hns_dsaf_mac.c 30 KB

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