spectrum_switchdev.c 43 KB

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  1. /*
  2. * drivers/net/ethernet/mellanox/mlxsw/spectrum_switchdev.c
  3. * Copyright (c) 2015 Mellanox Technologies. All rights reserved.
  4. * Copyright (c) 2015 Jiri Pirko <jiri@mellanox.com>
  5. * Copyright (c) 2015 Ido Schimmel <idosch@mellanox.com>
  6. * Copyright (c) 2015 Elad Raz <eladr@mellanox.com>
  7. *
  8. * Redistribution and use in source and binary forms, with or without
  9. * modification, are permitted provided that the following conditions are met:
  10. *
  11. * 1. Redistributions of source code must retain the above copyright
  12. * notice, this list of conditions and the following disclaimer.
  13. * 2. Redistributions in binary form must reproduce the above copyright
  14. * notice, this list of conditions and the following disclaimer in the
  15. * documentation and/or other materials provided with the distribution.
  16. * 3. Neither the names of the copyright holders nor the names of its
  17. * contributors may be used to endorse or promote products derived from
  18. * this software without specific prior written permission.
  19. *
  20. * Alternatively, this software may be distributed under the terms of the
  21. * GNU General Public License ("GPL") version 2 as published by the Free
  22. * Software Foundation.
  23. *
  24. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  25. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  26. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  27. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
  28. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  29. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  30. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
  31. * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
  32. * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  33. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  34. * POSSIBILITY OF SUCH DAMAGE.
  35. */
  36. #include <linux/kernel.h>
  37. #include <linux/types.h>
  38. #include <linux/netdevice.h>
  39. #include <linux/etherdevice.h>
  40. #include <linux/slab.h>
  41. #include <linux/device.h>
  42. #include <linux/skbuff.h>
  43. #include <linux/if_vlan.h>
  44. #include <linux/if_bridge.h>
  45. #include <linux/workqueue.h>
  46. #include <linux/jiffies.h>
  47. #include <linux/rtnetlink.h>
  48. #include <net/switchdev.h>
  49. #include "spectrum.h"
  50. #include "core.h"
  51. #include "reg.h"
  52. static u16 mlxsw_sp_port_vid_to_fid_get(struct mlxsw_sp_port *mlxsw_sp_port,
  53. u16 vid)
  54. {
  55. struct mlxsw_sp_fid *f = mlxsw_sp_vport_fid_get(mlxsw_sp_port);
  56. u16 fid = vid;
  57. fid = f ? f->fid : fid;
  58. if (!fid)
  59. fid = mlxsw_sp_port->pvid;
  60. return fid;
  61. }
  62. static struct mlxsw_sp_port *
  63. mlxsw_sp_port_orig_get(struct net_device *dev,
  64. struct mlxsw_sp_port *mlxsw_sp_port)
  65. {
  66. struct mlxsw_sp_port *mlxsw_sp_vport;
  67. struct mlxsw_sp_fid *fid;
  68. u16 vid;
  69. if (netif_is_bridge_master(dev)) {
  70. fid = mlxsw_sp_vfid_find(mlxsw_sp_port->mlxsw_sp,
  71. dev);
  72. if (fid) {
  73. mlxsw_sp_vport =
  74. mlxsw_sp_port_vport_find_by_fid(mlxsw_sp_port,
  75. fid->fid);
  76. WARN_ON(!mlxsw_sp_vport);
  77. return mlxsw_sp_vport;
  78. }
  79. }
  80. if (!is_vlan_dev(dev))
  81. return mlxsw_sp_port;
  82. vid = vlan_dev_vlan_id(dev);
  83. mlxsw_sp_vport = mlxsw_sp_port_vport_find(mlxsw_sp_port, vid);
  84. WARN_ON(!mlxsw_sp_vport);
  85. return mlxsw_sp_vport;
  86. }
  87. static int mlxsw_sp_port_attr_get(struct net_device *dev,
  88. struct switchdev_attr *attr)
  89. {
  90. struct mlxsw_sp_port *mlxsw_sp_port = netdev_priv(dev);
  91. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  92. mlxsw_sp_port = mlxsw_sp_port_orig_get(attr->orig_dev, mlxsw_sp_port);
  93. if (!mlxsw_sp_port)
  94. return -EINVAL;
  95. switch (attr->id) {
  96. case SWITCHDEV_ATTR_ID_PORT_PARENT_ID:
  97. attr->u.ppid.id_len = sizeof(mlxsw_sp->base_mac);
  98. memcpy(&attr->u.ppid.id, &mlxsw_sp->base_mac,
  99. attr->u.ppid.id_len);
  100. break;
  101. case SWITCHDEV_ATTR_ID_PORT_BRIDGE_FLAGS:
  102. attr->u.brport_flags =
  103. (mlxsw_sp_port->learning ? BR_LEARNING : 0) |
  104. (mlxsw_sp_port->learning_sync ? BR_LEARNING_SYNC : 0) |
  105. (mlxsw_sp_port->uc_flood ? BR_FLOOD : 0);
  106. break;
  107. default:
  108. return -EOPNOTSUPP;
  109. }
  110. return 0;
  111. }
  112. static int mlxsw_sp_port_stp_state_set(struct mlxsw_sp_port *mlxsw_sp_port,
  113. u8 state)
  114. {
  115. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  116. enum mlxsw_reg_spms_state spms_state;
  117. char *spms_pl;
  118. u16 vid;
  119. int err;
  120. switch (state) {
  121. case BR_STATE_FORWARDING:
  122. spms_state = MLXSW_REG_SPMS_STATE_FORWARDING;
  123. break;
  124. case BR_STATE_LEARNING:
  125. spms_state = MLXSW_REG_SPMS_STATE_LEARNING;
  126. break;
  127. case BR_STATE_LISTENING: /* fall-through */
  128. case BR_STATE_DISABLED: /* fall-through */
  129. case BR_STATE_BLOCKING:
  130. spms_state = MLXSW_REG_SPMS_STATE_DISCARDING;
  131. break;
  132. default:
  133. BUG();
  134. }
  135. spms_pl = kmalloc(MLXSW_REG_SPMS_LEN, GFP_KERNEL);
  136. if (!spms_pl)
  137. return -ENOMEM;
  138. mlxsw_reg_spms_pack(spms_pl, mlxsw_sp_port->local_port);
  139. if (mlxsw_sp_port_is_vport(mlxsw_sp_port)) {
  140. vid = mlxsw_sp_vport_vid_get(mlxsw_sp_port);
  141. mlxsw_reg_spms_vid_pack(spms_pl, vid, spms_state);
  142. } else {
  143. for_each_set_bit(vid, mlxsw_sp_port->active_vlans, VLAN_N_VID)
  144. mlxsw_reg_spms_vid_pack(spms_pl, vid, spms_state);
  145. }
  146. err = mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(spms), spms_pl);
  147. kfree(spms_pl);
  148. return err;
  149. }
  150. static int mlxsw_sp_port_attr_stp_state_set(struct mlxsw_sp_port *mlxsw_sp_port,
  151. struct switchdev_trans *trans,
  152. u8 state)
  153. {
  154. if (switchdev_trans_ph_prepare(trans))
  155. return 0;
  156. mlxsw_sp_port->stp_state = state;
  157. return mlxsw_sp_port_stp_state_set(mlxsw_sp_port, state);
  158. }
  159. static int __mlxsw_sp_port_flood_table_set(struct mlxsw_sp_port *mlxsw_sp_port,
  160. u16 idx_begin, u16 idx_end,
  161. enum mlxsw_sp_flood_table table,
  162. bool set)
  163. {
  164. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  165. u16 local_port = mlxsw_sp_port->local_port;
  166. enum mlxsw_flood_table_type table_type;
  167. u16 range = idx_end - idx_begin + 1;
  168. char *sftr_pl;
  169. int err;
  170. if (mlxsw_sp_port_is_vport(mlxsw_sp_port))
  171. table_type = MLXSW_REG_SFGC_TABLE_TYPE_FID;
  172. else
  173. table_type = MLXSW_REG_SFGC_TABLE_TYPE_FID_OFFEST;
  174. sftr_pl = kmalloc(MLXSW_REG_SFTR_LEN, GFP_KERNEL);
  175. if (!sftr_pl)
  176. return -ENOMEM;
  177. mlxsw_reg_sftr_pack(sftr_pl, table, idx_begin,
  178. table_type, range, local_port, set);
  179. err = mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(sftr), sftr_pl);
  180. kfree(sftr_pl);
  181. return err;
  182. }
  183. static int __mlxsw_sp_port_flood_set(struct mlxsw_sp_port *mlxsw_sp_port,
  184. u16 idx_begin, u16 idx_end, bool uc_set,
  185. bool bc_set, bool mc_set)
  186. {
  187. int err;
  188. err = __mlxsw_sp_port_flood_table_set(mlxsw_sp_port, idx_begin, idx_end,
  189. MLXSW_SP_FLOOD_TABLE_UC, uc_set);
  190. if (err)
  191. return err;
  192. err = __mlxsw_sp_port_flood_table_set(mlxsw_sp_port, idx_begin, idx_end,
  193. MLXSW_SP_FLOOD_TABLE_BC, bc_set);
  194. if (err)
  195. goto err_flood_bm_set;
  196. err = __mlxsw_sp_port_flood_table_set(mlxsw_sp_port, idx_begin, idx_end,
  197. MLXSW_SP_FLOOD_TABLE_MC, mc_set);
  198. if (err)
  199. goto err_flood_mc_set;
  200. return 0;
  201. err_flood_mc_set:
  202. __mlxsw_sp_port_flood_table_set(mlxsw_sp_port, idx_begin, idx_end,
  203. MLXSW_SP_FLOOD_TABLE_BC, !bc_set);
  204. err_flood_bm_set:
  205. __mlxsw_sp_port_flood_table_set(mlxsw_sp_port, idx_begin, idx_end,
  206. MLXSW_SP_FLOOD_TABLE_UC, !uc_set);
  207. return err;
  208. }
  209. static int mlxsw_sp_port_flood_table_set(struct mlxsw_sp_port *mlxsw_sp_port,
  210. enum mlxsw_sp_flood_table table,
  211. bool set)
  212. {
  213. struct net_device *dev = mlxsw_sp_port->dev;
  214. u16 vid, last_visited_vid;
  215. int err;
  216. if (mlxsw_sp_port_is_vport(mlxsw_sp_port)) {
  217. u16 fid = mlxsw_sp_vport_fid_get(mlxsw_sp_port)->fid;
  218. u16 vfid = mlxsw_sp_fid_to_vfid(fid);
  219. return __mlxsw_sp_port_flood_table_set(mlxsw_sp_port, vfid,
  220. vfid, table, set);
  221. }
  222. for_each_set_bit(vid, mlxsw_sp_port->active_vlans, VLAN_N_VID) {
  223. err = __mlxsw_sp_port_flood_table_set(mlxsw_sp_port, vid, vid,
  224. table, set);
  225. if (err) {
  226. last_visited_vid = vid;
  227. goto err_port_flood_set;
  228. }
  229. }
  230. return 0;
  231. err_port_flood_set:
  232. for_each_set_bit(vid, mlxsw_sp_port->active_vlans, last_visited_vid)
  233. __mlxsw_sp_port_flood_table_set(mlxsw_sp_port, vid, vid, table,
  234. !set);
  235. netdev_err(dev, "Failed to configure unicast flooding\n");
  236. return err;
  237. }
  238. static int mlxsw_sp_port_mc_disabled_set(struct mlxsw_sp_port *mlxsw_sp_port,
  239. struct switchdev_trans *trans,
  240. bool mc_disabled)
  241. {
  242. int set;
  243. int err = 0;
  244. if (switchdev_trans_ph_prepare(trans))
  245. return 0;
  246. if (mlxsw_sp_port->mc_router != mlxsw_sp_port->mc_flood) {
  247. set = mc_disabled ?
  248. mlxsw_sp_port->mc_flood : mlxsw_sp_port->mc_router;
  249. err = mlxsw_sp_port_flood_table_set(mlxsw_sp_port,
  250. MLXSW_SP_FLOOD_TABLE_MC,
  251. set);
  252. }
  253. if (!err)
  254. mlxsw_sp_port->mc_disabled = mc_disabled;
  255. return err;
  256. }
  257. int mlxsw_sp_vport_flood_set(struct mlxsw_sp_port *mlxsw_sp_vport, u16 fid,
  258. bool set)
  259. {
  260. bool mc_set = set;
  261. u16 vfid;
  262. /* In case of vFIDs, index into the flooding table is relative to
  263. * the start of the vFIDs range.
  264. */
  265. vfid = mlxsw_sp_fid_to_vfid(fid);
  266. if (set)
  267. mc_set = mlxsw_sp_vport->mc_disabled ?
  268. mlxsw_sp_vport->mc_flood : mlxsw_sp_vport->mc_router;
  269. return __mlxsw_sp_port_flood_set(mlxsw_sp_vport, vfid, vfid, set, set,
  270. mc_set);
  271. }
  272. static int mlxsw_sp_port_learning_set(struct mlxsw_sp_port *mlxsw_sp_port,
  273. bool set)
  274. {
  275. u16 vid;
  276. int err;
  277. if (mlxsw_sp_port_is_vport(mlxsw_sp_port)) {
  278. vid = mlxsw_sp_vport_vid_get(mlxsw_sp_port);
  279. return __mlxsw_sp_port_vid_learning_set(mlxsw_sp_port, vid, vid,
  280. set);
  281. }
  282. for_each_set_bit(vid, mlxsw_sp_port->active_vlans, VLAN_N_VID) {
  283. err = __mlxsw_sp_port_vid_learning_set(mlxsw_sp_port, vid, vid,
  284. set);
  285. if (err)
  286. goto err_port_vid_learning_set;
  287. }
  288. return 0;
  289. err_port_vid_learning_set:
  290. for_each_set_bit(vid, mlxsw_sp_port->active_vlans, VLAN_N_VID)
  291. __mlxsw_sp_port_vid_learning_set(mlxsw_sp_port, vid, vid, !set);
  292. return err;
  293. }
  294. static int mlxsw_sp_port_attr_br_flags_set(struct mlxsw_sp_port *mlxsw_sp_port,
  295. struct switchdev_trans *trans,
  296. unsigned long brport_flags)
  297. {
  298. unsigned long learning = mlxsw_sp_port->learning ? BR_LEARNING : 0;
  299. unsigned long uc_flood = mlxsw_sp_port->uc_flood ? BR_FLOOD : 0;
  300. int err;
  301. if (!mlxsw_sp_port->bridged)
  302. return -EINVAL;
  303. if (switchdev_trans_ph_prepare(trans))
  304. return 0;
  305. if ((uc_flood ^ brport_flags) & BR_FLOOD) {
  306. err = mlxsw_sp_port_flood_table_set(mlxsw_sp_port,
  307. MLXSW_SP_FLOOD_TABLE_UC,
  308. !mlxsw_sp_port->uc_flood);
  309. if (err)
  310. return err;
  311. }
  312. if ((learning ^ brport_flags) & BR_LEARNING) {
  313. err = mlxsw_sp_port_learning_set(mlxsw_sp_port,
  314. !mlxsw_sp_port->learning);
  315. if (err)
  316. goto err_port_learning_set;
  317. }
  318. mlxsw_sp_port->uc_flood = brport_flags & BR_FLOOD ? 1 : 0;
  319. mlxsw_sp_port->learning = brport_flags & BR_LEARNING ? 1 : 0;
  320. mlxsw_sp_port->learning_sync = brport_flags & BR_LEARNING_SYNC ? 1 : 0;
  321. return 0;
  322. err_port_learning_set:
  323. if ((uc_flood ^ brport_flags) & BR_FLOOD)
  324. mlxsw_sp_port_flood_table_set(mlxsw_sp_port,
  325. MLXSW_SP_FLOOD_TABLE_UC,
  326. mlxsw_sp_port->uc_flood);
  327. return err;
  328. }
  329. static int mlxsw_sp_ageing_set(struct mlxsw_sp *mlxsw_sp, u32 ageing_time)
  330. {
  331. char sfdat_pl[MLXSW_REG_SFDAT_LEN];
  332. int err;
  333. mlxsw_reg_sfdat_pack(sfdat_pl, ageing_time);
  334. err = mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(sfdat), sfdat_pl);
  335. if (err)
  336. return err;
  337. mlxsw_sp->ageing_time = ageing_time;
  338. return 0;
  339. }
  340. static int mlxsw_sp_port_attr_br_ageing_set(struct mlxsw_sp_port *mlxsw_sp_port,
  341. struct switchdev_trans *trans,
  342. unsigned long ageing_clock_t)
  343. {
  344. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  345. unsigned long ageing_jiffies = clock_t_to_jiffies(ageing_clock_t);
  346. u32 ageing_time = jiffies_to_msecs(ageing_jiffies) / 1000;
  347. if (switchdev_trans_ph_prepare(trans)) {
  348. if (ageing_time < MLXSW_SP_MIN_AGEING_TIME ||
  349. ageing_time > MLXSW_SP_MAX_AGEING_TIME)
  350. return -ERANGE;
  351. else
  352. return 0;
  353. }
  354. return mlxsw_sp_ageing_set(mlxsw_sp, ageing_time);
  355. }
  356. static int mlxsw_sp_port_attr_br_vlan_set(struct mlxsw_sp_port *mlxsw_sp_port,
  357. struct switchdev_trans *trans,
  358. struct net_device *orig_dev,
  359. bool vlan_enabled)
  360. {
  361. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  362. /* SWITCHDEV_TRANS_PREPARE phase */
  363. if ((!vlan_enabled) && (mlxsw_sp->master_bridge.dev == orig_dev)) {
  364. netdev_err(mlxsw_sp_port->dev, "Bridge must be vlan-aware\n");
  365. return -EINVAL;
  366. }
  367. return 0;
  368. }
  369. static int mlxsw_sp_port_attr_mc_router_set(struct mlxsw_sp_port *mlxsw_sp_port,
  370. struct switchdev_trans *trans,
  371. bool is_port_mc_router)
  372. {
  373. if (switchdev_trans_ph_prepare(trans))
  374. return 0;
  375. mlxsw_sp_port->mc_router = is_port_mc_router;
  376. if (!mlxsw_sp_port->mc_disabled)
  377. return mlxsw_sp_port_flood_table_set(mlxsw_sp_port,
  378. MLXSW_SP_FLOOD_TABLE_MC,
  379. is_port_mc_router);
  380. return 0;
  381. }
  382. static int mlxsw_sp_port_attr_set(struct net_device *dev,
  383. const struct switchdev_attr *attr,
  384. struct switchdev_trans *trans)
  385. {
  386. struct mlxsw_sp_port *mlxsw_sp_port = netdev_priv(dev);
  387. int err = 0;
  388. mlxsw_sp_port = mlxsw_sp_port_orig_get(attr->orig_dev, mlxsw_sp_port);
  389. if (!mlxsw_sp_port)
  390. return -EINVAL;
  391. switch (attr->id) {
  392. case SWITCHDEV_ATTR_ID_PORT_STP_STATE:
  393. err = mlxsw_sp_port_attr_stp_state_set(mlxsw_sp_port, trans,
  394. attr->u.stp_state);
  395. break;
  396. case SWITCHDEV_ATTR_ID_PORT_BRIDGE_FLAGS:
  397. err = mlxsw_sp_port_attr_br_flags_set(mlxsw_sp_port, trans,
  398. attr->u.brport_flags);
  399. break;
  400. case SWITCHDEV_ATTR_ID_BRIDGE_AGEING_TIME:
  401. err = mlxsw_sp_port_attr_br_ageing_set(mlxsw_sp_port, trans,
  402. attr->u.ageing_time);
  403. break;
  404. case SWITCHDEV_ATTR_ID_BRIDGE_VLAN_FILTERING:
  405. err = mlxsw_sp_port_attr_br_vlan_set(mlxsw_sp_port, trans,
  406. attr->orig_dev,
  407. attr->u.vlan_filtering);
  408. break;
  409. case SWITCHDEV_ATTR_ID_PORT_MROUTER:
  410. err = mlxsw_sp_port_attr_mc_router_set(mlxsw_sp_port, trans,
  411. attr->u.mrouter);
  412. break;
  413. case SWITCHDEV_ATTR_ID_BRIDGE_MC_DISABLED:
  414. err = mlxsw_sp_port_mc_disabled_set(mlxsw_sp_port, trans,
  415. attr->u.mc_disabled);
  416. break;
  417. default:
  418. err = -EOPNOTSUPP;
  419. break;
  420. }
  421. return err;
  422. }
  423. static int mlxsw_sp_fid_op(struct mlxsw_sp *mlxsw_sp, u16 fid, bool create)
  424. {
  425. char sfmr_pl[MLXSW_REG_SFMR_LEN];
  426. mlxsw_reg_sfmr_pack(sfmr_pl, !create, fid, fid);
  427. return mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(sfmr), sfmr_pl);
  428. }
  429. static int mlxsw_sp_fid_map(struct mlxsw_sp *mlxsw_sp, u16 fid, bool valid)
  430. {
  431. enum mlxsw_reg_svfa_mt mt = MLXSW_REG_SVFA_MT_VID_TO_FID;
  432. char svfa_pl[MLXSW_REG_SVFA_LEN];
  433. mlxsw_reg_svfa_pack(svfa_pl, 0, mt, valid, fid, fid);
  434. return mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(svfa), svfa_pl);
  435. }
  436. static struct mlxsw_sp_fid *mlxsw_sp_fid_alloc(u16 fid)
  437. {
  438. struct mlxsw_sp_fid *f;
  439. f = kzalloc(sizeof(*f), GFP_KERNEL);
  440. if (!f)
  441. return NULL;
  442. f->fid = fid;
  443. return f;
  444. }
  445. struct mlxsw_sp_fid *mlxsw_sp_fid_create(struct mlxsw_sp *mlxsw_sp, u16 fid)
  446. {
  447. struct mlxsw_sp_fid *f;
  448. int err;
  449. err = mlxsw_sp_fid_op(mlxsw_sp, fid, true);
  450. if (err)
  451. return ERR_PTR(err);
  452. /* Although all the ports member in the FID might be using a
  453. * {Port, VID} to FID mapping, we create a global VID-to-FID
  454. * mapping. This allows a port to transition to VLAN mode,
  455. * knowing the global mapping exists.
  456. */
  457. err = mlxsw_sp_fid_map(mlxsw_sp, fid, true);
  458. if (err)
  459. goto err_fid_map;
  460. f = mlxsw_sp_fid_alloc(fid);
  461. if (!f) {
  462. err = -ENOMEM;
  463. goto err_allocate_fid;
  464. }
  465. list_add(&f->list, &mlxsw_sp->fids);
  466. return f;
  467. err_allocate_fid:
  468. mlxsw_sp_fid_map(mlxsw_sp, fid, false);
  469. err_fid_map:
  470. mlxsw_sp_fid_op(mlxsw_sp, fid, false);
  471. return ERR_PTR(err);
  472. }
  473. void mlxsw_sp_fid_destroy(struct mlxsw_sp *mlxsw_sp, struct mlxsw_sp_fid *f)
  474. {
  475. u16 fid = f->fid;
  476. list_del(&f->list);
  477. if (f->rif)
  478. mlxsw_sp_rif_bridge_destroy(mlxsw_sp, f->rif);
  479. kfree(f);
  480. mlxsw_sp_fid_map(mlxsw_sp, fid, false);
  481. mlxsw_sp_fid_op(mlxsw_sp, fid, false);
  482. }
  483. static int __mlxsw_sp_port_fid_join(struct mlxsw_sp_port *mlxsw_sp_port,
  484. u16 fid)
  485. {
  486. struct mlxsw_sp_fid *f;
  487. if (test_bit(fid, mlxsw_sp_port->active_vlans))
  488. return 0;
  489. f = mlxsw_sp_fid_find(mlxsw_sp_port->mlxsw_sp, fid);
  490. if (!f) {
  491. f = mlxsw_sp_fid_create(mlxsw_sp_port->mlxsw_sp, fid);
  492. if (IS_ERR(f))
  493. return PTR_ERR(f);
  494. }
  495. f->ref_count++;
  496. netdev_dbg(mlxsw_sp_port->dev, "Joined FID=%d\n", fid);
  497. return 0;
  498. }
  499. static void __mlxsw_sp_port_fid_leave(struct mlxsw_sp_port *mlxsw_sp_port,
  500. u16 fid)
  501. {
  502. struct mlxsw_sp_fid *f;
  503. f = mlxsw_sp_fid_find(mlxsw_sp_port->mlxsw_sp, fid);
  504. if (WARN_ON(!f))
  505. return;
  506. netdev_dbg(mlxsw_sp_port->dev, "Left FID=%d\n", fid);
  507. mlxsw_sp_port_fdb_flush(mlxsw_sp_port, fid);
  508. if (--f->ref_count == 0)
  509. mlxsw_sp_fid_destroy(mlxsw_sp_port->mlxsw_sp, f);
  510. }
  511. static int mlxsw_sp_port_fid_map(struct mlxsw_sp_port *mlxsw_sp_port, u16 fid,
  512. bool valid)
  513. {
  514. enum mlxsw_reg_svfa_mt mt = MLXSW_REG_SVFA_MT_PORT_VID_TO_FID;
  515. /* If port doesn't have vPorts, then it can use the global
  516. * VID-to-FID mapping.
  517. */
  518. if (list_empty(&mlxsw_sp_port->vports_list))
  519. return 0;
  520. return mlxsw_sp_port_vid_to_fid_set(mlxsw_sp_port, mt, valid, fid, fid);
  521. }
  522. static int mlxsw_sp_port_fid_join(struct mlxsw_sp_port *mlxsw_sp_port,
  523. u16 fid_begin, u16 fid_end)
  524. {
  525. bool mc_flood;
  526. int fid, err;
  527. for (fid = fid_begin; fid <= fid_end; fid++) {
  528. err = __mlxsw_sp_port_fid_join(mlxsw_sp_port, fid);
  529. if (err)
  530. goto err_port_fid_join;
  531. }
  532. mc_flood = mlxsw_sp_port->mc_disabled ?
  533. mlxsw_sp_port->mc_flood : mlxsw_sp_port->mc_router;
  534. err = __mlxsw_sp_port_flood_set(mlxsw_sp_port, fid_begin, fid_end,
  535. mlxsw_sp_port->uc_flood, true,
  536. mc_flood);
  537. if (err)
  538. goto err_port_flood_set;
  539. for (fid = fid_begin; fid <= fid_end; fid++) {
  540. err = mlxsw_sp_port_fid_map(mlxsw_sp_port, fid, true);
  541. if (err)
  542. goto err_port_fid_map;
  543. }
  544. return 0;
  545. err_port_fid_map:
  546. for (fid--; fid >= fid_begin; fid--)
  547. mlxsw_sp_port_fid_map(mlxsw_sp_port, fid, false);
  548. __mlxsw_sp_port_flood_set(mlxsw_sp_port, fid_begin, fid_end, false,
  549. false, false);
  550. err_port_flood_set:
  551. fid = fid_end;
  552. err_port_fid_join:
  553. for (fid--; fid >= fid_begin; fid--)
  554. __mlxsw_sp_port_fid_leave(mlxsw_sp_port, fid);
  555. return err;
  556. }
  557. static void mlxsw_sp_port_fid_leave(struct mlxsw_sp_port *mlxsw_sp_port,
  558. u16 fid_begin, u16 fid_end)
  559. {
  560. int fid;
  561. for (fid = fid_begin; fid <= fid_end; fid++)
  562. mlxsw_sp_port_fid_map(mlxsw_sp_port, fid, false);
  563. __mlxsw_sp_port_flood_set(mlxsw_sp_port, fid_begin, fid_end, false,
  564. false, false);
  565. for (fid = fid_begin; fid <= fid_end; fid++)
  566. __mlxsw_sp_port_fid_leave(mlxsw_sp_port, fid);
  567. }
  568. static int __mlxsw_sp_port_pvid_set(struct mlxsw_sp_port *mlxsw_sp_port,
  569. u16 vid)
  570. {
  571. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  572. char spvid_pl[MLXSW_REG_SPVID_LEN];
  573. mlxsw_reg_spvid_pack(spvid_pl, mlxsw_sp_port->local_port, vid);
  574. return mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(spvid), spvid_pl);
  575. }
  576. static int mlxsw_sp_port_allow_untagged_set(struct mlxsw_sp_port *mlxsw_sp_port,
  577. bool allow)
  578. {
  579. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  580. char spaft_pl[MLXSW_REG_SPAFT_LEN];
  581. mlxsw_reg_spaft_pack(spaft_pl, mlxsw_sp_port->local_port, allow);
  582. return mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(spaft), spaft_pl);
  583. }
  584. int mlxsw_sp_port_pvid_set(struct mlxsw_sp_port *mlxsw_sp_port, u16 vid)
  585. {
  586. struct net_device *dev = mlxsw_sp_port->dev;
  587. int err;
  588. if (!vid) {
  589. err = mlxsw_sp_port_allow_untagged_set(mlxsw_sp_port, false);
  590. if (err) {
  591. netdev_err(dev, "Failed to disallow untagged traffic\n");
  592. return err;
  593. }
  594. } else {
  595. err = __mlxsw_sp_port_pvid_set(mlxsw_sp_port, vid);
  596. if (err) {
  597. netdev_err(dev, "Failed to set PVID\n");
  598. return err;
  599. }
  600. /* Only allow if not already allowed. */
  601. if (!mlxsw_sp_port->pvid) {
  602. err = mlxsw_sp_port_allow_untagged_set(mlxsw_sp_port,
  603. true);
  604. if (err) {
  605. netdev_err(dev, "Failed to allow untagged traffic\n");
  606. goto err_port_allow_untagged_set;
  607. }
  608. }
  609. }
  610. mlxsw_sp_port->pvid = vid;
  611. return 0;
  612. err_port_allow_untagged_set:
  613. __mlxsw_sp_port_pvid_set(mlxsw_sp_port, mlxsw_sp_port->pvid);
  614. return err;
  615. }
  616. static int mlxsw_sp_port_vid_learning_set(struct mlxsw_sp_port *mlxsw_sp_port,
  617. u16 vid_begin, u16 vid_end,
  618. bool learn_enable)
  619. {
  620. u16 vid, vid_e;
  621. int err;
  622. for (vid = vid_begin; vid <= vid_end;
  623. vid += MLXSW_REG_SPVMLR_REC_MAX_COUNT) {
  624. vid_e = min((u16) (vid + MLXSW_REG_SPVMLR_REC_MAX_COUNT - 1),
  625. vid_end);
  626. err = __mlxsw_sp_port_vid_learning_set(mlxsw_sp_port, vid,
  627. vid_e, learn_enable);
  628. if (err)
  629. return err;
  630. }
  631. return 0;
  632. }
  633. static int __mlxsw_sp_port_vlans_add(struct mlxsw_sp_port *mlxsw_sp_port,
  634. u16 vid_begin, u16 vid_end,
  635. bool flag_untagged, bool flag_pvid)
  636. {
  637. struct net_device *dev = mlxsw_sp_port->dev;
  638. u16 vid, old_pvid;
  639. int err;
  640. if (!mlxsw_sp_port->bridged)
  641. return -EINVAL;
  642. err = mlxsw_sp_port_fid_join(mlxsw_sp_port, vid_begin, vid_end);
  643. if (err) {
  644. netdev_err(dev, "Failed to join FIDs\n");
  645. return err;
  646. }
  647. err = mlxsw_sp_port_vlan_set(mlxsw_sp_port, vid_begin, vid_end,
  648. true, flag_untagged);
  649. if (err) {
  650. netdev_err(dev, "Unable to add VIDs %d-%d\n", vid_begin,
  651. vid_end);
  652. goto err_port_vlans_set;
  653. }
  654. old_pvid = mlxsw_sp_port->pvid;
  655. if (flag_pvid && old_pvid != vid_begin) {
  656. err = mlxsw_sp_port_pvid_set(mlxsw_sp_port, vid_begin);
  657. if (err) {
  658. netdev_err(dev, "Unable to add PVID %d\n", vid_begin);
  659. goto err_port_pvid_set;
  660. }
  661. } else if (!flag_pvid && old_pvid >= vid_begin && old_pvid <= vid_end) {
  662. err = mlxsw_sp_port_pvid_set(mlxsw_sp_port, 0);
  663. if (err) {
  664. netdev_err(dev, "Unable to del PVID\n");
  665. goto err_port_pvid_set;
  666. }
  667. }
  668. err = mlxsw_sp_port_vid_learning_set(mlxsw_sp_port, vid_begin, vid_end,
  669. mlxsw_sp_port->learning);
  670. if (err) {
  671. netdev_err(dev, "Failed to set learning for VIDs %d-%d\n",
  672. vid_begin, vid_end);
  673. goto err_port_vid_learning_set;
  674. }
  675. /* Changing activity bits only if HW operation succeded */
  676. for (vid = vid_begin; vid <= vid_end; vid++) {
  677. set_bit(vid, mlxsw_sp_port->active_vlans);
  678. if (flag_untagged)
  679. set_bit(vid, mlxsw_sp_port->untagged_vlans);
  680. else
  681. clear_bit(vid, mlxsw_sp_port->untagged_vlans);
  682. }
  683. /* STP state change must be done after we set active VLANs */
  684. err = mlxsw_sp_port_stp_state_set(mlxsw_sp_port,
  685. mlxsw_sp_port->stp_state);
  686. if (err) {
  687. netdev_err(dev, "Failed to set STP state\n");
  688. goto err_port_stp_state_set;
  689. }
  690. return 0;
  691. err_port_stp_state_set:
  692. for (vid = vid_begin; vid <= vid_end; vid++)
  693. clear_bit(vid, mlxsw_sp_port->active_vlans);
  694. mlxsw_sp_port_vid_learning_set(mlxsw_sp_port, vid_begin, vid_end,
  695. false);
  696. err_port_vid_learning_set:
  697. if (old_pvid != mlxsw_sp_port->pvid)
  698. mlxsw_sp_port_pvid_set(mlxsw_sp_port, old_pvid);
  699. err_port_pvid_set:
  700. mlxsw_sp_port_vlan_set(mlxsw_sp_port, vid_begin, vid_end,
  701. false, false);
  702. err_port_vlans_set:
  703. mlxsw_sp_port_fid_leave(mlxsw_sp_port, vid_begin, vid_end);
  704. return err;
  705. }
  706. static int mlxsw_sp_port_vlans_add(struct mlxsw_sp_port *mlxsw_sp_port,
  707. const struct switchdev_obj_port_vlan *vlan,
  708. struct switchdev_trans *trans)
  709. {
  710. bool flag_untagged = vlan->flags & BRIDGE_VLAN_INFO_UNTAGGED;
  711. bool flag_pvid = vlan->flags & BRIDGE_VLAN_INFO_PVID;
  712. if (switchdev_trans_ph_prepare(trans))
  713. return 0;
  714. return __mlxsw_sp_port_vlans_add(mlxsw_sp_port,
  715. vlan->vid_begin, vlan->vid_end,
  716. flag_untagged, flag_pvid);
  717. }
  718. static enum mlxsw_reg_sfd_rec_policy mlxsw_sp_sfd_rec_policy(bool dynamic)
  719. {
  720. return dynamic ? MLXSW_REG_SFD_REC_POLICY_DYNAMIC_ENTRY_INGRESS :
  721. MLXSW_REG_SFD_REC_POLICY_STATIC_ENTRY;
  722. }
  723. static enum mlxsw_reg_sfd_op mlxsw_sp_sfd_op(bool adding)
  724. {
  725. return adding ? MLXSW_REG_SFD_OP_WRITE_EDIT :
  726. MLXSW_REG_SFD_OP_WRITE_REMOVE;
  727. }
  728. static int __mlxsw_sp_port_fdb_uc_op(struct mlxsw_sp *mlxsw_sp, u8 local_port,
  729. const char *mac, u16 fid, bool adding,
  730. enum mlxsw_reg_sfd_rec_action action,
  731. bool dynamic)
  732. {
  733. char *sfd_pl;
  734. int err;
  735. sfd_pl = kmalloc(MLXSW_REG_SFD_LEN, GFP_KERNEL);
  736. if (!sfd_pl)
  737. return -ENOMEM;
  738. mlxsw_reg_sfd_pack(sfd_pl, mlxsw_sp_sfd_op(adding), 0);
  739. mlxsw_reg_sfd_uc_pack(sfd_pl, 0, mlxsw_sp_sfd_rec_policy(dynamic),
  740. mac, fid, action, local_port);
  741. err = mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(sfd), sfd_pl);
  742. kfree(sfd_pl);
  743. return err;
  744. }
  745. static int mlxsw_sp_port_fdb_uc_op(struct mlxsw_sp *mlxsw_sp, u8 local_port,
  746. const char *mac, u16 fid, bool adding,
  747. bool dynamic)
  748. {
  749. return __mlxsw_sp_port_fdb_uc_op(mlxsw_sp, local_port, mac, fid, adding,
  750. MLXSW_REG_SFD_REC_ACTION_NOP, dynamic);
  751. }
  752. int mlxsw_sp_rif_fdb_op(struct mlxsw_sp *mlxsw_sp, const char *mac, u16 fid,
  753. bool adding)
  754. {
  755. return __mlxsw_sp_port_fdb_uc_op(mlxsw_sp, 0, mac, fid, adding,
  756. MLXSW_REG_SFD_REC_ACTION_FORWARD_IP_ROUTER,
  757. false);
  758. }
  759. static int mlxsw_sp_port_fdb_uc_lag_op(struct mlxsw_sp *mlxsw_sp, u16 lag_id,
  760. const char *mac, u16 fid, u16 lag_vid,
  761. bool adding, bool dynamic)
  762. {
  763. char *sfd_pl;
  764. int err;
  765. sfd_pl = kmalloc(MLXSW_REG_SFD_LEN, GFP_KERNEL);
  766. if (!sfd_pl)
  767. return -ENOMEM;
  768. mlxsw_reg_sfd_pack(sfd_pl, mlxsw_sp_sfd_op(adding), 0);
  769. mlxsw_reg_sfd_uc_lag_pack(sfd_pl, 0, mlxsw_sp_sfd_rec_policy(dynamic),
  770. mac, fid, MLXSW_REG_SFD_REC_ACTION_NOP,
  771. lag_vid, lag_id);
  772. err = mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(sfd), sfd_pl);
  773. kfree(sfd_pl);
  774. return err;
  775. }
  776. static int
  777. mlxsw_sp_port_fdb_static_add(struct mlxsw_sp_port *mlxsw_sp_port,
  778. const struct switchdev_obj_port_fdb *fdb,
  779. struct switchdev_trans *trans)
  780. {
  781. u16 fid = mlxsw_sp_port_vid_to_fid_get(mlxsw_sp_port, fdb->vid);
  782. u16 lag_vid = 0;
  783. if (switchdev_trans_ph_prepare(trans))
  784. return 0;
  785. if (mlxsw_sp_port_is_vport(mlxsw_sp_port)) {
  786. lag_vid = mlxsw_sp_vport_vid_get(mlxsw_sp_port);
  787. }
  788. if (!mlxsw_sp_port->lagged)
  789. return mlxsw_sp_port_fdb_uc_op(mlxsw_sp_port->mlxsw_sp,
  790. mlxsw_sp_port->local_port,
  791. fdb->addr, fid, true, false);
  792. else
  793. return mlxsw_sp_port_fdb_uc_lag_op(mlxsw_sp_port->mlxsw_sp,
  794. mlxsw_sp_port->lag_id,
  795. fdb->addr, fid, lag_vid,
  796. true, false);
  797. }
  798. static int mlxsw_sp_port_mdb_op(struct mlxsw_sp *mlxsw_sp, const char *addr,
  799. u16 fid, u16 mid, bool adding)
  800. {
  801. char *sfd_pl;
  802. int err;
  803. sfd_pl = kmalloc(MLXSW_REG_SFD_LEN, GFP_KERNEL);
  804. if (!sfd_pl)
  805. return -ENOMEM;
  806. mlxsw_reg_sfd_pack(sfd_pl, mlxsw_sp_sfd_op(adding), 0);
  807. mlxsw_reg_sfd_mc_pack(sfd_pl, 0, addr, fid,
  808. MLXSW_REG_SFD_REC_ACTION_NOP, mid);
  809. err = mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(sfd), sfd_pl);
  810. kfree(sfd_pl);
  811. return err;
  812. }
  813. static int mlxsw_sp_port_smid_set(struct mlxsw_sp_port *mlxsw_sp_port, u16 mid,
  814. bool add, bool clear_all_ports)
  815. {
  816. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  817. char *smid_pl;
  818. int err, i;
  819. smid_pl = kmalloc(MLXSW_REG_SMID_LEN, GFP_KERNEL);
  820. if (!smid_pl)
  821. return -ENOMEM;
  822. mlxsw_reg_smid_pack(smid_pl, mid, mlxsw_sp_port->local_port, add);
  823. if (clear_all_ports) {
  824. for (i = 1; i < mlxsw_core_max_ports(mlxsw_sp->core); i++)
  825. if (mlxsw_sp->ports[i])
  826. mlxsw_reg_smid_port_mask_set(smid_pl, i, 1);
  827. }
  828. err = mlxsw_reg_write(mlxsw_sp->core, MLXSW_REG(smid), smid_pl);
  829. kfree(smid_pl);
  830. return err;
  831. }
  832. static struct mlxsw_sp_mid *__mlxsw_sp_mc_get(struct mlxsw_sp *mlxsw_sp,
  833. const unsigned char *addr,
  834. u16 fid)
  835. {
  836. struct mlxsw_sp_mid *mid;
  837. list_for_each_entry(mid, &mlxsw_sp->br_mids.list, list) {
  838. if (ether_addr_equal(mid->addr, addr) && mid->fid == fid)
  839. return mid;
  840. }
  841. return NULL;
  842. }
  843. static struct mlxsw_sp_mid *__mlxsw_sp_mc_alloc(struct mlxsw_sp *mlxsw_sp,
  844. const unsigned char *addr,
  845. u16 fid)
  846. {
  847. struct mlxsw_sp_mid *mid;
  848. u16 mid_idx;
  849. mid_idx = find_first_zero_bit(mlxsw_sp->br_mids.mapped,
  850. MLXSW_SP_MID_MAX);
  851. if (mid_idx == MLXSW_SP_MID_MAX)
  852. return NULL;
  853. mid = kzalloc(sizeof(*mid), GFP_KERNEL);
  854. if (!mid)
  855. return NULL;
  856. set_bit(mid_idx, mlxsw_sp->br_mids.mapped);
  857. ether_addr_copy(mid->addr, addr);
  858. mid->fid = fid;
  859. mid->mid = mid_idx;
  860. mid->ref_count = 0;
  861. list_add_tail(&mid->list, &mlxsw_sp->br_mids.list);
  862. return mid;
  863. }
  864. static int __mlxsw_sp_mc_dec_ref(struct mlxsw_sp *mlxsw_sp,
  865. struct mlxsw_sp_mid *mid)
  866. {
  867. if (--mid->ref_count == 0) {
  868. list_del(&mid->list);
  869. clear_bit(mid->mid, mlxsw_sp->br_mids.mapped);
  870. kfree(mid);
  871. return 1;
  872. }
  873. return 0;
  874. }
  875. static int mlxsw_sp_port_mdb_add(struct mlxsw_sp_port *mlxsw_sp_port,
  876. const struct switchdev_obj_port_mdb *mdb,
  877. struct switchdev_trans *trans)
  878. {
  879. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  880. struct net_device *dev = mlxsw_sp_port->dev;
  881. struct mlxsw_sp_mid *mid;
  882. u16 fid = mlxsw_sp_port_vid_to_fid_get(mlxsw_sp_port, mdb->vid);
  883. int err = 0;
  884. if (switchdev_trans_ph_prepare(trans))
  885. return 0;
  886. mid = __mlxsw_sp_mc_get(mlxsw_sp, mdb->addr, fid);
  887. if (!mid) {
  888. mid = __mlxsw_sp_mc_alloc(mlxsw_sp, mdb->addr, fid);
  889. if (!mid) {
  890. netdev_err(dev, "Unable to allocate MC group\n");
  891. return -ENOMEM;
  892. }
  893. }
  894. mid->ref_count++;
  895. err = mlxsw_sp_port_smid_set(mlxsw_sp_port, mid->mid, true,
  896. mid->ref_count == 1);
  897. if (err) {
  898. netdev_err(dev, "Unable to set SMID\n");
  899. goto err_out;
  900. }
  901. if (mid->ref_count == 1) {
  902. err = mlxsw_sp_port_mdb_op(mlxsw_sp, mdb->addr, fid, mid->mid,
  903. true);
  904. if (err) {
  905. netdev_err(dev, "Unable to set MC SFD\n");
  906. goto err_out;
  907. }
  908. }
  909. return 0;
  910. err_out:
  911. __mlxsw_sp_mc_dec_ref(mlxsw_sp, mid);
  912. return err;
  913. }
  914. static int mlxsw_sp_port_obj_add(struct net_device *dev,
  915. const struct switchdev_obj *obj,
  916. struct switchdev_trans *trans)
  917. {
  918. struct mlxsw_sp_port *mlxsw_sp_port = netdev_priv(dev);
  919. int err = 0;
  920. mlxsw_sp_port = mlxsw_sp_port_orig_get(obj->orig_dev, mlxsw_sp_port);
  921. if (!mlxsw_sp_port)
  922. return -EINVAL;
  923. switch (obj->id) {
  924. case SWITCHDEV_OBJ_ID_PORT_VLAN:
  925. if (mlxsw_sp_port_is_vport(mlxsw_sp_port))
  926. return 0;
  927. err = mlxsw_sp_port_vlans_add(mlxsw_sp_port,
  928. SWITCHDEV_OBJ_PORT_VLAN(obj),
  929. trans);
  930. break;
  931. case SWITCHDEV_OBJ_ID_PORT_FDB:
  932. err = mlxsw_sp_port_fdb_static_add(mlxsw_sp_port,
  933. SWITCHDEV_OBJ_PORT_FDB(obj),
  934. trans);
  935. break;
  936. case SWITCHDEV_OBJ_ID_PORT_MDB:
  937. err = mlxsw_sp_port_mdb_add(mlxsw_sp_port,
  938. SWITCHDEV_OBJ_PORT_MDB(obj),
  939. trans);
  940. break;
  941. default:
  942. err = -EOPNOTSUPP;
  943. break;
  944. }
  945. return err;
  946. }
  947. static int __mlxsw_sp_port_vlans_del(struct mlxsw_sp_port *mlxsw_sp_port,
  948. u16 vid_begin, u16 vid_end)
  949. {
  950. u16 vid, pvid;
  951. if (!mlxsw_sp_port->bridged)
  952. return -EINVAL;
  953. mlxsw_sp_port_vid_learning_set(mlxsw_sp_port, vid_begin, vid_end,
  954. false);
  955. pvid = mlxsw_sp_port->pvid;
  956. if (pvid >= vid_begin && pvid <= vid_end)
  957. mlxsw_sp_port_pvid_set(mlxsw_sp_port, 0);
  958. mlxsw_sp_port_vlan_set(mlxsw_sp_port, vid_begin, vid_end,
  959. false, false);
  960. mlxsw_sp_port_fid_leave(mlxsw_sp_port, vid_begin, vid_end);
  961. /* Changing activity bits only if HW operation succeded */
  962. for (vid = vid_begin; vid <= vid_end; vid++)
  963. clear_bit(vid, mlxsw_sp_port->active_vlans);
  964. return 0;
  965. }
  966. static int mlxsw_sp_port_vlans_del(struct mlxsw_sp_port *mlxsw_sp_port,
  967. const struct switchdev_obj_port_vlan *vlan)
  968. {
  969. return __mlxsw_sp_port_vlans_del(mlxsw_sp_port, vlan->vid_begin,
  970. vlan->vid_end);
  971. }
  972. void mlxsw_sp_port_active_vlans_del(struct mlxsw_sp_port *mlxsw_sp_port)
  973. {
  974. u16 vid;
  975. for_each_set_bit(vid, mlxsw_sp_port->active_vlans, VLAN_N_VID)
  976. __mlxsw_sp_port_vlans_del(mlxsw_sp_port, vid, vid);
  977. }
  978. static int
  979. mlxsw_sp_port_fdb_static_del(struct mlxsw_sp_port *mlxsw_sp_port,
  980. const struct switchdev_obj_port_fdb *fdb)
  981. {
  982. u16 fid = mlxsw_sp_port_vid_to_fid_get(mlxsw_sp_port, fdb->vid);
  983. u16 lag_vid = 0;
  984. if (mlxsw_sp_port_is_vport(mlxsw_sp_port)) {
  985. lag_vid = mlxsw_sp_vport_vid_get(mlxsw_sp_port);
  986. }
  987. if (!mlxsw_sp_port->lagged)
  988. return mlxsw_sp_port_fdb_uc_op(mlxsw_sp_port->mlxsw_sp,
  989. mlxsw_sp_port->local_port,
  990. fdb->addr, fid,
  991. false, false);
  992. else
  993. return mlxsw_sp_port_fdb_uc_lag_op(mlxsw_sp_port->mlxsw_sp,
  994. mlxsw_sp_port->lag_id,
  995. fdb->addr, fid, lag_vid,
  996. false, false);
  997. }
  998. static int mlxsw_sp_port_mdb_del(struct mlxsw_sp_port *mlxsw_sp_port,
  999. const struct switchdev_obj_port_mdb *mdb)
  1000. {
  1001. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  1002. struct net_device *dev = mlxsw_sp_port->dev;
  1003. struct mlxsw_sp_mid *mid;
  1004. u16 fid = mlxsw_sp_port_vid_to_fid_get(mlxsw_sp_port, mdb->vid);
  1005. u16 mid_idx;
  1006. int err = 0;
  1007. mid = __mlxsw_sp_mc_get(mlxsw_sp, mdb->addr, fid);
  1008. if (!mid) {
  1009. netdev_err(dev, "Unable to remove port from MC DB\n");
  1010. return -EINVAL;
  1011. }
  1012. err = mlxsw_sp_port_smid_set(mlxsw_sp_port, mid->mid, false, false);
  1013. if (err)
  1014. netdev_err(dev, "Unable to remove port from SMID\n");
  1015. mid_idx = mid->mid;
  1016. if (__mlxsw_sp_mc_dec_ref(mlxsw_sp, mid)) {
  1017. err = mlxsw_sp_port_mdb_op(mlxsw_sp, mdb->addr, fid, mid_idx,
  1018. false);
  1019. if (err)
  1020. netdev_err(dev, "Unable to remove MC SFD\n");
  1021. }
  1022. return err;
  1023. }
  1024. static int mlxsw_sp_port_obj_del(struct net_device *dev,
  1025. const struct switchdev_obj *obj)
  1026. {
  1027. struct mlxsw_sp_port *mlxsw_sp_port = netdev_priv(dev);
  1028. int err = 0;
  1029. mlxsw_sp_port = mlxsw_sp_port_orig_get(obj->orig_dev, mlxsw_sp_port);
  1030. if (!mlxsw_sp_port)
  1031. return -EINVAL;
  1032. switch (obj->id) {
  1033. case SWITCHDEV_OBJ_ID_PORT_VLAN:
  1034. if (mlxsw_sp_port_is_vport(mlxsw_sp_port))
  1035. return 0;
  1036. err = mlxsw_sp_port_vlans_del(mlxsw_sp_port,
  1037. SWITCHDEV_OBJ_PORT_VLAN(obj));
  1038. break;
  1039. case SWITCHDEV_OBJ_ID_PORT_FDB:
  1040. err = mlxsw_sp_port_fdb_static_del(mlxsw_sp_port,
  1041. SWITCHDEV_OBJ_PORT_FDB(obj));
  1042. break;
  1043. case SWITCHDEV_OBJ_ID_PORT_MDB:
  1044. err = mlxsw_sp_port_mdb_del(mlxsw_sp_port,
  1045. SWITCHDEV_OBJ_PORT_MDB(obj));
  1046. break;
  1047. default:
  1048. err = -EOPNOTSUPP;
  1049. break;
  1050. }
  1051. return err;
  1052. }
  1053. static struct mlxsw_sp_port *mlxsw_sp_lag_rep_port(struct mlxsw_sp *mlxsw_sp,
  1054. u16 lag_id)
  1055. {
  1056. struct mlxsw_sp_port *mlxsw_sp_port;
  1057. u64 max_lag_members;
  1058. int i;
  1059. max_lag_members = MLXSW_CORE_RES_GET(mlxsw_sp->core,
  1060. MAX_LAG_MEMBERS);
  1061. for (i = 0; i < max_lag_members; i++) {
  1062. mlxsw_sp_port = mlxsw_sp_port_lagged_get(mlxsw_sp, lag_id, i);
  1063. if (mlxsw_sp_port)
  1064. return mlxsw_sp_port;
  1065. }
  1066. return NULL;
  1067. }
  1068. static int mlxsw_sp_port_fdb_dump(struct mlxsw_sp_port *mlxsw_sp_port,
  1069. struct switchdev_obj_port_fdb *fdb,
  1070. switchdev_obj_dump_cb_t *cb,
  1071. struct net_device *orig_dev)
  1072. {
  1073. struct mlxsw_sp *mlxsw_sp = mlxsw_sp_port->mlxsw_sp;
  1074. struct mlxsw_sp_port *tmp;
  1075. struct mlxsw_sp_fid *f;
  1076. u16 vport_fid;
  1077. char *sfd_pl;
  1078. char mac[ETH_ALEN];
  1079. u16 fid;
  1080. u8 local_port;
  1081. u16 lag_id;
  1082. u8 num_rec;
  1083. int stored_err = 0;
  1084. int i;
  1085. int err;
  1086. sfd_pl = kmalloc(MLXSW_REG_SFD_LEN, GFP_KERNEL);
  1087. if (!sfd_pl)
  1088. return -ENOMEM;
  1089. f = mlxsw_sp_vport_fid_get(mlxsw_sp_port);
  1090. vport_fid = f ? f->fid : 0;
  1091. mlxsw_reg_sfd_pack(sfd_pl, MLXSW_REG_SFD_OP_QUERY_DUMP, 0);
  1092. do {
  1093. mlxsw_reg_sfd_num_rec_set(sfd_pl, MLXSW_REG_SFD_REC_MAX_COUNT);
  1094. err = mlxsw_reg_query(mlxsw_sp->core, MLXSW_REG(sfd), sfd_pl);
  1095. if (err)
  1096. goto out;
  1097. num_rec = mlxsw_reg_sfd_num_rec_get(sfd_pl);
  1098. /* Even in case of error, we have to run the dump to the end
  1099. * so the session in firmware is finished.
  1100. */
  1101. if (stored_err)
  1102. continue;
  1103. for (i = 0; i < num_rec; i++) {
  1104. switch (mlxsw_reg_sfd_rec_type_get(sfd_pl, i)) {
  1105. case MLXSW_REG_SFD_REC_TYPE_UNICAST:
  1106. mlxsw_reg_sfd_uc_unpack(sfd_pl, i, mac, &fid,
  1107. &local_port);
  1108. if (local_port == mlxsw_sp_port->local_port) {
  1109. if (vport_fid && vport_fid == fid)
  1110. fdb->vid = 0;
  1111. else if (!vport_fid &&
  1112. !mlxsw_sp_fid_is_vfid(fid))
  1113. fdb->vid = fid;
  1114. else
  1115. continue;
  1116. ether_addr_copy(fdb->addr, mac);
  1117. fdb->ndm_state = NUD_REACHABLE;
  1118. err = cb(&fdb->obj);
  1119. if (err)
  1120. stored_err = err;
  1121. }
  1122. break;
  1123. case MLXSW_REG_SFD_REC_TYPE_UNICAST_LAG:
  1124. mlxsw_reg_sfd_uc_lag_unpack(sfd_pl, i,
  1125. mac, &fid, &lag_id);
  1126. tmp = mlxsw_sp_lag_rep_port(mlxsw_sp, lag_id);
  1127. if (tmp && tmp->local_port ==
  1128. mlxsw_sp_port->local_port) {
  1129. /* LAG records can only point to LAG
  1130. * devices or VLAN devices on top.
  1131. */
  1132. if (!netif_is_lag_master(orig_dev) &&
  1133. !is_vlan_dev(orig_dev))
  1134. continue;
  1135. if (vport_fid && vport_fid == fid)
  1136. fdb->vid = 0;
  1137. else if (!vport_fid &&
  1138. !mlxsw_sp_fid_is_vfid(fid))
  1139. fdb->vid = fid;
  1140. else
  1141. continue;
  1142. ether_addr_copy(fdb->addr, mac);
  1143. fdb->ndm_state = NUD_REACHABLE;
  1144. err = cb(&fdb->obj);
  1145. if (err)
  1146. stored_err = err;
  1147. }
  1148. break;
  1149. }
  1150. }
  1151. } while (num_rec == MLXSW_REG_SFD_REC_MAX_COUNT);
  1152. out:
  1153. kfree(sfd_pl);
  1154. return stored_err ? stored_err : err;
  1155. }
  1156. static int mlxsw_sp_port_vlan_dump(struct mlxsw_sp_port *mlxsw_sp_port,
  1157. struct switchdev_obj_port_vlan *vlan,
  1158. switchdev_obj_dump_cb_t *cb)
  1159. {
  1160. u16 vid;
  1161. int err = 0;
  1162. if (mlxsw_sp_port_is_vport(mlxsw_sp_port)) {
  1163. vlan->flags = 0;
  1164. vlan->vid_begin = mlxsw_sp_vport_vid_get(mlxsw_sp_port);
  1165. vlan->vid_end = mlxsw_sp_vport_vid_get(mlxsw_sp_port);
  1166. return cb(&vlan->obj);
  1167. }
  1168. for_each_set_bit(vid, mlxsw_sp_port->active_vlans, VLAN_N_VID) {
  1169. vlan->flags = 0;
  1170. if (vid == mlxsw_sp_port->pvid)
  1171. vlan->flags |= BRIDGE_VLAN_INFO_PVID;
  1172. if (test_bit(vid, mlxsw_sp_port->untagged_vlans))
  1173. vlan->flags |= BRIDGE_VLAN_INFO_UNTAGGED;
  1174. vlan->vid_begin = vid;
  1175. vlan->vid_end = vid;
  1176. err = cb(&vlan->obj);
  1177. if (err)
  1178. break;
  1179. }
  1180. return err;
  1181. }
  1182. static int mlxsw_sp_port_obj_dump(struct net_device *dev,
  1183. struct switchdev_obj *obj,
  1184. switchdev_obj_dump_cb_t *cb)
  1185. {
  1186. struct mlxsw_sp_port *mlxsw_sp_port = netdev_priv(dev);
  1187. int err = 0;
  1188. mlxsw_sp_port = mlxsw_sp_port_orig_get(obj->orig_dev, mlxsw_sp_port);
  1189. if (!mlxsw_sp_port)
  1190. return -EINVAL;
  1191. switch (obj->id) {
  1192. case SWITCHDEV_OBJ_ID_PORT_VLAN:
  1193. err = mlxsw_sp_port_vlan_dump(mlxsw_sp_port,
  1194. SWITCHDEV_OBJ_PORT_VLAN(obj), cb);
  1195. break;
  1196. case SWITCHDEV_OBJ_ID_PORT_FDB:
  1197. err = mlxsw_sp_port_fdb_dump(mlxsw_sp_port,
  1198. SWITCHDEV_OBJ_PORT_FDB(obj), cb,
  1199. obj->orig_dev);
  1200. break;
  1201. default:
  1202. err = -EOPNOTSUPP;
  1203. break;
  1204. }
  1205. return err;
  1206. }
  1207. static const struct switchdev_ops mlxsw_sp_port_switchdev_ops = {
  1208. .switchdev_port_attr_get = mlxsw_sp_port_attr_get,
  1209. .switchdev_port_attr_set = mlxsw_sp_port_attr_set,
  1210. .switchdev_port_obj_add = mlxsw_sp_port_obj_add,
  1211. .switchdev_port_obj_del = mlxsw_sp_port_obj_del,
  1212. .switchdev_port_obj_dump = mlxsw_sp_port_obj_dump,
  1213. };
  1214. static void mlxsw_sp_fdb_call_notifiers(bool learning_sync, bool adding,
  1215. char *mac, u16 vid,
  1216. struct net_device *dev)
  1217. {
  1218. struct switchdev_notifier_fdb_info info;
  1219. unsigned long notifier_type;
  1220. if (learning_sync) {
  1221. info.addr = mac;
  1222. info.vid = vid;
  1223. notifier_type = adding ? SWITCHDEV_FDB_ADD : SWITCHDEV_FDB_DEL;
  1224. call_switchdev_notifiers(notifier_type, dev, &info.info);
  1225. }
  1226. }
  1227. static void mlxsw_sp_fdb_notify_mac_process(struct mlxsw_sp *mlxsw_sp,
  1228. char *sfn_pl, int rec_index,
  1229. bool adding)
  1230. {
  1231. struct mlxsw_sp_port *mlxsw_sp_port;
  1232. char mac[ETH_ALEN];
  1233. u8 local_port;
  1234. u16 vid, fid;
  1235. bool do_notification = true;
  1236. int err;
  1237. mlxsw_reg_sfn_mac_unpack(sfn_pl, rec_index, mac, &fid, &local_port);
  1238. mlxsw_sp_port = mlxsw_sp->ports[local_port];
  1239. if (!mlxsw_sp_port) {
  1240. dev_err_ratelimited(mlxsw_sp->bus_info->dev, "Incorrect local port in FDB notification\n");
  1241. goto just_remove;
  1242. }
  1243. if (mlxsw_sp_fid_is_vfid(fid)) {
  1244. struct mlxsw_sp_port *mlxsw_sp_vport;
  1245. mlxsw_sp_vport = mlxsw_sp_port_vport_find_by_fid(mlxsw_sp_port,
  1246. fid);
  1247. if (!mlxsw_sp_vport) {
  1248. netdev_err(mlxsw_sp_port->dev, "Failed to find a matching vPort following FDB notification\n");
  1249. goto just_remove;
  1250. }
  1251. vid = 0;
  1252. /* Override the physical port with the vPort. */
  1253. mlxsw_sp_port = mlxsw_sp_vport;
  1254. } else {
  1255. vid = fid;
  1256. }
  1257. do_fdb_op:
  1258. err = mlxsw_sp_port_fdb_uc_op(mlxsw_sp, local_port, mac, fid,
  1259. adding, true);
  1260. if (err) {
  1261. dev_err_ratelimited(mlxsw_sp->bus_info->dev, "Failed to set FDB entry\n");
  1262. return;
  1263. }
  1264. if (!do_notification)
  1265. return;
  1266. mlxsw_sp_fdb_call_notifiers(mlxsw_sp_port->learning_sync,
  1267. adding, mac, vid, mlxsw_sp_port->dev);
  1268. return;
  1269. just_remove:
  1270. adding = false;
  1271. do_notification = false;
  1272. goto do_fdb_op;
  1273. }
  1274. static void mlxsw_sp_fdb_notify_mac_lag_process(struct mlxsw_sp *mlxsw_sp,
  1275. char *sfn_pl, int rec_index,
  1276. bool adding)
  1277. {
  1278. struct mlxsw_sp_port *mlxsw_sp_port;
  1279. struct net_device *dev;
  1280. char mac[ETH_ALEN];
  1281. u16 lag_vid = 0;
  1282. u16 lag_id;
  1283. u16 vid, fid;
  1284. bool do_notification = true;
  1285. int err;
  1286. mlxsw_reg_sfn_mac_lag_unpack(sfn_pl, rec_index, mac, &fid, &lag_id);
  1287. mlxsw_sp_port = mlxsw_sp_lag_rep_port(mlxsw_sp, lag_id);
  1288. if (!mlxsw_sp_port) {
  1289. dev_err_ratelimited(mlxsw_sp->bus_info->dev, "Cannot find port representor for LAG\n");
  1290. goto just_remove;
  1291. }
  1292. if (mlxsw_sp_fid_is_vfid(fid)) {
  1293. struct mlxsw_sp_port *mlxsw_sp_vport;
  1294. mlxsw_sp_vport = mlxsw_sp_port_vport_find_by_fid(mlxsw_sp_port,
  1295. fid);
  1296. if (!mlxsw_sp_vport) {
  1297. netdev_err(mlxsw_sp_port->dev, "Failed to find a matching vPort following FDB notification\n");
  1298. goto just_remove;
  1299. }
  1300. lag_vid = mlxsw_sp_vport_vid_get(mlxsw_sp_vport);
  1301. dev = mlxsw_sp_vport->dev;
  1302. vid = 0;
  1303. /* Override the physical port with the vPort. */
  1304. mlxsw_sp_port = mlxsw_sp_vport;
  1305. } else {
  1306. dev = mlxsw_sp_lag_get(mlxsw_sp, lag_id)->dev;
  1307. vid = fid;
  1308. }
  1309. do_fdb_op:
  1310. err = mlxsw_sp_port_fdb_uc_lag_op(mlxsw_sp, lag_id, mac, fid, lag_vid,
  1311. adding, true);
  1312. if (err) {
  1313. dev_err_ratelimited(mlxsw_sp->bus_info->dev, "Failed to set FDB entry\n");
  1314. return;
  1315. }
  1316. if (!do_notification)
  1317. return;
  1318. mlxsw_sp_fdb_call_notifiers(mlxsw_sp_port->learning_sync, adding, mac,
  1319. vid, dev);
  1320. return;
  1321. just_remove:
  1322. adding = false;
  1323. do_notification = false;
  1324. goto do_fdb_op;
  1325. }
  1326. static void mlxsw_sp_fdb_notify_rec_process(struct mlxsw_sp *mlxsw_sp,
  1327. char *sfn_pl, int rec_index)
  1328. {
  1329. switch (mlxsw_reg_sfn_rec_type_get(sfn_pl, rec_index)) {
  1330. case MLXSW_REG_SFN_REC_TYPE_LEARNED_MAC:
  1331. mlxsw_sp_fdb_notify_mac_process(mlxsw_sp, sfn_pl,
  1332. rec_index, true);
  1333. break;
  1334. case MLXSW_REG_SFN_REC_TYPE_AGED_OUT_MAC:
  1335. mlxsw_sp_fdb_notify_mac_process(mlxsw_sp, sfn_pl,
  1336. rec_index, false);
  1337. break;
  1338. case MLXSW_REG_SFN_REC_TYPE_LEARNED_MAC_LAG:
  1339. mlxsw_sp_fdb_notify_mac_lag_process(mlxsw_sp, sfn_pl,
  1340. rec_index, true);
  1341. break;
  1342. case MLXSW_REG_SFN_REC_TYPE_AGED_OUT_MAC_LAG:
  1343. mlxsw_sp_fdb_notify_mac_lag_process(mlxsw_sp, sfn_pl,
  1344. rec_index, false);
  1345. break;
  1346. }
  1347. }
  1348. static void mlxsw_sp_fdb_notify_work_schedule(struct mlxsw_sp *mlxsw_sp)
  1349. {
  1350. mlxsw_core_schedule_dw(&mlxsw_sp->fdb_notify.dw,
  1351. msecs_to_jiffies(mlxsw_sp->fdb_notify.interval));
  1352. }
  1353. static void mlxsw_sp_fdb_notify_work(struct work_struct *work)
  1354. {
  1355. struct mlxsw_sp *mlxsw_sp;
  1356. char *sfn_pl;
  1357. u8 num_rec;
  1358. int i;
  1359. int err;
  1360. sfn_pl = kmalloc(MLXSW_REG_SFN_LEN, GFP_KERNEL);
  1361. if (!sfn_pl)
  1362. return;
  1363. mlxsw_sp = container_of(work, struct mlxsw_sp, fdb_notify.dw.work);
  1364. rtnl_lock();
  1365. mlxsw_reg_sfn_pack(sfn_pl);
  1366. err = mlxsw_reg_query(mlxsw_sp->core, MLXSW_REG(sfn), sfn_pl);
  1367. if (err) {
  1368. dev_err_ratelimited(mlxsw_sp->bus_info->dev, "Failed to get FDB notifications\n");
  1369. goto out;
  1370. }
  1371. num_rec = mlxsw_reg_sfn_num_rec_get(sfn_pl);
  1372. for (i = 0; i < num_rec; i++)
  1373. mlxsw_sp_fdb_notify_rec_process(mlxsw_sp, sfn_pl, i);
  1374. out:
  1375. rtnl_unlock();
  1376. kfree(sfn_pl);
  1377. mlxsw_sp_fdb_notify_work_schedule(mlxsw_sp);
  1378. }
  1379. static int mlxsw_sp_fdb_init(struct mlxsw_sp *mlxsw_sp)
  1380. {
  1381. int err;
  1382. err = mlxsw_sp_ageing_set(mlxsw_sp, MLXSW_SP_DEFAULT_AGEING_TIME);
  1383. if (err) {
  1384. dev_err(mlxsw_sp->bus_info->dev, "Failed to set default ageing time\n");
  1385. return err;
  1386. }
  1387. INIT_DELAYED_WORK(&mlxsw_sp->fdb_notify.dw, mlxsw_sp_fdb_notify_work);
  1388. mlxsw_sp->fdb_notify.interval = MLXSW_SP_DEFAULT_LEARNING_INTERVAL;
  1389. mlxsw_sp_fdb_notify_work_schedule(mlxsw_sp);
  1390. return 0;
  1391. }
  1392. static void mlxsw_sp_fdb_fini(struct mlxsw_sp *mlxsw_sp)
  1393. {
  1394. cancel_delayed_work_sync(&mlxsw_sp->fdb_notify.dw);
  1395. }
  1396. int mlxsw_sp_switchdev_init(struct mlxsw_sp *mlxsw_sp)
  1397. {
  1398. return mlxsw_sp_fdb_init(mlxsw_sp);
  1399. }
  1400. void mlxsw_sp_switchdev_fini(struct mlxsw_sp *mlxsw_sp)
  1401. {
  1402. mlxsw_sp_fdb_fini(mlxsw_sp);
  1403. }
  1404. void mlxsw_sp_port_switchdev_init(struct mlxsw_sp_port *mlxsw_sp_port)
  1405. {
  1406. mlxsw_sp_port->dev->switchdev_ops = &mlxsw_sp_port_switchdev_ops;
  1407. }
  1408. void mlxsw_sp_port_switchdev_fini(struct mlxsw_sp_port *mlxsw_sp_port)
  1409. {
  1410. }