net: add rte prefix to ether defines
[dpdk.git] / drivers / net / qede / qede_main.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright (c) 2016 - 2018 Cavium Inc.
3  * All rights reserved.
4  * www.cavium.com
5  */
6
7 #include <limits.h>
8 #include <time.h>
9 #include <rte_alarm.h>
10 #include <rte_string_fns.h>
11
12 #include "qede_ethdev.h"
13
14 /* Alarm timeout. */
15 #define QEDE_ALARM_TIMEOUT_US 100000
16
17 /* Global variable to hold absolute path of fw file */
18 char qede_fw_file[PATH_MAX];
19
20 static const char * const QEDE_DEFAULT_FIRMWARE =
21         "/lib/firmware/qed/qed_init_values-8.37.7.0.bin";
22
23 static void
24 qed_update_pf_params(struct ecore_dev *edev, struct ecore_pf_params *params)
25 {
26         int i;
27
28         for (i = 0; i < edev->num_hwfns; i++) {
29                 struct ecore_hwfn *p_hwfn = &edev->hwfns[i];
30                 p_hwfn->pf_params = *params;
31         }
32 }
33
34 static void qed_init_pci(struct ecore_dev *edev, struct rte_pci_device *pci_dev)
35 {
36         edev->regview = pci_dev->mem_resource[0].addr;
37         edev->doorbells = pci_dev->mem_resource[2].addr;
38         edev->db_size = pci_dev->mem_resource[2].len;
39 }
40
41 static int
42 qed_probe(struct ecore_dev *edev, struct rte_pci_device *pci_dev,
43           uint32_t dp_module, uint8_t dp_level, bool is_vf)
44 {
45         struct ecore_hw_prepare_params hw_prepare_params;
46         int rc;
47
48         ecore_init_struct(edev);
49         edev->drv_type = DRV_ID_DRV_TYPE_LINUX;
50         /* Protocol type is always fixed to PROTOCOL_ETH */
51
52         if (is_vf)
53                 edev->b_is_vf = true;
54
55         ecore_init_dp(edev, dp_module, dp_level, NULL);
56         qed_init_pci(edev, pci_dev);
57
58         memset(&hw_prepare_params, 0, sizeof(hw_prepare_params));
59         hw_prepare_params.personality = ECORE_PCI_ETH;
60         hw_prepare_params.drv_resc_alloc = false;
61         hw_prepare_params.chk_reg_fifo = false;
62         hw_prepare_params.initiate_pf_flr = true;
63         hw_prepare_params.allow_mdump = false;
64         hw_prepare_params.b_en_pacing = false;
65         hw_prepare_params.epoch = (u32)time(NULL);
66         rc = ecore_hw_prepare(edev, &hw_prepare_params);
67         if (rc) {
68                 DP_ERR(edev, "hw prepare failed\n");
69                 return rc;
70         }
71
72         return rc;
73 }
74
75 static int qed_nic_setup(struct ecore_dev *edev)
76 {
77         int rc;
78
79         rc = ecore_resc_alloc(edev);
80         if (rc)
81                 return rc;
82
83         DP_INFO(edev, "Allocated qed resources\n");
84         ecore_resc_setup(edev);
85
86         return rc;
87 }
88
89 #ifdef CONFIG_ECORE_ZIPPED_FW
90 static int qed_alloc_stream_mem(struct ecore_dev *edev)
91 {
92         int i;
93
94         for_each_hwfn(edev, i) {
95                 struct ecore_hwfn *p_hwfn = &edev->hwfns[i];
96
97                 p_hwfn->stream = OSAL_ZALLOC(p_hwfn->p_dev, GFP_KERNEL,
98                                              sizeof(*p_hwfn->stream));
99                 if (!p_hwfn->stream)
100                         return -ENOMEM;
101         }
102
103         return 0;
104 }
105
106 static void qed_free_stream_mem(struct ecore_dev *edev)
107 {
108         int i;
109
110         for_each_hwfn(edev, i) {
111                 struct ecore_hwfn *p_hwfn = &edev->hwfns[i];
112
113                 if (!p_hwfn->stream)
114                         return;
115
116                 OSAL_FREE(p_hwfn->p_dev, p_hwfn->stream);
117         }
118 }
119 #endif
120
121 #ifdef CONFIG_ECORE_BINARY_FW
122 static int qed_load_firmware_data(struct ecore_dev *edev)
123 {
124         int fd;
125         struct stat st;
126         const char *fw = RTE_LIBRTE_QEDE_FW;
127
128         if (strcmp(fw, "") == 0)
129                 strcpy(qede_fw_file, QEDE_DEFAULT_FIRMWARE);
130         else
131                 strcpy(qede_fw_file, fw);
132
133         fd = open(qede_fw_file, O_RDONLY);
134         if (fd < 0) {
135                 DP_ERR(edev, "Can't open firmware file\n");
136                 return -ENOENT;
137         }
138
139         if (fstat(fd, &st) < 0) {
140                 DP_ERR(edev, "Can't stat firmware file\n");
141                 close(fd);
142                 return -1;
143         }
144
145         edev->firmware = rte_zmalloc("qede_fw", st.st_size,
146                                     RTE_CACHE_LINE_SIZE);
147         if (!edev->firmware) {
148                 DP_ERR(edev, "Can't allocate memory for firmware\n");
149                 close(fd);
150                 return -ENOMEM;
151         }
152
153         if (read(fd, edev->firmware, st.st_size) != st.st_size) {
154                 DP_ERR(edev, "Can't read firmware data\n");
155                 close(fd);
156                 return -1;
157         }
158
159         edev->fw_len = st.st_size;
160         if (edev->fw_len < 104) {
161                 DP_ERR(edev, "Invalid fw size: %" PRIu64 "\n",
162                           edev->fw_len);
163                 close(fd);
164                 return -EINVAL;
165         }
166
167         close(fd);
168         return 0;
169 }
170 #endif
171
172 static void qed_handle_bulletin_change(struct ecore_hwfn *hwfn)
173 {
174         uint8_t mac[ETH_ALEN], is_mac_exist, is_mac_forced;
175
176         is_mac_exist = ecore_vf_bulletin_get_forced_mac(hwfn, mac,
177                                                       &is_mac_forced);
178         if (is_mac_exist && is_mac_forced)
179                 rte_memcpy(hwfn->hw_info.hw_mac_addr, mac, ETH_ALEN);
180
181         /* Always update link configuration according to bulletin */
182         qed_link_update(hwfn);
183 }
184
185 static void qede_vf_task(void *arg)
186 {
187         struct ecore_hwfn *p_hwfn = arg;
188         uint8_t change = 0;
189
190         /* Read the bulletin board, and re-schedule the task */
191         ecore_vf_read_bulletin(p_hwfn, &change);
192         if (change)
193                 qed_handle_bulletin_change(p_hwfn);
194
195         rte_eal_alarm_set(QEDE_ALARM_TIMEOUT_US, qede_vf_task, p_hwfn);
196 }
197
198 static void qed_start_iov_task(struct ecore_dev *edev)
199 {
200         struct ecore_hwfn *p_hwfn;
201         int i;
202
203         for_each_hwfn(edev, i) {
204                 p_hwfn = &edev->hwfns[i];
205                 if (!IS_PF(edev))
206                         rte_eal_alarm_set(QEDE_ALARM_TIMEOUT_US, qede_vf_task,
207                                           p_hwfn);
208         }
209 }
210
211 static void qed_stop_iov_task(struct ecore_dev *edev)
212 {
213         struct ecore_hwfn *p_hwfn;
214         int i;
215
216         for_each_hwfn(edev, i) {
217                 p_hwfn = &edev->hwfns[i];
218                 if (!IS_PF(edev))
219                         rte_eal_alarm_cancel(qede_vf_task, p_hwfn);
220         }
221 }
222 static int qed_slowpath_start(struct ecore_dev *edev,
223                               struct qed_slowpath_params *params)
224 {
225         struct ecore_drv_load_params drv_load_params;
226         struct ecore_hw_init_params hw_init_params;
227         struct ecore_mcp_drv_version drv_version;
228         const uint8_t *data = NULL;
229         struct ecore_hwfn *hwfn;
230         struct ecore_ptt *p_ptt;
231         int rc;
232
233         if (IS_PF(edev)) {
234 #ifdef CONFIG_ECORE_BINARY_FW
235                 rc = qed_load_firmware_data(edev);
236                 if (rc) {
237                         DP_ERR(edev, "Failed to find fw file %s\n",
238                                 qede_fw_file);
239                         goto err;
240                 }
241 #endif
242                 hwfn = ECORE_LEADING_HWFN(edev);
243                 if (edev->num_hwfns == 1) { /* skip aRFS for 100G device */
244                         p_ptt = ecore_ptt_acquire(hwfn);
245                         if (p_ptt) {
246                                 ECORE_LEADING_HWFN(edev)->p_arfs_ptt = p_ptt;
247                         } else {
248                                 DP_ERR(edev, "Failed to acquire PTT for flowdir\n");
249                                 rc = -ENOMEM;
250                                 goto err;
251                         }
252                 }
253         }
254
255         rc = qed_nic_setup(edev);
256         if (rc)
257                 goto err;
258
259         /* set int_coalescing_mode */
260         edev->int_coalescing_mode = ECORE_COAL_MODE_ENABLE;
261
262 #ifdef CONFIG_ECORE_ZIPPED_FW
263         if (IS_PF(edev)) {
264                 /* Allocate stream for unzipping */
265                 rc = qed_alloc_stream_mem(edev);
266                 if (rc) {
267                         DP_ERR(edev, "Failed to allocate stream memory\n");
268                         goto err1;
269                 }
270         }
271 #endif
272
273         qed_start_iov_task(edev);
274
275 #ifdef CONFIG_ECORE_BINARY_FW
276         if (IS_PF(edev))
277                 data = (const uint8_t *)edev->firmware + sizeof(u32);
278 #endif
279
280         /* Start the slowpath */
281         memset(&hw_init_params, 0, sizeof(hw_init_params));
282         hw_init_params.b_hw_start = true;
283         hw_init_params.int_mode = params->int_mode;
284         hw_init_params.allow_npar_tx_switch = true;
285         hw_init_params.bin_fw_data = data;
286
287         memset(&drv_load_params, 0, sizeof(drv_load_params));
288         drv_load_params.mfw_timeout_val = ECORE_LOAD_REQ_LOCK_TO_DEFAULT;
289         drv_load_params.avoid_eng_reset = false;
290         drv_load_params.override_force_load = ECORE_OVERRIDE_FORCE_LOAD_ALWAYS;
291         hw_init_params.avoid_eng_affin = false;
292         hw_init_params.p_drv_load_params = &drv_load_params;
293
294         rc = ecore_hw_init(edev, &hw_init_params);
295         if (rc) {
296                 DP_ERR(edev, "ecore_hw_init failed\n");
297                 goto err2;
298         }
299
300         DP_INFO(edev, "HW inited and function started\n");
301
302         if (IS_PF(edev)) {
303                 hwfn = ECORE_LEADING_HWFN(edev);
304                 drv_version.version = (params->drv_major << 24) |
305                     (params->drv_minor << 16) |
306                     (params->drv_rev << 8) | (params->drv_eng);
307                 strlcpy((char *)drv_version.name, (const char *)params->name,
308                         sizeof(drv_version.name));
309                 rc = ecore_mcp_send_drv_version(hwfn, hwfn->p_main_ptt,
310                                                 &drv_version);
311                 if (rc) {
312                         DP_ERR(edev, "Failed sending drv version command\n");
313                         goto err3;
314                 }
315         }
316
317         ecore_reset_vport_stats(edev);
318
319         return 0;
320
321 err3:
322         ecore_hw_stop(edev);
323 err2:
324         qed_stop_iov_task(edev);
325 #ifdef CONFIG_ECORE_ZIPPED_FW
326         qed_free_stream_mem(edev);
327 err1:
328 #endif
329         ecore_resc_free(edev);
330 err:
331 #ifdef CONFIG_ECORE_BINARY_FW
332         if (IS_PF(edev)) {
333                 if (edev->firmware)
334                         rte_free(edev->firmware);
335                 edev->firmware = NULL;
336         }
337 #endif
338         qed_stop_iov_task(edev);
339
340         return rc;
341 }
342
343 static int
344 qed_fill_dev_info(struct ecore_dev *edev, struct qed_dev_info *dev_info)
345 {
346         struct ecore_hwfn *p_hwfn = ECORE_LEADING_HWFN(edev);
347         struct ecore_ptt *ptt = NULL;
348         struct ecore_tunnel_info *tun = &edev->tunnel;
349
350         memset(dev_info, 0, sizeof(struct qed_dev_info));
351
352         if (tun->vxlan.tun_cls == ECORE_TUNN_CLSS_MAC_VLAN &&
353             tun->vxlan.b_mode_enabled)
354                 dev_info->vxlan_enable = true;
355
356         if (tun->l2_gre.b_mode_enabled && tun->ip_gre.b_mode_enabled &&
357             tun->l2_gre.tun_cls == ECORE_TUNN_CLSS_MAC_VLAN &&
358             tun->ip_gre.tun_cls == ECORE_TUNN_CLSS_MAC_VLAN)
359                 dev_info->gre_enable = true;
360
361         if (tun->l2_geneve.b_mode_enabled && tun->ip_geneve.b_mode_enabled &&
362             tun->l2_geneve.tun_cls == ECORE_TUNN_CLSS_MAC_VLAN &&
363             tun->ip_geneve.tun_cls == ECORE_TUNN_CLSS_MAC_VLAN)
364                 dev_info->geneve_enable = true;
365
366         dev_info->num_hwfns = edev->num_hwfns;
367         dev_info->is_mf_default = IS_MF_DEFAULT(&edev->hwfns[0]);
368         dev_info->mtu = ECORE_LEADING_HWFN(edev)->hw_info.mtu;
369         dev_info->dev_type = edev->type;
370
371         rte_memcpy(&dev_info->hw_mac, &edev->hwfns[0].hw_info.hw_mac_addr,
372                RTE_ETHER_ADDR_LEN);
373
374         dev_info->fw_major = FW_MAJOR_VERSION;
375         dev_info->fw_minor = FW_MINOR_VERSION;
376         dev_info->fw_rev = FW_REVISION_VERSION;
377         dev_info->fw_eng = FW_ENGINEERING_VERSION;
378
379         if (IS_PF(edev)) {
380                 dev_info->b_inter_pf_switch =
381                         OSAL_TEST_BIT(ECORE_MF_INTER_PF_SWITCH, &edev->mf_bits);
382                 if (!OSAL_TEST_BIT(ECORE_MF_DISABLE_ARFS, &edev->mf_bits))
383                         dev_info->b_arfs_capable = true;
384                 dev_info->tx_switching = false;
385
386                 dev_info->smart_an = ecore_mcp_is_smart_an_supported(p_hwfn);
387
388                 ptt = ecore_ptt_acquire(ECORE_LEADING_HWFN(edev));
389                 if (ptt) {
390                         ecore_mcp_get_mfw_ver(ECORE_LEADING_HWFN(edev), ptt,
391                                               &dev_info->mfw_rev, NULL);
392
393                         ecore_mcp_get_flash_size(ECORE_LEADING_HWFN(edev), ptt,
394                                                  &dev_info->flash_size);
395
396                         /* Workaround to allow PHY-read commands for
397                          * B0 bringup.
398                          */
399                         if (ECORE_IS_BB_B0(edev))
400                                 dev_info->flash_size = 0xffffffff;
401
402                         ecore_ptt_release(ECORE_LEADING_HWFN(edev), ptt);
403                 }
404         } else {
405                 ecore_mcp_get_mfw_ver(ECORE_LEADING_HWFN(edev), ptt,
406                                       &dev_info->mfw_rev, NULL);
407         }
408
409         return 0;
410 }
411
412 int
413 qed_fill_eth_dev_info(struct ecore_dev *edev, struct qed_dev_eth_info *info)
414 {
415         uint8_t queues = 0;
416         int i;
417
418         memset(info, 0, sizeof(*info));
419
420         info->num_tc = 1 /* @@@TBD aelior MULTI_COS */;
421
422         if (IS_PF(edev)) {
423                 int max_vf_vlan_filters = 0;
424
425                 info->num_queues = 0;
426                 for_each_hwfn(edev, i)
427                         info->num_queues +=
428                         FEAT_NUM(&edev->hwfns[i], ECORE_PF_L2_QUE);
429
430                 if (IS_ECORE_SRIOV(edev))
431                         max_vf_vlan_filters = edev->p_iov_info->total_vfs *
432                                               ECORE_ETH_VF_NUM_VLAN_FILTERS;
433                 info->num_vlan_filters = RESC_NUM(&edev->hwfns[0], ECORE_VLAN) -
434                                          max_vf_vlan_filters;
435
436                 rte_memcpy(&info->port_mac, &edev->hwfns[0].hw_info.hw_mac_addr,
437                            RTE_ETHER_ADDR_LEN);
438         } else {
439                 ecore_vf_get_num_rxqs(ECORE_LEADING_HWFN(edev),
440                                       &info->num_queues);
441                 if (ECORE_IS_CMT(edev)) {
442                         ecore_vf_get_num_rxqs(&edev->hwfns[1], &queues);
443                         info->num_queues += queues;
444                 }
445
446                 ecore_vf_get_num_vlan_filters(&edev->hwfns[0],
447                                               (u8 *)&info->num_vlan_filters);
448
449                 ecore_vf_get_port_mac(&edev->hwfns[0],
450                                       (uint8_t *)&info->port_mac);
451
452                 info->is_legacy = ecore_vf_get_pre_fp_hsi(&edev->hwfns[0]);
453         }
454
455         qed_fill_dev_info(edev, &info->common);
456
457         if (IS_VF(edev))
458                 memset(&info->common.hw_mac, 0, RTE_ETHER_ADDR_LEN);
459
460         return 0;
461 }
462
463 static void qed_set_name(struct ecore_dev *edev, char name[NAME_SIZE])
464 {
465         int i;
466
467         rte_memcpy(edev->name, name, NAME_SIZE);
468         for_each_hwfn(edev, i) {
469                 snprintf(edev->hwfns[i].name, NAME_SIZE, "%s-%d", name, i);
470         }
471 }
472
473 static uint32_t
474 qed_sb_init(struct ecore_dev *edev, struct ecore_sb_info *sb_info,
475             void *sb_virt_addr, dma_addr_t sb_phy_addr, uint16_t sb_id)
476 {
477         struct ecore_hwfn *p_hwfn;
478         int hwfn_index;
479         uint16_t rel_sb_id;
480         uint8_t n_hwfns = edev->num_hwfns;
481         uint32_t rc;
482
483         hwfn_index = sb_id % n_hwfns;
484         p_hwfn = &edev->hwfns[hwfn_index];
485         rel_sb_id = sb_id / n_hwfns;
486
487         DP_INFO(edev, "hwfn [%d] <--[init]-- SB %04x [0x%04x upper]\n",
488                 hwfn_index, rel_sb_id, sb_id);
489
490         rc = ecore_int_sb_init(p_hwfn, p_hwfn->p_main_ptt, sb_info,
491                                sb_virt_addr, sb_phy_addr, rel_sb_id);
492
493         return rc;
494 }
495
496 static void qed_fill_link(struct ecore_hwfn *hwfn,
497                           __rte_unused struct ecore_ptt *ptt,
498                           struct qed_link_output *if_link)
499 {
500         struct ecore_mcp_link_params params;
501         struct ecore_mcp_link_state link;
502         struct ecore_mcp_link_capabilities link_caps;
503         uint8_t change = 0;
504
505         memset(if_link, 0, sizeof(*if_link));
506
507         /* Prepare source inputs */
508         if (IS_PF(hwfn->p_dev)) {
509                 rte_memcpy(&params, ecore_mcp_get_link_params(hwfn),
510                        sizeof(params));
511                 rte_memcpy(&link, ecore_mcp_get_link_state(hwfn), sizeof(link));
512                 rte_memcpy(&link_caps, ecore_mcp_get_link_capabilities(hwfn),
513                        sizeof(link_caps));
514         } else {
515                 ecore_vf_read_bulletin(hwfn, &change);
516                 ecore_vf_get_link_params(hwfn, &params);
517                 ecore_vf_get_link_state(hwfn, &link);
518                 ecore_vf_get_link_caps(hwfn, &link_caps);
519         }
520
521         /* Set the link parameters to pass to protocol driver */
522         if (link.link_up)
523                 if_link->link_up = true;
524
525         if (link.link_up)
526                 if_link->speed = link.speed;
527
528         if_link->duplex = QEDE_DUPLEX_FULL;
529
530         /* Fill up the native advertised speed cap mask */
531         if_link->adv_speed = params.speed.advertised_speeds;
532
533         if (params.speed.autoneg)
534                 if_link->supported_caps |= QEDE_SUPPORTED_AUTONEG;
535
536         if (params.pause.autoneg || params.pause.forced_rx ||
537             params.pause.forced_tx)
538                 if_link->supported_caps |= QEDE_SUPPORTED_PAUSE;
539
540         if (params.pause.autoneg)
541                 if_link->pause_config |= QED_LINK_PAUSE_AUTONEG_ENABLE;
542
543         if (params.pause.forced_rx)
544                 if_link->pause_config |= QED_LINK_PAUSE_RX_ENABLE;
545
546         if (params.pause.forced_tx)
547                 if_link->pause_config |= QED_LINK_PAUSE_TX_ENABLE;
548
549         if (link_caps.default_eee == ECORE_MCP_EEE_UNSUPPORTED) {
550                 if_link->eee_supported = false;
551         } else {
552                 if_link->eee_supported = true;
553                 if_link->eee_active = link.eee_active;
554                 if_link->sup_caps = link_caps.eee_speed_caps;
555                 /* MFW clears adv_caps on eee disable; use configured value */
556                 if_link->eee.adv_caps = link.eee_adv_caps ? link.eee_adv_caps :
557                                         params.eee.adv_caps;
558                 if_link->eee.lp_adv_caps = link.eee_lp_adv_caps;
559                 if_link->eee.enable = params.eee.enable;
560                 if_link->eee.tx_lpi_enable = params.eee.tx_lpi_enable;
561                 if_link->eee.tx_lpi_timer = params.eee.tx_lpi_timer;
562         }
563 }
564
565 static void
566 qed_get_current_link(struct ecore_dev *edev, struct qed_link_output *if_link)
567 {
568         struct ecore_hwfn *hwfn;
569         struct ecore_ptt *ptt;
570
571         hwfn = &edev->hwfns[0];
572         if (IS_PF(edev)) {
573                 ptt = ecore_ptt_acquire(hwfn);
574                 if (!ptt)
575                         DP_NOTICE(hwfn, true, "Failed to fill link; No PTT\n");
576
577                         qed_fill_link(hwfn, ptt, if_link);
578
579                 if (ptt)
580                         ecore_ptt_release(hwfn, ptt);
581         } else {
582                 qed_fill_link(hwfn, NULL, if_link);
583         }
584 }
585
586 static int qed_set_link(struct ecore_dev *edev, struct qed_link_params *params)
587 {
588         struct ecore_hwfn *hwfn;
589         struct ecore_ptt *ptt;
590         struct ecore_mcp_link_params *link_params;
591         int rc;
592
593         if (IS_VF(edev))
594                 return 0;
595
596         /* The link should be set only once per PF */
597         hwfn = &edev->hwfns[0];
598
599         ptt = ecore_ptt_acquire(hwfn);
600         if (!ptt)
601                 return -EBUSY;
602
603         link_params = ecore_mcp_get_link_params(hwfn);
604         if (params->override_flags & QED_LINK_OVERRIDE_SPEED_AUTONEG)
605                 link_params->speed.autoneg = params->autoneg;
606
607         if (params->override_flags & QED_LINK_OVERRIDE_PAUSE_CONFIG) {
608                 if (params->pause_config & QED_LINK_PAUSE_AUTONEG_ENABLE)
609                         link_params->pause.autoneg = true;
610                 else
611                         link_params->pause.autoneg = false;
612                 if (params->pause_config & QED_LINK_PAUSE_RX_ENABLE)
613                         link_params->pause.forced_rx = true;
614                 else
615                         link_params->pause.forced_rx = false;
616                 if (params->pause_config & QED_LINK_PAUSE_TX_ENABLE)
617                         link_params->pause.forced_tx = true;
618                 else
619                         link_params->pause.forced_tx = false;
620         }
621
622         if (params->override_flags & QED_LINK_OVERRIDE_EEE_CONFIG)
623                 memcpy(&link_params->eee, &params->eee,
624                        sizeof(link_params->eee));
625
626         rc = ecore_mcp_set_link(hwfn, ptt, params->link_up);
627
628         ecore_ptt_release(hwfn, ptt);
629
630         return rc;
631 }
632
633 void qed_link_update(struct ecore_hwfn *hwfn)
634 {
635         struct ecore_dev *edev = hwfn->p_dev;
636         struct qede_dev *qdev = (struct qede_dev *)edev;
637         struct rte_eth_dev *dev = (struct rte_eth_dev *)qdev->ethdev;
638
639         if (!qede_link_update(dev, 0))
640                 _rte_eth_dev_callback_process(dev,
641                                               RTE_ETH_EVENT_INTR_LSC, NULL);
642 }
643
644 static int qed_drain(struct ecore_dev *edev)
645 {
646         struct ecore_hwfn *hwfn;
647         struct ecore_ptt *ptt;
648         int i, rc;
649
650         if (IS_VF(edev))
651                 return 0;
652
653         for_each_hwfn(edev, i) {
654                 hwfn = &edev->hwfns[i];
655                 ptt = ecore_ptt_acquire(hwfn);
656                 if (!ptt) {
657                         DP_ERR(hwfn, "Failed to drain NIG; No PTT\n");
658                         return -EBUSY;
659                 }
660                 rc = ecore_mcp_drain(hwfn, ptt);
661                 if (rc)
662                         return rc;
663                 ecore_ptt_release(hwfn, ptt);
664         }
665
666         return 0;
667 }
668
669 static int qed_nic_stop(struct ecore_dev *edev)
670 {
671         int i, rc;
672
673         rc = ecore_hw_stop(edev);
674         for (i = 0; i < edev->num_hwfns; i++) {
675                 struct ecore_hwfn *p_hwfn = &edev->hwfns[i];
676
677                 if (p_hwfn->b_sp_dpc_enabled)
678                         p_hwfn->b_sp_dpc_enabled = false;
679         }
680         return rc;
681 }
682
683 static int qed_slowpath_stop(struct ecore_dev *edev)
684 {
685 #ifdef CONFIG_QED_SRIOV
686         int i;
687 #endif
688
689         if (!edev)
690                 return -ENODEV;
691
692         if (IS_PF(edev)) {
693 #ifdef CONFIG_ECORE_ZIPPED_FW
694                 qed_free_stream_mem(edev);
695 #endif
696
697 #ifdef CONFIG_QED_SRIOV
698                 if (IS_QED_ETH_IF(edev))
699                         qed_sriov_disable(edev, true);
700 #endif
701         }
702
703         qed_nic_stop(edev);
704
705         ecore_resc_free(edev);
706         qed_stop_iov_task(edev);
707
708         return 0;
709 }
710
711 static void qed_remove(struct ecore_dev *edev)
712 {
713         if (!edev)
714                 return;
715
716         ecore_hw_remove(edev);
717 }
718
719 static int qed_send_drv_state(struct ecore_dev *edev, bool active)
720 {
721         struct ecore_hwfn *hwfn = ECORE_LEADING_HWFN(edev);
722         struct ecore_ptt *ptt;
723         int status = 0;
724
725         ptt = ecore_ptt_acquire(hwfn);
726         if (!ptt)
727                 return -EAGAIN;
728
729         status = ecore_mcp_ov_update_driver_state(hwfn, ptt, active ?
730                                                   ECORE_OV_DRIVER_STATE_ACTIVE :
731                                                 ECORE_OV_DRIVER_STATE_DISABLED);
732
733         ecore_ptt_release(hwfn, ptt);
734
735         return status;
736 }
737
738 static int qed_get_sb_info(struct ecore_dev *edev, struct ecore_sb_info *sb,
739                            u16 qid, struct ecore_sb_info_dbg *sb_dbg)
740 {
741         struct ecore_hwfn *hwfn = &edev->hwfns[qid % edev->num_hwfns];
742         struct ecore_ptt *ptt;
743         int rc;
744
745         if (IS_VF(edev))
746                 return -EINVAL;
747
748         ptt = ecore_ptt_acquire(hwfn);
749         if (!ptt) {
750                 DP_ERR(hwfn, "Can't acquire PTT\n");
751                 return -EAGAIN;
752         }
753
754         memset(sb_dbg, 0, sizeof(*sb_dbg));
755         rc = ecore_int_get_sb_dbg(hwfn, ptt, sb, sb_dbg);
756
757         ecore_ptt_release(hwfn, ptt);
758         return rc;
759 }
760
761 const struct qed_common_ops qed_common_ops_pass = {
762         INIT_STRUCT_FIELD(probe, &qed_probe),
763         INIT_STRUCT_FIELD(update_pf_params, &qed_update_pf_params),
764         INIT_STRUCT_FIELD(slowpath_start, &qed_slowpath_start),
765         INIT_STRUCT_FIELD(set_name, &qed_set_name),
766         INIT_STRUCT_FIELD(chain_alloc, &ecore_chain_alloc),
767         INIT_STRUCT_FIELD(chain_free, &ecore_chain_free),
768         INIT_STRUCT_FIELD(sb_init, &qed_sb_init),
769         INIT_STRUCT_FIELD(get_sb_info, &qed_get_sb_info),
770         INIT_STRUCT_FIELD(get_link, &qed_get_current_link),
771         INIT_STRUCT_FIELD(set_link, &qed_set_link),
772         INIT_STRUCT_FIELD(drain, &qed_drain),
773         INIT_STRUCT_FIELD(slowpath_stop, &qed_slowpath_stop),
774         INIT_STRUCT_FIELD(remove, &qed_remove),
775         INIT_STRUCT_FIELD(send_drv_state, &qed_send_drv_state),
776 };
777
778 const struct qed_eth_ops qed_eth_ops_pass = {
779         INIT_STRUCT_FIELD(common, &qed_common_ops_pass),
780         INIT_STRUCT_FIELD(fill_dev_info, &qed_fill_eth_dev_info),
781 };
782
783 const struct qed_eth_ops *qed_get_eth_ops(void)
784 {
785         return &qed_eth_ops_pass;
786 }