ip175c.c 31 KB

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  1. /*
  2. * swconfig-ip175c.c: Swconfig configuration for IC+ IP175C switch
  3. *
  4. * Copyright (C) 2008 Patrick Horn <[email protected]>
  5. * Copyright (C) 2008 Martin Mares <[email protected]>
  6. * Copyright (C) 2009 Felix Fietkau <[email protected]>
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License
  10. * as published by the Free Software Foundation; either version 2
  11. * of the License, or (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. */
  18. #include <linux/kernel.h>
  19. #include <linux/module.h>
  20. #include <linux/init.h>
  21. #include <linux/list.h>
  22. #include <linux/skbuff.h>
  23. #include <linux/mii.h>
  24. #include <linux/phy.h>
  25. #include <linux/delay.h>
  26. #include <linux/switch.h>
  27. #define MAX_VLANS 16
  28. #define MAX_PORTS 9
  29. typedef struct ip175c_reg {
  30. u16 p; // phy
  31. u16 m; // mii
  32. } reg;
  33. typedef char bitnum;
  34. #define NOTSUPPORTED {-1,-1}
  35. #define REG_SUPP(x) (((x).m != ((u16)-1)) && ((x).p != (u16)-1))
  36. /*********** CONSTANTS ***********/
  37. struct register_mappings {
  38. char *NAME;
  39. u16 MODEL_NO; // compare to bits 4-9 of MII register 0,3.
  40. bitnum NUM_PORTS;
  41. bitnum CPU_PORT;
  42. /* The default VLAN for each port.
  43. Default: 0x0001 for Ports 0,1,2,3
  44. 0x0002 for Ports 4,5 */
  45. reg VLAN_DEFAULT_TAG_REG[MAX_PORTS];
  46. /* These ports are tagged.
  47. Default: 0x00 */
  48. reg ADD_TAG_REG;
  49. reg REMOVE_TAG_REG;
  50. bitnum ADD_TAG_BIT[MAX_PORTS];
  51. /* These ports are untagged.
  52. Default: 0x00 (i.e. do not alter any VLAN tags...)
  53. Maybe set to 0 if user disables VLANs. */
  54. bitnum REMOVE_TAG_BIT[MAX_PORTS];
  55. /* Port M and Port N are on the same VLAN.
  56. Default: All ports on all VLANs. */
  57. // Use register {29, 19+N/2}
  58. reg VLAN_LOOKUP_REG;
  59. // Port 5 uses register {30, 18} but same as odd bits.
  60. reg VLAN_LOOKUP_REG_5; // in a different register on IP175C.
  61. bitnum VLAN_LOOKUP_EVEN_BIT[MAX_PORTS];
  62. bitnum VLAN_LOOKUP_ODD_BIT[MAX_PORTS];
  63. /* This VLAN corresponds to which ports.
  64. Default: 0x2f,0x30,0x3f,0x3f... */
  65. reg TAG_VLAN_MASK_REG;
  66. bitnum TAG_VLAN_MASK_EVEN_BIT[MAX_PORTS];
  67. bitnum TAG_VLAN_MASK_ODD_BIT[MAX_PORTS];
  68. int RESET_VAL;
  69. reg RESET_REG;
  70. reg MODE_REG;
  71. int MODE_VAL;
  72. /* General flags */
  73. reg ROUTER_CONTROL_REG;
  74. reg VLAN_CONTROL_REG;
  75. bitnum TAG_VLAN_BIT;
  76. bitnum ROUTER_EN_BIT;
  77. bitnum NUMLAN_GROUPS_MAX;
  78. bitnum NUMLAN_GROUPS_BIT;
  79. reg MII_REGISTER_EN;
  80. bitnum MII_REGISTER_EN_BIT;
  81. // set to 1 for 178C, 0 for 175C.
  82. bitnum SIMPLE_VLAN_REGISTERS; // 175C has two vlans per register but 178C has only one.
  83. };
  84. static const struct register_mappings IP178C = {
  85. .NAME = "IP178C",
  86. .MODEL_NO = 0x18,
  87. .VLAN_DEFAULT_TAG_REG = {
  88. {30,3},{30,4},{30,5},{30,6},{30,7},{30,8},
  89. {30,9},{30,10},{30,11},
  90. },
  91. .ADD_TAG_REG = {30,12},
  92. .ADD_TAG_BIT = {0,1,2,3,4,5,6,7,8},
  93. .REMOVE_TAG_REG = {30,13},
  94. .REMOVE_TAG_BIT = {4,5,6,7,8,9,10,11,12},
  95. .SIMPLE_VLAN_REGISTERS = 1,
  96. .VLAN_LOOKUP_REG = {31,0},// +N
  97. .VLAN_LOOKUP_REG_5 = NOTSUPPORTED, // not used with SIMPLE_VLAN_REGISTERS
  98. .VLAN_LOOKUP_EVEN_BIT = {0,1,2,3,4,5,6,7,8},
  99. .VLAN_LOOKUP_ODD_BIT = {0,1,2,3,4,5,6,7,8},
  100. .TAG_VLAN_MASK_REG = {30,14}, // +N
  101. .TAG_VLAN_MASK_EVEN_BIT = {0,1,2,3,4,5,6,7,8},
  102. .TAG_VLAN_MASK_ODD_BIT = {0,1,2,3,4,5,6,7,8},
  103. .RESET_VAL = 0x55AA,
  104. .RESET_REG = {30,0},
  105. .MODE_VAL = 0,
  106. .MODE_REG = NOTSUPPORTED,
  107. .ROUTER_CONTROL_REG = {30,30},
  108. .ROUTER_EN_BIT = 11,
  109. .NUMLAN_GROUPS_MAX = 8,
  110. .NUMLAN_GROUPS_BIT = 8, // {0-2}
  111. .VLAN_CONTROL_REG = {30,13},
  112. .TAG_VLAN_BIT = 3,
  113. .CPU_PORT = 8,
  114. .NUM_PORTS = 9,
  115. .MII_REGISTER_EN = NOTSUPPORTED,
  116. };
  117. static const struct register_mappings IP175C = {
  118. .NAME = "IP175C",
  119. .MODEL_NO = 0x18,
  120. .VLAN_DEFAULT_TAG_REG = {
  121. {29,24},{29,25},{29,26},{29,27},{29,28},{29,30},
  122. NOTSUPPORTED,NOTSUPPORTED,NOTSUPPORTED
  123. },
  124. .ADD_TAG_REG = {29,23},
  125. .REMOVE_TAG_REG = {29,23},
  126. .ADD_TAG_BIT = {11,12,13,14,15,1,-1,-1,-1},
  127. .REMOVE_TAG_BIT = {6,7,8,9,10,0,-1,-1,-1},
  128. .SIMPLE_VLAN_REGISTERS = 0,
  129. .VLAN_LOOKUP_REG = {29,19},// +N/2
  130. .VLAN_LOOKUP_REG_5 = {30,18},
  131. .VLAN_LOOKUP_EVEN_BIT = {8,9,10,11,12,15,-1,-1,-1},
  132. .VLAN_LOOKUP_ODD_BIT = {0,1,2,3,4,7,-1,-1,-1},
  133. .TAG_VLAN_MASK_REG = {30,1}, // +N/2
  134. .TAG_VLAN_MASK_EVEN_BIT = {0,1,2,3,4,5,-1,-1,-1},
  135. .TAG_VLAN_MASK_ODD_BIT = {8,9,10,11,12,13,-1,-1,-1},
  136. .RESET_VAL = 0x175C,
  137. .RESET_REG = {30,0},
  138. .MODE_VAL = 0x175C,
  139. .MODE_REG = {29,31},
  140. .ROUTER_CONTROL_REG = {30,9},
  141. .ROUTER_EN_BIT = 3,
  142. .NUMLAN_GROUPS_MAX = 8,
  143. .NUMLAN_GROUPS_BIT = 0, // {0-2}
  144. .VLAN_CONTROL_REG = {30,9},
  145. .TAG_VLAN_BIT = 7,
  146. .NUM_PORTS = 6,
  147. .CPU_PORT = 5,
  148. .MII_REGISTER_EN = NOTSUPPORTED,
  149. };
  150. static const struct register_mappings IP175A = {
  151. .NAME = "IP175A",
  152. .MODEL_NO = 0x05,
  153. .VLAN_DEFAULT_TAG_REG = {
  154. {0,24},{0,25},{0,26},{0,27},{0,28},NOTSUPPORTED,
  155. NOTSUPPORTED,NOTSUPPORTED,NOTSUPPORTED
  156. },
  157. .ADD_TAG_REG = {0,23},
  158. .REMOVE_TAG_REG = {0,23},
  159. .ADD_TAG_BIT = {11,12,13,14,15,1,-1,-1,-1},
  160. .REMOVE_TAG_BIT = {6,7,8,9,10,0,-1,-1,-1},
  161. .SIMPLE_VLAN_REGISTERS = 1,
  162. // Only programmable via. EEPROM
  163. .VLAN_LOOKUP_REG = NOTSUPPORTED,// +N/2
  164. .VLAN_LOOKUP_REG_5 = NOTSUPPORTED,
  165. .VLAN_LOOKUP_EVEN_BIT = {8,9,10,11,12,15,-1,-1,-1},
  166. .VLAN_LOOKUP_ODD_BIT = {0,1,2,3,4,7,-1,-1,-1},
  167. .TAG_VLAN_MASK_REG = NOTSUPPORTED, // +N/2
  168. .TAG_VLAN_MASK_EVEN_BIT = {0,1,2,3,4,5,-1,-1,-1},
  169. .TAG_VLAN_MASK_ODD_BIT = {8,9,10,11,12,13,-1,-1,-1},
  170. .RESET_VAL = -1,
  171. .RESET_REG = NOTSUPPORTED,
  172. .MODE_VAL = 0,
  173. .MODE_REG = NOTSUPPORTED,
  174. .ROUTER_CONTROL_REG = NOTSUPPORTED,
  175. .VLAN_CONTROL_REG = NOTSUPPORTED,
  176. .TAG_VLAN_BIT = -1,
  177. .ROUTER_EN_BIT = -1,
  178. .NUMLAN_GROUPS_MAX = -1,
  179. .NUMLAN_GROUPS_BIT = -1, // {0-2}
  180. .NUM_PORTS = 6,
  181. .CPU_PORT = 5,
  182. .MII_REGISTER_EN = {0, 12},
  183. .MII_REGISTER_EN_BIT = 7,
  184. };
  185. struct ip175c_state {
  186. struct switch_dev dev;
  187. struct mii_bus *mii_bus;
  188. bool registered;
  189. int router_mode; // ROUTER_EN
  190. int vlan_enabled; // TAG_VLAN_EN
  191. struct port_state {
  192. u16 pvid;
  193. unsigned int shareports;
  194. } ports[MAX_PORTS];
  195. unsigned int add_tag;
  196. unsigned int remove_tag;
  197. int num_vlans;
  198. unsigned int vlan_ports[MAX_VLANS];
  199. const struct register_mappings *regs;
  200. reg proc_mii; /*!< phy/reg for the low level register access via /proc */
  201. char buf[80];
  202. };
  203. static int ip_phy_read(struct mii_bus *bus, int port, int reg)
  204. {
  205. int val;
  206. mutex_lock(&bus->mdio_lock);
  207. val = bus->read(bus, port, reg);
  208. mutex_unlock(&bus->mdio_lock);
  209. return val;
  210. }
  211. static int ip_phy_write(struct mii_bus *bus, int port, int reg, u16 val)
  212. {
  213. int err;
  214. mutex_lock(&bus->mdio_lock);
  215. err = bus->write(bus, port, reg, val);
  216. mutex_unlock(&bus->mdio_lock);
  217. return err;
  218. }
  219. static int getPhy (struct ip175c_state *state, reg mii)
  220. {
  221. struct mii_bus *bus = state->mii_bus;
  222. int val;
  223. if (!REG_SUPP(mii))
  224. return -EFAULT;
  225. val = ip_phy_read(bus, mii.p, mii.m);
  226. if (val < 0)
  227. pr_warning("IP175C: Unable to get MII register %d,%d: error %d\n", mii.p,mii.m,-val);
  228. return val;
  229. }
  230. static int setPhy (struct ip175c_state *state, reg mii, u16 value)
  231. {
  232. struct mii_bus *bus = state->mii_bus;
  233. int err;
  234. if (!REG_SUPP(mii))
  235. return -EFAULT;
  236. err = ip_phy_write(bus, mii.p, mii.m, value);
  237. if (err < 0) {
  238. pr_warning("IP175C: Unable to set MII register %d,%d to %d: error %d\n", mii.p,mii.m,value,-err);
  239. return err;
  240. }
  241. mdelay(2);
  242. getPhy(state, mii);
  243. return 0;
  244. }
  245. /**
  246. * These two macros are to simplify the mapping of logical bits to the bits in hardware.
  247. * NOTE: these macros will return if there is an error!
  248. */
  249. #define GET_PORT_BITS(state, bits, addr, bit_lookup) \
  250. do { \
  251. int i, val = getPhy((state), (addr)); \
  252. if (val < 0) \
  253. return val; \
  254. (bits) = 0; \
  255. for (i = 0; i < MAX_PORTS; i++) { \
  256. if ((bit_lookup)[i] == -1) continue; \
  257. if (val & (1<<(bit_lookup)[i])) \
  258. (bits) |= (1<<i); \
  259. } \
  260. } while (0)
  261. #define SET_PORT_BITS(state, bits, addr, bit_lookup) \
  262. do { \
  263. int i, val = getPhy((state), (addr)); \
  264. if (val < 0) \
  265. return val; \
  266. for (i = 0; i < MAX_PORTS; i++) { \
  267. unsigned int newmask = ((bits)&(1<<i)); \
  268. if ((bit_lookup)[i] == -1) continue; \
  269. val &= ~(1<<(bit_lookup)[i]); \
  270. val |= ((newmask>>i)<<(bit_lookup)[i]); \
  271. } \
  272. val = setPhy((state), (addr), val); \
  273. if (val < 0) \
  274. return val; \
  275. } while (0)
  276. static int get_model(struct ip175c_state *state)
  277. {
  278. reg oui_id_reg = {0, 2};
  279. int oui_id;
  280. reg model_no_reg = {0, 3};
  281. int model_no, model_no_orig;
  282. // 175 and 178 have the same oui ID.
  283. reg oui_id_reg_178c = {5, 2}; // returns error on IP175C.
  284. int is_178c = 0;
  285. oui_id = getPhy(state, oui_id_reg);
  286. if (oui_id != 0x0243) {
  287. // non
  288. return -ENODEV; // Not a IC+ chip.
  289. }
  290. oui_id = getPhy(state, oui_id_reg_178c);
  291. if (oui_id == 0x0243) {
  292. is_178c = 1;
  293. }
  294. model_no_orig = getPhy(state, model_no_reg);
  295. if (model_no_orig < 0) {
  296. return -ENODEV;
  297. }
  298. model_no = model_no_orig >> 4; // shift out revision number.
  299. model_no &= 0x3f; // only take the model number (low 6 bits).
  300. if (model_no == IP175A.MODEL_NO) {
  301. state->regs = &IP175A;
  302. } else if (model_no == IP175C.MODEL_NO) {
  303. if (is_178c) {
  304. state->regs = &IP178C;
  305. } else {
  306. state->regs = &IP175C;
  307. }
  308. } else {
  309. printk(KERN_WARNING "ip175c: Found an unknown IC+ switch with model number %02Xh.\n", model_no_orig);
  310. return -EPERM;
  311. }
  312. return 0;
  313. }
  314. /** Get only the vlan and router flags on the router **/
  315. static int get_flags(struct ip175c_state *state)
  316. {
  317. int val;
  318. state->router_mode = 0;
  319. state->vlan_enabled = -1; // hack
  320. state->num_vlans = 0;
  321. if (!REG_SUPP(state->regs->ROUTER_CONTROL_REG)) {
  322. return 0; // not an error if it doesn't support enable vlan.
  323. }
  324. val = getPhy(state, state->regs->ROUTER_CONTROL_REG);
  325. if (val < 0) {
  326. return val;
  327. }
  328. if (state->regs->ROUTER_EN_BIT >= 0)
  329. state->router_mode = ((val>>state->regs->ROUTER_EN_BIT) & 1);
  330. if (state->regs->NUMLAN_GROUPS_BIT >= 0) {
  331. state->num_vlans = (val >> state->regs->NUMLAN_GROUPS_BIT);
  332. state->num_vlans &= (state->regs->NUMLAN_GROUPS_MAX-1);
  333. state->num_vlans+=1; // does not include WAN.
  334. }
  335. val = getPhy(state, state->regs->VLAN_CONTROL_REG);
  336. if (val < 0) {
  337. return 0;
  338. }
  339. if (state->regs->TAG_VLAN_BIT >= 0)
  340. state->vlan_enabled = ((val>>state->regs->TAG_VLAN_BIT) & 1);
  341. return 0;
  342. }
  343. /** Get all state variables for VLAN mappings and port-based tagging. **/
  344. static int get_state(struct ip175c_state *state)
  345. {
  346. int i, j;
  347. int ret;
  348. ret = get_flags(state);
  349. if (ret < 0) {
  350. return ret;
  351. }
  352. GET_PORT_BITS(state, state->remove_tag,
  353. state->regs->REMOVE_TAG_REG, state->regs->REMOVE_TAG_BIT);
  354. GET_PORT_BITS(state, state->add_tag,
  355. state->regs->ADD_TAG_REG, state->regs->ADD_TAG_BIT);
  356. if (state->vlan_enabled == -1) {
  357. // not sure how to get this...
  358. state->vlan_enabled = (!state->remove_tag && !state->add_tag);
  359. }
  360. if (REG_SUPP(state->regs->VLAN_LOOKUP_REG)) {
  361. for (j=0; j<MAX_PORTS; j++) {
  362. state->ports[j].shareports = 0; // initialize them in case.
  363. }
  364. for (j=0; j<state->regs->NUM_PORTS; j++) {
  365. reg addr;
  366. const bitnum *bit_lookup = (j%2==0)?
  367. state->regs->VLAN_LOOKUP_EVEN_BIT:
  368. state->regs->VLAN_LOOKUP_ODD_BIT;
  369. addr = state->regs->VLAN_LOOKUP_REG;
  370. if (state->regs->SIMPLE_VLAN_REGISTERS) {
  371. addr.m += j;
  372. } else {
  373. switch (j) {
  374. case 0:
  375. case 1:
  376. break;
  377. case 2:
  378. case 3:
  379. addr.m+=1;
  380. break;
  381. case 4:
  382. addr.m+=2;
  383. break;
  384. case 5:
  385. addr = state->regs->VLAN_LOOKUP_REG_5;
  386. break;
  387. }
  388. }
  389. if (REG_SUPP(addr)) {
  390. GET_PORT_BITS(state, state->ports[j].shareports, addr, bit_lookup);
  391. }
  392. }
  393. } else {
  394. for (j=0; j<MAX_PORTS; j++) {
  395. state->ports[j].shareports = 0xff;
  396. }
  397. }
  398. for (i=0; i<MAX_PORTS; i++) {
  399. if (REG_SUPP(state->regs->VLAN_DEFAULT_TAG_REG[i])) {
  400. int val = getPhy(state, state->regs->VLAN_DEFAULT_TAG_REG[i]);
  401. if (val < 0) {
  402. return val;
  403. }
  404. state->ports[i].pvid = val;
  405. } else {
  406. state->ports[i].pvid = 0;
  407. }
  408. }
  409. if (REG_SUPP(state->regs->TAG_VLAN_MASK_REG)) {
  410. for (j=0; j<MAX_VLANS; j++) {
  411. reg addr = state->regs->TAG_VLAN_MASK_REG;
  412. const bitnum *bit_lookup = (j%2==0)?
  413. state->regs->TAG_VLAN_MASK_EVEN_BIT:
  414. state->regs->TAG_VLAN_MASK_ODD_BIT;
  415. if (state->regs->SIMPLE_VLAN_REGISTERS) {
  416. addr.m += j;
  417. } else {
  418. addr.m += j/2;
  419. }
  420. GET_PORT_BITS(state, state->vlan_ports[j], addr, bit_lookup);
  421. }
  422. } else {
  423. for (j=0; j<MAX_VLANS; j++) {
  424. state->vlan_ports[j] = 0;
  425. for (i=0; i<state->regs->NUM_PORTS; i++) {
  426. if ((state->ports[i].pvid == j) ||
  427. (state->ports[i].pvid == 0)) {
  428. state->vlan_ports[j] |= (1<<i);
  429. }
  430. }
  431. }
  432. }
  433. return 0;
  434. }
  435. /** Only update vlan and router flags in the switch **/
  436. static int update_flags(struct ip175c_state *state)
  437. {
  438. int val;
  439. if (!REG_SUPP(state->regs->ROUTER_CONTROL_REG)) {
  440. return 0;
  441. }
  442. val = getPhy(state, state->regs->ROUTER_CONTROL_REG);
  443. if (val < 0) {
  444. return val;
  445. }
  446. if (state->regs->ROUTER_EN_BIT >= 0) {
  447. if (state->router_mode) {
  448. val |= (1<<state->regs->ROUTER_EN_BIT);
  449. } else {
  450. val &= (~(1<<state->regs->ROUTER_EN_BIT));
  451. }
  452. }
  453. if (state->regs->TAG_VLAN_BIT >= 0) {
  454. if (state->vlan_enabled) {
  455. val |= (1<<state->regs->TAG_VLAN_BIT);
  456. } else {
  457. val &= (~(1<<state->regs->TAG_VLAN_BIT));
  458. }
  459. }
  460. if (state->regs->NUMLAN_GROUPS_BIT >= 0) {
  461. val &= (~((state->regs->NUMLAN_GROUPS_MAX-1)<<state->regs->NUMLAN_GROUPS_BIT));
  462. if (state->num_vlans > state->regs->NUMLAN_GROUPS_MAX) {
  463. val |= state->regs->NUMLAN_GROUPS_MAX << state->regs->NUMLAN_GROUPS_BIT;
  464. } else if (state->num_vlans >= 1) {
  465. val |= (state->num_vlans-1) << state->regs->NUMLAN_GROUPS_BIT;
  466. }
  467. }
  468. return setPhy(state, state->regs->ROUTER_CONTROL_REG, val);
  469. }
  470. /** Update all VLAN and port state. Usually you should call "correct_vlan_state" first. **/
  471. static int update_state(struct ip175c_state *state)
  472. {
  473. int j;
  474. int i;
  475. SET_PORT_BITS(state, state->add_tag,
  476. state->regs->ADD_TAG_REG, state->regs->ADD_TAG_BIT);
  477. SET_PORT_BITS(state, state->remove_tag,
  478. state->regs->REMOVE_TAG_REG, state->regs->REMOVE_TAG_BIT);
  479. if (REG_SUPP(state->regs->VLAN_LOOKUP_REG)) {
  480. for (j=0; j<state->regs->NUM_PORTS; j++) {
  481. reg addr;
  482. const bitnum *bit_lookup = (j%2==0)?
  483. state->regs->VLAN_LOOKUP_EVEN_BIT:
  484. state->regs->VLAN_LOOKUP_ODD_BIT;
  485. // duplicate code -- sorry
  486. addr = state->regs->VLAN_LOOKUP_REG;
  487. if (state->regs->SIMPLE_VLAN_REGISTERS) {
  488. addr.m += j;
  489. } else {
  490. switch (j) {
  491. case 0:
  492. case 1:
  493. break;
  494. case 2:
  495. case 3:
  496. addr.m+=1;
  497. break;
  498. case 4:
  499. addr.m+=2;
  500. break;
  501. case 5:
  502. addr = state->regs->VLAN_LOOKUP_REG_5;
  503. break;
  504. default:
  505. addr.m = -1; // shouldn't get here, but...
  506. break;
  507. }
  508. }
  509. //printf("shareports for %d is %02X\n",j,state->ports[j].shareports);
  510. if (REG_SUPP(addr)) {
  511. SET_PORT_BITS(state, state->ports[j].shareports, addr, bit_lookup);
  512. }
  513. }
  514. }
  515. if (REG_SUPP(state->regs->TAG_VLAN_MASK_REG)) {
  516. for (j=0; j<MAX_VLANS; j++) {
  517. reg addr = state->regs->TAG_VLAN_MASK_REG;
  518. const bitnum *bit_lookup = (j%2==0)?
  519. state->regs->TAG_VLAN_MASK_EVEN_BIT:
  520. state->regs->TAG_VLAN_MASK_ODD_BIT;
  521. unsigned int vlan_mask;
  522. if (state->regs->SIMPLE_VLAN_REGISTERS) {
  523. addr.m += j;
  524. } else {
  525. addr.m += j/2;
  526. }
  527. vlan_mask = state->vlan_ports[j];
  528. SET_PORT_BITS(state, vlan_mask, addr, bit_lookup);
  529. }
  530. }
  531. for (i=0; i<MAX_PORTS; i++) {
  532. if (REG_SUPP(state->regs->VLAN_DEFAULT_TAG_REG[i])) {
  533. int err = setPhy(state, state->regs->VLAN_DEFAULT_TAG_REG[i],
  534. state->ports[i].pvid);
  535. if (err < 0) {
  536. return err;
  537. }
  538. }
  539. }
  540. return update_flags(state);
  541. // software reset: 30.0 = 0x175C
  542. // wait 2ms
  543. // reset ports 0,1,2,3,4
  544. }
  545. /*
  546. Uses only the VLAN port mask and the add tag mask to generate the other fields:
  547. which ports are part of the same VLAN, removing vlan tags, and VLAN tag ids.
  548. */
  549. static void correct_vlan_state(struct ip175c_state *state)
  550. {
  551. int i, j;
  552. state->num_vlans = 0;
  553. for (i=0; i<MAX_VLANS; i++) {
  554. if (state->vlan_ports[i] != 0) {
  555. state->num_vlans = i+1; //hack -- we need to store the "set" vlans somewhere...
  556. }
  557. }
  558. for (i=0; i<state->regs->NUM_PORTS; i++) {
  559. unsigned int portmask = (1<<i);
  560. if (!state->vlan_enabled) {
  561. // share with everybody!
  562. state->ports[i].shareports = (1<<state->regs->NUM_PORTS)-1;
  563. continue;
  564. }
  565. state->ports[i].shareports = portmask;
  566. for (j=0; j<MAX_VLANS; j++) {
  567. if (state->vlan_ports[j] & portmask)
  568. state->ports[i].shareports |= state->vlan_ports[j];
  569. }
  570. }
  571. state->remove_tag = ((~state->add_tag) & ((1<<state->regs->NUM_PORTS)-1));
  572. }
  573. static int ip175c_get_enable_vlan(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  574. {
  575. struct ip175c_state *state = dev->priv;
  576. int err;
  577. err = get_state(state); // may be set in get_state.
  578. if (err < 0)
  579. return err;
  580. val->value.i = state->vlan_enabled;
  581. return 0;
  582. }
  583. static int ip175c_set_enable_vlan(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  584. {
  585. struct ip175c_state *state = dev->priv;
  586. int err;
  587. int enable;
  588. int i;
  589. err = get_state(state);
  590. if (err < 0)
  591. return err;
  592. enable = val->value.i;
  593. if (state->vlan_enabled == enable) {
  594. // do not change any state.
  595. return 0;
  596. }
  597. state->vlan_enabled = enable;
  598. // Otherwise, if we are switching state, set fields to a known default.
  599. state->remove_tag = 0x0000;
  600. state->add_tag = 0x0000;
  601. for (i = 0; i < MAX_PORTS; i++)
  602. state->ports[i].shareports = 0xffff;
  603. for (i = 0; i < MAX_VLANS; i++)
  604. state->vlan_ports[i] = 0x0;
  605. if (state->vlan_enabled) {
  606. // updates other fields only based off vlan_ports and add_tag fields.
  607. // Note that by default, no ports are in any vlans.
  608. correct_vlan_state(state);
  609. }
  610. // ensure sane defaults?
  611. return update_state(state);
  612. }
  613. static int ip175c_get_ports(struct switch_dev *dev, struct switch_val *val)
  614. {
  615. struct ip175c_state *state = dev->priv;
  616. int err;
  617. int b;
  618. int ind;
  619. unsigned int ports;
  620. if (val->port_vlan >= dev->vlans || val->port_vlan < 0)
  621. return -EINVAL;
  622. err = get_state(state);
  623. if (err<0)
  624. return err;
  625. ports = state->vlan_ports[val->port_vlan];
  626. b = 0;
  627. ind = 0;
  628. while (b < MAX_PORTS) {
  629. if (ports&1) {
  630. int istagged = ((state->add_tag >> b) & 1);
  631. val->value.ports[ind].id = b;
  632. val->value.ports[ind].flags = (istagged << SWITCH_PORT_FLAG_TAGGED);
  633. ind++;
  634. }
  635. b++;
  636. ports >>= 1;
  637. }
  638. val->len = ind;
  639. return 0;
  640. }
  641. static int ip175c_set_ports(struct switch_dev *dev, struct switch_val *val)
  642. {
  643. struct ip175c_state *state = dev->priv;
  644. int i;
  645. int err;
  646. if (val->port_vlan >= dev->vlans || val->port_vlan < 0)
  647. return -EINVAL;
  648. err = get_state(state);
  649. if (err < 0)
  650. return err;
  651. state->vlan_ports[val->port_vlan] = 0;
  652. for (i = 0; i < val->len; i++) {
  653. int bitmask = (1<<val->value.ports[i].id);
  654. state->vlan_ports[val->port_vlan] |= bitmask;
  655. if (val->value.ports[i].flags & (1<<SWITCH_PORT_FLAG_TAGGED)) {
  656. state->add_tag |= bitmask;
  657. } else {
  658. state->add_tag &= (~bitmask);
  659. }
  660. }
  661. correct_vlan_state(state);
  662. err = update_state(state);
  663. return err;
  664. }
  665. static int ip175c_apply(struct switch_dev *dev)
  666. {
  667. struct ip175c_state *state = dev->priv;
  668. int err;
  669. err = get_flags(state);
  670. if (err < 0)
  671. return err;
  672. if (REG_SUPP(state->regs->MII_REGISTER_EN)){
  673. int val = getPhy(state, state->regs->MII_REGISTER_EN);
  674. if (val < 0) {
  675. return val;
  676. }
  677. val |= (1<<state->regs->MII_REGISTER_EN_BIT);
  678. return setPhy(state, state->regs->MII_REGISTER_EN, val);
  679. }
  680. return 0;
  681. }
  682. static int ip175c_reset(struct switch_dev *dev)
  683. {
  684. struct ip175c_state *state = dev->priv;
  685. int i, err;
  686. err = get_flags(state);
  687. if (err < 0)
  688. return err;
  689. if (REG_SUPP(state->regs->RESET_REG)) {
  690. err = setPhy(state, state->regs->RESET_REG, state->regs->RESET_VAL);
  691. if (err < 0)
  692. return err;
  693. err = getPhy(state, state->regs->RESET_REG);
  694. /* data sheet specifies reset period is 2 msec
  695. (don't see any mention of the 2ms delay in the IP178C spec, only
  696. in IP175C, but it can't hurt.) */
  697. mdelay(2);
  698. }
  699. if (REG_SUPP(state->regs->MODE_REG)) {
  700. err = setPhy(state, state->regs->MODE_REG, state->regs->RESET_VAL);
  701. if (err < 0)
  702. return err;
  703. err = getPhy(state, state->regs->MODE_REG);
  704. }
  705. /* reset switch ports */
  706. for (i = 0; i < 5; i++) {
  707. err = state->mii_bus->write(state->mii_bus, i,
  708. MII_BMCR, BMCR_RESET);
  709. if (err < 0)
  710. return err;
  711. }
  712. return 0;
  713. }
  714. /*! get the current register number */
  715. static int ip175c_get_tagged(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  716. {
  717. struct ip175c_state *state = dev->priv;
  718. int err;
  719. err = get_state(state);
  720. if (err < 0)
  721. return err;
  722. if (state->add_tag & (1<<val->port_vlan)) {
  723. if (state->remove_tag & (1<<val->port_vlan))
  724. val->value.i = 3; // shouldn't ever happen.
  725. else
  726. val->value.i = 1;
  727. } else {
  728. if (state->remove_tag & (1<<val->port_vlan))
  729. val->value.i = 0;
  730. else
  731. val->value.i = 2;
  732. }
  733. return 0;
  734. }
  735. /*! set a new register address for low level access to registers */
  736. static int ip175c_set_tagged(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  737. {
  738. struct ip175c_state *state = dev->priv;
  739. int err;
  740. err = get_state(state);
  741. if (err < 0)
  742. return err;
  743. state->add_tag &= ~(1<<val->port_vlan);
  744. state->remove_tag &= ~(1<<val->port_vlan);
  745. if (val->value.i == 0)
  746. state->remove_tag |= (1<<val->port_vlan);
  747. if (val->value.i == 1)
  748. state->add_tag |= (1<<val->port_vlan);
  749. SET_PORT_BITS(state, state->add_tag,
  750. state->regs->ADD_TAG_REG, state->regs->ADD_TAG_BIT);
  751. SET_PORT_BITS(state, state->remove_tag,
  752. state->regs->REMOVE_TAG_REG, state->regs->REMOVE_TAG_BIT);
  753. return err;
  754. }
  755. /* low level /proc procedures */
  756. /*! get the current phy address */
  757. static int ip175c_get_phy(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  758. {
  759. struct ip175c_state *state = dev->priv;
  760. val->value.i = state->proc_mii.p;
  761. return 0;
  762. }
  763. /*! set a new phy address for low level access to registers */
  764. static int ip175c_set_phy(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  765. {
  766. struct ip175c_state *state = dev->priv;
  767. int new_reg = val->value.i;
  768. if (new_reg < 0 || new_reg > 31)
  769. state->proc_mii.p = (u16)-1;
  770. else
  771. state->proc_mii.p = (u16)new_reg;
  772. return 0;
  773. }
  774. /*! get the current register number */
  775. static int ip175c_get_reg(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  776. {
  777. struct ip175c_state *state = dev->priv;
  778. val->value.i = state->proc_mii.m;
  779. return 0;
  780. }
  781. /*! set a new register address for low level access to registers */
  782. static int ip175c_set_reg(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  783. {
  784. struct ip175c_state *state = dev->priv;
  785. int new_reg = val->value.i;
  786. if (new_reg < 0 || new_reg > 31)
  787. state->proc_mii.m = (u16)-1;
  788. else
  789. state->proc_mii.m = (u16)new_reg;
  790. return 0;
  791. }
  792. /*! get the register content of state->proc_mii */
  793. static int ip175c_get_val(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  794. {
  795. struct ip175c_state *state = dev->priv;
  796. int retval = -EINVAL;
  797. if (REG_SUPP(state->proc_mii))
  798. retval = getPhy(state, state->proc_mii);
  799. if (retval < 0) {
  800. return retval;
  801. } else {
  802. val->value.i = retval;
  803. return 0;
  804. }
  805. }
  806. /*! write a value to the register defined by phy/reg above */
  807. static int ip175c_set_val(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  808. {
  809. struct ip175c_state *state = dev->priv;
  810. int myval, err = 0;
  811. myval = val->value.i;
  812. if (myval <= 0xffff && myval >= 0 && REG_SUPP(state->proc_mii)) {
  813. err = setPhy(state, state->proc_mii, (u16)myval);
  814. }
  815. return err;
  816. }
  817. static int ip175c_read_name(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  818. {
  819. struct ip175c_state *state = dev->priv;
  820. val->value.s = state->regs->NAME; // just a const pointer, won't be freed by swconfig.
  821. return 0;
  822. }
  823. static int ip175c_set_port_speed(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  824. {
  825. struct ip175c_state *state = dev->priv;
  826. struct mii_bus *bus = state->mii_bus;
  827. int nr = val->port_vlan;
  828. int ctrl;
  829. int autoneg;
  830. int speed;
  831. if (val->value.i == 100) {
  832. speed = 1;
  833. autoneg = 0;
  834. } else if (val->value.i == 10) {
  835. speed = 0;
  836. autoneg = 0;
  837. } else {
  838. autoneg = 1;
  839. speed = 1;
  840. }
  841. /* can't set speed for cpu port */
  842. if (nr == state->regs->CPU_PORT)
  843. return -EINVAL;
  844. if (nr >= dev->ports || nr < 0)
  845. return -EINVAL;
  846. ctrl = ip_phy_read(bus, nr, 0);
  847. if (ctrl < 0)
  848. return -EIO;
  849. ctrl &= (~(1<<12));
  850. ctrl &= (~(1<<13));
  851. ctrl |= (autoneg<<12);
  852. ctrl |= (speed<<13);
  853. return ip_phy_write(bus, nr, 0, ctrl);
  854. }
  855. static int ip175c_get_port_speed(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  856. {
  857. struct ip175c_state *state = dev->priv;
  858. struct mii_bus *bus = state->mii_bus;
  859. int nr = val->port_vlan;
  860. int speed, status;
  861. if (nr == state->regs->CPU_PORT) {
  862. val->value.i = 100;
  863. return 0;
  864. }
  865. if (nr >= dev->ports || nr < 0)
  866. return -EINVAL;
  867. status = ip_phy_read(bus, nr, 1);
  868. speed = ip_phy_read(bus, nr, 18);
  869. if (status < 0 || speed < 0)
  870. return -EIO;
  871. if (status & 4)
  872. val->value.i = ((speed & (1<<11)) ? 100 : 10);
  873. else
  874. val->value.i = 0;
  875. return 0;
  876. }
  877. static int ip175c_get_port_status(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val)
  878. {
  879. struct ip175c_state *state = dev->priv;
  880. struct mii_bus *bus = state->mii_bus;
  881. int ctrl, speed, status;
  882. int nr = val->port_vlan;
  883. int len;
  884. char *buf = state->buf; // fixed-length at 80.
  885. if (nr == state->regs->CPU_PORT) {
  886. sprintf(buf, "up, 100 Mbps, cpu port");
  887. val->value.s = buf;
  888. return 0;
  889. }
  890. if (nr >= dev->ports || nr < 0)
  891. return -EINVAL;
  892. ctrl = ip_phy_read(bus, nr, 0);
  893. status = ip_phy_read(bus, nr, 1);
  894. speed = ip_phy_read(bus, nr, 18);
  895. if (ctrl < 0 || status < 0 || speed < 0)
  896. return -EIO;
  897. if (status & 4)
  898. len = sprintf(buf, "up, %d Mbps, %s duplex",
  899. ((speed & (1<<11)) ? 100 : 10),
  900. ((speed & (1<<10)) ? "full" : "half"));
  901. else
  902. len = sprintf(buf, "down");
  903. if (ctrl & (1<<12)) {
  904. len += sprintf(buf+len, ", auto-negotiate");
  905. if (!(status & (1<<5)))
  906. len += sprintf(buf+len, " (in progress)");
  907. } else {
  908. len += sprintf(buf+len, ", fixed speed (%d)",
  909. ((ctrl & (1<<13)) ? 100 : 10));
  910. }
  911. buf[len] = '\0';
  912. val->value.s = buf;
  913. return 0;
  914. }
  915. static int ip175c_get_pvid(struct switch_dev *dev, int port, int *val)
  916. {
  917. struct ip175c_state *state = dev->priv;
  918. *val = state->ports[port].pvid;
  919. return 0;
  920. }
  921. static int ip175c_set_pvid(struct switch_dev *dev, int port, int val)
  922. {
  923. struct ip175c_state *state = dev->priv;
  924. state->ports[port].pvid = val;
  925. if (!REG_SUPP(state->regs->VLAN_DEFAULT_TAG_REG[port]))
  926. return 0;
  927. return setPhy(state, state->regs->VLAN_DEFAULT_TAG_REG[port], val);
  928. }
  929. enum Ports {
  930. IP175C_PORT_STATUS,
  931. IP175C_PORT_LINK,
  932. IP175C_PORT_TAGGED,
  933. IP175C_PORT_PVID,
  934. };
  935. enum Globals {
  936. IP175C_ENABLE_VLAN,
  937. IP175C_GET_NAME,
  938. IP175C_REGISTER_PHY,
  939. IP175C_REGISTER_MII,
  940. IP175C_REGISTER_VALUE,
  941. IP175C_REGISTER_ERRNO,
  942. };
  943. static const struct switch_attr ip175c_global[] = {
  944. [IP175C_ENABLE_VLAN] = {
  945. .id = IP175C_ENABLE_VLAN,
  946. .type = SWITCH_TYPE_INT,
  947. .name = "enable_vlan",
  948. .description = "Flag to enable or disable VLANs and tagging",
  949. .get = ip175c_get_enable_vlan,
  950. .set = ip175c_set_enable_vlan,
  951. },
  952. [IP175C_GET_NAME] = {
  953. .id = IP175C_GET_NAME,
  954. .type = SWITCH_TYPE_STRING,
  955. .description = "Returns the type of IC+ chip.",
  956. .name = "name",
  957. .get = ip175c_read_name,
  958. .set = NULL,
  959. },
  960. /* jal: added for low level debugging etc. */
  961. [IP175C_REGISTER_PHY] = {
  962. .id = IP175C_REGISTER_PHY,
  963. .type = SWITCH_TYPE_INT,
  964. .description = "Direct register access: set phy (0-4, or 29,30,31)",
  965. .name = "phy",
  966. .get = ip175c_get_phy,
  967. .set = ip175c_set_phy,
  968. },
  969. [IP175C_REGISTER_MII] = {
  970. .id = IP175C_REGISTER_MII,
  971. .type = SWITCH_TYPE_INT,
  972. .description = "Direct register access: set mii number (0-31)",
  973. .name = "reg",
  974. .get = ip175c_get_reg,
  975. .set = ip175c_set_reg,
  976. },
  977. [IP175C_REGISTER_VALUE] = {
  978. .id = IP175C_REGISTER_VALUE,
  979. .type = SWITCH_TYPE_INT,
  980. .description = "Direct register access: read/write to register (0-65535)",
  981. .name = "val",
  982. .get = ip175c_get_val,
  983. .set = ip175c_set_val,
  984. },
  985. };
  986. static const struct switch_attr ip175c_vlan[] = {
  987. };
  988. static const struct switch_attr ip175c_port[] = {
  989. [IP175C_PORT_STATUS] = {
  990. .id = IP175C_PORT_STATUS,
  991. .type = SWITCH_TYPE_STRING,
  992. .description = "Returns Detailed port status",
  993. .name = "status",
  994. .get = ip175c_get_port_status,
  995. .set = NULL,
  996. },
  997. [IP175C_PORT_LINK] = {
  998. .id = IP175C_PORT_LINK,
  999. .type = SWITCH_TYPE_INT,
  1000. .description = "Link speed. Can write 0 for auto-negotiate, or 10 or 100",
  1001. .name = "link",
  1002. .get = ip175c_get_port_speed,
  1003. .set = ip175c_set_port_speed,
  1004. },
  1005. [IP175C_PORT_TAGGED] = {
  1006. .id = IP175C_PORT_LINK,
  1007. .type = SWITCH_TYPE_INT,
  1008. .description = "0 = untag, 1 = add tags, 2 = do not alter (This value is reset if vlans are altered)",
  1009. .name = "tagged",
  1010. .get = ip175c_get_tagged,
  1011. .set = ip175c_set_tagged,
  1012. },
  1013. };
  1014. static int ip175c_probe(struct phy_device *pdev)
  1015. {
  1016. struct ip175c_state *state;
  1017. struct switch_dev *dev;
  1018. int err;
  1019. /* we only attach to PHY 0, but use all available PHYs */
  1020. if (pdev->addr != 0)
  1021. return -ENODEV;
  1022. state = kzalloc(sizeof(*state), GFP_KERNEL);
  1023. if (!state)
  1024. return -ENOMEM;
  1025. dev = &state->dev;
  1026. dev->attr_global.attr = ip175c_global;
  1027. dev->attr_global.n_attr = ARRAY_SIZE(ip175c_global);
  1028. dev->attr_port.attr = ip175c_port;
  1029. dev->attr_port.n_attr = ARRAY_SIZE(ip175c_port);
  1030. dev->attr_vlan.attr = ip175c_vlan;
  1031. dev->attr_vlan.n_attr = ARRAY_SIZE(ip175c_vlan);
  1032. dev->get_port_pvid = ip175c_get_pvid;
  1033. dev->set_port_pvid = ip175c_set_pvid;
  1034. dev->get_vlan_ports = ip175c_get_ports;
  1035. dev->set_vlan_ports = ip175c_set_ports;
  1036. dev->apply_config = ip175c_apply;
  1037. dev->reset_switch = ip175c_reset;
  1038. dev->priv = state;
  1039. pdev->priv = state;
  1040. state->mii_bus = pdev->bus;
  1041. err = get_model(state);
  1042. if (err < 0)
  1043. goto error;
  1044. dev->vlans = MAX_VLANS;
  1045. dev->cpu_port = state->regs->CPU_PORT;
  1046. dev->ports = state->regs->NUM_PORTS;
  1047. dev->name = state->regs->NAME;
  1048. return 0;
  1049. error:
  1050. kfree(state);
  1051. return err;
  1052. }
  1053. static int ip175c_config_init(struct phy_device *pdev)
  1054. {
  1055. struct ip175c_state *state = pdev->priv;
  1056. struct net_device *dev = pdev->attached_dev;
  1057. int err;
  1058. pdev->irq = PHY_IGNORE_INTERRUPT;
  1059. err = register_switch(&state->dev, dev);
  1060. if (err < 0)
  1061. return err;
  1062. ip175c_reset(&state->dev);
  1063. state->registered = true;
  1064. netif_carrier_on(pdev->attached_dev);
  1065. return 0;
  1066. }
  1067. static void ip175c_remove(struct phy_device *pdev)
  1068. {
  1069. struct ip175c_state *state = pdev->priv;
  1070. if (state->registered)
  1071. unregister_switch(&state->dev);
  1072. kfree(state);
  1073. }
  1074. static int ip175c_config_aneg(struct phy_device *pdev)
  1075. {
  1076. return 0;
  1077. }
  1078. static int ip175c_read_status(struct phy_device *pdev)
  1079. {
  1080. pdev->speed = SPEED_100;
  1081. pdev->duplex = DUPLEX_FULL;
  1082. pdev->pause = pdev->asym_pause = 0;
  1083. return 0;
  1084. }
  1085. static struct phy_driver ip175c_driver = {
  1086. .name = "IC+ IP175C",
  1087. .phy_id = 0x02430d80,
  1088. .phy_id_mask = 0x0ffffff0,
  1089. .features = PHY_BASIC_FEATURES,
  1090. .probe = ip175c_probe,
  1091. .remove = ip175c_remove,
  1092. .config_init = ip175c_config_init,
  1093. .config_aneg = ip175c_config_aneg,
  1094. .read_status = ip175c_read_status,
  1095. .driver = { .owner = THIS_MODULE },
  1096. };
  1097. int __init ip175c_init(void)
  1098. {
  1099. return phy_driver_register(&ip175c_driver);
  1100. }
  1101. void __exit ip175c_exit(void)
  1102. {
  1103. phy_driver_unregister(&ip175c_driver);
  1104. }
  1105. MODULE_AUTHOR("Patrick Horn <[email protected]>");
  1106. MODULE_AUTHOR("Felix Fietkau <[email protected]>");
  1107. MODULE_LICENSE("GPL");
  1108. module_init(ip175c_init);
  1109. module_exit(ip175c_exit);