1 /*
2 * Copyright (c) 2014-2015 Hisilicon Limited.
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
8 */
9
10 #include <linux/acpi.h>
11 #include <linux/init.h>
12 #include <linux/interrupt.h>
13 #include <linux/kernel.h>
14 #include <linux/mfd/syscon.h>
15 #include <linux/module.h>
16 #include <linux/netdevice.h>
17 #include <linux/of.h>
18 #include <linux/of_address.h>
19 #include <linux/of_mdio.h>
20 #include <linux/phy.h>
21 #include <linux/platform_device.h>
22
23 #include "hns_dsaf_main.h"
24 #include "hns_dsaf_misc.h"
25 #include "hns_dsaf_rcb.h"
26
27 #define MAC_EN_FLAG_V 0xada0328
28
29 static const u16 mac_phy_to_speed[] = {
30 [PHY_INTERFACE_MODE_MII] = MAC_SPEED_100,
31 [PHY_INTERFACE_MODE_GMII] = MAC_SPEED_1000,
32 [PHY_INTERFACE_MODE_SGMII] = MAC_SPEED_1000,
33 [PHY_INTERFACE_MODE_TBI] = MAC_SPEED_1000,
34 [PHY_INTERFACE_MODE_RMII] = MAC_SPEED_100,
35 [PHY_INTERFACE_MODE_RGMII] = MAC_SPEED_1000,
36 [PHY_INTERFACE_MODE_RGMII_ID] = MAC_SPEED_1000,
37 [PHY_INTERFACE_MODE_RGMII_RXID] = MAC_SPEED_1000,
38 [PHY_INTERFACE_MODE_RGMII_TXID] = MAC_SPEED_1000,
39 [PHY_INTERFACE_MODE_RTBI] = MAC_SPEED_1000,
40 [PHY_INTERFACE_MODE_XGMII] = MAC_SPEED_10000
41 };
42
43 static const enum mac_mode g_mac_mode_100[] = {
44 [PHY_INTERFACE_MODE_MII] = MAC_MODE_MII_100,
45 [PHY_INTERFACE_MODE_RMII] = MAC_MODE_RMII_100
46 };
47
48 static const enum mac_mode g_mac_mode_1000[] = {
49 [PHY_INTERFACE_MODE_GMII] = MAC_MODE_GMII_1000,
50 [PHY_INTERFACE_MODE_SGMII] = MAC_MODE_SGMII_1000,
51 [PHY_INTERFACE_MODE_TBI] = MAC_MODE_TBI_1000,
52 [PHY_INTERFACE_MODE_RGMII] = MAC_MODE_RGMII_1000,
53 [PHY_INTERFACE_MODE_RGMII_ID] = MAC_MODE_RGMII_1000,
54 [PHY_INTERFACE_MODE_RGMII_RXID] = MAC_MODE_RGMII_1000,
55 [PHY_INTERFACE_MODE_RGMII_TXID] = MAC_MODE_RGMII_1000,
56 [PHY_INTERFACE_MODE_RTBI] = MAC_MODE_RTBI_1000
57 };
58
hns_get_enet_interface(const struct hns_mac_cb * mac_cb)59 static enum mac_mode hns_get_enet_interface(const struct hns_mac_cb *mac_cb)
60 {
61 switch (mac_cb->max_speed) {
62 case MAC_SPEED_100:
63 return g_mac_mode_100[mac_cb->phy_if];
64 case MAC_SPEED_1000:
65 return g_mac_mode_1000[mac_cb->phy_if];
66 case MAC_SPEED_10000:
67 return MAC_MODE_XGMII_10000;
68 default:
69 return MAC_MODE_MII_100;
70 }
71 }
72
hns_mac_get_link_status(struct hns_mac_cb * mac_cb,u32 * link_status)73 void hns_mac_get_link_status(struct hns_mac_cb *mac_cb, u32 *link_status)
74 {
75 struct mac_driver *mac_ctrl_drv;
76 int ret, sfp_prsnt;
77
78 mac_ctrl_drv = hns_mac_get_drv(mac_cb);
79
80 if (mac_ctrl_drv->get_link_status)
81 mac_ctrl_drv->get_link_status(mac_ctrl_drv, link_status);
82 else
83 *link_status = 0;
84
85 if (mac_cb->media_type == HNAE_MEDIA_TYPE_FIBER) {
86 ret = mac_cb->dsaf_dev->misc_op->get_sfp_prsnt(mac_cb,
87 &sfp_prsnt);
88 if (!ret)
89 *link_status = *link_status && sfp_prsnt;
90 }
91
92 mac_cb->link = *link_status;
93 }
94
hns_mac_get_port_info(struct hns_mac_cb * mac_cb,u8 * auto_neg,u16 * speed,u8 * duplex)95 int hns_mac_get_port_info(struct hns_mac_cb *mac_cb,
96 u8 *auto_neg, u16 *speed, u8 *duplex)
97 {
98 struct mac_driver *mac_ctrl_drv;
99 struct mac_info info;
100
101 mac_ctrl_drv = hns_mac_get_drv(mac_cb);
102
103 if (!mac_ctrl_drv->get_info)
104 return -ENODEV;
105
106 mac_ctrl_drv->get_info(mac_ctrl_drv, &info);
107 if (auto_neg)
108 *auto_neg = info.auto_neg;
109 if (speed)
110 *speed = info.speed;
111 if (duplex)
112 *duplex = info.duplex;
113
114 return 0;
115 }
116
117 /**
118 *hns_mac_is_adjust_link - check is need change mac speed and duplex register
119 *@mac_cb: mac device
120 *@speed: phy device speed
121 *@duplex:phy device duplex
122 *
123 */
hns_mac_need_adjust_link(struct hns_mac_cb * mac_cb,int speed,int duplex)124 bool hns_mac_need_adjust_link(struct hns_mac_cb *mac_cb, int speed, int duplex)
125 {
126 struct mac_driver *mac_ctrl_drv;
127
128 mac_ctrl_drv = (struct mac_driver *)(mac_cb->priv.mac);
129
130 if (mac_ctrl_drv->need_adjust_link)
131 return mac_ctrl_drv->need_adjust_link(mac_ctrl_drv,
132 (enum mac_speed)speed, duplex);
133 else
134 return true;
135 }
136
hns_mac_adjust_link(struct hns_mac_cb * mac_cb,int speed,int duplex)137 void hns_mac_adjust_link(struct hns_mac_cb *mac_cb, int speed, int duplex)
138 {
139 int ret;
140 struct mac_driver *mac_ctrl_drv;
141
142 mac_ctrl_drv = (struct mac_driver *)(mac_cb->priv.mac);
143
144 mac_cb->speed = speed;
145 mac_cb->half_duplex = !duplex;
146
147 if (mac_ctrl_drv->adjust_link) {
148 ret = mac_ctrl_drv->adjust_link(mac_ctrl_drv,
149 (enum mac_speed)speed, duplex);
150 if (ret) {
151 dev_err(mac_cb->dev,
152 "adjust_link failed, %s mac%d ret = %#x!\n",
153 mac_cb->dsaf_dev->ae_dev.name,
154 mac_cb->mac_id, ret);
155 return;
156 }
157 }
158 }
159
160 /**
161 *hns_mac_get_inner_port_num - get mac table inner port number
162 *@mac_cb: mac device
163 *@vmid: vm id
164 *@port_num:port number
165 *
166 */
hns_mac_get_inner_port_num(struct hns_mac_cb * mac_cb,u8 vmid,u8 * port_num)167 int hns_mac_get_inner_port_num(struct hns_mac_cb *mac_cb, u8 vmid, u8 *port_num)
168 {
169 int q_num_per_vf, vf_num_per_port;
170 int vm_queue_id;
171 u8 tmp_port;
172
173 if (mac_cb->dsaf_dev->dsaf_mode <= DSAF_MODE_ENABLE) {
174 if (mac_cb->mac_id != DSAF_MAX_PORT_NUM) {
175 dev_err(mac_cb->dev,
176 "input invalid, %s mac%d vmid%d !\n",
177 mac_cb->dsaf_dev->ae_dev.name,
178 mac_cb->mac_id, vmid);
179 return -EINVAL;
180 }
181 } else if (mac_cb->dsaf_dev->dsaf_mode < DSAF_MODE_MAX) {
182 if (mac_cb->mac_id >= DSAF_MAX_PORT_NUM) {
183 dev_err(mac_cb->dev,
184 "input invalid, %s mac%d vmid%d!\n",
185 mac_cb->dsaf_dev->ae_dev.name,
186 mac_cb->mac_id, vmid);
187 return -EINVAL;
188 }
189 } else {
190 dev_err(mac_cb->dev, "dsaf mode invalid, %s mac%d!\n",
191 mac_cb->dsaf_dev->ae_dev.name, mac_cb->mac_id);
192 return -EINVAL;
193 }
194
195 if (vmid >= mac_cb->dsaf_dev->rcb_common[0]->max_vfn) {
196 dev_err(mac_cb->dev, "input invalid, %s mac%d vmid%d !\n",
197 mac_cb->dsaf_dev->ae_dev.name, mac_cb->mac_id, vmid);
198 return -EINVAL;
199 }
200
201 q_num_per_vf = mac_cb->dsaf_dev->rcb_common[0]->max_q_per_vf;
202 vf_num_per_port = mac_cb->dsaf_dev->rcb_common[0]->max_vfn;
203
204 vm_queue_id = vmid * q_num_per_vf +
205 vf_num_per_port * q_num_per_vf * mac_cb->mac_id;
206
207 switch (mac_cb->dsaf_dev->dsaf_mode) {
208 case DSAF_MODE_ENABLE_FIX:
209 tmp_port = 0;
210 break;
211 case DSAF_MODE_DISABLE_FIX:
212 tmp_port = 0;
213 break;
214 case DSAF_MODE_ENABLE_0VM:
215 case DSAF_MODE_ENABLE_8VM:
216 case DSAF_MODE_ENABLE_16VM:
217 case DSAF_MODE_ENABLE_32VM:
218 case DSAF_MODE_ENABLE_128VM:
219 case DSAF_MODE_DISABLE_2PORT_8VM:
220 case DSAF_MODE_DISABLE_2PORT_16VM:
221 case DSAF_MODE_DISABLE_2PORT_64VM:
222 case DSAF_MODE_DISABLE_6PORT_0VM:
223 case DSAF_MODE_DISABLE_6PORT_2VM:
224 case DSAF_MODE_DISABLE_6PORT_4VM:
225 case DSAF_MODE_DISABLE_6PORT_16VM:
226 tmp_port = vm_queue_id;
227 break;
228 default:
229 dev_err(mac_cb->dev, "dsaf mode invalid, %s mac%d!\n",
230 mac_cb->dsaf_dev->ae_dev.name, mac_cb->mac_id);
231 return -EINVAL;
232 }
233 tmp_port += DSAF_BASE_INNER_PORT_NUM;
234
235 *port_num = tmp_port;
236
237 return 0;
238 }
239
240 /**
241 *hns_mac_change_vf_addr - change vf mac address
242 *@mac_cb: mac device
243 *@vmid: vmid
244 *@addr:mac address
245 */
hns_mac_change_vf_addr(struct hns_mac_cb * mac_cb,u32 vmid,char * addr)246 int hns_mac_change_vf_addr(struct hns_mac_cb *mac_cb,
247 u32 vmid, char *addr)
248 {
249 int ret;
250 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
251 struct dsaf_device *dsaf_dev = mac_cb->dsaf_dev;
252 struct dsaf_drv_mac_single_dest_entry mac_entry;
253 struct mac_entry_idx *old_entry;
254
255 old_entry = &mac_cb->addr_entry_idx[vmid];
256 if (!HNS_DSAF_IS_DEBUG(dsaf_dev)) {
257 memcpy(mac_entry.addr, addr, sizeof(mac_entry.addr));
258 mac_entry.in_vlan_id = old_entry->vlan_id;
259 mac_entry.in_port_num = mac_cb->mac_id;
260 ret = hns_mac_get_inner_port_num(mac_cb, (u8)vmid,
261 &mac_entry.port_num);
262 if (ret)
263 return ret;
264
265 if ((old_entry->valid != 0) &&
266 (memcmp(old_entry->addr,
267 addr, sizeof(mac_entry.addr)) != 0)) {
268 ret = hns_dsaf_del_mac_entry(dsaf_dev,
269 old_entry->vlan_id,
270 mac_cb->mac_id,
271 old_entry->addr);
272 if (ret)
273 return ret;
274 }
275
276 ret = hns_dsaf_set_mac_uc_entry(dsaf_dev, &mac_entry);
277 if (ret)
278 return ret;
279 }
280
281 if ((mac_ctrl_drv->set_mac_addr) && (vmid == 0))
282 mac_ctrl_drv->set_mac_addr(mac_cb->priv.mac, addr);
283
284 memcpy(old_entry->addr, addr, sizeof(old_entry->addr));
285 old_entry->valid = 1;
286 return 0;
287 }
288
hns_mac_add_uc_addr(struct hns_mac_cb * mac_cb,u8 vf_id,const unsigned char * addr)289 int hns_mac_add_uc_addr(struct hns_mac_cb *mac_cb, u8 vf_id,
290 const unsigned char *addr)
291 {
292 struct dsaf_device *dsaf_dev = mac_cb->dsaf_dev;
293 struct dsaf_drv_mac_single_dest_entry mac_entry;
294 int ret;
295
296 if (HNS_DSAF_IS_DEBUG(dsaf_dev))
297 return -ENOSPC;
298
299 memset(&mac_entry, 0, sizeof(mac_entry));
300 memcpy(mac_entry.addr, addr, sizeof(mac_entry.addr));
301 mac_entry.in_port_num = mac_cb->mac_id;
302 ret = hns_mac_get_inner_port_num(mac_cb, vf_id, &mac_entry.port_num);
303 if (ret)
304 return ret;
305
306 return hns_dsaf_set_mac_uc_entry(dsaf_dev, &mac_entry);
307 }
308
hns_mac_rm_uc_addr(struct hns_mac_cb * mac_cb,u8 vf_id,const unsigned char * addr)309 int hns_mac_rm_uc_addr(struct hns_mac_cb *mac_cb, u8 vf_id,
310 const unsigned char *addr)
311 {
312 struct dsaf_device *dsaf_dev = mac_cb->dsaf_dev;
313 struct dsaf_drv_mac_single_dest_entry mac_entry;
314 int ret;
315
316 if (HNS_DSAF_IS_DEBUG(dsaf_dev))
317 return -ENOSPC;
318
319 memset(&mac_entry, 0, sizeof(mac_entry));
320 memcpy(mac_entry.addr, addr, sizeof(mac_entry.addr));
321 mac_entry.in_port_num = mac_cb->mac_id;
322 ret = hns_mac_get_inner_port_num(mac_cb, vf_id, &mac_entry.port_num);
323 if (ret)
324 return ret;
325
326 return hns_dsaf_rm_mac_addr(dsaf_dev, &mac_entry);
327 }
328
hns_mac_set_multi(struct hns_mac_cb * mac_cb,u32 port_num,char * addr,bool enable)329 int hns_mac_set_multi(struct hns_mac_cb *mac_cb,
330 u32 port_num, char *addr, bool enable)
331 {
332 int ret;
333 struct dsaf_device *dsaf_dev = mac_cb->dsaf_dev;
334 struct dsaf_drv_mac_single_dest_entry mac_entry;
335
336 if (!HNS_DSAF_IS_DEBUG(dsaf_dev) && addr) {
337 memcpy(mac_entry.addr, addr, sizeof(mac_entry.addr));
338 mac_entry.in_vlan_id = 0;/*vlan_id;*/
339 mac_entry.in_port_num = mac_cb->mac_id;
340 mac_entry.port_num = port_num;
341
342 if (!enable)
343 ret = hns_dsaf_del_mac_mc_port(dsaf_dev, &mac_entry);
344 else
345 ret = hns_dsaf_add_mac_mc_port(dsaf_dev, &mac_entry);
346 if (ret) {
347 dev_err(dsaf_dev->dev,
348 "set mac mc port failed, %s mac%d ret = %#x!\n",
349 mac_cb->dsaf_dev->ae_dev.name,
350 mac_cb->mac_id, ret);
351 return ret;
352 }
353 }
354
355 return 0;
356 }
357
hns_mac_clr_multicast(struct hns_mac_cb * mac_cb,int vfn)358 int hns_mac_clr_multicast(struct hns_mac_cb *mac_cb, int vfn)
359 {
360 struct dsaf_device *dsaf_dev = mac_cb->dsaf_dev;
361 u8 port_num;
362 int ret = hns_mac_get_inner_port_num(mac_cb, vfn, &port_num);
363
364 if (ret)
365 return ret;
366
367 return hns_dsaf_clr_mac_mc_port(dsaf_dev, mac_cb->mac_id, port_num);
368 }
369
hns_mac_param_get(struct mac_params * param,struct hns_mac_cb * mac_cb)370 static void hns_mac_param_get(struct mac_params *param,
371 struct hns_mac_cb *mac_cb)
372 {
373 param->vaddr = (void *)mac_cb->vaddr;
374 param->mac_mode = hns_get_enet_interface(mac_cb);
375 ether_addr_copy(param->addr, mac_cb->addr_entry_idx[0].addr);
376 param->mac_id = mac_cb->mac_id;
377 param->dev = mac_cb->dev;
378 }
379
380 /**
381 *hns_mac_queue_config_bc_en - set broadcast rx&tx enable
382 *@mac_cb: mac device
383 *@queue: queue number
384 *@en:enable
385 *retuen 0 - success , negative --fail
386 */
hns_mac_port_config_bc_en(struct hns_mac_cb * mac_cb,u32 port_num,u16 vlan_id,bool enable)387 static int hns_mac_port_config_bc_en(struct hns_mac_cb *mac_cb,
388 u32 port_num, u16 vlan_id, bool enable)
389 {
390 int ret;
391 struct dsaf_device *dsaf_dev = mac_cb->dsaf_dev;
392 u8 addr[ETH_ALEN] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
393 struct dsaf_drv_mac_single_dest_entry mac_entry;
394
395 /* directy return ok in debug network mode */
396 if (mac_cb->mac_type == HNAE_PORT_DEBUG)
397 return 0;
398
399 if (!HNS_DSAF_IS_DEBUG(dsaf_dev)) {
400 memcpy(mac_entry.addr, addr, sizeof(mac_entry.addr));
401 mac_entry.in_vlan_id = vlan_id;
402 mac_entry.in_port_num = mac_cb->mac_id;
403 mac_entry.port_num = port_num;
404
405 if (!enable)
406 ret = hns_dsaf_del_mac_mc_port(dsaf_dev, &mac_entry);
407 else
408 ret = hns_dsaf_add_mac_mc_port(dsaf_dev, &mac_entry);
409 return ret;
410 }
411
412 return 0;
413 }
414
415 /**
416 *hns_mac_vm_config_bc_en - set broadcast rx&tx enable
417 *@mac_cb: mac device
418 *@vmid: vm id
419 *@en:enable
420 *retuen 0 - success , negative --fail
421 */
hns_mac_vm_config_bc_en(struct hns_mac_cb * mac_cb,u32 vmid,bool enable)422 int hns_mac_vm_config_bc_en(struct hns_mac_cb *mac_cb, u32 vmid, bool enable)
423 {
424 int ret;
425 struct dsaf_device *dsaf_dev = mac_cb->dsaf_dev;
426 u8 port_num;
427 u8 addr[ETH_ALEN] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
428 struct mac_entry_idx *uc_mac_entry;
429 struct dsaf_drv_mac_single_dest_entry mac_entry;
430
431 if (mac_cb->mac_type == HNAE_PORT_DEBUG)
432 return 0;
433
434 uc_mac_entry = &mac_cb->addr_entry_idx[vmid];
435
436 if (!HNS_DSAF_IS_DEBUG(dsaf_dev)) {
437 memcpy(mac_entry.addr, addr, sizeof(mac_entry.addr));
438 mac_entry.in_vlan_id = uc_mac_entry->vlan_id;
439 mac_entry.in_port_num = mac_cb->mac_id;
440 ret = hns_mac_get_inner_port_num(mac_cb, vmid, &port_num);
441 if (ret)
442 return ret;
443 mac_entry.port_num = port_num;
444
445 if (!enable)
446 ret = hns_dsaf_del_mac_mc_port(dsaf_dev, &mac_entry);
447 else
448 ret = hns_dsaf_add_mac_mc_port(dsaf_dev, &mac_entry);
449 return ret;
450 }
451
452 return 0;
453 }
454
hns_mac_wait_fifo_clean(struct hns_mac_cb * mac_cb)455 int hns_mac_wait_fifo_clean(struct hns_mac_cb *mac_cb)
456 {
457 struct mac_driver *drv = hns_mac_get_drv(mac_cb);
458
459 if (drv->wait_fifo_clean)
460 return drv->wait_fifo_clean(drv);
461
462 return 0;
463 }
464
hns_mac_reset(struct hns_mac_cb * mac_cb)465 void hns_mac_reset(struct hns_mac_cb *mac_cb)
466 {
467 struct mac_driver *drv = hns_mac_get_drv(mac_cb);
468 bool is_ver1 = AE_IS_VER1(mac_cb->dsaf_dev->dsaf_ver);
469
470 drv->mac_init(drv);
471
472 if (drv->config_max_frame_length)
473 drv->config_max_frame_length(drv, mac_cb->max_frm);
474
475 if (drv->set_tx_auto_pause_frames)
476 drv->set_tx_auto_pause_frames(drv, mac_cb->tx_pause_frm_time);
477
478 if (drv->set_an_mode)
479 drv->set_an_mode(drv, 1);
480
481 if (drv->mac_pausefrm_cfg) {
482 if (mac_cb->mac_type == HNAE_PORT_DEBUG)
483 drv->mac_pausefrm_cfg(drv, !is_ver1, !is_ver1);
484 else /* mac rx must disable, dsaf pfc close instead of it*/
485 drv->mac_pausefrm_cfg(drv, 0, 1);
486 }
487 }
488
hns_mac_set_mtu(struct hns_mac_cb * mac_cb,u32 new_mtu,u32 buf_size)489 int hns_mac_set_mtu(struct hns_mac_cb *mac_cb, u32 new_mtu, u32 buf_size)
490 {
491 struct mac_driver *drv = hns_mac_get_drv(mac_cb);
492 u32 new_frm = new_mtu + ETH_HLEN + ETH_FCS_LEN + VLAN_HLEN;
493 u32 max_frm = AE_IS_VER1(mac_cb->dsaf_dev->dsaf_ver) ?
494 MAC_MAX_MTU : MAC_MAX_MTU_V2;
495
496 if (mac_cb->mac_type == HNAE_PORT_DEBUG)
497 max_frm = MAC_MAX_MTU_DBG;
498
499 if (new_frm > HNS_RCB_RING_MAX_BD_PER_PKT * buf_size)
500 return -EINVAL;
501
502 if (!drv->config_max_frame_length)
503 return -ECHILD;
504
505 /* adjust max frame to be at least the size of a standard frame */
506 if (new_frm < (ETH_FRAME_LEN + ETH_FCS_LEN + VLAN_HLEN))
507 new_frm = (ETH_FRAME_LEN + ETH_FCS_LEN + VLAN_HLEN);
508
509 drv->config_max_frame_length(drv, new_frm);
510
511 mac_cb->max_frm = new_frm;
512
513 return 0;
514 }
515
hns_mac_start(struct hns_mac_cb * mac_cb)516 void hns_mac_start(struct hns_mac_cb *mac_cb)
517 {
518 struct mac_driver *mac_drv = hns_mac_get_drv(mac_cb);
519
520 /* for virt */
521 if (mac_drv->mac_en_flg == MAC_EN_FLAG_V) {
522 /*plus 1 when the virtual mac has been enabled */
523 mac_drv->virt_dev_num += 1;
524 return;
525 }
526
527 if (mac_drv->mac_enable) {
528 mac_drv->mac_enable(mac_cb->priv.mac, MAC_COMM_MODE_RX_AND_TX);
529 mac_drv->mac_en_flg = MAC_EN_FLAG_V;
530 }
531 }
532
hns_mac_stop(struct hns_mac_cb * mac_cb)533 void hns_mac_stop(struct hns_mac_cb *mac_cb)
534 {
535 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
536
537 /*modified for virtualization */
538 if (mac_ctrl_drv->virt_dev_num > 0) {
539 mac_ctrl_drv->virt_dev_num -= 1;
540 if (mac_ctrl_drv->virt_dev_num > 0)
541 return;
542 }
543
544 if (mac_ctrl_drv->mac_disable)
545 mac_ctrl_drv->mac_disable(mac_cb->priv.mac,
546 MAC_COMM_MODE_RX_AND_TX);
547
548 mac_ctrl_drv->mac_en_flg = 0;
549 mac_cb->link = 0;
550 mac_cb->dsaf_dev->misc_op->cpld_reset_led(mac_cb);
551 }
552
553 /**
554 * hns_mac_get_autoneg - get auto autonegotiation
555 * @mac_cb: mac control block
556 * @enable: enable or not
557 * retuen 0 - success , negative --fail
558 */
hns_mac_get_autoneg(struct hns_mac_cb * mac_cb,u32 * auto_neg)559 void hns_mac_get_autoneg(struct hns_mac_cb *mac_cb, u32 *auto_neg)
560 {
561 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
562
563 if (mac_ctrl_drv->autoneg_stat)
564 mac_ctrl_drv->autoneg_stat(mac_ctrl_drv, auto_neg);
565 else
566 *auto_neg = 0;
567 }
568
569 /**
570 * hns_mac_get_pauseparam - set rx & tx pause parameter
571 * @mac_cb: mac control block
572 * @rx_en: rx enable status
573 * @tx_en: tx enable status
574 * retuen 0 - success , negative --fail
575 */
hns_mac_get_pauseparam(struct hns_mac_cb * mac_cb,u32 * rx_en,u32 * tx_en)576 void hns_mac_get_pauseparam(struct hns_mac_cb *mac_cb, u32 *rx_en, u32 *tx_en)
577 {
578 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
579
580 if (mac_ctrl_drv->get_pause_enable) {
581 mac_ctrl_drv->get_pause_enable(mac_ctrl_drv, rx_en, tx_en);
582 } else {
583 *rx_en = 0;
584 *tx_en = 0;
585 }
586 }
587
588 /**
589 * hns_mac_set_autoneg - set auto autonegotiation
590 * @mac_cb: mac control block
591 * @enable: enable or not
592 * retuen 0 - success , negative --fail
593 */
hns_mac_set_autoneg(struct hns_mac_cb * mac_cb,u8 enable)594 int hns_mac_set_autoneg(struct hns_mac_cb *mac_cb, u8 enable)
595 {
596 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
597
598 if (mac_cb->phy_if == PHY_INTERFACE_MODE_XGMII && enable) {
599 dev_err(mac_cb->dev, "enabling autoneg is not allowed!\n");
600 return -ENOTSUPP;
601 }
602
603 if (mac_ctrl_drv->set_an_mode)
604 mac_ctrl_drv->set_an_mode(mac_ctrl_drv, enable);
605
606 return 0;
607 }
608
609 /**
610 * hns_mac_set_autoneg - set rx & tx pause parameter
611 * @mac_cb: mac control block
612 * @rx_en: rx enable or not
613 * @tx_en: tx enable or not
614 * return 0 - success , negative --fail
615 */
hns_mac_set_pauseparam(struct hns_mac_cb * mac_cb,u32 rx_en,u32 tx_en)616 int hns_mac_set_pauseparam(struct hns_mac_cb *mac_cb, u32 rx_en, u32 tx_en)
617 {
618 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
619 bool is_ver1 = AE_IS_VER1(mac_cb->dsaf_dev->dsaf_ver);
620
621 if (mac_cb->mac_type == HNAE_PORT_DEBUG) {
622 if (is_ver1 && (tx_en || rx_en)) {
623 dev_err(mac_cb->dev, "macv1 can't enable tx/rx_pause!\n");
624 return -EINVAL;
625 }
626 }
627
628 if (mac_ctrl_drv->mac_pausefrm_cfg)
629 mac_ctrl_drv->mac_pausefrm_cfg(mac_ctrl_drv, rx_en, tx_en);
630
631 return 0;
632 }
633
634 /**
635 * hns_mac_init_ex - mac init
636 * @mac_cb: mac control block
637 * retuen 0 - success , negative --fail
638 */
hns_mac_init_ex(struct hns_mac_cb * mac_cb)639 static int hns_mac_init_ex(struct hns_mac_cb *mac_cb)
640 {
641 int ret;
642 struct mac_params param;
643 struct mac_driver *drv;
644
645 hns_dsaf_fix_mac_mode(mac_cb);
646
647 memset(¶m, 0, sizeof(struct mac_params));
648 hns_mac_param_get(¶m, mac_cb);
649
650 if (MAC_SPEED_FROM_MODE(param.mac_mode) < MAC_SPEED_10000)
651 drv = (struct mac_driver *)hns_gmac_config(mac_cb, ¶m);
652 else
653 drv = (struct mac_driver *)hns_xgmac_config(mac_cb, ¶m);
654
655 if (!drv)
656 return -ENOMEM;
657
658 mac_cb->priv.mac = (void *)drv;
659 hns_mac_reset(mac_cb);
660
661 hns_mac_adjust_link(mac_cb, mac_cb->speed, !mac_cb->half_duplex);
662
663 ret = hns_mac_port_config_bc_en(mac_cb, mac_cb->mac_id, 0, true);
664 if (ret)
665 goto free_mac_drv;
666
667 return 0;
668
669 free_mac_drv:
670 drv->mac_free(mac_cb->priv.mac);
671 mac_cb->priv.mac = NULL;
672
673 return ret;
674 }
675
676 static int
hns_mac_phy_parse_addr(struct device * dev,struct fwnode_handle * fwnode)677 hns_mac_phy_parse_addr(struct device *dev, struct fwnode_handle *fwnode)
678 {
679 u32 addr;
680 int ret;
681
682 ret = fwnode_property_read_u32(fwnode, "phy-addr", &addr);
683 if (ret) {
684 dev_err(dev, "has invalid PHY address ret:%d\n", ret);
685 return ret;
686 }
687
688 if (addr >= PHY_MAX_ADDR) {
689 dev_err(dev, "PHY address %i is too large\n", addr);
690 return -EINVAL;
691 }
692
693 return addr;
694 }
695
696 static int
hns_mac_register_phydev(struct mii_bus * mdio,struct hns_mac_cb * mac_cb,u32 addr)697 hns_mac_register_phydev(struct mii_bus *mdio, struct hns_mac_cb *mac_cb,
698 u32 addr)
699 {
700 struct phy_device *phy;
701 const char *phy_type;
702 bool is_c45;
703 int rc;
704
705 rc = fwnode_property_read_string(mac_cb->fw_port,
706 "phy-mode", &phy_type);
707 if (rc < 0)
708 return rc;
709
710 if (!strcmp(phy_type, phy_modes(PHY_INTERFACE_MODE_XGMII)))
711 is_c45 = 1;
712 else if (!strcmp(phy_type, phy_modes(PHY_INTERFACE_MODE_SGMII)))
713 is_c45 = 0;
714 else
715 return -ENODATA;
716
717 phy = get_phy_device(mdio, addr, is_c45);
718 if (!phy || IS_ERR(phy))
719 return -EIO;
720
721 phy->irq = mdio->irq[addr];
722
723 /* All data is now stored in the phy struct;
724 * register it
725 */
726 rc = phy_device_register(phy);
727 if (rc) {
728 phy_device_free(phy);
729 dev_err(&mdio->dev, "registered phy fail at address %i\n",
730 addr);
731 return -ENODEV;
732 }
733
734 mac_cb->phy_dev = phy;
735
736 dev_dbg(&mdio->dev, "registered phy at address %i\n", addr);
737
738 return 0;
739 }
740
hns_mac_register_phy(struct hns_mac_cb * mac_cb)741 static int hns_mac_register_phy(struct hns_mac_cb *mac_cb)
742 {
743 struct acpi_reference_args args;
744 struct platform_device *pdev;
745 struct mii_bus *mii_bus;
746 int rc;
747 int addr;
748
749 /* Loop over the child nodes and register a phy_device for each one */
750 if (!to_acpi_device_node(mac_cb->fw_port))
751 return -ENODEV;
752
753 rc = acpi_node_get_property_reference(
754 mac_cb->fw_port, "mdio-node", 0, &args);
755 if (rc)
756 return rc;
757
758 addr = hns_mac_phy_parse_addr(mac_cb->dev, mac_cb->fw_port);
759 if (addr < 0)
760 return addr;
761
762 /* dev address in adev */
763 pdev = hns_dsaf_find_platform_device(acpi_fwnode_handle(args.adev));
764 if (!pdev) {
765 dev_err(mac_cb->dev, "mac%d mdio pdev is NULL\n",
766 mac_cb->mac_id);
767 return -EINVAL;
768 }
769
770 mii_bus = platform_get_drvdata(pdev);
771 if (!mii_bus) {
772 dev_err(mac_cb->dev,
773 "mac%d mdio is NULL, dsaf will probe again later\n",
774 mac_cb->mac_id);
775 return -EPROBE_DEFER;
776 }
777
778 rc = hns_mac_register_phydev(mii_bus, mac_cb, addr);
779 if (!rc)
780 dev_dbg(mac_cb->dev, "mac%d register phy addr:%d\n",
781 mac_cb->mac_id, addr);
782
783 return rc;
784 }
785
hns_mac_remove_phydev(struct hns_mac_cb * mac_cb)786 static void hns_mac_remove_phydev(struct hns_mac_cb *mac_cb)
787 {
788 if (!to_acpi_device_node(mac_cb->fw_port) || !mac_cb->phy_dev)
789 return;
790
791 phy_device_remove(mac_cb->phy_dev);
792 phy_device_free(mac_cb->phy_dev);
793
794 mac_cb->phy_dev = NULL;
795 }
796
797 #define MAC_MEDIA_TYPE_MAX_LEN 16
798
799 static const struct {
800 enum hnae_media_type value;
801 const char *name;
802 } media_type_defs[] = {
803 {HNAE_MEDIA_TYPE_UNKNOWN, "unknown" },
804 {HNAE_MEDIA_TYPE_FIBER, "fiber" },
805 {HNAE_MEDIA_TYPE_COPPER, "copper" },
806 {HNAE_MEDIA_TYPE_BACKPLANE, "backplane" },
807 };
808
809 /**
810 *hns_mac_get_info - get mac information from device node
811 *@mac_cb: mac device
812 *@np:device node
813 * return: 0 --success, negative --fail
814 */
hns_mac_get_info(struct hns_mac_cb * mac_cb)815 static int hns_mac_get_info(struct hns_mac_cb *mac_cb)
816 {
817 struct device_node *np;
818 struct regmap *syscon;
819 struct of_phandle_args cpld_args;
820 const char *media_type;
821 u32 i;
822 u32 ret;
823
824 mac_cb->link = false;
825 mac_cb->half_duplex = false;
826 mac_cb->media_type = HNAE_MEDIA_TYPE_UNKNOWN;
827 mac_cb->speed = mac_phy_to_speed[mac_cb->phy_if];
828 mac_cb->max_speed = mac_cb->speed;
829
830 if (mac_cb->phy_if == PHY_INTERFACE_MODE_SGMII) {
831 mac_cb->if_support = MAC_GMAC_SUPPORTED;
832 mac_cb->if_support |= SUPPORTED_1000baseT_Full;
833 } else if (mac_cb->phy_if == PHY_INTERFACE_MODE_XGMII) {
834 mac_cb->if_support = SUPPORTED_10000baseR_FEC;
835 mac_cb->if_support |= SUPPORTED_10000baseKR_Full;
836 }
837
838 mac_cb->max_frm = MAC_DEFAULT_MTU;
839 mac_cb->tx_pause_frm_time = MAC_DEFAULT_PAUSE_TIME;
840 mac_cb->port_rst_off = mac_cb->mac_id;
841 mac_cb->port_mode_off = 0;
842
843 /* if the dsaf node doesn't contain a port subnode, get phy-handle
844 * from dsaf node
845 */
846 if (!mac_cb->fw_port) {
847 np = of_parse_phandle(mac_cb->dev->of_node, "phy-handle",
848 mac_cb->mac_id);
849 mac_cb->phy_dev = of_phy_find_device(np);
850 if (mac_cb->phy_dev) {
851 /* refcount is held by of_phy_find_device()
852 * if the phy_dev is found
853 */
854 put_device(&mac_cb->phy_dev->mdio.dev);
855
856 dev_dbg(mac_cb->dev, "mac%d phy_node: %s\n",
857 mac_cb->mac_id, np->name);
858 }
859 of_node_put(np);
860
861 return 0;
862 }
863
864 if (is_of_node(mac_cb->fw_port)) {
865 /* parse property from port subnode in dsaf */
866 np = of_parse_phandle(to_of_node(mac_cb->fw_port),
867 "phy-handle", 0);
868 mac_cb->phy_dev = of_phy_find_device(np);
869 if (mac_cb->phy_dev) {
870 /* refcount is held by of_phy_find_device()
871 * if the phy_dev is found
872 */
873 put_device(&mac_cb->phy_dev->mdio.dev);
874 dev_dbg(mac_cb->dev, "mac%d phy_node: %s\n",
875 mac_cb->mac_id, np->name);
876 }
877 of_node_put(np);
878
879 np = of_parse_phandle(to_of_node(mac_cb->fw_port),
880 "serdes-syscon", 0);
881 syscon = syscon_node_to_regmap(np);
882 of_node_put(np);
883 if (IS_ERR_OR_NULL(syscon)) {
884 dev_err(mac_cb->dev, "serdes-syscon is needed!\n");
885 return -EINVAL;
886 }
887 mac_cb->serdes_ctrl = syscon;
888
889 ret = fwnode_property_read_u32(mac_cb->fw_port,
890 "port-rst-offset",
891 &mac_cb->port_rst_off);
892 if (ret) {
893 dev_dbg(mac_cb->dev,
894 "mac%d port-rst-offset not found, use default value.\n",
895 mac_cb->mac_id);
896 }
897
898 ret = fwnode_property_read_u32(mac_cb->fw_port,
899 "port-mode-offset",
900 &mac_cb->port_mode_off);
901 if (ret) {
902 dev_dbg(mac_cb->dev,
903 "mac%d port-mode-offset not found, use default value.\n",
904 mac_cb->mac_id);
905 }
906
907 ret = of_parse_phandle_with_fixed_args(
908 to_of_node(mac_cb->fw_port), "cpld-syscon", 1, 0,
909 &cpld_args);
910 if (ret) {
911 dev_dbg(mac_cb->dev, "mac%d no cpld-syscon found.\n",
912 mac_cb->mac_id);
913 mac_cb->cpld_ctrl = NULL;
914 } else {
915 syscon = syscon_node_to_regmap(cpld_args.np);
916 if (IS_ERR_OR_NULL(syscon)) {
917 dev_dbg(mac_cb->dev, "no cpld-syscon found!\n");
918 mac_cb->cpld_ctrl = NULL;
919 } else {
920 mac_cb->cpld_ctrl = syscon;
921 mac_cb->cpld_ctrl_reg = cpld_args.args[0];
922 }
923 }
924 } else if (is_acpi_node(mac_cb->fw_port)) {
925 ret = hns_mac_register_phy(mac_cb);
926 /*
927 * Mac can work well if there is phy or not.If the port don't
928 * connect with phy, the return value will be ignored. Only
929 * when there is phy but can't find mdio bus, the return value
930 * will be handled.
931 */
932 if (ret == -EPROBE_DEFER)
933 return ret;
934 } else {
935 dev_err(mac_cb->dev, "mac%d cannot find phy node\n",
936 mac_cb->mac_id);
937 }
938
939 if (!fwnode_property_read_string(mac_cb->fw_port, "media-type",
940 &media_type)) {
941 for (i = 0; i < ARRAY_SIZE(media_type_defs); i++) {
942 if (!strncmp(media_type_defs[i].name, media_type,
943 MAC_MEDIA_TYPE_MAX_LEN)) {
944 mac_cb->media_type = media_type_defs[i].value;
945 break;
946 }
947 }
948 }
949
950 if (fwnode_property_read_u8_array(mac_cb->fw_port, "mc-mac-mask",
951 mac_cb->mc_mask, ETH_ALEN)) {
952 dev_warn(mac_cb->dev,
953 "no mc-mac-mask property, set to default value.\n");
954 eth_broadcast_addr(mac_cb->mc_mask);
955 }
956
957 return 0;
958 }
959
960 /**
961 * hns_mac_get_mode - get mac mode
962 * @phy_if: phy interface
963 * retuen 0 - gmac, 1 - xgmac , negative --fail
964 */
hns_mac_get_mode(phy_interface_t phy_if)965 static int hns_mac_get_mode(phy_interface_t phy_if)
966 {
967 switch (phy_if) {
968 case PHY_INTERFACE_MODE_SGMII:
969 return MAC_GMAC_IDX;
970 case PHY_INTERFACE_MODE_XGMII:
971 return MAC_XGMAC_IDX;
972 default:
973 return -EINVAL;
974 }
975 }
976
hns_mac_get_vaddr(struct dsaf_device * dsaf_dev,struct hns_mac_cb * mac_cb,u32 mac_mode_idx)977 u8 __iomem *hns_mac_get_vaddr(struct dsaf_device *dsaf_dev,
978 struct hns_mac_cb *mac_cb, u32 mac_mode_idx)
979 {
980 u8 __iomem *base = dsaf_dev->io_base;
981 int mac_id = mac_cb->mac_id;
982
983 if (mac_cb->mac_type == HNAE_PORT_SERVICE)
984 return base + 0x40000 + mac_id * 0x4000 -
985 mac_mode_idx * 0x20000;
986 else
987 return dsaf_dev->ppe_base + 0x1000;
988 }
989
990 /**
991 * hns_mac_get_cfg - get mac cfg from dtb or acpi table
992 * @dsaf_dev: dsa fabric device struct pointer
993 * @mac_cb: mac control block
994 * return 0 - success , negative --fail
995 */
hns_mac_get_cfg(struct dsaf_device * dsaf_dev,struct hns_mac_cb * mac_cb)996 int hns_mac_get_cfg(struct dsaf_device *dsaf_dev, struct hns_mac_cb *mac_cb)
997 {
998 int ret;
999 u32 mac_mode_idx;
1000
1001 mac_cb->dsaf_dev = dsaf_dev;
1002 mac_cb->dev = dsaf_dev->dev;
1003
1004 mac_cb->sys_ctl_vaddr = dsaf_dev->sc_base;
1005 mac_cb->serdes_vaddr = dsaf_dev->sds_base;
1006
1007 mac_cb->sfp_prsnt = 0;
1008 mac_cb->txpkt_for_led = 0;
1009 mac_cb->rxpkt_for_led = 0;
1010
1011 if (!HNS_DSAF_IS_DEBUG(dsaf_dev))
1012 mac_cb->mac_type = HNAE_PORT_SERVICE;
1013 else
1014 mac_cb->mac_type = HNAE_PORT_DEBUG;
1015
1016 mac_cb->phy_if = dsaf_dev->misc_op->get_phy_if(mac_cb);
1017
1018 ret = hns_mac_get_mode(mac_cb->phy_if);
1019 if (ret < 0) {
1020 dev_err(dsaf_dev->dev,
1021 "hns_mac_get_mode failed, mac%d ret = %#x!\n",
1022 mac_cb->mac_id, ret);
1023 return ret;
1024 }
1025 mac_mode_idx = (u32)ret;
1026
1027 ret = hns_mac_get_info(mac_cb);
1028 if (ret)
1029 return ret;
1030
1031 mac_cb->dsaf_dev->misc_op->cpld_reset_led(mac_cb);
1032 mac_cb->vaddr = hns_mac_get_vaddr(dsaf_dev, mac_cb, mac_mode_idx);
1033
1034 return 0;
1035 }
1036
hns_mac_get_max_port_num(struct dsaf_device * dsaf_dev)1037 static int hns_mac_get_max_port_num(struct dsaf_device *dsaf_dev)
1038 {
1039 if (HNS_DSAF_IS_DEBUG(dsaf_dev))
1040 return 1;
1041 else
1042 return DSAF_MAX_PORT_NUM;
1043 }
1044
hns_mac_enable(struct hns_mac_cb * mac_cb,enum mac_commom_mode mode)1045 void hns_mac_enable(struct hns_mac_cb *mac_cb, enum mac_commom_mode mode)
1046 {
1047 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1048
1049 mac_ctrl_drv->mac_enable(mac_cb->priv.mac, mode);
1050 }
1051
hns_mac_disable(struct hns_mac_cb * mac_cb,enum mac_commom_mode mode)1052 void hns_mac_disable(struct hns_mac_cb *mac_cb, enum mac_commom_mode mode)
1053 {
1054 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1055
1056 mac_ctrl_drv->mac_disable(mac_cb->priv.mac, mode);
1057 }
1058
1059 /**
1060 * hns_mac_init - init mac
1061 * @dsaf_dev: dsa fabric device struct pointer
1062 * return 0 - success , negative --fail
1063 */
hns_mac_init(struct dsaf_device * dsaf_dev)1064 int hns_mac_init(struct dsaf_device *dsaf_dev)
1065 {
1066 bool found = false;
1067 int ret;
1068 u32 port_id;
1069 int max_port_num = hns_mac_get_max_port_num(dsaf_dev);
1070 struct hns_mac_cb *mac_cb;
1071 struct fwnode_handle *child;
1072
1073 device_for_each_child_node(dsaf_dev->dev, child) {
1074 ret = fwnode_property_read_u32(child, "reg", &port_id);
1075 if (ret) {
1076 dev_err(dsaf_dev->dev,
1077 "get reg fail, ret=%d!\n", ret);
1078 return ret;
1079 }
1080 if (port_id >= max_port_num) {
1081 dev_err(dsaf_dev->dev,
1082 "reg(%u) out of range!\n", port_id);
1083 return -EINVAL;
1084 }
1085 mac_cb = devm_kzalloc(dsaf_dev->dev, sizeof(*mac_cb),
1086 GFP_KERNEL);
1087 if (!mac_cb)
1088 return -ENOMEM;
1089 mac_cb->fw_port = child;
1090 mac_cb->mac_id = (u8)port_id;
1091 dsaf_dev->mac_cb[port_id] = mac_cb;
1092 found = true;
1093 }
1094
1095 /* if don't get any port subnode from dsaf node
1096 * will init all port then, this is compatible with the old dts
1097 */
1098 if (!found) {
1099 for (port_id = 0; port_id < max_port_num; port_id++) {
1100 mac_cb = devm_kzalloc(dsaf_dev->dev, sizeof(*mac_cb),
1101 GFP_KERNEL);
1102 if (!mac_cb)
1103 return -ENOMEM;
1104
1105 mac_cb->mac_id = port_id;
1106 dsaf_dev->mac_cb[port_id] = mac_cb;
1107 }
1108 }
1109
1110 /* init mac_cb for all port */
1111 for (port_id = 0; port_id < max_port_num; port_id++) {
1112 mac_cb = dsaf_dev->mac_cb[port_id];
1113 if (!mac_cb)
1114 continue;
1115
1116 ret = hns_mac_get_cfg(dsaf_dev, mac_cb);
1117 if (ret)
1118 return ret;
1119
1120 ret = hns_mac_init_ex(mac_cb);
1121 if (ret)
1122 return ret;
1123 }
1124
1125 return 0;
1126 }
1127
hns_mac_uninit(struct dsaf_device * dsaf_dev)1128 void hns_mac_uninit(struct dsaf_device *dsaf_dev)
1129 {
1130 int i;
1131 int max_port_num = hns_mac_get_max_port_num(dsaf_dev);
1132
1133 for (i = 0; i < max_port_num; i++) {
1134 if (!dsaf_dev->mac_cb[i])
1135 continue;
1136
1137 dsaf_dev->misc_op->cpld_reset_led(dsaf_dev->mac_cb[i]);
1138 hns_mac_remove_phydev(dsaf_dev->mac_cb[i]);
1139 dsaf_dev->mac_cb[i] = NULL;
1140 }
1141 }
1142
hns_mac_config_mac_loopback(struct hns_mac_cb * mac_cb,enum hnae_loop loop,int en)1143 int hns_mac_config_mac_loopback(struct hns_mac_cb *mac_cb,
1144 enum hnae_loop loop, int en)
1145 {
1146 int ret;
1147 struct mac_driver *drv = hns_mac_get_drv(mac_cb);
1148
1149 if (drv->config_loopback)
1150 ret = drv->config_loopback(drv, loop, en);
1151 else
1152 ret = -ENOTSUPP;
1153
1154 return ret;
1155 }
1156
hns_mac_update_stats(struct hns_mac_cb * mac_cb)1157 void hns_mac_update_stats(struct hns_mac_cb *mac_cb)
1158 {
1159 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1160
1161 mac_ctrl_drv->update_stats(mac_ctrl_drv);
1162 }
1163
hns_mac_get_stats(struct hns_mac_cb * mac_cb,u64 * data)1164 void hns_mac_get_stats(struct hns_mac_cb *mac_cb, u64 *data)
1165 {
1166 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1167
1168 mac_ctrl_drv->get_ethtool_stats(mac_ctrl_drv, data);
1169 }
1170
hns_mac_get_strings(struct hns_mac_cb * mac_cb,int stringset,u8 * data)1171 void hns_mac_get_strings(struct hns_mac_cb *mac_cb,
1172 int stringset, u8 *data)
1173 {
1174 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1175
1176 mac_ctrl_drv->get_strings(stringset, data);
1177 }
1178
hns_mac_get_sset_count(struct hns_mac_cb * mac_cb,int stringset)1179 int hns_mac_get_sset_count(struct hns_mac_cb *mac_cb, int stringset)
1180 {
1181 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1182
1183 return mac_ctrl_drv->get_sset_count(stringset);
1184 }
1185
hns_mac_set_promisc(struct hns_mac_cb * mac_cb,u8 en)1186 void hns_mac_set_promisc(struct hns_mac_cb *mac_cb, u8 en)
1187 {
1188 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1189
1190 hns_dsaf_set_promisc_tcam(mac_cb->dsaf_dev, mac_cb->mac_id, !!en);
1191
1192 if (mac_ctrl_drv->set_promiscuous)
1193 mac_ctrl_drv->set_promiscuous(mac_ctrl_drv, en);
1194 }
1195
hns_mac_get_regs_count(struct hns_mac_cb * mac_cb)1196 int hns_mac_get_regs_count(struct hns_mac_cb *mac_cb)
1197 {
1198 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1199
1200 return mac_ctrl_drv->get_regs_count();
1201 }
1202
hns_mac_get_regs(struct hns_mac_cb * mac_cb,void * data)1203 void hns_mac_get_regs(struct hns_mac_cb *mac_cb, void *data)
1204 {
1205 struct mac_driver *mac_ctrl_drv = hns_mac_get_drv(mac_cb);
1206
1207 mac_ctrl_drv->get_regs(mac_ctrl_drv, data);
1208 }
1209
hns_set_led_opt(struct hns_mac_cb * mac_cb)1210 void hns_set_led_opt(struct hns_mac_cb *mac_cb)
1211 {
1212 int nic_data = 0;
1213 int txpkts, rxpkts;
1214
1215 txpkts = mac_cb->txpkt_for_led - mac_cb->hw_stats.tx_good_pkts;
1216 rxpkts = mac_cb->rxpkt_for_led - mac_cb->hw_stats.rx_good_pkts;
1217 if (txpkts || rxpkts)
1218 nic_data = 1;
1219 else
1220 nic_data = 0;
1221 mac_cb->txpkt_for_led = mac_cb->hw_stats.tx_good_pkts;
1222 mac_cb->rxpkt_for_led = mac_cb->hw_stats.rx_good_pkts;
1223 mac_cb->dsaf_dev->misc_op->cpld_set_led(mac_cb, (int)mac_cb->link,
1224 mac_cb->speed, nic_data);
1225 }
1226
hns_cpld_led_set_id(struct hns_mac_cb * mac_cb,enum hnae_led_state status)1227 int hns_cpld_led_set_id(struct hns_mac_cb *mac_cb,
1228 enum hnae_led_state status)
1229 {
1230 if (!mac_cb || !mac_cb->cpld_ctrl)
1231 return 0;
1232
1233 return mac_cb->dsaf_dev->misc_op->cpld_set_led_id(mac_cb, status);
1234 }
1235