ena_ring *rx_ring = &adapter->rx_ring[qid];
1048 u32 i;
1049
1050 for (i = 0; i < rx_ring->ring_size; i++) {
1051 struct ena_rx_buffer *rx_info = &rx_ring->rx_buffer_info[i];
1052
1053 if (rx_info->page)
1054 ena_free_rx_page(rx_ring, rx_info);
1055 }
1056}
1057
1058/* ena_refill_all_rx_bufs - allocate all queues Rx buffers
1059 * @adapter: board private structure
1738cd3e
NB
1060 */
1061static void ena_refill_all_rx_bufs(struct ena_adapter *adapter)
1062{
1063 struct ena_ring *rx_ring;
1064 int i, rc, bufs_num;
1065
faa615f9 1066 for (i = 0; i < adapter->num_io_queues; i++) {
1738cd3e
NB
1067 rx_ring = &adapter->rx_ring[i];
1068 bufs_num = rx_ring->ring_size - 1;
1069 rc = ena_refill_rx_bufs(rx_ring, bufs_num);
1070
1071 if (unlikely(rc != bufs_num))
1072 netif_warn(rx_ring->adapter, rx_status, rx_ring->netdev,
1073 "refilling Queue %d failed. allocated %d buffers from: %d\n",
1074 i, rc, bufs_num);
1075 }
1076}
1077
1078static void ena_free_all_rx_bufs(struct ena_adapter *adapter)
1079{
1080 int i;
1081
faa615f9 1082 for (i = 0; i < adapter->num_io_queues; i++)
1738cd3e
NB
1083 ena_free_rx_bufs(adapter, i);
1084}
1085
548c4940
SJ
1086static void ena_unmap_tx_buff(struct ena_ring *tx_ring,
1087 struct ena_tx_buffer *tx_info)
38005ca8
AK
1088{
1089 struct ena_com_buf *ena_buf;
1090 u32 cnt;
1091 int i;
1092
1093 ena_buf = tx_info->bufs;
1094 cnt = tx_info->num_of_bufs;
1095
1096 if (unlikely(!cnt))
1097 return;
1098
1099 if (tx_info->map_linear_data) {
1100 dma_unmap_single(tx_ring->dev,
1101 dma_unmap_addr(ena_buf, paddr),
1102 dma_unmap_len(ena_buf, len),
1103 DMA_TO_DEVICE);
1104 ena_buf++;
1105 cnt--;
1106 }
1107
1108 /* unmap remaining mapped pages */
1109 for (i = 0; i < cnt; i++) {
1110 dma_unmap_page(tx_ring->dev, dma_unmap_addr(ena_buf, paddr),
1111 dma_unmap_len(ena_buf, len), DMA_TO_DEVICE);
1112 ena_buf++;
1113 }
1114}
1115
1738cd3e
NB
1116/* ena_free_tx_bufs - Free Tx Buffers per Queue
1117 * @tx_ring: TX ring for which buffers be freed
1118 */
1119static void ena_free_tx_bufs(struct ena_ring *tx_ring)
1120{
5add6e4a 1121 bool print_once = true;
1738cd3e
NB
1122 u32 i;
1123
1124 for (i = 0; i < tx_ring->ring_size; i++) {
1125 struct ena_tx_buffer *tx_info = &tx_ring->tx_buffer_info[i];
1738cd3e
NB
1126
1127 if (!tx_info->skb)
1128 continue;
1129
5add6e4a 1130 if (print_once) {
f0525298
SA
1131 netif_notice(tx_ring->adapter, ifdown, tx_ring->netdev,
1132 "free uncompleted tx skb qid %d idx 0x%x\n",
1133 tx_ring->qid, i);
5add6e4a
NB
1134 print_once = false;
1135 } else {
f0525298
SA
1136 netif_dbg(tx_ring->adapter, ifdown, tx_ring->netdev,
1137 "free uncompleted tx skb qid %d idx 0x%x\n",
1138 tx_ring->qid, i);
5add6e4a 1139 }
1738cd3e 1140
548c4940 1141 ena_unmap_tx_buff(tx_ring, tx_info);
1738cd3e
NB
1142
1143 dev_kfree_skb_any(tx_info->skb);
1144 }
1145 netdev_tx_reset_queue(netdev_get_tx_queue(tx_ring->netdev,
1146 tx_ring->qid));
1147}
1148
1149static void ena_free_all_tx_bufs(struct ena_adapter *adapter)
1150{
1151 struct ena_ring *tx_ring;
1152 int i;
1153
548c4940 1154 for (i = 0; i < adapter->num_io_queues + adapter->xdp_num_queues; i++) {
1738cd3e
NB
1155 tx_ring = &adapter->tx_ring[i];
1156 ena_free_tx_bufs(tx_ring);
1157 }
1158}
1159
1160static void ena_destroy_all_tx_queues(struct ena_adapter *adapter)
1161{
1162 u16 ena_qid;
1163 int i;
1164
548c4940 1165 for (i = 0; i < adapter->num_io_queues + adapter->xdp_num_queues; i++) {
1738cd3e
NB
1166 ena_qid = ENA_IO_TXQ_IDX(i);
1167 ena_com_destroy_io_queue(adapter->ena_dev, ena_qid);
1168 }
1169}
1170
1171static void ena_destroy_all_rx_queues(struct ena_adapter *adapter)
1172{
1173 u16 ena_qid;
1174 int i;
1175
faa615f9 1176 for (i = 0; i < adapter->num_io_queues; i++) {
1738cd3e 1177 ena_qid = ENA_IO_RXQ_IDX(i);
282faf61 1178 cancel_work_sync(&adapter->ena_napi[i].dim.work);
1738cd3e
NB
1179 ena_com_destroy_io_queue(adapter->ena_dev, ena_qid);
1180 }
1181}
1182
1183static void ena_destroy_all_io_queues(struct ena_adapter *adapter)
1184{
1185 ena_destroy_all_tx_queues(adapter);
1186 ena_destroy_all_rx_queues(adapter);
1187}
1188
548c4940
SJ
1189static int handle_invalid_req_id(struct ena_ring *ring, u16 req_id,
1190 struct ena_tx_buffer *tx_info, bool is_xdp)
1191{
1192 if (tx_info)
1193 netif_err(ring->adapter,
1194 tx_done,
1195 ring->netdev,
1196 "tx_info doesn't have valid %s",
1197 is_xdp ? "xdp frame" : "skb");
1198 else
1199 netif_err(ring->adapter,
1200 tx_done,
1201 ring->netdev,
1202 "Invalid req_id: %hu\n",
1203 req_id);
1204
1205 u64_stats_update_begin(&ring->syncp);
1206 ring->tx_stats.bad_req_id++;
1207 u64_stats_update_end(&ring->syncp);
1208
1209 /* Trigger device reset */
1210 ring->adapter->reset_reason = ENA_REGS_RESET_INV_TX_REQ_ID;
1211 set_bit(ENA_FLAG_TRIGGER_RESET, &ring->adapter->flags);
1212 return -EFAULT;
1213}
1214
1738cd3e
NB
1215static int validate_tx_req_id(struct ena_ring *tx_ring, u16 req_id)
1216{
1217 struct ena_tx_buffer *tx_info = NULL;
1218
1219 if (likely(req_id < tx_ring->ring_size)) {
1220 tx_info = &tx_ring->tx_buffer_info[req_id];
1221 if (likely(tx_info->skb))
1222 return 0;
1223 }
1224
548c4940
SJ
1225 return handle_invalid_req_id(tx_ring, req_id, tx_info, false);
1226}
1738cd3e 1227
548c4940
SJ
1228static int validate_xdp_req_id(struct ena_ring *xdp_ring, u16 req_id)
1229{
1230 struct ena_tx_buffer *tx_info = NULL;
1738cd3e 1231
548c4940
SJ
1232 if (likely(req_id < xdp_ring->ring_size)) {
1233 tx_info = &xdp_ring->tx_buffer_info[req_id];
1234 if (likely(tx_info->xdpf))
1235 return 0;
1236 }
1237
1238 return handle_invalid_req_id(xdp_ring, req_id, tx_info, true);
1738cd3e
NB
1239}
1240
1241static int ena_clean_tx_irq(struct ena_ring *tx_ring, u32 budget)
1242{
1243 struct netdev_queue *txq;
1244 bool above_thresh;
1245 u32 tx_bytes = 0;
1246 u32 total_done = 0;
1247 u16 next_to_clean;
1248 u16 req_id;
1249 int tx_pkts = 0;
1250 int rc;
1251
1252 next_to_clean = tx_ring->next_to_clean;
1253 txq = netdev_get_tx_queue(tx_ring->netdev, tx_ring->qid);
1254
1255 while (tx_pkts < budget) {
1256 struct ena_tx_buffer *tx_info;
1257 struct sk_buff *skb;
1738cd3e
NB
1258
1259 rc = ena_com_tx_comp_req_id_get(tx_ring->ena_com_io_cq,
1260 &req_id);
1261 if (rc)
1262 break;
1263
1264 rc = validate_tx_req_id(tx_ring, req_id);
1265 if (rc)
1266 break;
1267
1268 tx_info = &tx_ring->tx_buffer_info[req_id];
1269 skb = tx_info->skb;
1270
1271 /* prefetch skb_end_pointer() to speedup skb_shinfo(skb) */
1272 prefetch(&skb->end);
1273
1274 tx_info->skb = NULL;
1275 tx_info->last_jiffies = 0;
1276
548c4940 1277 ena_unmap_tx_buff(tx_ring, tx_info);
1738cd3e
NB
1278
1279 netif_dbg(tx_ring->adapter, tx_done, tx_ring->netdev,
1280 "tx_poll: q %d skb %p completed\n", tx_ring->qid,
1281 skb);
1282
1283 tx_bytes += skb->len;
1284 dev_kfree_skb(skb);
1285 tx_pkts++;
1286 total_done += tx_info->tx_descs;
1287
f9172498 1288 tx_ring->free_ids[next_to_clean] = req_id;
1738cd3e
NB
1289 next_to_clean = ENA_TX_RING_IDX_NEXT(next_to_clean,
1290 tx_ring->ring_size);
1291 }
1292
1293 tx_ring->next_to_clean = next_to_clean;
1294 ena_com_comp_ack(tx_ring->ena_com_io_sq, total_done);
1295 ena_com_update_dev_comp_head(tx_ring->ena_com_io_cq);
1296
1297 netdev_tx_completed_queue(txq, tx_pkts, tx_bytes);
1298
1299 netif_dbg(tx_ring->adapter, tx_done, tx_ring->netdev,
1300 "tx_poll: q %d done. total pkts: %d\n",
1301 tx_ring->qid, tx_pkts);
1302
1303 /* need to make the rings circular update visible to
1304 * ena_start_xmit() before checking for netif_queue_stopped().
1305 */
1306 smp_mb();
1307
689b2bda
AK
1308 above_thresh = ena_com_sq_have_enough_space(tx_ring->ena_com_io_sq,
1309 ENA_TX_WAKEUP_THRESH);
1738cd3e
NB
1310 if (unlikely(netif_tx_queue_stopped(txq) && above_thresh)) {
1311 __netif_tx_lock(txq, smp_processor_id());
689b2bda
AK
1312 above_thresh =
1313 ena_com_sq_have_enough_space(tx_ring->ena_com_io_sq,
1314 ENA_TX_WAKEUP_THRESH);
a53651ec
SJ
1315 if (netif_tx_queue_stopped(txq) && above_thresh &&
1316 test_bit(ENA_FLAG_DEV_UP, &tx_ring->adapter->flags)) {
1738cd3e
NB
1317 netif_tx_wake_queue(txq);
1318 u64_stats_update_begin(&tx_ring->syncp);
1319 tx_ring->tx_stats.queue_wakeup++;
1320 u64_stats_update_end(&tx_ring->syncp);
1321 }
1322 __netif_tx_unlock(txq);
1323 }
1324
1738cd3e
NB
1325 return tx_pkts;
1326}
1327
4265114d
NB
1328static struct sk_buff *ena_alloc_skb(struct ena_ring *rx_ring, bool frags)
1329{
1330 struct sk_buff *skb;
1331
1332 if (frags)
1333 skb = napi_get_frags(rx_ring->napi);
1334 else
1335 skb = netdev_alloc_skb_ip_align(rx_ring->netdev,
1336 rx_ring->rx_copybreak);
1337
1338 if (unlikely(!skb)) {
1339 u64_stats_update_begin(&rx_ring->syncp);
1340 rx_ring->rx_stats.skb_alloc_fail++;
1341 u64_stats_update_end(&rx_ring->syncp);
1342 netif_dbg(rx_ring->adapter, rx_err, rx_ring->netdev,
1343 "Failed to allocate skb. frags: %d\n", frags);
1344 return NULL;
1345 }
1346
1347 return skb;
1348}
1349
1738cd3e
NB
1350static struct sk_buff *ena_rx_skb(struct ena_ring *rx_ring,
1351 struct ena_com_rx_buf_info *ena_bufs,
1352 u32 descs,
1353 u16 *next_to_clean)
1354{
1355 struct sk_buff *skb;
ad974bae
NB
1356 struct ena_rx_buffer *rx_info;
1357 u16 len, req_id, buf = 0;
1738cd3e 1358 void *va;
30623e1e 1359 int rc;
1738cd3e 1360
ad974bae
NB
1361 len = ena_bufs[buf].len;
1362 req_id = ena_bufs[buf].req_id;
30623e1e
AK
1363
1364 rc = validate_rx_req_id(rx_ring, req_id);
1365 if (unlikely(rc < 0))
1366 return NULL;
1367
ad974bae
NB
1368 rx_info = &rx_ring->rx_buffer_info[req_id];
1369
1738cd3e
NB
1370 if (unlikely(!rx_info->page)) {
1371 netif_err(rx_ring->adapter, rx_err, rx_ring->netdev,
1372 "Page is NULL\n");
1373 return NULL;
1374 }
1375
1376 netif_dbg(rx_ring->adapter, rx_status, rx_ring->netdev,
1377 "rx_info %p page %p\n",
1378 rx_info, rx_info->page);
1379
1380 /* save virt address of first buffer */
1381 va = page_address(rx_info->page) + rx_info->page_offset;
1382 prefetch(va + NET_IP_ALIGN);
1383
1384 if (len <= rx_ring->rx_copybreak) {
4265114d
NB
1385 skb = ena_alloc_skb(rx_ring, false);
1386 if (unlikely(!skb))
1738cd3e 1387 return NULL;
1738cd3e
NB
1388
1389 netif_dbg(rx_ring->adapter, rx_status, rx_ring->netdev,
1390 "rx allocated small packet. len %d. data_len %d\n",
1391 skb->len, skb->data_len);
1392
1393 /* sync this buffer for CPU use */
1394 dma_sync_single_for_cpu(rx_ring->dev,
1395 dma_unmap_addr(&rx_info->ena_buf, paddr),
1396 len,
1397 DMA_FROM_DEVICE);
1398 skb_copy_to_linear_data(skb, va, len);
1399 dma_sync_single_for_device(rx_ring->dev,
1400 dma_unmap_addr(&rx_info->ena_buf, paddr),
1401 len,
1402 DMA_FROM_DEVICE);
1403
1404 skb_put(skb, len);
1405 skb->protocol = eth_type_trans(skb, rx_ring->netdev);
f9172498 1406 rx_ring->free_ids[*next_to_clean] = req_id;
1738cd3e
NB
1407 *next_to_clean = ENA_RX_RING_IDX_ADD(*next_to_clean, descs,
1408 rx_ring->ring_size);
1409 return skb;
1410 }
1411
4265114d
NB
1412 skb = ena_alloc_skb(rx_ring, true);
1413 if (unlikely(!skb))
1738cd3e 1414 return NULL;
1738cd3e
NB
1415
1416 do {
1417 dma_unmap_page(rx_ring->dev,
1418 dma_unmap_addr(&rx_info->ena_buf, paddr),
0f505c60 1419 ENA_PAGE_SIZE, DMA_BIDIRECTIONAL);
1738cd3e
NB
1420
1421 skb_add_rx_frag(skb, skb_shinfo(skb)->nr_frags, rx_info->page,
ef5b0771 1422 rx_info->page_offset, len, ENA_PAGE_SIZE);
68f236df
AK
1423 /* The offset is non zero only for the first buffer */
1424 rx_info->page_offset = 0;
1738cd3e
NB
1425
1426 netif_dbg(rx_ring->adapter, rx_status, rx_ring->netdev,
1427 "rx skb updated. len %d. data_len %d\n",
1428 skb->len, skb->data_len);
1429
1430 rx_info->page = NULL;
ad974bae 1431
f9172498 1432 rx_ring->free_ids[*next_to_clean] = req_id;
1738cd3e
NB
1433 *next_to_clean =
1434 ENA_RX_RING_IDX_NEXT(*next_to_clean,
1435 rx_ring->ring_size);
1436 if (likely(--descs == 0))
1437 break;
ad974bae
NB
1438
1439 buf++;
1440 len = ena_bufs[buf].len;
1441 req_id = ena_bufs[buf].req_id;
30623e1e
AK
1442
1443 rc = validate_rx_req_id(rx_ring, req_id);
1444 if (unlikely(rc < 0))
1445 return NULL;
1446
ad974bae 1447 rx_info = &rx_ring->rx_buffer_info[req_id];
1738cd3e
NB
1448 } while (1);
1449
1450 return skb;
1451}
1452
1453/* ena_rx_checksum - indicate in skb if hw indicated a good cksum
1454 * @adapter: structure containing adapter specific data
1455 * @ena_rx_ctx: received packet context/metadata
1456 * @skb: skb currently being received and modified
1457 */
c2b54204 1458static void ena_rx_checksum(struct ena_ring *rx_ring,
1738cd3e
NB
1459 struct ena_com_rx_ctx *ena_rx_ctx,
1460 struct sk_buff *skb)
1461{
1462 /* Rx csum disabled */
1463 if (unlikely(!(rx_ring->netdev->features & NETIF_F_RXCSUM))) {
1464 skb->ip_summed = CHECKSUM_NONE;
1465 return;
1466 }
1467
1468 /* For fragmented packets the checksum isn't valid */
1469 if (ena_rx_ctx->frag) {
1470 skb->ip_summed = CHECKSUM_NONE;
1471 return;
1472 }
1473
1474 /* if IP and error */
1475 if (unlikely((ena_rx_ctx->l3_proto == ENA_ETH_IO_L3_PROTO_IPV4) &&
1476 (ena_rx_ctx->l3_csum_err))) {
1477 /* ipv4 checksum error */
1478 skb->ip_summed = CHECKSUM_NONE;
1479 u64_stats_update_begin(&rx_ring->syncp);
1480 rx_ring->rx_stats.bad_csum++;
1481 u64_stats_update_end(&rx_ring->syncp);
cd7aea18 1482 netif_dbg(rx_ring->adapter, rx_err, rx_ring->netdev,
1738cd3e
NB
1483 "RX IPv4 header checksum error\n");
1484 return;
1485 }
1486
1487 /* if TCP/UDP */
1488 if (likely((ena_rx_ctx->l4_proto == ENA_ETH_IO_L4_PROTO_TCP) ||
1489 (ena_rx_ctx->l4_proto == ENA_ETH_IO_L4_PROTO_UDP))) {
1490 if (unlikely(ena_rx_ctx->l4_csum_err)) {
1491 /* TCP/UDP checksum error */
1492 u64_stats_update_begin(&rx_ring->syncp);
1493 rx_ring->rx_stats.bad_csum++;
1494 u64_stats_update_end(&rx_ring->syncp);
cd7aea18 1495 netif_dbg(rx_ring->adapter, rx_err, rx_ring->netdev,
1738cd3e
NB
1496 "RX L4 checksum error\n");
1497 skb->ip_summed = CHECKSUM_NONE;
1498 return;
1499 }
1500
cb36bb36
AK
1501 if (likely(ena_rx_ctx->l4_csum_checked)) {
1502 skb->ip_summed = CHECKSUM_UNNECESSARY;
d2eecc6e
SJ
1503 u64_stats_update_begin(&rx_ring->syncp);
1504 rx_ring->rx_stats.csum_good++;
1505 u64_stats_update_end(&rx_ring->syncp);
cb36bb36
AK
1506 } else {
1507 u64_stats_update_begin(&rx_ring->syncp);
1508 rx_ring->rx_stats.csum_unchecked++;
1509 u64_stats_update_end(&rx_ring->syncp);
1510 skb->ip_summed = CHECKSUM_NONE;
1511 }
1512 } else {
1513 skb->ip_summed = CHECKSUM_NONE;
1514 return;
1738cd3e 1515 }
cb36bb36 1516
1738cd3e
NB
1517}
1518
1519static void ena_set_rx_hash(struct ena_ring *rx_ring,
1520 struct ena_com_rx_ctx *ena_rx_ctx,
1521 struct sk_buff *skb)
1522{
1523 enum pkt_hash_types hash_type;
1524
1525 if (likely(rx_ring->netdev->features & NETIF_F_RXHASH)) {
1526 if (likely((ena_rx_ctx->l4_proto == ENA_ETH_IO_L4_PROTO_TCP) ||
1527 (ena_rx_ctx->l4_proto == ENA_ETH_IO_L4_PROTO_UDP)))
1528
1529 hash_type = PKT_HASH_TYPE_L4;
1530 else
1531 hash_type = PKT_HASH_TYPE_NONE;
1532
1533 /* Override hash type if the packet is fragmented */
1534 if (ena_rx_ctx->frag)
1535 hash_type = PKT_HASH_TYPE_NONE;
1536
1537 skb_set_hash(skb, ena_rx_ctx->hash, hash_type);
1538 }
1539}
1540
32109c70 1541static int ena_xdp_handle_buff(struct ena_ring *rx_ring, struct xdp_buff *xdp)
838c93dc
SJ
1542{
1543 struct ena_rx_buffer *rx_info;
1544 int ret;
1545
1546 rx_info = &rx_ring->rx_buffer_info[rx_ring->ena_bufs[0].req_id];
1547 xdp->data = page_address(rx_info->page) +
1548 rx_info->page_offset + rx_ring->rx_headroom;
1549 xdp_set_data_meta_invalid(xdp);
1550 xdp->data_hard_start = page_address(rx_info->page);
1551 xdp->data_end = xdp->data + rx_ring->ena_bufs[0].len;
1552 /* If for some reason we received a bigger packet than
1553 * we expect, then we simply drop it
1554 */
1555 if (unlikely(rx_ring->ena_bufs[0].len > ENA_XDP_MAX_MTU))
1556 return XDP_DROP;
1557
548c4940 1558 ret = ena_xdp_execute(rx_ring, xdp, rx_info);
838c93dc
SJ
1559
1560 /* The xdp program might expand the headers */
1561 if (ret == XDP_PASS) {
1562 rx_info->page_offset = xdp->data - xdp->data_hard_start;
1563 rx_ring->ena_bufs[0].len = xdp->data_end - xdp->data;
1564 }
1565
1566 return ret;
1567}
1738cd3e
NB
1568/* ena_clean_rx_irq - Cleanup RX irq
1569 * @rx_ring: RX ring to clean
1570 * @napi: napi handler
1571 * @budget: how many packets driver is allowed to clean
1572 *
1573 * Returns the number of cleaned buffers.
1574 */
1575static int ena_clean_rx_irq(struct ena_ring *rx_ring, struct napi_struct *napi,
1576 u32 budget)
1577{
1578 u16 next_to_clean = rx_ring->next_to_clean;
1738cd3e 1579 struct ena_com_rx_ctx ena_rx_ctx;
68f236df 1580 struct ena_rx_buffer *rx_info;
1738cd3e 1581 struct ena_adapter *adapter;
548c4940 1582 u32 res_budget, work_done;
838c93dc
SJ
1583 int rx_copybreak_pkt = 0;
1584 int refill_threshold;
1738cd3e
NB
1585 struct sk_buff *skb;
1586 int refill_required;
838c93dc 1587 struct xdp_buff xdp;
1738cd3e 1588 int total_len = 0;
838c93dc
SJ
1589 int xdp_verdict;
1590 int rc = 0;
ad974bae 1591 int i;
1738cd3e
NB
1592
1593 netif_dbg(rx_ring->adapter, rx_status, rx_ring->netdev,
1594 "%s qid %d\n", __func__, rx_ring->qid);
1595 res_budget = budget;
838c93dc 1596 xdp.rxq = &rx_ring->xdp_rxq;
08fc1cfd 1597 xdp.frame_sz = ENA_PAGE_SIZE;
548c4940 1598
1738cd3e 1599 do {
838c93dc
SJ
1600 xdp_verdict = XDP_PASS;
1601 skb = NULL;
1738cd3e
NB
1602 ena_rx_ctx.ena_bufs = rx_ring->ena_bufs;
1603 ena_rx_ctx.max_bufs = rx_ring->sgl_size;
1604 ena_rx_ctx.descs = 0;
68f236df 1605 ena_rx_ctx.pkt_offset = 0;
1738cd3e
NB
1606 rc = ena_com_rx_pkt(rx_ring->ena_com_io_cq,
1607 rx_ring->ena_com_io_sq,
1608 &ena_rx_ctx);
1609 if (unlikely(rc))
1610 goto error;
1611
1612 if (unlikely(ena_rx_ctx.descs == 0))
1613 break;
1614
68f236df
AK
1615 rx_info = &rx_ring->rx_buffer_info[rx_ring->ena_bufs[0].req_id];
1616 rx_info->page_offset = ena_rx_ctx.pkt_offset;
1617
1738cd3e
NB
1618 netif_dbg(rx_ring->adapter, rx_status, rx_ring->netdev,
1619 "rx_poll: q %d got packet from ena. descs #: %d l3 proto %d l4 proto %d hash: %x\n",
1620 rx_ring->qid, ena_rx_ctx.descs, ena_rx_ctx.l3_proto,
1621 ena_rx_ctx.l4_proto, ena_rx_ctx.hash);
1622
838c93dc
SJ
1623 if (ena_xdp_present_ring(rx_ring))
1624 xdp_verdict = ena_xdp_handle_buff(rx_ring, &xdp);
1625
1738cd3e 1626 /* allocate skb and fill it */
838c93dc
SJ
1627 if (xdp_verdict == XDP_PASS)
1628 skb = ena_rx_skb(rx_ring,
1629 rx_ring->ena_bufs,
1630 ena_rx_ctx.descs,
1631 &next_to_clean);
1738cd3e 1632
1738cd3e 1633 if (unlikely(!skb)) {
3921a81c 1634 if (xdp_verdict == XDP_TX)
548c4940
SJ
1635 ena_free_rx_page(rx_ring,
1636 &rx_ring->rx_buffer_info[rx_ring->ena_bufs[0].req_id]);
ad974bae 1637 for (i = 0; i < ena_rx_ctx.descs; i++) {
f9172498 1638 rx_ring->free_ids[next_to_clean] =
ad974bae
NB
1639 rx_ring->ena_bufs[i].req_id;
1640 next_to_clean =
1641 ENA_RX_RING_IDX_NEXT(next_to_clean,
1642 rx_ring->ring_size);
1643 }
3921a81c
SJ
1644 if (xdp_verdict != XDP_PASS) {
1645 res_budget--;
838c93dc 1646 continue;
3921a81c 1647 }
1738cd3e
NB
1648 break;
1649 }
1650
1651 ena_rx_checksum(rx_ring, &ena_rx_ctx, skb);
1652
1653 ena_set_rx_hash(rx_ring, &ena_rx_ctx, skb);
1654
1655 skb_record_rx_queue(skb, rx_ring->qid);
1656
1657 if (rx_ring->ena_bufs[0].len <= rx_ring->rx_copybreak) {
1658 total_len += rx_ring->ena_bufs[0].len;
1659 rx_copybreak_pkt++;
1660 napi_gro_receive(napi, skb);
1661 } else {
1662 total_len += skb->len;
1663 napi_gro_frags(napi);
1664 }
1665
1666 res_budget--;
1667 } while (likely(res_budget));
1668
1669 work_done = budget - res_budget;
1738cd3e
NB
1670 rx_ring->per_napi_packets += work_done;
1671 u64_stats_update_begin(&rx_ring->syncp);
1672 rx_ring->rx_stats.bytes += total_len;
1673 rx_ring->rx_stats.cnt += work_done;
1674 rx_ring->rx_stats.rx_copybreak_pkt += rx_copybreak_pkt;
1675 u64_stats_update_end(&rx_ring->syncp);
1676
1677 rx_ring->next_to_clean = next_to_clean;
1678
7cfe9a55 1679 refill_required = ena_com_free_q_entries(rx_ring->ena_com_io_sq);
0574bb80
AK
1680 refill_threshold =
1681 min_t(int, rx_ring->ring_size / ENA_RX_REFILL_THRESH_DIVIDER,
1682 ENA_RX_REFILL_THRESH_PACKET);
1738cd3e
NB
1683
1684 /* Optimization, try to batch new rx buffers */
1685 if (refill_required > refill_threshold) {
1686 ena_com_update_dev_comp_head(rx_ring->ena_com_io_cq);
1687 ena_refill_rx_bufs(rx_ring, refill_required);
1688 }
1689
1690 return work_done;
1691
1692error:
1693 adapter = netdev_priv(rx_ring->netdev);
1694
1695 u64_stats_update_begin(&rx_ring->syncp);
1696 rx_ring->rx_stats.bad_desc_num++;
1697 u64_stats_update_end(&rx_ring->syncp);
1698
1699 /* Too many desc from the device. Trigger reset */
e2eed0e3 1700 adapter->reset_reason = ENA_REGS_RESET_TOO_MANY_RX_DESCS;
1738cd3e
NB
1701 set_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
1702
1703 return 0;
1704}
1705
282faf61 1706static void ena_dim_work(struct work_struct *w)
1738cd3e 1707{
282faf61
AK
1708 struct dim *dim = container_of(w, struct dim, work);
1709 struct dim_cq_moder cur_moder =
1710 net_dim_get_rx_moderation(dim->mode, dim->profile_ix);
1711 struct ena_napi *ena_napi = container_of(dim, struct ena_napi, dim);
1712
1713 ena_napi->rx_ring->smoothed_interval = cur_moder.usec;
1714 dim->state = DIM_START_MEASURE;
1715}
1716
1717static void ena_adjust_adaptive_rx_intr_moderation(struct ena_napi *ena_napi)
1718{
1719 struct dim_sample dim_sample;
1720 struct ena_ring *rx_ring = ena_napi->rx_ring;
1721
1722 if (!rx_ring->per_napi_packets)
1723 return;
1724
1725 rx_ring->non_empty_napi_events++;
1726
1727 dim_update_sample(rx_ring->non_empty_napi_events,
1728 rx_ring->rx_stats.cnt,
1729 rx_ring->rx_stats.bytes,
1730 &dim_sample);
1731
1732 net_dim(&ena_napi->dim, dim_sample);
1733
1738cd3e 1734 rx_ring->per_napi_packets = 0;
1738cd3e
NB
1735}
1736
c2b54204 1737static void ena_unmask_interrupt(struct ena_ring *tx_ring,
418df30f
NB
1738 struct ena_ring *rx_ring)
1739{
1740 struct ena_eth_io_intr_reg intr_reg;
548c4940
SJ
1741 u32 rx_interval = 0;
1742 /* Rx ring can be NULL when for XDP tx queues which don't have an
1743 * accompanying rx_ring pair.
1744 */
1745 if (rx_ring)
1746 rx_interval = ena_com_get_adaptive_moderation_enabled(rx_ring->ena_dev) ?
1747 rx_ring->smoothed_interval :
1748 ena_com_get_nonadaptive_moderation_interval_rx(rx_ring->ena_dev);
418df30f
NB
1749
1750 /* Update intr register: rx intr delay,
1751 * tx intr delay and interrupt unmask
1752 */
1753 ena_com_update_intr_reg(&intr_reg,
7b8a2878 1754 rx_interval,
418df30f
NB
1755 tx_ring->smoothed_interval,
1756 true);
1757
d4a8b3bb
SJ
1758 u64_stats_update_begin(&tx_ring->syncp);
1759 tx_ring->tx_stats.unmask_interrupt++;
1760 u64_stats_update_end(&tx_ring->syncp);
418df30f
NB
1761 /* It is a shared MSI-X.
1762 * Tx and Rx CQ have pointer to it.
1763 * So we use one of them to reach the intr reg
548c4940 1764 * The Tx ring is used because the rx_ring is NULL for XDP queues
418df30f 1765 */
548c4940 1766 ena_com_unmask_intr(tx_ring->ena_com_io_cq, &intr_reg);
418df30f
NB
1767}
1768
c2b54204 1769static void ena_update_ring_numa_node(struct ena_ring *tx_ring,
1738cd3e
NB
1770 struct ena_ring *rx_ring)
1771{
1772 int cpu = get_cpu();
1773 int numa_node;
1774
1775 /* Check only one ring since the 2 rings are running on the same cpu */
1776 if (likely(tx_ring->cpu == cpu))
1777 goto out;
1778
1779 numa_node = cpu_to_node(cpu);
1780 put_cpu();
1781
1782 if (numa_node != NUMA_NO_NODE) {
1783 ena_com_update_numa_node(tx_ring->ena_com_io_cq, numa_node);
548c4940
SJ
1784 if (rx_ring)
1785 ena_com_update_numa_node(rx_ring->ena_com_io_cq,
1786 numa_node);
1738cd3e
NB
1787 }
1788
1789 tx_ring->cpu = cpu;
548c4940
SJ
1790 if (rx_ring)
1791 rx_ring->cpu = cpu;
1738cd3e
NB
1792
1793 return;
1794out:
1795 put_cpu();
1796}
1797
548c4940
SJ
1798static int ena_clean_xdp_irq(struct ena_ring *xdp_ring, u32 budget)
1799{
1800 u32 total_done = 0;
1801 u16 next_to_clean;
1802 u32 tx_bytes = 0;
1803 int tx_pkts = 0;
1804 u16 req_id;
1805 int rc;
1806
1807 if (unlikely(!xdp_ring))
1808 return 0;
1809 next_to_clean = xdp_ring->next_to_clean;
1810
1811 while (tx_pkts < budget) {
1812 struct ena_tx_buffer *tx_info;
1813 struct xdp_frame *xdpf;
1814
1815 rc = ena_com_tx_comp_req_id_get(xdp_ring->ena_com_io_cq,
1816 &req_id);
1817 if (rc)
1818 break;
1819
1820 rc = validate_xdp_req_id(xdp_ring, req_id);
1821 if (rc)
1822 break;
1823
1824 tx_info = &xdp_ring->tx_buffer_info[req_id];
1825 xdpf = tx_info->xdpf;
1826
1827 tx_info->xdpf = NULL;
1828 tx_info->last_jiffies = 0;
1829 ena_unmap_tx_buff(xdp_ring, tx_info);
1830
1831 netif_dbg(xdp_ring->adapter, tx_done, xdp_ring->netdev,
1832 "tx_poll: q %d skb %p completed\n", xdp_ring->qid,
1833 xdpf);
1834
1835 tx_bytes += xdpf->len;
1836 tx_pkts++;
1837 total_done += tx_info->tx_descs;
1838
1839 __free_page(tx_info->xdp_rx_page);
1840 xdp_ring->free_ids[next_to_clean] = req_id;
1841 next_to_clean = ENA_TX_RING_IDX_NEXT(next_to_clean,
1842 xdp_ring->ring_size);
1843 }
1844
1845 xdp_ring->next_to_clean = next_to_clean;
1846 ena_com_comp_ack(xdp_ring->ena_com_io_sq, total_done);
1847 ena_com_update_dev_comp_head(xdp_ring->ena_com_io_cq);
1848
1849 netif_dbg(xdp_ring->adapter, tx_done, xdp_ring->netdev,
1850 "tx_poll: q %d done. total pkts: %d\n",
1851 xdp_ring->qid, tx_pkts);
1852
1853 return tx_pkts;
1854}
1855
1738cd3e
NB
1856static int ena_io_poll(struct napi_struct *napi, int budget)
1857{
1858 struct ena_napi *ena_napi = container_of(napi, struct ena_napi, napi);
1859 struct ena_ring *tx_ring, *rx_ring;
24dee0c7
NB
1860 int tx_work_done;
1861 int rx_work_done = 0;
1738cd3e
NB
1862 int tx_budget;
1863 int napi_comp_call = 0;
1864 int ret;
1865
1866 tx_ring = ena_napi->tx_ring;
1867 rx_ring = ena_napi->rx_ring;
1868
913b0bfd
SJ
1869 tx_ring->first_interrupt = ena_napi->first_interrupt;
1870 rx_ring->first_interrupt = ena_napi->first_interrupt;
1871
1738cd3e
NB
1872 tx_budget = tx_ring->ring_size / ENA_TX_POLL_BUDGET_DIVIDER;
1873
3f6159db
NB
1874 if (!test_bit(ENA_FLAG_DEV_UP, &tx_ring->adapter->flags) ||
1875 test_bit(ENA_FLAG_TRIGGER_RESET, &tx_ring->adapter->flags)) {
1738cd3e
NB
1876 napi_complete_done(napi, 0);
1877 return 0;
1878 }
1879
1880 tx_work_done = ena_clean_tx_irq(tx_ring, tx_budget);
24dee0c7
NB
1881 /* On netpoll the budget is zero and the handler should only clean the
1882 * tx completions.
1883 */
1884 if (likely(budget))
1885 rx_work_done = ena_clean_rx_irq(rx_ring, napi, budget);
1738cd3e 1886
b1669c9f
NB
1887 /* If the device is about to reset or down, avoid unmask
1888 * the interrupt and return 0 so NAPI won't reschedule
1889 */
1890 if (unlikely(!test_bit(ENA_FLAG_DEV_UP, &tx_ring->adapter->flags) ||
1891 test_bit(ENA_FLAG_TRIGGER_RESET, &tx_ring->adapter->flags))) {
1892 napi_complete_done(napi, 0);
1893 ret = 0;
1738cd3e 1894
b1669c9f 1895 } else if ((budget > rx_work_done) && (tx_budget > tx_work_done)) {
1738cd3e 1896 napi_comp_call = 1;
1738cd3e 1897
b1669c9f
NB
1898 /* Update numa and unmask the interrupt only when schedule
1899 * from the interrupt context (vs from sk_busy_loop)
1738cd3e 1900 */
1e5ae350
AK
1901 if (napi_complete_done(napi, rx_work_done) &&
1902 READ_ONCE(ena_napi->interrupts_masked)) {
1903 smp_rmb(); /* make sure interrupts_masked is read */
1904 WRITE_ONCE(ena_napi->interrupts_masked, false);
282faf61
AK
1905 /* We apply adaptive moderation on Rx path only.
1906 * Tx uses static interrupt moderation.
1907 */
b1669c9f 1908 if (ena_com_get_adaptive_moderation_enabled(rx_ring->ena_dev))
282faf61 1909 ena_adjust_adaptive_rx_intr_moderation(ena_napi);
b1669c9f 1910
418df30f 1911 ena_unmask_interrupt(tx_ring, rx_ring);
b1669c9f 1912 }
1738cd3e 1913
1738cd3e
NB
1914 ena_update_ring_numa_node(tx_ring, rx_ring);
1915
1916 ret = rx_work_done;
1917 } else {
1918 ret = budget;
1919 }
1920
1921 u64_stats_update_begin(&tx_ring->syncp);
1922 tx_ring->tx_stats.napi_comp += napi_comp_call;
1923 tx_ring->tx_stats.tx_poll++;
1924 u64_stats_update_end(&tx_ring->syncp);
1925
1926 return ret;
1927}
1928
1929static irqreturn_t ena_intr_msix_mgmnt(int irq, void *data)
1930{
1931 struct ena_adapter *adapter = (struct ena_adapter *)data;
1932
1933 ena_com_admin_q_comp_intr_handler(adapter->ena_dev);
1934
1935 /* Don't call the aenq handler before probe is done */
1936 if (likely(test_bit(ENA_FLAG_DEVICE_RUNNING, &adapter->flags)))
1937 ena_com_aenq_intr_handler(adapter->ena_dev, data);
1938
1939 return IRQ_HANDLED;
1940}
1941
1942/* ena_intr_msix_io - MSI-X Interrupt Handler for Tx/Rx
1943 * @irq: interrupt number
1944 * @data: pointer to a network interface private napi device structure
1945 */
1946static irqreturn_t ena_intr_msix_io(int irq, void *data)
1947{
1948 struct ena_napi *ena_napi = data;
1949
913b0bfd 1950 ena_napi->first_interrupt = true;
8510e1a3 1951
1e5ae350
AK
1952 WRITE_ONCE(ena_napi->interrupts_masked, true);
1953 smp_wmb(); /* write interrupts_masked before calling napi */
1954
e745dafa 1955 napi_schedule_irqoff(&ena_napi->napi);
1738cd3e
NB
1956
1957 return IRQ_HANDLED;
1958}
1959
06443684
NB
1960/* Reserve a single MSI-X vector for management (admin + aenq).
1961 * plus reserve one vector for each potential io queue.
1962 * the number of potential io queues is the minimum of what the device
1963 * supports and the number of vCPUs.
1964 */
4d192660 1965static int ena_enable_msix(struct ena_adapter *adapter)
1738cd3e 1966{
06443684
NB
1967 int msix_vecs, irq_cnt;
1968
1969 if (test_bit(ENA_FLAG_MSIX_ENABLED, &adapter->flags)) {
1970 netif_err(adapter, probe, adapter->netdev,
1971 "Error, MSI-X is already enabled\n");
1972 return -EPERM;
1973 }
1738cd3e
NB
1974
1975 /* Reserved the max msix vectors we might need */
ce1f3521 1976 msix_vecs = ENA_MAX_MSIX_VEC(adapter->max_num_io_queues);
1738cd3e
NB
1977 netif_dbg(adapter, probe, adapter->netdev,
1978 "trying to enable MSI-X, vectors %d\n", msix_vecs);
1979
06443684
NB
1980 irq_cnt = pci_alloc_irq_vectors(adapter->pdev, ENA_MIN_MSIX_VEC,
1981 msix_vecs, PCI_IRQ_MSIX);
1982
1983 if (irq_cnt < 0) {
1738cd3e 1984 netif_err(adapter, probe, adapter->netdev,
06443684 1985 "Failed to enable MSI-X. irq_cnt %d\n", irq_cnt);
1738cd3e
NB
1986 return -ENOSPC;
1987 }
1988
06443684
NB
1989 if (irq_cnt != msix_vecs) {
1990 netif_notice(adapter, probe, adapter->netdev,
1991 "enable only %d MSI-X (out of %d), reduce the number of queues\n",
1992 irq_cnt, msix_vecs);
faa615f9 1993 adapter->num_io_queues = irq_cnt - ENA_ADMIN_MSIX_VEC;
1738cd3e
NB
1994 }
1995
06443684
NB
1996 if (ena_init_rx_cpu_rmap(adapter))
1997 netif_warn(adapter, probe, adapter->netdev,
1998 "Failed to map IRQs to CPUs\n");
1999
2000 adapter->msix_vecs = irq_cnt;
2001 set_bit(ENA_FLAG_MSIX_ENABLED, &adapter->flags);
1738cd3e
NB
2002
2003 return 0;
2004}
2005
2006static void ena_setup_mgmnt_intr(struct ena_adapter *adapter)
2007{
2008 u32 cpu;
2009
2010 snprintf(adapter->irq_tbl[ENA_MGMNT_IRQ_IDX].name,
2011 ENA_IRQNAME_SIZE, "ena-mgmnt@pci:%s",
2012 pci_name(adapter->pdev));
2013 adapter->irq_tbl[ENA_MGMNT_IRQ_IDX].handler =
2014 ena_intr_msix_mgmnt;
2015 adapter->irq_tbl[ENA_MGMNT_IRQ_IDX].data = adapter;
2016 adapter->irq_tbl[ENA_MGMNT_IRQ_IDX].vector =
da6f4cf5 2017 pci_irq_vector(adapter->pdev, ENA_MGMNT_IRQ_IDX);
1738cd3e
NB
2018 cpu = cpumask_first(cpu_online_mask);
2019 adapter->irq_tbl[ENA_MGMNT_IRQ_IDX].cpu = cpu;
2020 cpumask_set_cpu(cpu,
2021 &adapter->irq_tbl[ENA_MGMNT_IRQ_IDX].affinity_hint_mask);
2022}
2023
2024static void ena_setup_io_intr(struct ena_adapter *adapter)
2025{
2026 struct net_device *netdev;
2027 int irq_idx, i, cpu;
548c4940 2028 int io_queue_count;
1738cd3e
NB
2029
2030 netdev = adapter->netdev;
548c4940 2031 io_queue_count = adapter->num_io_queues + adapter->xdp_num_queues;
1738cd3e 2032
548c4940 2033 for (i = 0; i < io_queue_count; i++) {
1738cd3e
NB
2034 irq_idx = ENA_IO_IRQ_IDX(i);
2035 cpu = i % num_online_cpus();
2036
2037 snprintf(adapter->irq_tbl[irq_idx].name, ENA_IRQNAME_SIZE,
2038 "%s-Tx-Rx-%d", netdev->name, i);
2039 adapter->irq_tbl[irq_idx].handler = ena_intr_msix_io;
2040 adapter->irq_tbl[irq_idx].data = &adapter->ena_napi[i];
2041 adapter->irq_tbl[irq_idx].vector =
da6f4cf5 2042 pci_irq_vector(adapter->pdev, irq_idx);
1738cd3e
NB
2043 adapter->irq_tbl[irq_idx].cpu = cpu;
2044
2045 cpumask_set_cpu(cpu,
2046 &adapter->irq_tbl[irq_idx].affinity_hint_mask);
2047 }
2048}
2049
2050static int ena_request_mgmnt_irq(struct ena_adapter *adapter)
2051{
2052 unsigned long flags = 0;
2053 struct ena_irq *irq;
2054 int rc;
2055
2056 irq = &adapter->irq_tbl[ENA_MGMNT_IRQ_IDX];
2057 rc = request_irq(irq->vector, irq->handler, flags, irq->name,
2058 irq->data);
2059 if (rc) {
2060 netif_err(adapter, probe, adapter->netdev,
2061 "failed to request admin irq\n");
2062 return rc;
2063 }
2064
2065 netif_dbg(adapter, probe, adapter->netdev,
2066 "set affinity hint of mgmnt irq.to 0x%lx (irq vector: %d)\n",
2067 irq->affinity_hint_mask.bits[0], irq->vector);
2068
2069 irq_set_affinity_hint(irq->vector, &irq->affinity_hint_mask);
2070
2071 return rc;
2072}
2073
2074static int ena_request_io_irq(struct ena_adapter *adapter)
2075{
e02ae6ed 2076 u32 io_queue_count = adapter->num_io_queues + adapter->xdp_num_queues;
1738cd3e
NB
2077 unsigned long flags = 0;
2078 struct ena_irq *irq;
2079 int rc = 0, i, k;
2080
06443684
NB
2081 if (!test_bit(ENA_FLAG_MSIX_ENABLED, &adapter->flags)) {
2082 netif_err(adapter, ifup, adapter->netdev,
2083 "Failed to request I/O IRQ: MSI-X is not enabled\n");
2084 return -EINVAL;
2085 }
2086
e02ae6ed 2087 for (i = ENA_IO_IRQ_FIRST_IDX; i < ENA_MAX_MSIX_VEC(io_queue_count); i++) {
1738cd3e
NB
2088 irq = &adapter->irq_tbl[i];
2089 rc = request_irq(irq->vector, irq->handler, flags, irq->name,
2090 irq->data);
2091 if (rc) {
2092 netif_err(adapter, ifup, adapter->netdev,
2093 "Failed to request I/O IRQ. index %d rc %d\n",
2094 i, rc);
2095 goto err;
2096 }
2097
2098 netif_dbg(adapter, ifup, adapter->netdev,
2099 "set affinity hint of irq. index %d to 0x%lx (irq vector: %d)\n",
2100 i, irq->affinity_hint_mask.bits[0], irq->vector);
2101
2102 irq_set_affinity_hint(irq->vector, &irq->affinity_hint_mask);
2103 }
2104
2105 return rc;
2106
2107err:
2108 for (k = ENA_IO_IRQ_FIRST_IDX; k < i; k++) {
2109 irq = &adapter->irq_tbl[k];
2110 free_irq(irq->vector, irq->data);
2111 }
2112
2113 return rc;
2114}
2115
2116static void ena_free_mgmnt_irq(struct ena_adapter *adapter)
2117{
2118 struct ena_irq *irq;
2119
2120 irq = &adapter->irq_tbl[ENA_MGMNT_IRQ_IDX];
2121 synchronize_irq(irq->vector);
2122 irq_set_affinity_hint(irq->vector, NULL);
2123 free_irq(irq->vector, irq->data);
2124}
2125
2126static void ena_free_io_irq(struct ena_adapter *adapter)
2127{
e02ae6ed 2128 u32 io_queue_count = adapter->num_io_queues + adapter->xdp_num_queues;
1738cd3e
NB
2129 struct ena_irq *irq;
2130 int i;
2131
2132#ifdef CONFIG_RFS_ACCEL
2133 if (adapter->msix_vecs >= 1) {
2134 free_irq_cpu_rmap(adapter->netdev->rx_cpu_rmap);
2135 adapter->netdev->rx_cpu_rmap = NULL;
2136 }
2137#endif /* CONFIG_RFS_ACCEL */
2138
e02ae6ed 2139 for (i = ENA_IO_IRQ_FIRST_IDX; i < ENA_MAX_MSIX_VEC(io_queue_count); i++) {
1738cd3e
NB
2140 irq = &adapter->irq_tbl[i];
2141 irq_set_affinity_hint(irq->vector, NULL);
2142 free_irq(irq->vector, irq->data);
2143 }
2144}
2145
06443684
NB
2146static void ena_disable_msix(struct ena_adapter *adapter)
2147{
2148 if (test_and_clear_bit(ENA_FLAG_MSIX_ENABLED, &adapter->flags))
2149 pci_free_irq_vectors(adapter->pdev);
2150}
2151
1738cd3e
NB
2152static void ena_disable_io_intr_sync(struct ena_adapter *adapter)
2153{
e02ae6ed 2154 u32 io_queue_count = adapter->num_io_queues + adapter->xdp_num_queues;
1738cd3e
NB
2155 int i;
2156
2157 if (!netif_running(adapter->netdev))
2158 return;
2159
e02ae6ed 2160 for (i = ENA_IO_IRQ_FIRST_IDX; i < ENA_MAX_MSIX_VEC(io_queue_count); i++)
1738cd3e
NB
2161 synchronize_irq(adapter->irq_tbl[i].vector);
2162}
2163
548c4940
SJ
2164static void ena_del_napi_in_range(struct ena_adapter *adapter,
2165 int first_index,
2166 int count)
1738cd3e
NB
2167{
2168 int i;
2169
548c4940 2170 for (i = first_index; i < first_index + count; i++) {
8b147f6f
SA
2171 netif_napi_del(&adapter->ena_napi[i].napi);
2172
2173 WARN_ON(!ENA_IS_XDP_INDEX(adapter, i) &&
2174 adapter->ena_napi[i].xdp_ring);
548c4940 2175 }
1738cd3e
NB
2176}
2177
548c4940
SJ
2178static void ena_init_napi_in_range(struct ena_adapter *adapter,
2179 int first_index, int count)
1738cd3e 2180{
1738cd3e
NB
2181 int i;
2182
548c4940 2183 for (i = first_index; i < first_index + count; i++) {
d89d8d4d 2184 struct ena_napi *napi = &adapter->ena_napi[i];
1738cd3e
NB
2185
2186 netif_napi_add(adapter->netdev,
d89d8d4d 2187 &napi->napi,
548c4940 2188 ENA_IS_XDP_INDEX(adapter, i) ? ena_xdp_io_poll : ena_io_poll,
1738cd3e 2189 ENA_NAPI_BUDGET);
548c4940
SJ
2190
2191 if (!ENA_IS_XDP_INDEX(adapter, i)) {
2192 napi->rx_ring = &adapter->rx_ring[i];
2193 napi->tx_ring = &adapter->tx_ring[i];
2194 } else {
2195 napi->xdp_ring = &adapter->tx_ring[i];
2196 }
1738cd3e
NB
2197 napi->qid = i;
2198 }
2199}
2200
548c4940
SJ
2201static void ena_napi_disable_in_range(struct ena_adapter *adapter,
2202 int first_index,
2203 int count)
1738cd3e
NB
2204{
2205 int i;
2206
548c4940 2207 for (i = first_index; i < first_index + count; i++)
1738cd3e
NB
2208 napi_disable(&adapter->ena_napi[i].napi);
2209}
2210
548c4940
SJ
2211static void ena_napi_enable_in_range(struct ena_adapter *adapter,
2212 int first_index,
2213 int count)
1738cd3e
NB
2214{
2215 int i;
2216
548c4940 2217 for (i = first_index; i < first_index + count; i++)
1738cd3e
NB
2218 napi_enable(&adapter->ena_napi[i].napi);
2219}
2220
1738cd3e
NB
2221/* Configure the Rx forwarding */
2222static int ena_rss_configure(struct ena_adapter *adapter)
2223{
2224 struct ena_com_dev *ena_dev = adapter->ena_dev;
2225 int rc;
2226
2227 /* In case the RSS table wasn't initialized by probe */
2228 if (!ena_dev->rss.tbl_log_size) {
2229 rc = ena_rss_init_default(adapter);
d1497638 2230 if (rc && (rc != -EOPNOTSUPP)) {
1738cd3e 2231 netif_err(adapter, ifup, adapter->netdev,
46143e58 2232 "Failed to init RSS rc: %d\n", rc);
1738cd3e
NB
2233 return rc;
2234 }
2235 }
2236
2237 /* Set indirect table */
2238 rc = ena_com_indirect_table_set(ena_dev);
d1497638 2239 if (unlikely(rc && rc != -EOPNOTSUPP))
1738cd3e
NB
2240 return rc;
2241
2242 /* Configure hash function (if supported) */
2243 rc = ena_com_set_hash_function(ena_dev);
d1497638 2244 if (unlikely(rc && (rc != -EOPNOTSUPP)))
1738cd3e
NB
2245 return rc;
2246
2247 /* Configure hash inputs (if supported) */
2248 rc = ena_com_set_hash_ctrl(ena_dev);
d1497638 2249 if (unlikely(rc && (rc != -EOPNOTSUPP)))
1738cd3e
NB
2250 return rc;
2251
2252 return 0;
2253}
2254
2255static int ena_up_complete(struct ena_adapter *adapter)
2256{
7853b49c 2257 int rc;
1738cd3e
NB
2258
2259 rc = ena_rss_configure(adapter);
2260 if (rc)
2261 return rc;
2262
1738cd3e
NB
2263 ena_change_mtu(adapter->netdev, adapter->netdev->mtu);
2264
2265 ena_refill_all_rx_bufs(adapter);
2266
2267 /* enable transmits */
2268 netif_tx_start_all_queues(adapter->netdev);
2269
548c4940
SJ
2270 ena_napi_enable_in_range(adapter,
2271 0,
2272 adapter->xdp_num_queues + adapter->num_io_queues);
1738cd3e 2273
1738cd3e
NB
2274 return 0;
2275}
2276
2277static int ena_create_io_tx_queue(struct ena_adapter *adapter, int qid)
2278{
38005ca8 2279 struct ena_com_create_io_ctx ctx;
1738cd3e
NB
2280 struct ena_com_dev *ena_dev;
2281 struct ena_ring *tx_ring;
2282 u32 msix_vector;
2283 u16 ena_qid;
2284 int rc;
2285
2286 ena_dev = adapter->ena_dev;
2287
2288 tx_ring = &adapter->tx_ring[qid];
2289 msix_vector = ENA_IO_IRQ_IDX(qid);
2290 ena_qid = ENA_IO_TXQ_IDX(qid);
2291
38005ca8
AK
2292 memset(&ctx, 0x0, sizeof(ctx));
2293
1738cd3e
NB
2294 ctx.direction = ENA_COM_IO_QUEUE_DIRECTION_TX;
2295 ctx.qid = ena_qid;
2296 ctx.mem_queue_type = ena_dev->tx_mem_queue_type;
2297 ctx.msix_vector = msix_vector;
13ca32a6 2298 ctx.queue_size = tx_ring->ring_size;
1738cd3e
NB
2299 ctx.numa_node = cpu_to_node(tx_ring->cpu);
2300
2301 rc = ena_com_create_io_queue(ena_dev, &ctx);
2302 if (rc) {
2303 netif_err(adapter, ifup, adapter->netdev,
2304 "Failed to create I/O TX queue num %d rc: %d\n",
46143e58 2305 qid, rc);
1738cd3e
NB
2306 return rc;
2307 }
2308
2309 rc = ena_com_get_io_handlers(ena_dev, ena_qid,
2310 &tx_ring->ena_com_io_sq,
2311 &tx_ring->ena_com_io_cq);
2312 if (rc) {
2313 netif_err(adapter, ifup, adapter->netdev,
2314 "Failed to get TX queue handlers. TX queue num %d rc: %d\n",
2315 qid, rc);
2316 ena_com_destroy_io_queue(ena_dev, ena_qid);
2d2c600a 2317 return rc;
1738cd3e
NB
2318 }
2319
2320 ena_com_update_numa_node(tx_ring->ena_com_io_cq, ctx.numa_node);
2321 return rc;
2322}
2323
548c4940
SJ
2324static int ena_create_io_tx_queues_in_range(struct ena_adapter *adapter,
2325 int first_index, int count)
1738cd3e
NB
2326{
2327 struct ena_com_dev *ena_dev = adapter->ena_dev;
2328 int rc, i;
2329
548c4940 2330 for (i = first_index; i < first_index + count; i++) {
1738cd3e
NB
2331 rc = ena_create_io_tx_queue(adapter, i);
2332 if (rc)
2333 goto create_err;
2334 }
2335
2336 return 0;
2337
2338create_err:
548c4940 2339 while (i-- > first_index)
1738cd3e
NB
2340 ena_com_destroy_io_queue(ena_dev, ENA_IO_TXQ_IDX(i));
2341
2342 return rc;
2343}
2344
2345static int ena_create_io_rx_queue(struct ena_adapter *adapter, int qid)
2346{
2347 struct ena_com_dev *ena_dev;
38005ca8 2348 struct ena_com_create_io_ctx ctx;
1738cd3e
NB
2349 struct ena_ring *rx_ring;
2350 u32 msix_vector;
2351 u16 ena_qid;
2352 int rc;
2353
2354 ena_dev = adapter->ena_dev;
2355
2356 rx_ring = &adapter->rx_ring[qid];
2357 msix_vector = ENA_IO_IRQ_IDX(qid);
2358 ena_qid = ENA_IO_RXQ_IDX(qid);
2359
38005ca8
AK
2360 memset(&ctx, 0x0, sizeof(ctx));
2361
1738cd3e
NB
2362 ctx.qid = ena_qid;
2363 ctx.direction = ENA_COM_IO_QUEUE_DIRECTION_RX;
2364 ctx.mem_queue_type = ENA_ADMIN_PLACEMENT_POLICY_HOST;
2365 ctx.msix_vector = msix_vector;
13ca32a6 2366 ctx.queue_size = rx_ring->ring_size;
1738cd3e
NB
2367 ctx.numa_node = cpu_to_node(rx_ring->cpu);
2368
2369 rc = ena_com_create_io_queue(ena_dev, &ctx);
2370 if (rc) {
2371 netif_err(adapter, ifup, adapter->netdev,
2372 "Failed to create I/O RX queue num %d rc: %d\n",
2373 qid, rc);
2374 return rc;
2375 }
2376
2377 rc = ena_com_get_io_handlers(ena_dev, ena_qid,
2378 &rx_ring->ena_com_io_sq,
2379 &rx_ring->ena_com_io_cq);
2380 if (rc) {
2381 netif_err(adapter, ifup, adapter->netdev,
2382 "Failed to get RX queue handlers. RX queue num %d rc: %d\n",
2383 qid, rc);
838c93dc 2384 goto err;
1738cd3e
NB
2385 }
2386
2387 ena_com_update_numa_node(rx_ring->ena_com_io_cq, ctx.numa_node);
2388
838c93dc
SJ
2389 return rc;
2390err:
2391 ena_com_destroy_io_queue(ena_dev, ena_qid);
1738cd3e
NB
2392 return rc;
2393}
2394
2395static int ena_create_all_io_rx_queues(struct ena_adapter *adapter)
2396{
2397 struct ena_com_dev *ena_dev = adapter->ena_dev;
2398 int rc, i;
2399
faa615f9 2400 for (i = 0; i < adapter->num_io_queues; i++) {
1738cd3e
NB
2401 rc = ena_create_io_rx_queue(adapter, i);
2402 if (rc)
2403 goto create_err;
282faf61 2404 INIT_WORK(&adapter->ena_napi[i].dim.work, ena_dim_work);
1738cd3e
NB
2405 }
2406
2407 return 0;
2408
2409create_err:
282faf61
AK
2410 while (i--) {
2411 cancel_work_sync(&adapter->ena_napi[i].dim.work);
1738cd3e 2412 ena_com_destroy_io_queue(ena_dev, ENA_IO_RXQ_IDX(i));
282faf61 2413 }
1738cd3e
NB
2414
2415 return rc;
2416}
2417
13ca32a6 2418static void set_io_rings_size(struct ena_adapter *adapter,
548c4940
SJ
2419 int new_tx_size,
2420 int new_rx_size)
13ca32a6
SJ
2421{
2422 int i;
2423
faa615f9 2424 for (i = 0; i < adapter->num_io_queues; i++) {
13ca32a6
SJ
2425 adapter->tx_ring[i].ring_size = new_tx_size;
2426 adapter->rx_ring[i].ring_size = new_rx_size;
2427 }
2428}
2429
2430/* This function allows queue allocation to backoff when the system is
2431 * low on memory. If there is not enough memory to allocate io queues
2432 * the driver will try to allocate smaller queues.
2433 *
2434 * The backoff algorithm is as follows:
2435 * 1. Try to allocate TX and RX and if successful.
2436 * 1.1. return success
2437 *
2438 * 2. Divide by 2 the size of the larger of RX and TX queues (or both if their size is the same).
2439 *
2440 * 3. If TX or RX is smaller than 256
2441 * 3.1. return failure.
2442 * 4. else
2443 * 4.1. go back to 1.
2444 */
2445static int create_queues_with_size_backoff(struct ena_adapter *adapter)
2446{
2447 int rc, cur_rx_ring_size, cur_tx_ring_size;
2448 int new_rx_ring_size, new_tx_ring_size;
2449
2450 /* current queue sizes might be set to smaller than the requested
2451 * ones due to past queue allocation failures.
2452 */
2453 set_io_rings_size(adapter, adapter->requested_tx_ring_size,
46143e58 2454 adapter->requested_rx_ring_size);
13ca32a6
SJ
2455
2456 while (1) {
548c4940
SJ
2457 if (ena_xdp_present(adapter)) {
2458 rc = ena_setup_and_create_all_xdp_queues(adapter);
2459
2460 if (rc)
2461 goto err_setup_tx;
2462 }
2463 rc = ena_setup_tx_resources_in_range(adapter,
2464 0,
2465 adapter->num_io_queues);
13ca32a6
SJ
2466 if (rc)
2467 goto err_setup_tx;
2468
548c4940
SJ
2469 rc = ena_create_io_tx_queues_in_range(adapter,
2470 0,
2471 adapter->num_io_queues);
13ca32a6
SJ
2472 if (rc)
2473 goto err_create_tx_queues;
2474
2475 rc = ena_setup_all_rx_resources(adapter);
2476 if (rc)
2477 goto err_setup_rx;
2478
2479 rc = ena_create_all_io_rx_queues(adapter);
2480 if (rc)
2481 goto err_create_rx_queues;
2482
2483 return 0;
2484
2485err_create_rx_queues:
2486 ena_free_all_io_rx_resources(adapter);
2487err_setup_rx:
2488 ena_destroy_all_tx_queues(adapter);
2489err_create_tx_queues:
2490 ena_free_all_io_tx_resources(adapter);
2491err_setup_tx:
2492 if (rc != -ENOMEM) {
2493 netif_err(adapter, ifup, adapter->netdev,
2494 "Queue creation failed with error code %d\n",
46143e58 2495 rc);
13ca32a6
SJ
2496 return rc;
2497 }
2498
2499 cur_tx_ring_size = adapter->tx_ring[0].ring_size;
2500 cur_rx_ring_size = adapter->rx_ring[0].ring_size;
2501
2502 netif_err(adapter, ifup, adapter->netdev,
2503 "Not enough memory to create queues with sizes TX=%d, RX=%d\n",
2504 cur_tx_ring_size, cur_rx_ring_size);
2505
2506 new_tx_ring_size = cur_tx_ring_size;
2507 new_rx_ring_size = cur_rx_ring_size;
2508
2509 /* Decrease the size of the larger queue, or
2510 * decrease both if they are the same size.
2511 */
2512 if (cur_rx_ring_size <= cur_tx_ring_size)
2513 new_tx_ring_size = cur_tx_ring_size / 2;
2514 if (cur_rx_ring_size >= cur_tx_ring_size)
2515 new_rx_ring_size = cur_rx_ring_size / 2;
2516
3e5bfb18 2517 if (new_tx_ring_size < ENA_MIN_RING_SIZE ||
46143e58 2518 new_rx_ring_size < ENA_MIN_RING_SIZE) {
13ca32a6
SJ
2519 netif_err(adapter, ifup, adapter->netdev,
2520 "Queue creation failed with the smallest possible queue size of %d for both queues. Not retrying with smaller queues\n",
2521 ENA_MIN_RING_SIZE);
2522 return rc;
2523 }
2524
2525 netif_err(adapter, ifup, adapter->netdev,
2526 "Retrying queue creation with sizes TX=%d, RX=%d\n",
2527 new_tx_ring_size,
2528 new_rx_ring_size);
2529
2530 set_io_rings_size(adapter, new_tx_ring_size,
2531 new_rx_ring_size);
2532 }
2533}
2534
1738cd3e
NB
2535static int ena_up(struct ena_adapter *adapter)
2536{
548c4940 2537 int io_queue_count, rc, i;
1738cd3e 2538
f0525298 2539 netif_dbg(adapter, ifup, adapter->netdev, "%s\n", __func__);
1738cd3e 2540
548c4940 2541 io_queue_count = adapter->num_io_queues + adapter->xdp_num_queues;
1738cd3e
NB
2542 ena_setup_io_intr(adapter);
2543
78a55d05
AK
2544 /* napi poll functions should be initialized before running
2545 * request_irq(), to handle a rare condition where there is a pending
2546 * interrupt, causing the ISR to fire immediately while the poll
2547 * function wasn't set yet, causing a null dereference
2548 */
548c4940 2549 ena_init_napi_in_range(adapter, 0, io_queue_count);
78a55d05 2550
1738cd3e
NB
2551 rc = ena_request_io_irq(adapter);
2552 if (rc)
2553 goto err_req_irq;
2554
13ca32a6 2555 rc = create_queues_with_size_backoff(adapter);
1738cd3e 2556 if (rc)
13ca32a6 2557 goto err_create_queues_with_backoff;
1738cd3e
NB
2558
2559 rc = ena_up_complete(adapter);
2560 if (rc)
2561 goto err_up;
2562
2563 if (test_bit(ENA_FLAG_LINK_UP, &adapter->flags))
2564 netif_carrier_on(adapter->netdev);
2565
2566 u64_stats_update_begin(&adapter->syncp);
2567 adapter->dev_stats.interface_up++;
2568 u64_stats_update_end(&adapter->syncp);
2569
2570 set_bit(ENA_FLAG_DEV_UP, &adapter->flags);
2571
7853b49c 2572 /* Enable completion queues interrupt */
faa615f9 2573 for (i = 0; i < adapter->num_io_queues; i++)
7853b49c
NB
2574 ena_unmask_interrupt(&adapter->tx_ring[i],
2575 &adapter->rx_ring[i]);
2576
2577 /* schedule napi in case we had pending packets
2578 * from the last time we disable napi
2579 */
548c4940 2580 for (i = 0; i < io_queue_count; i++)
7853b49c
NB
2581 napi_schedule(&adapter->ena_napi[i].napi);
2582
1738cd3e
NB
2583 return rc;
2584
2585err_up:
1738cd3e 2586 ena_destroy_all_tx_queues(adapter);
1738cd3e 2587 ena_free_all_io_tx_resources(adapter);
13ca32a6
SJ
2588 ena_destroy_all_rx_queues(adapter);
2589 ena_free_all_io_rx_resources(adapter);
2590err_create_queues_with_backoff:
1738cd3e
NB
2591 ena_free_io_irq(adapter);
2592err_req_irq:
548c4940 2593 ena_del_napi_in_range(adapter, 0, io_queue_count);
1738cd3e
NB
2594
2595 return rc;
2596}
2597
2598static void ena_down(struct ena_adapter *adapter)
2599{
548c4940
SJ
2600 int io_queue_count = adapter->num_io_queues + adapter->xdp_num_queues;
2601
1738cd3e
NB
2602 netif_info(adapter, ifdown, adapter->netdev, "%s\n", __func__);
2603
2604 clear_bit(ENA_FLAG_DEV_UP, &adapter->flags);
2605
2606 u64_stats_update_begin(&adapter->syncp);
2607 adapter->dev_stats.interface_down++;
2608 u64_stats_update_end(&adapter->syncp);
2609
1738cd3e
NB
2610 netif_carrier_off(adapter->netdev);
2611 netif_tx_disable(adapter->netdev);
2612
3f6159db 2613 /* After this point the napi handler won't enable the tx queue */
548c4940 2614 ena_napi_disable_in_range(adapter, 0, io_queue_count);
3f6159db 2615
1738cd3e 2616 /* After destroy the queue there won't be any new interrupts */
3f6159db
NB
2617
2618 if (test_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags)) {
2619 int rc;
2620
e2eed0e3 2621 rc = ena_com_dev_reset(adapter->ena_dev, adapter->reset_reason);
3f6159db 2622 if (rc)
f0525298
SA
2623 netif_err(adapter, ifdown, adapter->netdev,
2624 "Device reset failed\n");
58a54b9c
AK
2625 /* stop submitting admin commands on a device that was reset */
2626 ena_com_set_admin_running_state(adapter->ena_dev, false);
3f6159db
NB
2627 }
2628
1738cd3e
NB
2629 ena_destroy_all_io_queues(adapter);
2630
2631 ena_disable_io_intr_sync(adapter);
2632 ena_free_io_irq(adapter);
548c4940 2633 ena_del_napi_in_range(adapter, 0, io_queue_count);
1738cd3e
NB
2634
2635 ena_free_all_tx_bufs(adapter);
2636 ena_free_all_rx_bufs(adapter);
2637 ena_free_all_io_tx_resources(adapter);
2638 ena_free_all_io_rx_resources(adapter);
2639}
2640
2641/* ena_open - Called when a network interface is made active
2642 * @netdev: network interface device structure
2643 *
2644 * Returns 0 on success, negative value on failure
2645 *
2646 * The open entry point is called when a network interface is made
2647 * active by the system (IFF_UP). At this point all resources needed
2648 * for transmit and receive operations are allocated, the interrupt
2649 * handler is registered with the OS, the watchdog timer is started,
2650 * and the stack is notified that the interface is ready.
2651 */
2652static int ena_open(struct net_device *netdev)
2653{
2654 struct ena_adapter *adapter = netdev_priv(netdev);
2655 int rc;
2656
2657 /* Notify the stack of the actual queue counts. */
faa615f9 2658 rc = netif_set_real_num_tx_queues(netdev, adapter->num_io_queues);
1738cd3e
NB
2659 if (rc) {
2660 netif_err(adapter, ifup, netdev, "Can't set num tx queues\n");
2661 return rc;
2662 }
2663
faa615f9 2664 rc = netif_set_real_num_rx_queues(netdev, adapter->num_io_queues);
1738cd3e
NB
2665 if (rc) {
2666 netif_err(adapter, ifup, netdev, "Can't set num rx queues\n");
2667 return rc;
2668 }
2669
2670 rc = ena_up(adapter);
2671 if (rc)
2672 return rc;
2673
2674 return rc;
2675}
2676
2677/* ena_close - Disables a network interface
2678 * @netdev: network interface device structure
2679 *
2680 * Returns 0, this is not allowed to fail
2681 *
2682 * The close entry point is called when an interface is de-activated
2683 * by the OS. The hardware is still under the drivers control, but
2684 * needs to be disabled. A global MAC reset is issued to stop the
2685 * hardware, and all transmit and receive resources are freed.
2686 */
2687static int ena_close(struct net_device *netdev)
2688{
2689 struct ena_adapter *adapter = netdev_priv(netdev);
2690
2691 netif_dbg(adapter, ifdown, netdev, "%s\n", __func__);
2692
58a54b9c
AK
2693 if (!test_bit(ENA_FLAG_DEVICE_RUNNING, &adapter->flags))
2694 return 0;
2695
1738cd3e
NB
2696 if (test_bit(ENA_FLAG_DEV_UP, &adapter->flags))
2697 ena_down(adapter);
2698
ee4552aa
NB
2699 /* Check for device status and issue reset if needed*/
2700 check_for_admin_com_state(adapter);
2701 if (unlikely(test_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags))) {
2702 netif_err(adapter, ifdown, adapter->netdev,
2703 "Destroy failure, restarting device\n");
2704 ena_dump_stats_to_dmesg(adapter);
2705 /* rtnl lock already obtained in dev_ioctl() layer */
cfa324a5 2706 ena_destroy_device(adapter, false);
ee4552aa
NB
2707 ena_restore_device(adapter);
2708 }
2709
1738cd3e
NB
2710 return 0;
2711}
2712
eece4d2a
SJ
2713int ena_update_queue_sizes(struct ena_adapter *adapter,
2714 u32 new_tx_size,
2715 u32 new_rx_size)
2716{
2413ea97 2717 bool dev_was_up;
eece4d2a 2718
2413ea97 2719 dev_was_up = test_bit(ENA_FLAG_DEV_UP, &adapter->flags);
eece4d2a
SJ
2720 ena_close(adapter->netdev);
2721 adapter->requested_tx_ring_size = new_tx_size;
2722 adapter->requested_rx_ring_size = new_rx_size;
548c4940
SJ
2723 ena_init_io_rings(adapter,
2724 0,
2725 adapter->xdp_num_queues +
2726 adapter->num_io_queues);
2413ea97
SJ
2727 return dev_was_up ? ena_up(adapter) : 0;
2728}
2729
2730int ena_update_queue_count(struct ena_adapter *adapter, u32 new_channel_count)
2731{
2732 struct ena_com_dev *ena_dev = adapter->ena_dev;
838c93dc 2733 int prev_channel_count;
2413ea97
SJ
2734 bool dev_was_up;
2735
2736 dev_was_up = test_bit(ENA_FLAG_DEV_UP, &adapter->flags);
2737 ena_close(adapter->netdev);
838c93dc 2738 prev_channel_count = adapter->num_io_queues;
2413ea97 2739 adapter->num_io_queues = new_channel_count;
548c4940
SJ
2740 if (ena_xdp_present(adapter) &&
2741 ena_xdp_allowed(adapter) == ENA_XDP_ALLOWED) {
2742 adapter->xdp_first_ring = new_channel_count;
2743 adapter->xdp_num_queues = new_channel_count;
838c93dc
SJ
2744 if (prev_channel_count > new_channel_count)
2745 ena_xdp_exchange_program_rx_in_range(adapter,
2746 NULL,
2747 new_channel_count,
2748 prev_channel_count);
2749 else
2750 ena_xdp_exchange_program_rx_in_range(adapter,
2751 adapter->xdp_bpf_prog,
2752 prev_channel_count,
2753 new_channel_count);
2754 }
2755
2413ea97
SJ
2756 /* We need to destroy the rss table so that the indirection
2757 * table will be reinitialized by ena_up()
2758 */
2759 ena_com_rss_destroy(ena_dev);
548c4940
SJ
2760 ena_init_io_rings(adapter,
2761 0,
2762 adapter->xdp_num_queues +
2763 adapter->num_io_queues);
2413ea97 2764 return dev_was_up ? ena_open(adapter->netdev) : 0;
eece4d2a
SJ
2765}
2766
0e3a3f6d
AK
2767static void ena_tx_csum(struct ena_com_tx_ctx *ena_tx_ctx,
2768 struct sk_buff *skb,
2769 bool disable_meta_caching)
1738cd3e
NB
2770{
2771 u32 mss = skb_shinfo(skb)->gso_size;
2772 struct ena_com_tx_meta *ena_meta = &ena_tx_ctx->ena_meta;
2773 u8 l4_protocol = 0;
2774
2775 if ((skb->ip_summed == CHECKSUM_PARTIAL) || mss) {
2776 ena_tx_ctx->l4_csum_enable = 1;
2777 if (mss) {
2778 ena_tx_ctx->tso_enable = 1;
2779 ena_meta->l4_hdr_len = tcp_hdr(skb)->doff;
2780 ena_tx_ctx->l4_csum_partial = 0;
2781 } else {
2782 ena_tx_ctx->tso_enable = 0;
2783 ena_meta->l4_hdr_len = 0;
2784 ena_tx_ctx->l4_csum_partial = 1;
2785 }
2786
2787 switch (ip_hdr(skb)->version) {
2788 case IPVERSION:
2789 ena_tx_ctx->l3_proto = ENA_ETH_IO_L3_PROTO_IPV4;
2790 if (ip_hdr(skb)->frag_off & htons(IP_DF))
2791 ena_tx_ctx->df = 1;
2792 if (mss)
2793 ena_tx_ctx->l3_csum_enable = 1;
2794 l4_protocol = ip_hdr(skb)->protocol;
2795 break;
2796 case 6:
2797 ena_tx_ctx->l3_proto = ENA_ETH_IO_L3_PROTO_IPV6;
2798 l4_protocol = ipv6_hdr(skb)->nexthdr;
2799 break;
2800 default:
2801 break;
2802 }
2803
2804 if (l4_protocol == IPPROTO_TCP)
2805 ena_tx_ctx->l4_proto = ENA_ETH_IO_L4_PROTO_TCP;
2806 else
2807 ena_tx_ctx->l4_proto = ENA_ETH_IO_L4_PROTO_UDP;
2808
2809 ena_meta->mss = mss;
2810 ena_meta->l3_hdr_len = skb_network_header_len(skb);
2811 ena_meta->l3_hdr_offset = skb_network_offset(skb);
2812 ena_tx_ctx->meta_valid = 1;
0e3a3f6d
AK
2813 } else if (disable_meta_caching) {
2814 memset(ena_meta, 0, sizeof(*ena_meta));
2815 ena_tx_ctx->meta_valid = 1;
1738cd3e
NB
2816 } else {
2817 ena_tx_ctx->meta_valid = 0;
2818 }
2819}
2820
2821static int ena_check_and_linearize_skb(struct ena_ring *tx_ring,
2822 struct sk_buff *skb)
2823{
2824 int num_frags, header_len, rc;
2825
2826 num_frags = skb_shinfo(skb)->nr_frags;
2827 header_len = skb_headlen(skb);
2828
2829 if (num_frags < tx_ring->sgl_size)
2830 return 0;
2831
2832 if ((num_frags == tx_ring->sgl_size) &&
2833 (header_len < tx_ring->tx_max_header_size))
2834 return 0;
2835
2836 u64_stats_update_begin(&tx_ring->syncp);
2837 tx_ring->tx_stats.linearize++;
2838 u64_stats_update_end(&tx_ring->syncp);
2839
2840 rc = skb_linearize(skb);
2841 if (unlikely(rc)) {
2842 u64_stats_update_begin(&tx_ring->syncp);
2843 tx_ring->tx_stats.linearize_failed++;
2844 u64_stats_update_end(&tx_ring->syncp);
2845 }
2846
2847 return rc;
2848}
2849
38005ca8
AK
2850static int ena_tx_map_skb(struct ena_ring *tx_ring,
2851 struct ena_tx_buffer *tx_info,
2852 struct sk_buff *skb,
2853 void **push_hdr,
2854 u16 *header_len)
1738cd3e 2855{
38005ca8 2856 struct ena_adapter *adapter = tx_ring->adapter;
1738cd3e 2857 struct ena_com_buf *ena_buf;
1738cd3e 2858 dma_addr_t dma;
38005ca8
AK
2859 u32 skb_head_len, frag_len, last_frag;
2860 u16 push_len = 0;
2861 u16 delta = 0;
2862 int i = 0;
1738cd3e 2863
38005ca8 2864 skb_head_len = skb_headlen(skb);
1738cd3e 2865 tx_info->skb = skb;
38005ca8 2866 ena_buf = tx_info->bufs;
1738cd3e
NB
2867
2868 if (tx_ring->tx_mem_queue_type == ENA_ADMIN_PLACEMENT_POLICY_DEV) {
38005ca8
AK
2869 /* When the device is LLQ mode, the driver will copy
2870 * the header into the device memory space.
2871 * the ena_com layer assume the header is in a linear
2872 * memory space.
2873 * This assumption might be wrong since part of the header
2874 * can be in the fragmented buffers.
2875 * Use skb_header_pointer to make sure the header is in a
2876 * linear memory space.
2877 */
2878
2879 push_len = min_t(u32, skb->len, tx_ring->tx_max_header_size);
2880 *push_hdr = skb_header_pointer(skb, 0, push_len,
2881 tx_ring->push_buf_intermediate_buf);
2882 *header_len = push_len;
2883 if (unlikely(skb->data != *push_hdr)) {
2884 u64_stats_update_begin(&tx_ring->syncp);
2885 tx_ring->tx_stats.llq_buffer_copy++;
2886 u64_stats_update_end(&tx_ring->syncp);
2887
2888 delta = push_len - skb_head_len;
2889 }
1738cd3e 2890 } else {
38005ca8
AK
2891 *push_hdr = NULL;
2892 *header_len = min_t(u32, skb_head_len,
2893 tx_ring->tx_max_header_size);
1738cd3e
NB
2894 }
2895
38005ca8 2896 netif_dbg(adapter, tx_queued, adapter->netdev,
1738cd3e 2897 "skb: %p header_buf->vaddr: %p push_len: %d\n", skb,
38005ca8 2898 *push_hdr, push_len);
1738cd3e 2899
38005ca8 2900 if (skb_head_len > push_len) {
1738cd3e 2901 dma = dma_map_single(tx_ring->dev, skb->data + push_len,
38005ca8
AK
2902 skb_head_len - push_len, DMA_TO_DEVICE);
2903 if (unlikely(dma_mapping_error(tx_ring->dev, dma)))
1738cd3e
NB
2904 goto error_report_dma_error;
2905
2906 ena_buf->paddr = dma;
38005ca8 2907 ena_buf->len = skb_head_len - push_len;
1738cd3e
NB
2908
2909 ena_buf++;
2910 tx_info->num_of_bufs++;
38005ca8
AK
2911 tx_info->map_linear_data = 1;
2912 } else {
2913 tx_info->map_linear_data = 0;
1738cd3e
NB
2914 }
2915
2916 last_frag = skb_shinfo(skb)->nr_frags;
2917
2918 for (i = 0; i < last_frag; i++) {
2919 const skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
2920
38005ca8
AK
2921 frag_len = skb_frag_size(frag);
2922
2923 if (unlikely(delta >= frag_len)) {
2924 delta -= frag_len;
2925 continue;
2926 }
2927
2928 dma = skb_frag_dma_map(tx_ring->dev, frag, delta,
2929 frag_len - delta, DMA_TO_DEVICE);
2930 if (unlikely(dma_mapping_error(tx_ring->dev, dma)))
1738cd3e
NB
2931 goto error_report_dma_error;
2932
2933 ena_buf->paddr = dma;
38005ca8 2934 ena_buf->len = frag_len - delta;
1738cd3e 2935 ena_buf++;
38005ca8
AK
2936 tx_info->num_of_bufs++;
2937 delta = 0;
1738cd3e
NB
2938 }
2939
38005ca8
AK
2940 return 0;
2941
2942error_report_dma_error:
2943 u64_stats_update_begin(&tx_ring->syncp);
2944 tx_ring->tx_stats.dma_mapping_err++;
2945 u64_stats_update_end(&tx_ring->syncp);
f0525298 2946 netif_warn(adapter, tx_queued, adapter->netdev, "failed to map skb\n");
38005ca8
AK
2947
2948 tx_info->skb = NULL;
2949
2950 tx_info->num_of_bufs += i;
548c4940 2951 ena_unmap_tx_buff(tx_ring, tx_info);
38005ca8
AK
2952
2953 return -EINVAL;
2954}
2955
2956/* Called with netif_tx_lock. */
2957static netdev_tx_t ena_start_xmit(struct sk_buff *skb, struct net_device *dev)
2958{
2959 struct ena_adapter *adapter = netdev_priv(dev);
2960 struct ena_tx_buffer *tx_info;
2961 struct ena_com_tx_ctx ena_tx_ctx;
2962 struct ena_ring *tx_ring;
2963 struct netdev_queue *txq;
2964 void *push_hdr;
2965 u16 next_to_use, req_id, header_len;
548c4940 2966 int qid, rc;
38005ca8
AK
2967
2968 netif_dbg(adapter, tx_queued, dev, "%s skb %p\n", __func__, skb);
2969 /* Determine which tx ring we will be placed on */
2970 qid = skb_get_queue_mapping(skb);
2971 tx_ring = &adapter->tx_ring[qid];
2972 txq = netdev_get_tx_queue(dev, qid);
2973
2974 rc = ena_check_and_linearize_skb(tx_ring, skb);
2975 if (unlikely(rc))
2976 goto error_drop_packet;
2977
2978 skb_tx_timestamp(skb);
2979
2980 next_to_use = tx_ring->next_to_use;
f9172498 2981 req_id = tx_ring->free_ids[next_to_use];
38005ca8
AK
2982 tx_info = &tx_ring->tx_buffer_info[req_id];
2983 tx_info->num_of_bufs = 0;
2984
2985 WARN(tx_info->skb, "SKB isn't NULL req_id %d\n", req_id);
2986
2987 rc = ena_tx_map_skb(tx_ring, tx_info, skb, &push_hdr, &header_len);
2988 if (unlikely(rc))
2989 goto error_drop_packet;
1738cd3e
NB
2990
2991 memset(&ena_tx_ctx, 0x0, sizeof(struct ena_com_tx_ctx));
2992 ena_tx_ctx.ena_bufs = tx_info->bufs;
2993 ena_tx_ctx.push_header = push_hdr;
2994 ena_tx_ctx.num_bufs = tx_info->num_of_bufs;
2995 ena_tx_ctx.req_id = req_id;
2996 ena_tx_ctx.header_len = header_len;
2997
2998 /* set flags and meta data */
0e3a3f6d 2999 ena_tx_csum(&ena_tx_ctx, skb, tx_ring->disable_meta_caching);
1738cd3e 3000
548c4940
SJ
3001 rc = ena_xmit_common(dev,
3002 tx_ring,
3003 tx_info,
3004 &ena_tx_ctx,
3005 next_to_use,
3006 skb->len);
3007 if (rc)
1738cd3e 3008 goto error_unmap_dma;
1738cd3e
NB
3009
3010 netdev_tx_sent_queue(txq, skb->len);
3011
1738cd3e
NB
3012 /* stop the queue when no more space available, the packet can have up
3013 * to sgl_size + 2. one for the meta descriptor and one for header
3014 * (if the header is larger than tx_max_header_size).
3015 */
689b2bda
AK
3016 if (unlikely(!ena_com_sq_have_enough_space(tx_ring->ena_com_io_sq,
3017 tx_ring->sgl_size + 2))) {
1738cd3e
NB
3018 netif_dbg(adapter, tx_queued, dev, "%s stop queue %d\n",
3019 __func__, qid);
3020
3021 netif_tx_stop_queue(txq);
3022 u64_stats_update_begin(&tx_ring->syncp);
3023 tx_ring->tx_stats.queue_stop++;
3024 u64_stats_update_end(&tx_ring->syncp);
3025
3026 /* There is a rare condition where this function decide to
3027 * stop the queue but meanwhile clean_tx_irq updates
3028 * next_to_completion and terminates.
3029 * The queue will remain stopped forever.
37dff155
NB
3030 * To solve this issue add a mb() to make sure that
3031 * netif_tx_stop_queue() write is vissible before checking if
3032 * there is additional space in the queue.
1738cd3e 3033 */
37dff155 3034 smp_mb();
1738cd3e 3035
689b2bda
AK
3036 if (ena_com_sq_have_enough_space(tx_ring->ena_com_io_sq,
3037 ENA_TX_WAKEUP_THRESH)) {
1738cd3e
NB
3038 netif_tx_wake_queue(txq);
3039 u64_stats_update_begin(&tx_ring->syncp);
3040 tx_ring->tx_stats.queue_wakeup++;
3041 u64_stats_update_end(&tx_ring->syncp);
3042 }
3043 }
3044
6b16f9ee 3045 if (netif_xmit_stopped(txq) || !netdev_xmit_more()) {
37dff155
NB
3046 /* trigger the dma engine. ena_com_write_sq_doorbell()
3047 * has a mb
3048 */
3049 ena_com_write_sq_doorbell(tx_ring->ena_com_io_sq);
1738cd3e
NB
3050 u64_stats_update_begin(&tx_ring->syncp);
3051 tx_ring->tx_stats.doorbells++;
3052 u64_stats_update_end(&tx_ring->syncp);
3053 }
3054
3055 return NETDEV_TX_OK;
3056
1738cd3e 3057error_unmap_dma:
548c4940 3058 ena_unmap_tx_buff(tx_ring, tx_info);
38005ca8 3059 tx_info->skb = NULL;
1738cd3e
NB
3060
3061error_drop_packet:
1738cd3e
NB
3062 dev_kfree_skb(skb);
3063 return NETDEV_TX_OK;
3064}
3065
1738cd3e 3066static u16 ena_select_queue(struct net_device *dev, struct sk_buff *skb,
a350ecce 3067 struct net_device *sb_dev)
1738cd3e
NB
3068{
3069 u16 qid;
3070 /* we suspect that this is good for in--kernel network services that
3071 * want to loop incoming skb rx to tx in normal user generated traffic,
3072 * most probably we will not get to this
3073 */
3074 if (skb_rx_queue_recorded(skb))
3075 qid = skb_get_rx_queue(skb);
3076 else
a350ecce 3077 qid = netdev_pick_tx(dev, skb, NULL);
1738cd3e
NB
3078
3079 return qid;
3080}
3081
46143e58 3082static void ena_config_host_info(struct ena_com_dev *ena_dev, struct pci_dev *pdev)
1738cd3e 3083{
f0525298 3084 struct device *dev = &pdev->dev;
1738cd3e
NB
3085 struct ena_admin_host_info *host_info;
3086 int rc;
3087
3088 /* Allocate only the host info */
3089 rc = ena_com_allocate_host_info(ena_dev);
3090 if (rc) {
f0525298 3091 dev_err(dev, "Cannot allocate host info\n");
1738cd3e
NB
3092 return;
3093 }
3094
3095 host_info = ena_dev->host_attr.host_info;
3096
095f2f1f 3097 host_info->bdf = (pdev->bus->number << 8) | pdev->devfn;
1738cd3e
NB
3098 host_info->os_type = ENA_ADMIN_OS_LINUX;
3099 host_info->kernel_ver = LINUX_VERSION_CODE;
f9133088 3100 strlcpy(host_info->kernel_ver_str, utsname()->version,
1738cd3e
NB
3101 sizeof(host_info->kernel_ver_str) - 1);
3102 host_info->os_dist = 0;
3103 strncpy(host_info->os_dist_str, utsname()->release,
3104 sizeof(host_info->os_dist_str) - 1);
92040c6d
AK
3105 host_info->driver_version =
3106 (DRV_MODULE_GEN_MAJOR) |
3107 (DRV_MODULE_GEN_MINOR << ENA_ADMIN_HOST_INFO_MINOR_SHIFT) |
3108 (DRV_MODULE_GEN_SUBMINOR << ENA_ADMIN_HOST_INFO_SUB_MINOR_SHIFT) |
3109 ("K"[0] << ENA_ADMIN_HOST_INFO_MODULE_TYPE_SHIFT);
095f2f1f 3110 host_info->num_cpus = num_online_cpus();
1738cd3e 3111
bd21b0cc 3112 host_info->driver_supported_features =
68f236df 3113 ENA_ADMIN_HOST_INFO_RX_OFFSET_MASK |
0f505c60 3114 ENA_ADMIN_HOST_INFO_INTERRUPT_MODERATION_MASK |
0ee60edf
AK
3115 ENA_ADMIN_HOST_INFO_RX_BUF_MIRRORING_MASK |
3116 ENA_ADMIN_HOST_INFO_RSS_CONFIGURABLE_FUNCTION_KEY_MASK;
bd21b0cc 3117
1738cd3e
NB
3118 rc = ena_com_set_host_attributes(ena_dev);
3119 if (rc) {
d1497638 3120 if (rc == -EOPNOTSUPP)
f0525298 3121 dev_warn(dev, "Cannot set host attributes\n");
1738cd3e 3122 else
f0525298 3123 dev_err(dev, "Cannot set host attributes\n");
1738cd3e
NB
3124
3125 goto err;
3126 }
3127
3128 return;
3129
3130err:
3131 ena_com_delete_host_info(ena_dev);
3132}
3133
3134static void ena_config_debug_area(struct ena_adapter *adapter)
3135{
3136 u32 debug_area_size;
3137 int rc, ss_count;
3138
3139 ss_count = ena_get_sset_count(adapter->netdev, ETH_SS_STATS);
3140 if (ss_count <= 0) {
3141 netif_err(adapter, drv, adapter->netdev,
3142 "SS count is negative\n");
3143 return;
3144 }
3145
3146 /* allocate 32 bytes for each string and 64bit for the value */
3147 debug_area_size = ss_count * ETH_GSTRING_LEN + sizeof(u64) * ss_count;
3148
3149 rc = ena_com_allocate_debug_area(adapter->ena_dev, debug_area_size);
3150 if (rc) {
f0525298
SA
3151 netif_err(adapter, drv, adapter->netdev,
3152 "Cannot allocate debug area\n");
1738cd3e
NB
3153 return;
3154 }
3155
3156 rc = ena_com_set_host_attributes(adapter->ena_dev);
3157 if (rc) {
d1497638 3158 if (rc == -EOPNOTSUPP)
1738cd3e
NB
3159 netif_warn(adapter, drv, adapter->netdev,
3160 "Cannot set host attributes\n");
3161 else
3162 netif_err(adapter, drv, adapter->netdev,
3163 "Cannot set host attributes\n");
3164 goto err;
3165 }
3166
3167 return;
3168err:
3169 ena_com_delete_debug_area(adapter->ena_dev);
3170}
3171
713865da
SJ
3172int ena_update_hw_stats(struct ena_adapter *adapter)
3173{
3174 int rc = 0;
3175
3176 rc = ena_com_get_eni_stats(adapter->ena_dev, &adapter->eni_stats);
3177 if (rc) {
3178 dev_info_once(&adapter->pdev->dev, "Failed to get ENI stats\n");
3179 return rc;
3180 }
3181
3182 return 0;
3183}
3184
bc1f4470 3185static void ena_get_stats64(struct net_device *netdev,
3186 struct rtnl_link_stats64 *stats)
1738cd3e
NB
3187{
3188 struct ena_adapter *adapter = netdev_priv(netdev);
d81db240
NB
3189 struct ena_ring *rx_ring, *tx_ring;
3190 unsigned int start;
3191 u64 rx_drops;
5c665f8c 3192 u64 tx_drops;
d81db240 3193 int i;
1738cd3e
NB
3194
3195 if (!test_bit(ENA_FLAG_DEV_UP, &adapter->flags))
bc1f4470 3196 return;
1738cd3e 3197
faa615f9 3198 for (i = 0; i < adapter->num_io_queues; i++) {
d81db240
NB
3199 u64 bytes, packets;
3200
3201 tx_ring = &adapter->tx_ring[i];
1738cd3e 3202
d81db240
NB
3203 do {
3204 start = u64_stats_fetch_begin_irq(&tx_ring->syncp);
3205 packets = tx_ring->tx_stats.cnt;
3206 bytes = tx_ring->tx_stats.bytes;
3207 } while (u64_stats_fetch_retry_irq(&tx_ring->syncp, start));
1738cd3e 3208
d81db240
NB
3209 stats->tx_packets += packets;
3210 stats->tx_bytes += bytes;
3211
3212 rx_ring = &adapter->rx_ring[i];
3213
3214 do {
3215 start = u64_stats_fetch_begin_irq(&rx_ring->syncp);
3216 packets = rx_ring->rx_stats.cnt;
3217 bytes = rx_ring->rx_stats.bytes;
3218 } while (u64_stats_fetch_retry_irq(&rx_ring->syncp, start));
3219
3220 stats->rx_packets += packets;
3221 stats->rx_bytes += bytes;
3222 }
3223
3224 do {
3225 start = u64_stats_fetch_begin_irq(&adapter->syncp);
3226 rx_drops = adapter->dev_stats.rx_drops;
5c665f8c 3227 tx_drops = adapter->dev_stats.tx_drops;
d81db240 3228 } while (u64_stats_fetch_retry_irq(&adapter->syncp, start));
1738cd3e 3229
d81db240 3230 stats->rx_dropped = rx_drops;
5c665f8c 3231 stats->tx_dropped = tx_drops;
1738cd3e
NB
3232
3233 stats->multicast = 0;
3234 stats->collisions = 0;
3235
3236 stats->rx_length_errors = 0;
3237 stats->rx_crc_errors = 0;
3238 stats->rx_frame_errors = 0;
3239 stats->rx_fifo_errors = 0;
3240 stats->rx_missed_errors = 0;
3241 stats->tx_window_errors = 0;
3242
3243 stats->rx_errors = 0;
3244 stats->tx_errors = 0;
1738cd3e
NB
3245}
3246
3247static const struct net_device_ops ena_netdev_ops = {
3248 .ndo_open = ena_open,
3249 .ndo_stop = ena_close,
3250 .ndo_start_xmit = ena_start_xmit,
3251 .ndo_select_queue = ena_select_queue,
3252 .ndo_get_stats64 = ena_get_stats64,
3253 .ndo_tx_timeout = ena_tx_timeout,
3254 .ndo_change_mtu = ena_change_mtu,
3255 .ndo_set_mac_address = NULL,
3256 .ndo_validate_addr = eth_validate_addr,
838c93dc 3257 .ndo_bpf = ena_xdp,
1738cd3e
NB
3258};
3259
1738cd3e
NB
3260static int ena_device_validate_params(struct ena_adapter *adapter,
3261 struct ena_com_dev_get_features_ctx *get_feat_ctx)
3262{
3263 struct net_device *netdev = adapter->netdev;
3264 int rc;
3265
3266 rc = ether_addr_equal(get_feat_ctx->dev_attr.mac_addr,
3267 adapter->mac_addr);
3268 if (!rc) {
3269 netif_err(adapter, drv, netdev,
3270 "Error, mac address are different\n");
3271 return -EINVAL;
3272 }
3273
1738cd3e
NB
3274 if (get_feat_ctx->dev_attr.max_mtu < netdev->mtu) {
3275 netif_err(adapter, drv, netdev,
3276 "Error, device max mtu is smaller than netdev MTU\n");
3277 return -EINVAL;
3278 }
3279
3280 return 0;
3281}
3282
c29efeae
AK
3283static void set_default_llq_configurations(struct ena_llq_configurations *llq_config)
3284{
3285 llq_config->llq_header_location = ENA_ADMIN_INLINE_HEADER;
3286 llq_config->llq_stride_ctrl = ENA_ADMIN_MULTIPLE_DESCS_PER_ENTRY;
3287 llq_config->llq_num_decs_before_header = ENA_ADMIN_LLQ_NUM_DESCS_BEFORE_HEADER_2;
3288 llq_config->llq_ring_entry_size = ENA_ADMIN_LIST_ENTRY_SIZE_128B;
3289 llq_config->llq_ring_entry_size_value = 128;
3290}
3291
3292static int ena_set_queues_placement_policy(struct pci_dev *pdev,
3293 struct ena_com_dev *ena_dev,
3294 struct ena_admin_feature_llq_desc *llq,
3295 struct ena_llq_configurations *llq_default_configurations)
3296{
3297 int rc;
3298 u32 llq_feature_mask;
3299
3300 llq_feature_mask = 1 << ENA_ADMIN_LLQ;
3301 if (!(ena_dev->supported_features & llq_feature_mask)) {
3302 dev_err(&pdev->dev,
3303 "LLQ is not supported Fallback to host mode policy.\n");
3304 ena_dev->tx_mem_queue_type = ENA_ADMIN_PLACEMENT_POLICY_HOST;
3305 return 0;
3306 }
3307
3308 rc = ena_com_config_dev_mode(ena_dev, llq, llq_default_configurations);
3309 if (unlikely(rc)) {
3310 dev_err(&pdev->dev,
3311 "Failed to configure the device mode. Fallback to host mode policy.\n");
3312 ena_dev->tx_mem_queue_type = ENA_ADMIN_PLACEMENT_POLICY_HOST;
3313 }
3314
3315 return 0;
3316}
3317
3318static int ena_map_llq_mem_bar(struct pci_dev *pdev, struct ena_com_dev *ena_dev,
3319 int bars)
3320{
3321 bool has_mem_bar = !!(bars & BIT(ENA_MEM_BAR));
3322
3323 if (!has_mem_bar) {
3324 if (ena_dev->tx_mem_queue_type == ENA_ADMIN_PLACEMENT_POLICY_DEV) {
3325 dev_err(&pdev->dev,
3326 "ENA device does not expose LLQ bar. Fallback to host mode policy.\n");
3327 ena_dev->tx_mem_queue_type = ENA_ADMIN_PLACEMENT_POLICY_HOST;
3328 }
3329
3330 return 0;
3331 }
3332
3333 ena_dev->mem_bar = devm_ioremap_wc(&pdev->dev,
3334 pci_resource_start(pdev, ENA_MEM_BAR),
3335 pci_resource_len(pdev, ENA_MEM_BAR));
3336
3337 if (!ena_dev->mem_bar)
3338 return -EFAULT;
3339
3340 return 0;
3341}
3342
1738cd3e
NB
3343static int ena_device_init(struct ena_com_dev *ena_dev, struct pci_dev *pdev,
3344 struct ena_com_dev_get_features_ctx *get_feat_ctx,
3345 bool *wd_state)
3346{
c29efeae 3347 struct ena_llq_configurations llq_config;
1738cd3e
NB
3348 struct device *dev = &pdev->dev;
3349 bool readless_supported;
3350 u32 aenq_groups;
3351 int dma_width;
3352 int rc;
3353
3354 rc = ena_com_mmio_reg_read_request_init(ena_dev);
3355 if (rc) {
3356 dev_err(dev, "failed to init mmio read less\n");
3357 return rc;
3358 }
3359
3360 /* The PCIe configuration space revision id indicate if mmio reg
3361 * read is disabled
3362 */
3363 readless_supported = !(pdev->revision & ENA_MMIO_DISABLE_REG_READ);
3364 ena_com_set_mmio_read_mode(ena_dev, readless_supported);
3365
e2eed0e3 3366 rc = ena_com_dev_reset(ena_dev, ENA_REGS_RESET_NORMAL);
1738cd3e
NB
3367 if (rc) {
3368 dev_err(dev, "Can not reset device\n");
3369 goto err_mmio_read_less;
3370 }
3371
3372 rc = ena_com_validate_version(ena_dev);
3373 if (rc) {
3374 dev_err(dev, "device version is too low\n");
3375 goto err_mmio_read_less;
3376 }
3377
3378 dma_width = ena_com_get_dma_width(ena_dev);
3379 if (dma_width < 0) {
3380 dev_err(dev, "Invalid dma width value %d", dma_width);
6e22066f 3381 rc = dma_width;
1738cd3e
NB
3382 goto err_mmio_read_less;
3383 }
3384
3385 rc = pci_set_dma_mask(pdev, DMA_BIT_MASK(dma_width));
3386 if (rc) {
3387 dev_err(dev, "pci_set_dma_mask failed 0x%x\n", rc);
3388 goto err_mmio_read_less;
3389 }
3390
3391 rc = pci_set_consistent_dma_mask(pdev, DMA_BIT_MASK(dma_width));
3392 if (rc) {
3393 dev_err(dev, "err_pci_set_consistent_dma_mask failed 0x%x\n",
3394 rc);
3395 goto err_mmio_read_less;
3396 }
3397
3398 /* ENA admin level init */
f1e90f6e 3399 rc = ena_com_admin_init(ena_dev, &aenq_handlers);
1738cd3e
NB
3400 if (rc) {
3401 dev_err(dev,
3402 "Can not initialize ena admin queue with device\n");
3403 goto err_mmio_read_less;
3404 }
3405
3406 /* To enable the msix interrupts the driver needs to know the number
3407 * of queues. So the driver uses polling mode to retrieve this
3408 * information
3409 */
3410 ena_com_set_admin_polling_mode(ena_dev, true);
3411
095f2f1f 3412 ena_config_host_info(ena_dev, pdev);
dd8427a7 3413
1738cd3e
NB
3414 /* Get Device Attributes*/
3415 rc = ena_com_get_dev_attr_feat(ena_dev, get_feat_ctx);
3416 if (rc) {
3417 dev_err(dev, "Cannot get attribute for ena device rc=%d\n", rc);
3418 goto err_admin_init;
3419 }
3420
3421 /* Try to turn all the available aenq groups */
3422 aenq_groups = BIT(ENA_ADMIN_LINK_CHANGE) |
3423 BIT(ENA_ADMIN_FATAL_ERROR) |
3424 BIT(ENA_ADMIN_WARNING) |
3425 BIT(ENA_ADMIN_NOTIFICATION) |
3426 BIT(ENA_ADMIN_KEEP_ALIVE);
3427
3428 aenq_groups &= get_feat_ctx->aenq.supported_groups;
3429
3430 rc = ena_com_set_aenq_config(ena_dev, aenq_groups);
3431 if (rc) {
3432 dev_err(dev, "Cannot configure aenq groups rc= %d\n", rc);
3433 goto err_admin_init;
3434 }
3435
3436 *wd_state = !!(aenq_groups & BIT(ENA_ADMIN_KEEP_ALIVE));
3437
c29efeae
AK
3438 set_default_llq_configurations(&llq_config);
3439
3440 rc = ena_set_queues_placement_policy(pdev, ena_dev, &get_feat_ctx->llq,
3441 &llq_config);
3442 if (rc) {
3443 dev_err(&pdev->dev, "ena device init failed\n");
3444 goto err_admin_init;
3445 }
3446
1738cd3e
NB
3447 return 0;
3448
3449err_admin_init:
dd8427a7 3450 ena_com_delete_host_info(ena_dev);
1738cd3e
NB
3451 ena_com_admin_destroy(ena_dev);
3452err_mmio_read_less:
3453 ena_com_mmio_reg_read_request_destroy(ena_dev);
3454
3455 return rc;
3456}
3457
4d192660 3458static int ena_enable_msix_and_set_admin_interrupts(struct ena_adapter *adapter)
1738cd3e
NB
3459{
3460 struct ena_com_dev *ena_dev = adapter->ena_dev;
3461 struct device *dev = &adapter->pdev->dev;
3462 int rc;
3463
4d192660 3464 rc = ena_enable_msix(adapter);
1738cd3e
NB
3465 if (rc) {
3466 dev_err(dev, "Can not reserve msix vectors\n");
3467 return rc;
3468 }
3469
3470 ena_setup_mgmnt_intr(adapter);
3471
3472 rc = ena_request_mgmnt_irq(adapter);
3473 if (rc) {
3474 dev_err(dev, "Can not setup management interrupts\n");
3475 goto err_disable_msix;
3476 }
3477
3478 ena_com_set_admin_polling_mode(ena_dev, false);
3479
3480 ena_com_admin_aenq_enable(ena_dev);
3481
3482 return 0;
3483
3484err_disable_msix:
06443684
NB
3485 ena_disable_msix(adapter);
3486
1738cd3e
NB
3487 return rc;
3488}
3489
cfa324a5 3490static void ena_destroy_device(struct ena_adapter *adapter, bool graceful)
1738cd3e 3491{
1738cd3e
NB
3492 struct net_device *netdev = adapter->netdev;
3493 struct ena_com_dev *ena_dev = adapter->ena_dev;
8c5c7abd 3494 bool dev_up;
3f6159db 3495
fe870c77
NB
3496 if (!test_bit(ENA_FLAG_DEVICE_RUNNING, &adapter->flags))
3497 return;
3498
3f6159db
NB
3499 netif_carrier_off(netdev);
3500
1738cd3e
NB
3501 del_timer_sync(&adapter->timer_service);
3502
1738cd3e 3503 dev_up = test_bit(ENA_FLAG_DEV_UP, &adapter->flags);
8c5c7abd 3504 adapter->dev_up_before_reset = dev_up;
cfa324a5
NB
3505 if (!graceful)
3506 ena_com_set_admin_running_state(ena_dev, false);
1738cd3e 3507
ee4552aa
NB
3508 if (test_bit(ENA_FLAG_DEV_UP, &adapter->flags))
3509 ena_down(adapter);
1738cd3e 3510
bd791175 3511 /* Stop the device from sending AENQ events (in case reset flag is set
58a54b9c 3512 * and device is up, ena_down() already reset the device.
8c5c7abd
NB
3513 */
3514 if (!(test_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags) && dev_up))
3515 ena_com_dev_reset(adapter->ena_dev, adapter->reset_reason);
3516
1738cd3e
NB
3517 ena_free_mgmnt_irq(adapter);
3518
06443684 3519 ena_disable_msix(adapter);
1738cd3e
NB
3520
3521 ena_com_abort_admin_commands(ena_dev);
3522
3523 ena_com_wait_for_abort_completion(ena_dev);
3524
3525 ena_com_admin_destroy(ena_dev);
3526
3527 ena_com_mmio_reg_read_request_destroy(ena_dev);
3528
c1c0e40b 3529 /* return reset reason to default value */
e2eed0e3 3530 adapter->reset_reason = ENA_REGS_RESET_NORMAL;
8c5c7abd 3531
3f6159db 3532 clear_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
fe870c77 3533 clear_bit(ENA_FLAG_DEVICE_RUNNING, &adapter->flags);
8c5c7abd 3534}
3f6159db 3535
8c5c7abd
NB
3536static int ena_restore_device(struct ena_adapter *adapter)
3537{
3538 struct ena_com_dev_get_features_ctx get_feat_ctx;
3539 struct ena_com_dev *ena_dev = adapter->ena_dev;
3540 struct pci_dev *pdev = adapter->pdev;
3541 bool wd_state;
3542 int rc;
1738cd3e 3543
d18e4f68 3544 set_bit(ENA_FLAG_ONGOING_RESET, &adapter->flags);
1738cd3e
NB
3545 rc = ena_device_init(ena_dev, adapter->pdev, &get_feat_ctx, &wd_state);
3546 if (rc) {
3547 dev_err(&pdev->dev, "Can not initialize device\n");
3548 goto err;
3549 }
3550 adapter->wd_state = wd_state;
3551
3552 rc = ena_device_validate_params(adapter, &get_feat_ctx);
3553 if (rc) {
3554 dev_err(&pdev->dev, "Validation of device parameters failed\n");
3555 goto err_device_destroy;
3556 }
3557
4d192660 3558 rc = ena_enable_msix_and_set_admin_interrupts(adapter);
1738cd3e
NB
3559 if (rc) {
3560 dev_err(&pdev->dev, "Enable MSI-X failed\n");
3561 goto err_device_destroy;
3562 }
3563 /* If the interface was up before the reset bring it up */
8c5c7abd 3564 if (adapter->dev_up_before_reset) {
1738cd3e
NB
3565 rc = ena_up(adapter);
3566 if (rc) {
3567 dev_err(&pdev->dev, "Failed to create I/O queues\n");
3568 goto err_disable_msix;
3569 }
3570 }
3571
fe870c77 3572 set_bit(ENA_FLAG_DEVICE_RUNNING, &adapter->flags);
e1f1bd9b
AK
3573
3574 clear_bit(ENA_FLAG_ONGOING_RESET, &adapter->flags);
3575 if (test_bit(ENA_FLAG_LINK_UP, &adapter->flags))
3576 netif_carrier_on(adapter->netdev);
3577
1738cd3e 3578 mod_timer(&adapter->timer_service, round_jiffies(jiffies + HZ));
dfdde134 3579 adapter->last_keep_alive_jiffies = jiffies;
1738cd3e 3580
f0525298
SA
3581 dev_err(&pdev->dev, "Device reset completed successfully\n");
3582
8c5c7abd 3583 return rc;
1738cd3e
NB
3584err_disable_msix:
3585 ena_free_mgmnt_irq(adapter);
06443684 3586 ena_disable_msix(adapter);
1738cd3e 3587err_device_destroy:
d7703ddb
AK
3588 ena_com_abort_admin_commands(ena_dev);
3589 ena_com_wait_for_abort_completion(ena_dev);
1738cd3e 3590 ena_com_admin_destroy(ena_dev);
d7703ddb 3591 ena_com_dev_reset(ena_dev, ENA_REGS_RESET_DRIVER_INVALID_STATE);
e76ad21d 3592 ena_com_mmio_reg_read_request_destroy(ena_dev);
1738cd3e 3593err:
22b331c9 3594 clear_bit(ENA_FLAG_DEVICE_RUNNING, &adapter->flags);
d18e4f68 3595 clear_bit(ENA_FLAG_ONGOING_RESET, &adapter->flags);
1738cd3e
NB
3596 dev_err(&pdev->dev,
3597 "Reset attempt failed. Can not reset the device\n");
8c5c7abd
NB
3598
3599 return rc;
3600}
3601
3602static void ena_fw_reset_device(struct work_struct *work)
3603{
3604 struct ena_adapter *adapter =
3605 container_of(work, struct ena_adapter, reset_task);
8c5c7abd 3606
8c5c7abd 3607 rtnl_lock();
63d4a4c1
SA
3608
3609 if (likely(test_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags))) {
3610 ena_destroy_device(adapter, false);
3611 ena_restore_device(adapter);
3612 }
3613
8c5c7abd 3614 rtnl_unlock();
1738cd3e
NB
3615}
3616
8510e1a3
NB
3617static int check_for_rx_interrupt_queue(struct ena_adapter *adapter,
3618 struct ena_ring *rx_ring)
3619{
3620 if (likely(rx_ring->first_interrupt))
3621 return 0;
3622
3623 if (ena_com_cq_empty(rx_ring->ena_com_io_cq))
3624 return 0;
3625
3626 rx_ring->no_interrupt_event_cnt++;
3627
3628 if (rx_ring->no_interrupt_event_cnt == ENA_MAX_NO_INTERRUPT_ITERATIONS) {
3629 netif_err(adapter, rx_err, adapter->netdev,
3630 "Potential MSIX issue on Rx side Queue = %d. Reset the device\n",
3631 rx_ring->qid);
3632 adapter->reset_reason = ENA_REGS_RESET_MISS_INTERRUPT;
3633 smp_mb__before_atomic();
3634 set_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
3635 return -EIO;
3636 }
3637
3638 return 0;
3639}
3640
3641static int check_missing_comp_in_tx_queue(struct ena_adapter *adapter,
3642 struct ena_ring *tx_ring)
1738cd3e
NB
3643{
3644 struct ena_tx_buffer *tx_buf;
3645 unsigned long last_jiffies;
800c55cb 3646 u32 missed_tx = 0;
11095fdb 3647 int i, rc = 0;
800c55cb
NB
3648
3649 for (i = 0; i < tx_ring->ring_size; i++) {
3650 tx_buf = &tx_ring->tx_buffer_info[i];
3651 last_jiffies = tx_buf->last_jiffies;
8510e1a3
NB
3652
3653 if (last_jiffies == 0)
3654 /* no pending Tx at this location */
3655 continue;
3656
3657 if (unlikely(!tx_ring->first_interrupt && time_is_before_jiffies(last_jiffies +
3658 2 * adapter->missing_tx_completion_to))) {
3659 /* If after graceful period interrupt is still not
3660 * received, we schedule a reset
3661 */
3662 netif_err(adapter, tx_err, adapter->netdev,
3663 "Potential MSIX issue on Tx side Queue = %d. Reset the device\n",
3664 tx_ring->qid);
3665 adapter->reset_reason = ENA_REGS_RESET_MISS_INTERRUPT;
3666 smp_mb__before_atomic();
3667 set_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
3668 return -EIO;
3669 }
3670
3671 if (unlikely(time_is_before_jiffies(last_jiffies +
3672 adapter->missing_tx_completion_to))) {
800c55cb
NB
3673 if (!tx_buf->print_once)
3674 netif_notice(adapter, tx_err, adapter->netdev,
3675 "Found a Tx that wasn't completed on time, qid %d, index %d.\n",
3676 tx_ring->qid, i);
3677
3678 tx_buf->print_once = 1;
3679 missed_tx++;
800c55cb
NB
3680 }
3681 }
3682
11095fdb
NB
3683 if (unlikely(missed_tx > adapter->missing_tx_completion_threshold)) {
3684 netif_err(adapter, tx_err, adapter->netdev,
3685 "The number of lost tx completions is above the threshold (%d > %d). Reset the device\n",
3686 missed_tx,
3687 adapter->missing_tx_completion_threshold);
3688 adapter->reset_reason =
3689 ENA_REGS_RESET_MISS_TX_CMPL;
3690 set_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
3691 rc = -EIO;
3692 }
3693
3694 u64_stats_update_begin(&tx_ring->syncp);
ccd143e5 3695 tx_ring->tx_stats.missed_tx += missed_tx;
11095fdb
NB
3696 u64_stats_update_end(&tx_ring->syncp);
3697
3698 return rc;
800c55cb
NB
3699}
3700
8510e1a3 3701static void check_for_missing_completions(struct ena_adapter *adapter)
800c55cb 3702{
1738cd3e 3703 struct ena_ring *tx_ring;
8510e1a3 3704 struct ena_ring *rx_ring;
800c55cb 3705 int i, budget, rc;
548c4940 3706 int io_queue_count;
1738cd3e 3707
548c4940 3708 io_queue_count = adapter->xdp_num_queues + adapter->num_io_queues;
1738cd3e
NB
3709 /* Make sure the driver doesn't turn the device in other process */
3710 smp_rmb();
3711
3712 if (!test_bit(ENA_FLAG_DEV_UP, &adapter->flags))
3713 return;
3714
3f6159db
NB
3715 if (test_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags))
3716 return;
3717
82ef30f1
NB
3718 if (adapter->missing_tx_completion_to == ENA_HW_HINTS_NO_TIMEOUT)
3719 return;
3720
1738cd3e
NB
3721 budget = ENA_MONITORED_TX_QUEUES;
3722
548c4940 3723 for (i = adapter->last_monitored_tx_qid; i < io_queue_count; i++) {
1738cd3e 3724 tx_ring = &adapter->tx_ring[i];
8510e1a3
NB
3725 rx_ring = &adapter->rx_ring[i];
3726
3727 rc = check_missing_comp_in_tx_queue(adapter, tx_ring);
3728 if (unlikely(rc))
3729 return;
1738cd3e 3730
548c4940
SJ
3731 rc = !ENA_IS_XDP_INDEX(adapter, i) ?
3732 check_for_rx_interrupt_queue(adapter, rx_ring) : 0;
800c55cb
NB
3733 if (unlikely(rc))
3734 return;
1738cd3e
NB
3735
3736 budget--;
3737 if (!budget)
3738 break;
3739 }
3740
548c4940 3741 adapter->last_monitored_tx_qid = i % io_queue_count;
1738cd3e
NB
3742}
3743
a3af7c18
NB
3744/* trigger napi schedule after 2 consecutive detections */
3745#define EMPTY_RX_REFILL 2
3746/* For the rare case where the device runs out of Rx descriptors and the
3747 * napi handler failed to refill new Rx descriptors (due to a lack of memory
3748 * for example).
3749 * This case will lead to a deadlock:
3750 * The device won't send interrupts since all the new Rx packets will be dropped
3751 * The napi handler won't allocate new Rx descriptors so the device will be
3752 * able to send new packets.
3753 *
3754 * This scenario can happen when the kernel's vm.min_free_kbytes is too small.
3755 * It is recommended to have at least 512MB, with a minimum of 128MB for
3756 * constrained environment).
3757 *
3758 * When such a situation is detected - Reschedule napi
3759 */
3760static void check_for_empty_rx_ring(struct ena_adapter *adapter)
3761{
3762 struct ena_ring *rx_ring;
3763 int i, refill_required;
3764
3765 if (!test_bit(ENA_FLAG_DEV_UP, &adapter->flags))
3766 return;
3767
3768 if (test_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags))
3769 return;
3770
faa615f9 3771 for (i = 0; i < adapter->num_io_queues; i++) {
a3af7c18
NB
3772 rx_ring = &adapter->rx_ring[i];
3773
7cfe9a55 3774 refill_required = ena_com_free_q_entries(rx_ring->ena_com_io_sq);
a3af7c18
NB
3775 if (unlikely(refill_required == (rx_ring->ring_size - 1))) {
3776 rx_ring->empty_rx_queue++;
3777
3778 if (rx_ring->empty_rx_queue >= EMPTY_RX_REFILL) {
3779 u64_stats_update_begin(&rx_ring->syncp);
3780 rx_ring->rx_stats.empty_rx_ring++;
3781 u64_stats_update_end(&rx_ring->syncp);
3782
3783 netif_err(adapter, drv, adapter->netdev,
3784 "trigger refill for ring %d\n", i);
3785
3786 napi_schedule(rx_ring->napi);
3787 rx_ring->empty_rx_queue = 0;
3788 }
3789 } else {
3790 rx_ring->empty_rx_queue = 0;
3791 }
3792 }
3793}
3794
1738cd3e
NB
3795/* Check for keep alive expiration */
3796static void check_for_missing_keep_alive(struct ena_adapter *adapter)
3797{
3798 unsigned long keep_alive_expired;
3799
3800 if (!adapter->wd_state)
3801 return;
3802
82ef30f1
NB
3803 if (adapter->keep_alive_timeout == ENA_HW_HINTS_NO_TIMEOUT)
3804 return;
3805
2a6e5fa2
AK
3806 keep_alive_expired = adapter->last_keep_alive_jiffies +
3807 adapter->keep_alive_timeout;
1738cd3e
NB
3808 if (unlikely(time_is_before_jiffies(keep_alive_expired))) {
3809 netif_err(adapter, drv, adapter->netdev,
3810 "Keep alive watchdog timeout.\n");
3811 u64_stats_update_begin(&adapter->syncp);
3812 adapter->dev_stats.wd_expired++;
3813 u64_stats_update_end(&adapter->syncp);
e2eed0e3 3814 adapter->reset_reason = ENA_REGS_RESET_KEEP_ALIVE_TO;
1738cd3e
NB
3815 set_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
3816 }
3817}
3818
3819static void check_for_admin_com_state(struct ena_adapter *adapter)
3820{
3821 if (unlikely(!ena_com_get_admin_running_state(adapter->ena_dev))) {
3822 netif_err(adapter, drv, adapter->netdev,
3823 "ENA admin queue is not in running state!\n");
3824 u64_stats_update_begin(&adapter->syncp);
3825 adapter->dev_stats.admin_q_pause++;
3826 u64_stats_update_end(&adapter->syncp);
e2eed0e3 3827 adapter->reset_reason = ENA_REGS_RESET_ADMIN_TO;
1738cd3e
NB
3828 set_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
3829 }
3830}
3831
82ef30f1
NB
3832static void ena_update_hints(struct ena_adapter *adapter,
3833 struct ena_admin_ena_hw_hints *hints)
3834{
3835 struct net_device *netdev = adapter->netdev;
3836
3837 if (hints->admin_completion_tx_timeout)
3838 adapter->ena_dev->admin_queue.completion_timeout =
3839 hints->admin_completion_tx_timeout * 1000;
3840
3841 if (hints->mmio_read_timeout)
3842 /* convert to usec */
3843 adapter->ena_dev->mmio_read.reg_read_to =
3844 hints->mmio_read_timeout * 1000;
3845
3846 if (hints->missed_tx_completion_count_threshold_to_reset)
3847 adapter->missing_tx_completion_threshold =
3848 hints->missed_tx_completion_count_threshold_to_reset;
3849
3850 if (hints->missing_tx_completion_timeout) {
3851 if (hints->missing_tx_completion_timeout == ENA_HW_HINTS_NO_TIMEOUT)
3852 adapter->missing_tx_completion_to = ENA_HW_HINTS_NO_TIMEOUT;
3853 else
3854 adapter->missing_tx_completion_to =
3855 msecs_to_jiffies(hints->missing_tx_completion_timeout);
3856 }
3857
3858 if (hints->netdev_wd_timeout)
3859 netdev->watchdog_timeo = msecs_to_jiffies(hints->netdev_wd_timeout);
3860
3861 if (hints->driver_watchdog_timeout) {
3862 if (hints->driver_watchdog_timeout == ENA_HW_HINTS_NO_TIMEOUT)
3863 adapter->keep_alive_timeout = ENA_HW_HINTS_NO_TIMEOUT;
3864 else
3865 adapter->keep_alive_timeout =
3866 msecs_to_jiffies(hints->driver_watchdog_timeout);
3867 }
3868}
3869
1738cd3e
NB
3870static void ena_update_host_info(struct ena_admin_host_info *host_info,
3871 struct net_device *netdev)
3872{
3873 host_info->supported_network_features[0] =
3874 netdev->features & GENMASK_ULL(31, 0);
3875 host_info->supported_network_features[1] =
3876 (netdev->features & GENMASK_ULL(63, 32)) >> 32;
3877}
3878
e99e88a9 3879static void ena_timer_service(struct timer_list *t)
1738cd3e 3880{
e99e88a9 3881 struct ena_adapter *adapter = from_timer(adapter, t, timer_service);
1738cd3e
NB
3882 u8 *debug_area = adapter->ena_dev->host_attr.debug_area_virt_addr;
3883 struct ena_admin_host_info *host_info =
3884 adapter->ena_dev->host_attr.host_info;
3885
3886 check_for_missing_keep_alive(adapter);
3887
3888 check_for_admin_com_state(adapter);
3889
8510e1a3 3890 check_for_missing_completions(adapter);
1738cd3e 3891
a3af7c18
NB
3892 check_for_empty_rx_ring(adapter);
3893
1738cd3e
NB
3894 if (debug_area)
3895 ena_dump_stats_to_buf(adapter, debug_area);
3896
3897 if (host_info)
3898 ena_update_host_info(host_info, adapter->netdev);
3899
3f6159db 3900 if (unlikely(test_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags))) {
1738cd3e
NB
3901 netif_err(adapter, drv, adapter->netdev,
3902 "Trigger reset is on\n");
3903 ena_dump_stats_to_dmesg(adapter);
3904 queue_work(ena_wq, &adapter->reset_task);
3905 return;
3906 }
3907
3908 /* Reset the timer */
2a6e5fa2 3909 mod_timer(&adapter->timer_service, round_jiffies(jiffies + HZ));
1738cd3e
NB
3910}
3911
ba6f6b41 3912static u32 ena_calc_max_io_queue_num(struct pci_dev *pdev,
736ce3f4
SJ
3913 struct ena_com_dev *ena_dev,
3914 struct ena_com_dev_get_features_ctx *get_feat_ctx)
1738cd3e 3915{
ba6f6b41 3916 u32 io_tx_sq_num, io_tx_cq_num, io_rx_num, max_num_io_queues;
31aa9857
SJ
3917
3918 if (ena_dev->supported_features & BIT(ENA_ADMIN_MAX_QUEUES_EXT)) {
3919 struct ena_admin_queue_ext_feature_fields *max_queue_ext =
3920 &get_feat_ctx->max_queue_ext.max_queue_ext;
736ce3f4 3921 io_rx_num = min_t(u32, max_queue_ext->max_rx_sq_num,
31aa9857 3922 max_queue_ext->max_rx_cq_num);
1738cd3e 3923
31aa9857
SJ
3924 io_tx_sq_num = max_queue_ext->max_tx_sq_num;
3925 io_tx_cq_num = max_queue_ext->max_tx_cq_num;
3926 } else {
3927 struct ena_admin_queue_feature_desc *max_queues =
3928 &get_feat_ctx->max_queues;
3929 io_tx_sq_num = max_queues->max_sq_num;
3930 io_tx_cq_num = max_queues->max_cq_num;
736ce3f4 3931 io_rx_num = min_t(u32, io_tx_sq_num, io_tx_cq_num);
31aa9857
SJ
3932 }
3933
3934 /* In case of LLQ use the llq fields for the tx SQ/CQ */
9fd25592 3935 if (ena_dev->tx_mem_queue_type == ENA_ADMIN_PLACEMENT_POLICY_DEV)
31aa9857 3936 io_tx_sq_num = get_feat_ctx->llq.max_llq_num;
1738cd3e 3937
736ce3f4
SJ
3938 max_num_io_queues = min_t(u32, num_online_cpus(), ENA_MAX_NUM_IO_QUEUES);
3939 max_num_io_queues = min_t(u32, max_num_io_queues, io_rx_num);
3940 max_num_io_queues = min_t(u32, max_num_io_queues, io_tx_sq_num);
3941 max_num_io_queues = min_t(u32, max_num_io_queues, io_tx_cq_num);
1738cd3e 3942 /* 1 IRQ for for mgmnt and 1 IRQs for each IO direction */
736ce3f4
SJ
3943 max_num_io_queues = min_t(u32, max_num_io_queues, pci_msix_vec_count(pdev) - 1);
3944 if (unlikely(!max_num_io_queues)) {
1738cd3e
NB
3945 dev_err(&pdev->dev, "The device doesn't have io queues\n");
3946 return -EFAULT;
3947 }
3948
736ce3f4 3949 return max_num_io_queues;
1738cd3e
NB
3950}
3951
1738cd3e
NB
3952static void ena_set_dev_offloads(struct ena_com_dev_get_features_ctx *feat,
3953 struct net_device *netdev)
3954{
3955 netdev_features_t dev_features = 0;
3956
3957 /* Set offload features */
3958 if (feat->offload.tx &
3959 ENA_ADMIN_FEATURE_OFFLOAD_DESC_TX_L4_IPV4_CSUM_PART_MASK)
3960 dev_features |= NETIF_F_IP_CSUM;
3961
3962 if (feat->offload.tx &
3963 ENA_ADMIN_FEATURE_OFFLOAD_DESC_TX_L4_IPV6_CSUM_PART_MASK)
3964 dev_features |= NETIF_F_IPV6_CSUM;
3965
3966 if (feat->offload.tx & ENA_ADMIN_FEATURE_OFFLOAD_DESC_TSO_IPV4_MASK)
3967 dev_features |= NETIF_F_TSO;
3968
3969 if (feat->offload.tx & ENA_ADMIN_FEATURE_OFFLOAD_DESC_TSO_IPV6_MASK)
3970 dev_features |= NETIF_F_TSO6;
3971
3972 if (feat->offload.tx & ENA_ADMIN_FEATURE_OFFLOAD_DESC_TSO_ECN_MASK)
3973 dev_features |= NETIF_F_TSO_ECN;
3974
3975 if (feat->offload.rx_supported &
3976 ENA_ADMIN_FEATURE_OFFLOAD_DESC_RX_L4_IPV4_CSUM_MASK)
3977 dev_features |= NETIF_F_RXCSUM;
3978
3979 if (feat->offload.rx_supported &
3980 ENA_ADMIN_FEATURE_OFFLOAD_DESC_RX_L4_IPV6_CSUM_MASK)
3981 dev_features |= NETIF_F_RXCSUM;
3982
3983 netdev->features =
3984 dev_features |
3985 NETIF_F_SG |
1738cd3e
NB
3986 NETIF_F_RXHASH |
3987 NETIF_F_HIGHDMA;
3988
3989 netdev->hw_features |= netdev->features;
3990 netdev->vlan_features |= netdev->features;
3991}
3992
3993static void ena_set_conf_feat_params(struct ena_adapter *adapter,
3994 struct ena_com_dev_get_features_ctx *feat)
3995{
3996 struct net_device *netdev = adapter->netdev;
3997
3998 /* Copy mac address */
3999 if (!is_valid_ether_addr(feat->dev_attr.mac_addr)) {
4000 eth_hw_addr_random(netdev);
4001 ether_addr_copy(adapter->mac_addr, netdev->dev_addr);
4002 } else {
4003 ether_addr_copy(adapter->mac_addr, feat->dev_attr.mac_addr);
4004 ether_addr_copy(netdev->dev_addr, adapter->mac_addr);
4005 }
4006
4007 /* Set offload features */
4008 ena_set_dev_offloads(feat, netdev);
4009
4010 adapter->max_mtu = feat->dev_attr.max_mtu;
d894be57
JW
4011 netdev->max_mtu = adapter->max_mtu;
4012 netdev->min_mtu = ENA_MIN_MTU;
1738cd3e
NB
4013}
4014
4015static int ena_rss_init_default(struct ena_adapter *adapter)
4016{
4017 struct ena_com_dev *ena_dev = adapter->ena_dev;
4018 struct device *dev = &adapter->pdev->dev;
4019 int rc, i;
4020 u32 val;
4021
4022 rc = ena_com_rss_init(ena_dev, ENA_RX_RSS_TABLE_LOG_SIZE);
4023 if (unlikely(rc)) {
4024 dev_err(dev, "Cannot init indirect table\n");
4025 goto err_rss_init;
4026 }
4027
4028 for (i = 0; i < ENA_RX_RSS_TABLE_SIZE; i++) {
faa615f9 4029 val = ethtool_rxfh_indir_default(i, adapter->num_io_queues);
1738cd3e
NB
4030 rc = ena_com_indirect_table_fill_entry(ena_dev, i,
4031 ENA_IO_RXQ_IDX(val));
d1497638 4032 if (unlikely(rc && (rc != -EOPNOTSUPP))) {
1738cd3e
NB
4033 dev_err(dev, "Cannot fill indirect table\n");
4034 goto err_fill_indir;
4035 }
4036 }
4037
c1bd17e5 4038 rc = ena_com_fill_hash_function(ena_dev, ENA_ADMIN_TOEPLITZ, NULL,
1738cd3e 4039 ENA_HASH_KEY_SIZE, 0xFFFFFFFF);
d1497638 4040 if (unlikely(rc && (rc != -EOPNOTSUPP))) {
1738cd3e
NB
4041 dev_err(dev, "Cannot fill hash function\n");
4042 goto err_fill_indir;
4043 }
4044
4045 rc = ena_com_set_default_hash_ctrl(ena_dev);
d1497638 4046 if (unlikely(rc && (rc != -EOPNOTSUPP))) {
1738cd3e
NB
4047 dev_err(dev, "Cannot fill hash control\n");
4048 goto err_fill_indir;
4049 }
4050
4051 return 0;
4052
4053err_fill_indir:
4054 ena_com_rss_destroy(ena_dev);
4055err_rss_init:
4056
4057 return rc;
4058}
4059
4060static void ena_release_bars(struct ena_com_dev *ena_dev, struct pci_dev *pdev)
4061{
d79c3888 4062 int release_bars = pci_select_bars(pdev, IORESOURCE_MEM) & ENA_BAR_MASK;
0857d92f 4063
1738cd3e
NB
4064 pci_release_selected_regions(pdev, release_bars);
4065}
4066
38005ca8 4067
4d192660 4068static int ena_calc_io_queue_size(struct ena_calc_queue_size_ctx *ctx)
1738cd3e 4069{
31aa9857
SJ
4070 struct ena_admin_feature_llq_desc *llq = &ctx->get_feat_ctx->llq;
4071 struct ena_com_dev *ena_dev = ctx->ena_dev;
4072 u32 tx_queue_size = ENA_DEFAULT_RING_SIZE;
4073 u32 rx_queue_size = ENA_DEFAULT_RING_SIZE;
4074 u32 max_tx_queue_size;
4075 u32 max_rx_queue_size;
1738cd3e 4076
4d192660 4077 if (ena_dev->supported_features & BIT(ENA_ADMIN_MAX_QUEUES_EXT)) {
31aa9857
SJ
4078 struct ena_admin_queue_ext_feature_fields *max_queue_ext =
4079 &ctx->get_feat_ctx->max_queue_ext.max_queue_ext;
4080 max_rx_queue_size = min_t(u32, max_queue_ext->max_rx_cq_depth,
4081 max_queue_ext->max_rx_sq_depth);
4082 max_tx_queue_size = max_queue_ext->max_tx_cq_depth;
1738cd3e 4083
31aa9857
SJ
4084 if (ena_dev->tx_mem_queue_type == ENA_ADMIN_PLACEMENT_POLICY_DEV)
4085 max_tx_queue_size = min_t(u32, max_tx_queue_size,
4086 llq->max_llq_depth);
4087 else
4088 max_tx_queue_size = min_t(u32, max_tx_queue_size,
4089 max_queue_ext->max_tx_sq_depth);
1738cd3e 4090
31aa9857
SJ
4091 ctx->max_tx_sgl_size = min_t(u16, ENA_PKT_MAX_BUFS,
4092 max_queue_ext->max_per_packet_tx_descs);
4093 ctx->max_rx_sgl_size = min_t(u16, ENA_PKT_MAX_BUFS,
4094 max_queue_ext->max_per_packet_rx_descs);
4095 } else {
4096 struct ena_admin_queue_feature_desc *max_queues =
4097 &ctx->get_feat_ctx->max_queues;
4098 max_rx_queue_size = min_t(u32, max_queues->max_cq_depth,
4099 max_queues->max_sq_depth);
4100 max_tx_queue_size = max_queues->max_cq_depth;
4101
4102 if (ena_dev->tx_mem_queue_type == ENA_ADMIN_PLACEMENT_POLICY_DEV)
4103 max_tx_queue_size = min_t(u32, max_tx_queue_size,
4104 llq->max_llq_depth);
4105 else
4106 max_tx_queue_size = min_t(u32, max_tx_queue_size,
4107 max_queues->max_sq_depth);
4108
4109 ctx->max_tx_sgl_size = min_t(u16, ENA_PKT_MAX_BUFS,
4110 max_queues->max_packet_tx_descs);
4111 ctx->max_rx_sgl_size = min_t(u16, ENA_PKT_MAX_BUFS,
4112 max_queues->max_packet_rx_descs);
4113 }
4114
4115 max_tx_queue_size = rounddown_pow_of_two(max_tx_queue_size);
4116 max_rx_queue_size = rounddown_pow_of_two(max_rx_queue_size);
1738cd3e 4117
13ca32a6
SJ
4118 tx_queue_size = clamp_val(tx_queue_size, ENA_MIN_RING_SIZE,
4119 max_tx_queue_size);
4120 rx_queue_size = clamp_val(rx_queue_size, ENA_MIN_RING_SIZE,
4121 max_rx_queue_size);
31aa9857
SJ
4122
4123 tx_queue_size = rounddown_pow_of_two(tx_queue_size);
4124 rx_queue_size = rounddown_pow_of_two(rx_queue_size);
4125
31aa9857
SJ
4126 ctx->max_tx_queue_size = max_tx_queue_size;
4127 ctx->max_rx_queue_size = max_rx_queue_size;
4128 ctx->tx_queue_size = tx_queue_size;
4129 ctx->rx_queue_size = rx_queue_size;
1738cd3e 4130
31aa9857 4131 return 0;
1738cd3e
NB
4132}
4133
4134/* ena_probe - Device Initialization Routine
4135 * @pdev: PCI device information struct
4136 * @ent: entry in ena_pci_tbl
4137 *
4138 * Returns 0 on success, negative on failure
4139 *
4140 * ena_probe initializes an adapter identified by a pci_dev structure.
4141 * The OS initialization, configuring of the adapter private structure,
4142 * and a hardware reset occur.
4143 */
4144static int ena_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
4145{
31aa9857 4146 struct ena_calc_queue_size_ctx calc_queue_ctx = { 0 };
0a39a35f 4147 struct ena_com_dev_get_features_ctx get_feat_ctx;
1738cd3e 4148 struct ena_com_dev *ena_dev = NULL;
83b92404 4149 struct ena_adapter *adapter;
83b92404
SJ
4150 struct net_device *netdev;
4151 static int adapters_found;
736ce3f4 4152 u32 max_num_io_queues;
83b92404 4153 char *queue_type_str;
1738cd3e 4154 bool wd_state;
736ce3f4 4155 int bars, rc;
1738cd3e
NB
4156
4157 dev_dbg(&pdev->dev, "%s\n", __func__);
4158
1738cd3e
NB
4159 rc = pci_enable_device_mem(pdev);
4160 if (rc) {
4161 dev_err(&pdev->dev, "pci_enable_device_mem() failed!\n");
4162 return rc;
4163 }
4164
4165 pci_set_master(pdev);
4166
4167 ena_dev = vzalloc(sizeof(*ena_dev));
4168 if (!ena_dev) {
4169 rc = -ENOMEM;
4170 goto err_disable_device;
4171 }
4172
4173 bars = pci_select_bars(pdev, IORESOURCE_MEM) & ENA_BAR_MASK;
4174 rc = pci_request_selected_regions(pdev, bars, DRV_MODULE_NAME);
4175 if (rc) {
4176 dev_err(&pdev->dev, "pci_request_selected_regions failed %d\n",
4177 rc);
4178 goto err_free_ena_dev;
4179 }
4180
0857d92f
NB
4181 ena_dev->reg_bar = devm_ioremap(&pdev->dev,
4182 pci_resource_start(pdev, ENA_REG_BAR),
4183 pci_resource_len(pdev, ENA_REG_BAR));
1738cd3e
NB
4184 if (!ena_dev->reg_bar) {
4185 dev_err(&pdev->dev, "failed to remap regs bar\n");
4186 rc = -EFAULT;
4187 goto err_free_region;
4188 }
4189
4bb7f4cf
AK
4190 ena_dev->ena_min_poll_delay_us = ENA_ADMIN_POLL_DELAY_US;
4191
1738cd3e
NB
4192 ena_dev->dmadev = &pdev->dev;
4193
4194 rc = ena_device_init(ena_dev, pdev, &get_feat_ctx, &wd_state);
4195 if (rc) {
4196 dev_err(&pdev->dev, "ena device init failed\n");
4197 if (rc == -ETIME)
4198 rc = -EPROBE_DEFER;
4199 goto err_free_region;
4200 }
4201
c29efeae 4202 rc = ena_map_llq_mem_bar(pdev, ena_dev, bars);
38005ca8 4203 if (rc) {
c29efeae
AK
4204 dev_err(&pdev->dev, "ena llq bar mapping failed\n");
4205 goto err_free_ena_dev;
1738cd3e
NB
4206 }
4207
31aa9857
SJ
4208 calc_queue_ctx.ena_dev = ena_dev;
4209 calc_queue_ctx.get_feat_ctx = &get_feat_ctx;
4210 calc_queue_ctx.pdev = pdev;
4211
13830937 4212 /* Initial TX and RX interrupt delay. Assumes 1 usec granularity.
4d192660
SJ
4213 * Updated during device initialization with the real granularity
4214 */
1738cd3e 4215 ena_dev->intr_moder_tx_interval = ENA_INTR_INITIAL_TX_INTERVAL_USECS;
15619e72 4216 ena_dev->intr_moder_rx_interval = ENA_INTR_INITIAL_RX_INTERVAL_USECS;
79226cea 4217 ena_dev->intr_delay_resolution = ENA_DEFAULT_INTR_DELAY_RESOLUTION;
736ce3f4 4218 max_num_io_queues = ena_calc_max_io_queue_num(pdev, ena_dev, &get_feat_ctx);
4d192660 4219 rc = ena_calc_io_queue_size(&calc_queue_ctx);
736ce3f4 4220 if (rc || !max_num_io_queues) {
1738cd3e
NB
4221 rc = -EFAULT;
4222 goto err_device_destroy;
4223 }
4224
1738cd3e 4225 /* dev zeroed in init_etherdev */
736ce3f4 4226 netdev = alloc_etherdev_mq(sizeof(struct ena_adapter), max_num_io_queues);
1738cd3e
NB
4227 if (!netdev) {
4228 dev_err(&pdev->dev, "alloc_etherdev_mq failed\n");
4229 rc = -ENOMEM;
4230 goto err_device_destroy;
4231 }
4232
4233 SET_NETDEV_DEV(netdev, &pdev->dev);
4234
4235 adapter = netdev_priv(netdev);
4236 pci_set_drvdata(pdev, adapter);
4237
4238 adapter->ena_dev = ena_dev;
4239 adapter->netdev = netdev;
4240 adapter->pdev = pdev;
4241
4242 ena_set_conf_feat_params(adapter, &get_feat_ctx);
4243
4244 adapter->msg_enable = netif_msg_init(debug, DEFAULT_MSG_ENABLE);
e2eed0e3 4245 adapter->reset_reason = ENA_REGS_RESET_NORMAL;
1738cd3e 4246
13ca32a6
SJ
4247 adapter->requested_tx_ring_size = calc_queue_ctx.tx_queue_size;
4248 adapter->requested_rx_ring_size = calc_queue_ctx.rx_queue_size;
9f9ae3f9
SJ
4249 adapter->max_tx_ring_size = calc_queue_ctx.max_tx_queue_size;
4250 adapter->max_rx_ring_size = calc_queue_ctx.max_rx_queue_size;
31aa9857
SJ
4251 adapter->max_tx_sgl_size = calc_queue_ctx.max_tx_sgl_size;
4252 adapter->max_rx_sgl_size = calc_queue_ctx.max_rx_sgl_size;
1738cd3e 4253
736ce3f4
SJ
4254 adapter->num_io_queues = max_num_io_queues;
4255 adapter->max_num_io_queues = max_num_io_queues;
0a39a35f 4256 adapter->last_monitored_tx_qid = 0;
736ce3f4 4257
548c4940
SJ
4258 adapter->xdp_first_ring = 0;
4259 adapter->xdp_num_queues = 0;
4260
1738cd3e 4261 adapter->rx_copybreak = ENA_DEFAULT_RX_COPYBREAK;
0e3a3f6d
AK
4262 if (ena_dev->tx_mem_queue_type == ENA_ADMIN_PLACEMENT_POLICY_DEV)
4263 adapter->disable_meta_caching =
4264 !!(get_feat_ctx.llq.accel_mode.u.get.supported_flags &
4265 BIT(ENA_ADMIN_DISABLE_META_CACHING));
4266
1738cd3e
NB
4267 adapter->wd_state = wd_state;
4268
4269 snprintf(adapter->name, ENA_NAME_MAX_LEN, "ena_%d", adapters_found);
4270
4271 rc = ena_com_init_interrupt_moderation(adapter->ena_dev);
4272 if (rc) {
4273 dev_err(&pdev->dev,
4274 "Failed to query interrupt moderation feature\n");
4275 goto err_netdev_destroy;
4276 }
548c4940
SJ
4277 ena_init_io_rings(adapter,
4278 0,
4279 adapter->xdp_num_queues +
4280 adapter->num_io_queues);
1738cd3e
NB
4281
4282 netdev->netdev_ops = &ena_netdev_ops;
4283 netdev->watchdog_timeo = TX_TIMEOUT;
4284 ena_set_ethtool_ops(netdev);
4285
4286 netdev->priv_flags |= IFF_UNICAST_FLT;
4287
4288 u64_stats_init(&adapter->syncp);
4289
4d192660 4290 rc = ena_enable_msix_and_set_admin_interrupts(adapter);
1738cd3e
NB
4291 if (rc) {
4292 dev_err(&pdev->dev,
4293 "Failed to enable and set the admin interrupts\n");
4294 goto err_worker_destroy;
4295 }
4296 rc = ena_rss_init_default(adapter);
d1497638 4297 if (rc && (rc != -EOPNOTSUPP)) {
1738cd3e
NB
4298 dev_err(&pdev->dev, "Cannot init RSS rc: %d\n", rc);
4299 goto err_free_msix;
4300 }
4301
4302 ena_config_debug_area(adapter);
4303
713865da
SJ
4304 if (!ena_update_hw_stats(adapter))
4305 adapter->eni_stats_supported = true;
4306 else
4307 adapter->eni_stats_supported = false;
4308
1738cd3e
NB
4309 memcpy(adapter->netdev->perm_addr, adapter->mac_addr, netdev->addr_len);
4310
4311 netif_carrier_off(netdev);
4312
4313 rc = register_netdev(netdev);
4314 if (rc) {
4315 dev_err(&pdev->dev, "Cannot register net device\n");
4316 goto err_rss;
4317 }
4318
1738cd3e
NB
4319 INIT_WORK(&adapter->reset_task, ena_fw_reset_device);
4320
4321 adapter->last_keep_alive_jiffies = jiffies;
82ef30f1
NB
4322 adapter->keep_alive_timeout = ENA_DEVICE_KALIVE_TIMEOUT;
4323 adapter->missing_tx_completion_to = TX_TIMEOUT;
4324 adapter->missing_tx_completion_threshold = MAX_NUM_OF_TIMEOUTED_PACKETS;
4325
4326 ena_update_hints(adapter, &get_feat_ctx.hw_hints);
1738cd3e 4327
e99e88a9 4328 timer_setup(&adapter->timer_service, ena_timer_service, 0);
f850b4a7 4329 mod_timer(&adapter->timer_service, round_jiffies(jiffies + HZ));
1738cd3e 4330
38005ca8
AK
4331 if (ena_dev->tx_mem_queue_type == ENA_ADMIN_PLACEMENT_POLICY_HOST)
4332 queue_type_str = "Regular";
4333 else
4334 queue_type_str = "Low Latency";
4335
4336 dev_info(&pdev->dev,
9f648f7b 4337 "%s found at mem %lx, mac addr %pM, Placement policy: %s\n",
1738cd3e 4338 DEVICE_NAME, (long)pci_resource_start(pdev, 0),
9f648f7b 4339 netdev->dev_addr, queue_type_str);
1738cd3e
NB
4340
4341 set_bit(ENA_FLAG_DEVICE_RUNNING, &adapter->flags);
4342
4343 adapters_found++;
4344
4345 return 0;
4346
4347err_rss:
4348 ena_com_delete_debug_area(ena_dev);
4349 ena_com_rss_destroy(ena_dev);
4350err_free_msix:
e2eed0e3 4351 ena_com_dev_reset(ena_dev, ENA_REGS_RESET_INIT_ERR);
58a54b9c
AK
4352 /* stop submitting admin commands on a device that was reset */
4353 ena_com_set_admin_running_state(ena_dev, false);
1738cd3e 4354 ena_free_mgmnt_irq(adapter);
06443684 4355 ena_disable_msix(adapter);
1738cd3e 4356err_worker_destroy:
1738cd3e 4357 del_timer(&adapter->timer_service);
1738cd3e
NB
4358err_netdev_destroy:
4359 free_netdev(netdev);
4360err_device_destroy:
4361 ena_com_delete_host_info(ena_dev);
4362 ena_com_admin_destroy(ena_dev);
4363err_free_region:
4364 ena_release_bars(ena_dev, pdev);
4365err_free_ena_dev:
1738cd3e
NB
4366 vfree(ena_dev);
4367err_disable_device:
4368 pci_disable_device(pdev);
4369 return rc;
4370}
4371
1738cd3e
NB
4372/*****************************************************************************/
4373
428c4913 4374/* __ena_shutoff - Helper used in both PCI remove/shutdown routines
1738cd3e 4375 * @pdev: PCI device information struct
428c4913 4376 * @shutdown: Is it a shutdown operation? If false, means it is a removal
1738cd3e 4377 *
428c4913
GP
4378 * __ena_shutoff is a helper routine that does the real work on shutdown and
4379 * removal paths; the difference between those paths is with regards to whether
4380 * dettach or unregister the netdevice.
1738cd3e 4381 */
428c4913 4382static void __ena_shutoff(struct pci_dev *pdev, bool shutdown)
1738cd3e
NB
4383{
4384 struct ena_adapter *adapter = pci_get_drvdata(pdev);
4385 struct ena_com_dev *ena_dev;
4386 struct net_device *netdev;
4387
1738cd3e
NB
4388 ena_dev = adapter->ena_dev;
4389 netdev = adapter->netdev;
4390
4391#ifdef CONFIG_RFS_ACCEL
4392 if ((adapter->msix_vecs >= 1) && (netdev->rx_cpu_rmap)) {
4393 free_irq_cpu_rmap(netdev->rx_cpu_rmap);
4394 netdev->rx_cpu_rmap = NULL;
4395 }
4396#endif /* CONFIG_RFS_ACCEL */
1738cd3e 4397
63d4a4c1
SA
4398 /* Make sure timer and reset routine won't be called after
4399 * freeing device resources.
4400 */
4401 del_timer_sync(&adapter->timer_service);
1738cd3e
NB
4402 cancel_work_sync(&adapter->reset_task);
4403
428c4913 4404 rtnl_lock(); /* lock released inside the below if-else block */
c1c0e40b 4405 adapter->reset_reason = ENA_REGS_RESET_SHUTDOWN;
944b28aa 4406 ena_destroy_device(adapter, true);
428c4913
GP
4407 if (shutdown) {
4408 netif_device_detach(netdev);
4409 dev_close(netdev);
4410 rtnl_unlock();
4411 } else {
4412 rtnl_unlock();
4413 unregister_netdev(netdev);
4414 free_netdev(netdev);
4415 }
1738cd3e 4416
1738cd3e
NB
4417 ena_com_rss_destroy(ena_dev);
4418
4419 ena_com_delete_debug_area(ena_dev);
4420
4421 ena_com_delete_host_info(ena_dev);
4422
4423 ena_release_bars(ena_dev, pdev);
4424
1738cd3e
NB
4425 pci_disable_device(pdev);
4426
1738cd3e
NB
4427 vfree(ena_dev);
4428}
4429
428c4913
GP
4430/* ena_remove - Device Removal Routine
4431 * @pdev: PCI device information struct
4432 *
4433 * ena_remove is called by the PCI subsystem to alert the driver
4434 * that it should release a PCI device.
4435 */
4436
4437static void ena_remove(struct pci_dev *pdev)
4438{
4439 __ena_shutoff(pdev, false);
4440}
4441
4442/* ena_shutdown - Device Shutdown Routine
4443 * @pdev: PCI device information struct
4444 *
4445 * ena_shutdown is called by the PCI subsystem to alert the driver that
4446 * a shutdown/reboot (or kexec) is happening and device must be disabled.
4447 */
4448
4449static void ena_shutdown(struct pci_dev *pdev)
4450{
4451 __ena_shutoff(pdev, true);
4452}
4453
8c5c7abd 4454/* ena_suspend - PM suspend callback
817a89ae 4455 * @dev_d: Device information struct
8c5c7abd 4456 */
817a89ae 4457static int __maybe_unused ena_suspend(struct device *dev_d)
8c5c7abd 4458{
817a89ae 4459 struct pci_dev *pdev = to_pci_dev(dev_d);
8c5c7abd
NB
4460 struct ena_adapter *adapter = pci_get_drvdata(pdev);
4461
4462 u64_stats_update_begin(&adapter->syncp);
4463 adapter->dev_stats.suspend++;
4464 u64_stats_update_end(&adapter->syncp);
4465
4466 rtnl_lock();
4467 if (unlikely(test_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags))) {
4468 dev_err(&pdev->dev,
4469 "ignoring device reset request as the device is being suspended\n");
4470 clear_bit(ENA_FLAG_TRIGGER_RESET, &adapter->flags);
4471 }
cfa324a5 4472 ena_destroy_device(adapter, true);
8c5c7abd
NB
4473 rtnl_unlock();
4474 return 0;
4475}
4476
4477/* ena_resume - PM resume callback
817a89ae 4478 * @dev_d: Device information struct
8c5c7abd 4479 */
817a89ae 4480static int __maybe_unused ena_resume(struct device *dev_d)
8c5c7abd 4481{
817a89ae 4482 struct ena_adapter *adapter = dev_get_drvdata(dev_d);
8c5c7abd
NB
4483 int rc;
4484
4485 u64_stats_update_begin(&adapter->syncp);
4486 adapter->dev_stats.resume++;
4487 u64_stats_update_end(&adapter->syncp);
4488
4489 rtnl_lock();
4490 rc = ena_restore_device(adapter);
4491 rtnl_unlock();
4492 return rc;
4493}
817a89ae
VG
4494
4495static SIMPLE_DEV_PM_OPS(ena_pm_ops, ena_suspend, ena_resume);
8c5c7abd 4496
1738cd3e
NB
4497static struct pci_driver ena_pci_driver = {
4498 .name = DRV_MODULE_NAME,
4499 .id_table = ena_pci_tbl,
4500 .probe = ena_probe,
4501 .remove = ena_remove,
428c4913 4502 .shutdown = ena_shutdown,
817a89ae 4503 .driver.pm = &ena_pm_ops,
115ddc49 4504 .sriov_configure = pci_sriov_configure_simple,
1738cd3e
NB
4505};
4506
4507static int __init ena_init(void)
4508{
1738cd3e
NB
4509 ena_wq = create_singlethread_workqueue(DRV_MODULE_NAME);
4510 if (!ena_wq) {
4511 pr_err("Failed to create workqueue\n");
4512 return -ENOMEM;
4513 }
4514
4515 return pci_register_driver(&ena_pci_driver);
4516}
4517
4518static void __exit ena_cleanup(void)
4519{
4520 pci_unregister_driver(&ena_pci_driver);
4521
4522 if (ena_wq) {
4523 destroy_workqueue(ena_wq);
4524 ena_wq = NULL;
4525 }
4526}
4527
4528/******************************************************************************
4529 ******************************** AENQ Handlers *******************************
4530 *****************************************************************************/
4531/* ena_update_on_link_change:
4532 * Notify the network interface about the change in link status
4533 */
4534static void ena_update_on_link_change(void *adapter_data,
4535 struct ena_admin_aenq_entry *aenq_e)
4536{
4537 struct ena_adapter *adapter = (struct ena_adapter *)adapter_data;
4538 struct ena_admin_aenq_link_change_desc *aenq_desc =
4539 (struct ena_admin_aenq_link_change_desc *)aenq_e;
4540 int status = aenq_desc->flags &
4541 ENA_ADMIN_AENQ_LINK_CHANGE_DESC_LINK_STATUS_MASK;
4542
4543 if (status) {
f0525298 4544 netif_dbg(adapter, ifup, adapter->netdev, "%s\n", __func__);
1738cd3e 4545 set_bit(ENA_FLAG_LINK_UP, &adapter->flags);
d18e4f68
NB
4546 if (!test_bit(ENA_FLAG_ONGOING_RESET, &adapter->flags))
4547 netif_carrier_on(adapter->netdev);
1738cd3e
NB
4548 } else {
4549 clear_bit(ENA_FLAG_LINK_UP, &adapter->flags);
4550 netif_carrier_off(adapter->netdev);
4551 }
4552}
4553
4554static void ena_keep_alive_wd(void *adapter_data,
4555 struct ena_admin_aenq_entry *aenq_e)
4556{
4557 struct ena_adapter *adapter = (struct ena_adapter *)adapter_data;
11a9a460
NB
4558 struct ena_admin_aenq_keep_alive_desc *desc;
4559 u64 rx_drops;
5c665f8c 4560 u64 tx_drops;
1738cd3e 4561
11a9a460 4562 desc = (struct ena_admin_aenq_keep_alive_desc *)aenq_e;
1738cd3e 4563 adapter->last_keep_alive_jiffies = jiffies;
11a9a460
NB
4564
4565 rx_drops = ((u64)desc->rx_drops_high << 32) | desc->rx_drops_low;
5c665f8c 4566 tx_drops = ((u64)desc->tx_drops_high << 32) | desc->tx_drops_low;
11a9a460
NB
4567
4568 u64_stats_update_begin(&adapter->syncp);
ccd143e5
SA
4569 /* These stats are accumulated by the device, so the counters indicate
4570 * all drops since last reset.
4571 */
11a9a460 4572 adapter->dev_stats.rx_drops = rx_drops;
5c665f8c 4573 adapter->dev_stats.tx_drops = tx_drops;
11a9a460 4574 u64_stats_update_end(&adapter->syncp);
1738cd3e
NB
4575}
4576
4577static void ena_notification(void *adapter_data,
4578 struct ena_admin_aenq_entry *aenq_e)
4579{
4580 struct ena_adapter *adapter = (struct ena_adapter *)adapter_data;
82ef30f1 4581 struct ena_admin_ena_hw_hints *hints;
1738cd3e
NB
4582
4583 WARN(aenq_e->aenq_common_desc.group != ENA_ADMIN_NOTIFICATION,
4584 "Invalid group(%x) expected %x\n",
4585 aenq_e->aenq_common_desc.group,
4586 ENA_ADMIN_NOTIFICATION);
4587
4588 switch (aenq_e->aenq_common_desc.syndrom) {
82ef30f1
NB
4589 case ENA_ADMIN_UPDATE_HINTS:
4590 hints = (struct ena_admin_ena_hw_hints *)
4591 (&aenq_e->inline_data_w4);
4592 ena_update_hints(adapter, hints);
4593 break;
1738cd3e
NB
4594 default:
4595 netif_err(adapter, drv, adapter->netdev,
4596 "Invalid aenq notification link state %d\n",
4597 aenq_e->aenq_common_desc.syndrom);
4598 }
4599}
4600
4601/* This handler will called for unknown event group or unimplemented handlers*/
4602static void unimplemented_aenq_handler(void *data,
4603 struct ena_admin_aenq_entry *aenq_e)
4604{
4605 struct ena_adapter *adapter = (struct ena_adapter *)data;
4606
4607 netif_err(adapter, drv, adapter->netdev,
4608 "Unknown event was received or event with unimplemented handler\n");
4609}
4610
4611static struct ena_aenq_handlers aenq_handlers = {
4612 .handlers = {
4613 [ENA_ADMIN_LINK_CHANGE] = ena_update_on_link_change,
4614 [ENA_ADMIN_NOTIFICATION] = ena_notification,
4615 [ENA_ADMIN_KEEP_ALIVE] = ena_keep_alive_wd,
4616 },
4617 .unimplemented_handler = unimplemented_aenq_handler
4618};
4619
4620module_init(ena_init);
4621module_exit(ena_cleanup);