e1000_param.c 21 KB

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  1. /*******************************************************************************
  2. Copyright(c) 1999 - 2005 Intel Corporation. All rights reserved.
  3. This program is free software; you can redistribute it and/or modify it
  4. under the terms of the GNU General Public License as published by the Free
  5. Software Foundation; either version 2 of the License, or (at your option)
  6. any later version.
  7. This program is distributed in the hope that it will be useful, but WITHOUT
  8. ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  9. FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  10. more details.
  11. You should have received a copy of the GNU General Public License along with
  12. this program; if not, write to the Free Software Foundation, Inc., 59
  13. Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  14. The full GNU General Public License is included in this distribution in the
  15. file called LICENSE.
  16. Contact Information:
  17. Linux NICS <linux.nics@intel.com>
  18. Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
  19. *******************************************************************************/
  20. #include "e1000.h"
  21. /* This is the only thing that needs to be changed to adjust the
  22. * maximum number of ports that the driver can manage.
  23. */
  24. #define E1000_MAX_NIC 32
  25. #define OPTION_UNSET -1
  26. #define OPTION_DISABLED 0
  27. #define OPTION_ENABLED 1
  28. /* All parameters are treated the same, as an integer array of values.
  29. * This macro just reduces the need to repeat the same declaration code
  30. * over and over (plus this helps to avoid typo bugs).
  31. */
  32. #define E1000_PARAM_INIT { [0 ... E1000_MAX_NIC] = OPTION_UNSET }
  33. #define E1000_PARAM(X, desc) \
  34. static int __devinitdata X[E1000_MAX_NIC+1] = E1000_PARAM_INIT; \
  35. static int num_##X = 0; \
  36. module_param_array_named(X, X, int, &num_##X, 0); \
  37. MODULE_PARM_DESC(X, desc);
  38. /* Transmit Descriptor Count
  39. *
  40. * Valid Range: 80-256 for 82542 and 82543 gigabit ethernet controllers
  41. * Valid Range: 80-4096 for 82544 and newer
  42. *
  43. * Default Value: 256
  44. */
  45. E1000_PARAM(TxDescriptors, "Number of transmit descriptors");
  46. /* Receive Descriptor Count
  47. *
  48. * Valid Range: 80-256 for 82542 and 82543 gigabit ethernet controllers
  49. * Valid Range: 80-4096 for 82544 and newer
  50. *
  51. * Default Value: 256
  52. */
  53. E1000_PARAM(RxDescriptors, "Number of receive descriptors");
  54. /* User Specified Speed Override
  55. *
  56. * Valid Range: 0, 10, 100, 1000
  57. * - 0 - auto-negotiate at all supported speeds
  58. * - 10 - only link at 10 Mbps
  59. * - 100 - only link at 100 Mbps
  60. * - 1000 - only link at 1000 Mbps
  61. *
  62. * Default Value: 0
  63. */
  64. E1000_PARAM(Speed, "Speed setting");
  65. /* User Specified Duplex Override
  66. *
  67. * Valid Range: 0-2
  68. * - 0 - auto-negotiate for duplex
  69. * - 1 - only link at half duplex
  70. * - 2 - only link at full duplex
  71. *
  72. * Default Value: 0
  73. */
  74. E1000_PARAM(Duplex, "Duplex setting");
  75. /* Auto-negotiation Advertisement Override
  76. *
  77. * Valid Range: 0x01-0x0F, 0x20-0x2F (copper); 0x20 (fiber)
  78. *
  79. * The AutoNeg value is a bit mask describing which speed and duplex
  80. * combinations should be advertised during auto-negotiation.
  81. * The supported speed and duplex modes are listed below
  82. *
  83. * Bit 7 6 5 4 3 2 1 0
  84. * Speed (Mbps) N/A N/A 1000 N/A 100 100 10 10
  85. * Duplex Full Full Half Full Half
  86. *
  87. * Default Value: 0x2F (copper); 0x20 (fiber)
  88. */
  89. E1000_PARAM(AutoNeg, "Advertised auto-negotiation setting");
  90. /* User Specified Flow Control Override
  91. *
  92. * Valid Range: 0-3
  93. * - 0 - No Flow Control
  94. * - 1 - Rx only, respond to PAUSE frames but do not generate them
  95. * - 2 - Tx only, generate PAUSE frames but ignore them on receive
  96. * - 3 - Full Flow Control Support
  97. *
  98. * Default Value: Read flow control settings from the EEPROM
  99. */
  100. E1000_PARAM(FlowControl, "Flow Control setting");
  101. /* XsumRX - Receive Checksum Offload Enable/Disable
  102. *
  103. * Valid Range: 0, 1
  104. * - 0 - disables all checksum offload
  105. * - 1 - enables receive IP/TCP/UDP checksum offload
  106. * on 82543 and newer -based NICs
  107. *
  108. * Default Value: 1
  109. */
  110. E1000_PARAM(XsumRX, "Disable or enable Receive Checksum offload");
  111. /* Transmit Interrupt Delay in units of 1.024 microseconds
  112. *
  113. * Valid Range: 0-65535
  114. *
  115. * Default Value: 64
  116. */
  117. E1000_PARAM(TxIntDelay, "Transmit Interrupt Delay");
  118. /* Transmit Absolute Interrupt Delay in units of 1.024 microseconds
  119. *
  120. * Valid Range: 0-65535
  121. *
  122. * Default Value: 0
  123. */
  124. E1000_PARAM(TxAbsIntDelay, "Transmit Absolute Interrupt Delay");
  125. /* Receive Interrupt Delay in units of 1.024 microseconds
  126. *
  127. * Valid Range: 0-65535
  128. *
  129. * Default Value: 0
  130. */
  131. E1000_PARAM(RxIntDelay, "Receive Interrupt Delay");
  132. /* Receive Absolute Interrupt Delay in units of 1.024 microseconds
  133. *
  134. * Valid Range: 0-65535
  135. *
  136. * Default Value: 128
  137. */
  138. E1000_PARAM(RxAbsIntDelay, "Receive Absolute Interrupt Delay");
  139. /* Interrupt Throttle Rate (interrupts/sec)
  140. *
  141. * Valid Range: 100-100000 (0=off, 1=dynamic)
  142. *
  143. * Default Value: 1
  144. */
  145. E1000_PARAM(InterruptThrottleRate, "Interrupt Throttling Rate");
  146. #define AUTONEG_ADV_DEFAULT 0x2F
  147. #define AUTONEG_ADV_MASK 0x2F
  148. #define FLOW_CONTROL_DEFAULT FLOW_CONTROL_FULL
  149. #define DEFAULT_RDTR 0
  150. #define MAX_RXDELAY 0xFFFF
  151. #define MIN_RXDELAY 0
  152. #define DEFAULT_RADV 128
  153. #define MAX_RXABSDELAY 0xFFFF
  154. #define MIN_RXABSDELAY 0
  155. #define DEFAULT_TIDV 64
  156. #define MAX_TXDELAY 0xFFFF
  157. #define MIN_TXDELAY 0
  158. #define DEFAULT_TADV 64
  159. #define MAX_TXABSDELAY 0xFFFF
  160. #define MIN_TXABSDELAY 0
  161. #define DEFAULT_ITR 8000
  162. #define MAX_ITR 100000
  163. #define MIN_ITR 100
  164. struct e1000_option {
  165. enum { enable_option, range_option, list_option } type;
  166. char *name;
  167. char *err;
  168. int def;
  169. union {
  170. struct { /* range_option info */
  171. int min;
  172. int max;
  173. } r;
  174. struct { /* list_option info */
  175. int nr;
  176. struct e1000_opt_list { int i; char *str; } *p;
  177. } l;
  178. } arg;
  179. };
  180. static int __devinit
  181. e1000_validate_option(int *value, struct e1000_option *opt,
  182. struct e1000_adapter *adapter)
  183. {
  184. if(*value == OPTION_UNSET) {
  185. *value = opt->def;
  186. return 0;
  187. }
  188. switch (opt->type) {
  189. case enable_option:
  190. switch (*value) {
  191. case OPTION_ENABLED:
  192. DPRINTK(PROBE, INFO, "%s Enabled\n", opt->name);
  193. return 0;
  194. case OPTION_DISABLED:
  195. DPRINTK(PROBE, INFO, "%s Disabled\n", opt->name);
  196. return 0;
  197. }
  198. break;
  199. case range_option:
  200. if(*value >= opt->arg.r.min && *value <= opt->arg.r.max) {
  201. DPRINTK(PROBE, INFO,
  202. "%s set to %i\n", opt->name, *value);
  203. return 0;
  204. }
  205. break;
  206. case list_option: {
  207. int i;
  208. struct e1000_opt_list *ent;
  209. for(i = 0; i < opt->arg.l.nr; i++) {
  210. ent = &opt->arg.l.p[i];
  211. if(*value == ent->i) {
  212. if(ent->str[0] != '\0')
  213. DPRINTK(PROBE, INFO, "%s\n", ent->str);
  214. return 0;
  215. }
  216. }
  217. }
  218. break;
  219. default:
  220. BUG();
  221. }
  222. DPRINTK(PROBE, INFO, "Invalid %s specified (%i) %s\n",
  223. opt->name, *value, opt->err);
  224. *value = opt->def;
  225. return -1;
  226. }
  227. static void e1000_check_fiber_options(struct e1000_adapter *adapter);
  228. static void e1000_check_copper_options(struct e1000_adapter *adapter);
  229. /**
  230. * e1000_check_options - Range Checking for Command Line Parameters
  231. * @adapter: board private structure
  232. *
  233. * This routine checks all command line parameters for valid user
  234. * input. If an invalid value is given, or if no user specified
  235. * value exists, a default value is used. The final value is stored
  236. * in a variable in the adapter structure.
  237. **/
  238. void __devinit
  239. e1000_check_options(struct e1000_adapter *adapter)
  240. {
  241. int bd = adapter->bd_number;
  242. if(bd >= E1000_MAX_NIC) {
  243. DPRINTK(PROBE, NOTICE,
  244. "Warning: no configuration for board #%i\n", bd);
  245. DPRINTK(PROBE, NOTICE, "Using defaults for all values\n");
  246. }
  247. { /* Transmit Descriptor Count */
  248. struct e1000_option opt = {
  249. .type = range_option,
  250. .name = "Transmit Descriptors",
  251. .err = "using default of "
  252. __MODULE_STRING(E1000_DEFAULT_TXD),
  253. .def = E1000_DEFAULT_TXD,
  254. .arg = { .r = { .min = E1000_MIN_TXD }}
  255. };
  256. struct e1000_desc_ring *tx_ring = &adapter->tx_ring;
  257. e1000_mac_type mac_type = adapter->hw.mac_type;
  258. opt.arg.r.max = mac_type < e1000_82544 ?
  259. E1000_MAX_TXD : E1000_MAX_82544_TXD;
  260. if (num_TxDescriptors > bd) {
  261. tx_ring->count = TxDescriptors[bd];
  262. e1000_validate_option(&tx_ring->count, &opt, adapter);
  263. E1000_ROUNDUP(tx_ring->count,
  264. REQ_TX_DESCRIPTOR_MULTIPLE);
  265. } else {
  266. tx_ring->count = opt.def;
  267. }
  268. }
  269. { /* Receive Descriptor Count */
  270. struct e1000_option opt = {
  271. .type = range_option,
  272. .name = "Receive Descriptors",
  273. .err = "using default of "
  274. __MODULE_STRING(E1000_DEFAULT_RXD),
  275. .def = E1000_DEFAULT_RXD,
  276. .arg = { .r = { .min = E1000_MIN_RXD }}
  277. };
  278. struct e1000_desc_ring *rx_ring = &adapter->rx_ring;
  279. e1000_mac_type mac_type = adapter->hw.mac_type;
  280. opt.arg.r.max = mac_type < e1000_82544 ? E1000_MAX_RXD :
  281. E1000_MAX_82544_RXD;
  282. if (num_RxDescriptors > bd) {
  283. rx_ring->count = RxDescriptors[bd];
  284. e1000_validate_option(&rx_ring->count, &opt, adapter);
  285. E1000_ROUNDUP(rx_ring->count,
  286. REQ_RX_DESCRIPTOR_MULTIPLE);
  287. } else {
  288. rx_ring->count = opt.def;
  289. }
  290. }
  291. { /* Checksum Offload Enable/Disable */
  292. struct e1000_option opt = {
  293. .type = enable_option,
  294. .name = "Checksum Offload",
  295. .err = "defaulting to Enabled",
  296. .def = OPTION_ENABLED
  297. };
  298. if (num_XsumRX > bd) {
  299. int rx_csum = XsumRX[bd];
  300. e1000_validate_option(&rx_csum, &opt, adapter);
  301. adapter->rx_csum = rx_csum;
  302. } else {
  303. adapter->rx_csum = opt.def;
  304. }
  305. }
  306. { /* Flow Control */
  307. struct e1000_opt_list fc_list[] =
  308. {{ e1000_fc_none, "Flow Control Disabled" },
  309. { e1000_fc_rx_pause,"Flow Control Receive Only" },
  310. { e1000_fc_tx_pause,"Flow Control Transmit Only" },
  311. { e1000_fc_full, "Flow Control Enabled" },
  312. { e1000_fc_default, "Flow Control Hardware Default" }};
  313. struct e1000_option opt = {
  314. .type = list_option,
  315. .name = "Flow Control",
  316. .err = "reading default settings from EEPROM",
  317. .def = e1000_fc_default,
  318. .arg = { .l = { .nr = ARRAY_SIZE(fc_list),
  319. .p = fc_list }}
  320. };
  321. if (num_FlowControl > bd) {
  322. int fc = FlowControl[bd];
  323. e1000_validate_option(&fc, &opt, adapter);
  324. adapter->hw.fc = adapter->hw.original_fc = fc;
  325. } else {
  326. adapter->hw.fc = opt.def;
  327. }
  328. }
  329. { /* Transmit Interrupt Delay */
  330. struct e1000_option opt = {
  331. .type = range_option,
  332. .name = "Transmit Interrupt Delay",
  333. .err = "using default of " __MODULE_STRING(DEFAULT_TIDV),
  334. .def = DEFAULT_TIDV,
  335. .arg = { .r = { .min = MIN_TXDELAY,
  336. .max = MAX_TXDELAY }}
  337. };
  338. if (num_TxIntDelay > bd) {
  339. adapter->tx_int_delay = TxIntDelay[bd];
  340. e1000_validate_option(&adapter->tx_int_delay, &opt,
  341. adapter);
  342. } else {
  343. adapter->tx_int_delay = opt.def;
  344. }
  345. }
  346. { /* Transmit Absolute Interrupt Delay */
  347. struct e1000_option opt = {
  348. .type = range_option,
  349. .name = "Transmit Absolute Interrupt Delay",
  350. .err = "using default of " __MODULE_STRING(DEFAULT_TADV),
  351. .def = DEFAULT_TADV,
  352. .arg = { .r = { .min = MIN_TXABSDELAY,
  353. .max = MAX_TXABSDELAY }}
  354. };
  355. if (num_TxAbsIntDelay > bd) {
  356. adapter->tx_abs_int_delay = TxAbsIntDelay[bd];
  357. e1000_validate_option(&adapter->tx_abs_int_delay, &opt,
  358. adapter);
  359. } else {
  360. adapter->tx_abs_int_delay = opt.def;
  361. }
  362. }
  363. { /* Receive Interrupt Delay */
  364. struct e1000_option opt = {
  365. .type = range_option,
  366. .name = "Receive Interrupt Delay",
  367. .err = "using default of " __MODULE_STRING(DEFAULT_RDTR),
  368. .def = DEFAULT_RDTR,
  369. .arg = { .r = { .min = MIN_RXDELAY,
  370. .max = MAX_RXDELAY }}
  371. };
  372. if (num_RxIntDelay > bd) {
  373. adapter->rx_int_delay = RxIntDelay[bd];
  374. e1000_validate_option(&adapter->rx_int_delay, &opt,
  375. adapter);
  376. } else {
  377. adapter->rx_int_delay = opt.def;
  378. }
  379. }
  380. { /* Receive Absolute Interrupt Delay */
  381. struct e1000_option opt = {
  382. .type = range_option,
  383. .name = "Receive Absolute Interrupt Delay",
  384. .err = "using default of " __MODULE_STRING(DEFAULT_RADV),
  385. .def = DEFAULT_RADV,
  386. .arg = { .r = { .min = MIN_RXABSDELAY,
  387. .max = MAX_RXABSDELAY }}
  388. };
  389. if (num_RxAbsIntDelay > bd) {
  390. adapter->rx_abs_int_delay = RxAbsIntDelay[bd];
  391. e1000_validate_option(&adapter->rx_abs_int_delay, &opt,
  392. adapter);
  393. } else {
  394. adapter->rx_abs_int_delay = opt.def;
  395. }
  396. }
  397. { /* Interrupt Throttling Rate */
  398. struct e1000_option opt = {
  399. .type = range_option,
  400. .name = "Interrupt Throttling Rate (ints/sec)",
  401. .err = "using default of " __MODULE_STRING(DEFAULT_ITR),
  402. .def = DEFAULT_ITR,
  403. .arg = { .r = { .min = MIN_ITR,
  404. .max = MAX_ITR }}
  405. };
  406. if (num_InterruptThrottleRate > bd) {
  407. adapter->itr = InterruptThrottleRate[bd];
  408. switch(adapter->itr) {
  409. case 0:
  410. DPRINTK(PROBE, INFO, "%s turned off\n",
  411. opt.name);
  412. break;
  413. case 1:
  414. DPRINTK(PROBE, INFO, "%s set to dynamic mode\n",
  415. opt.name);
  416. break;
  417. default:
  418. e1000_validate_option(&adapter->itr, &opt,
  419. adapter);
  420. break;
  421. }
  422. } else {
  423. adapter->itr = opt.def;
  424. }
  425. }
  426. switch(adapter->hw.media_type) {
  427. case e1000_media_type_fiber:
  428. case e1000_media_type_internal_serdes:
  429. e1000_check_fiber_options(adapter);
  430. break;
  431. case e1000_media_type_copper:
  432. e1000_check_copper_options(adapter);
  433. break;
  434. default:
  435. BUG();
  436. }
  437. }
  438. /**
  439. * e1000_check_fiber_options - Range Checking for Link Options, Fiber Version
  440. * @adapter: board private structure
  441. *
  442. * Handles speed and duplex options on fiber adapters
  443. **/
  444. static void __devinit
  445. e1000_check_fiber_options(struct e1000_adapter *adapter)
  446. {
  447. int bd = adapter->bd_number;
  448. if(num_Speed > bd) {
  449. DPRINTK(PROBE, INFO, "Speed not valid for fiber adapters, "
  450. "parameter ignored\n");
  451. }
  452. if(num_Duplex > bd) {
  453. DPRINTK(PROBE, INFO, "Duplex not valid for fiber adapters, "
  454. "parameter ignored\n");
  455. }
  456. if((num_AutoNeg > bd) && (AutoNeg[bd] != 0x20)) {
  457. DPRINTK(PROBE, INFO, "AutoNeg other than 1000/Full is "
  458. "not valid for fiber adapters, "
  459. "parameter ignored\n");
  460. }
  461. }
  462. /**
  463. * e1000_check_copper_options - Range Checking for Link Options, Copper Version
  464. * @adapter: board private structure
  465. *
  466. * Handles speed and duplex options on copper adapters
  467. **/
  468. static void __devinit
  469. e1000_check_copper_options(struct e1000_adapter *adapter)
  470. {
  471. int speed, dplx;
  472. int bd = adapter->bd_number;
  473. { /* Speed */
  474. struct e1000_opt_list speed_list[] = {{ 0, "" },
  475. { SPEED_10, "" },
  476. { SPEED_100, "" },
  477. { SPEED_1000, "" }};
  478. struct e1000_option opt = {
  479. .type = list_option,
  480. .name = "Speed",
  481. .err = "parameter ignored",
  482. .def = 0,
  483. .arg = { .l = { .nr = ARRAY_SIZE(speed_list),
  484. .p = speed_list }}
  485. };
  486. if (num_Speed > bd) {
  487. speed = Speed[bd];
  488. e1000_validate_option(&speed, &opt, adapter);
  489. } else {
  490. speed = opt.def;
  491. }
  492. }
  493. { /* Duplex */
  494. struct e1000_opt_list dplx_list[] = {{ 0, "" },
  495. { HALF_DUPLEX, "" },
  496. { FULL_DUPLEX, "" }};
  497. struct e1000_option opt = {
  498. .type = list_option,
  499. .name = "Duplex",
  500. .err = "parameter ignored",
  501. .def = 0,
  502. .arg = { .l = { .nr = ARRAY_SIZE(dplx_list),
  503. .p = dplx_list }}
  504. };
  505. if (num_Duplex > bd) {
  506. dplx = Duplex[bd];
  507. e1000_validate_option(&dplx, &opt, adapter);
  508. } else {
  509. dplx = opt.def;
  510. }
  511. }
  512. if((num_AutoNeg > bd) && (speed != 0 || dplx != 0)) {
  513. DPRINTK(PROBE, INFO,
  514. "AutoNeg specified along with Speed or Duplex, "
  515. "parameter ignored\n");
  516. adapter->hw.autoneg_advertised = AUTONEG_ADV_DEFAULT;
  517. } else { /* Autoneg */
  518. struct e1000_opt_list an_list[] =
  519. #define AA "AutoNeg advertising "
  520. {{ 0x01, AA "10/HD" },
  521. { 0x02, AA "10/FD" },
  522. { 0x03, AA "10/FD, 10/HD" },
  523. { 0x04, AA "100/HD" },
  524. { 0x05, AA "100/HD, 10/HD" },
  525. { 0x06, AA "100/HD, 10/FD" },
  526. { 0x07, AA "100/HD, 10/FD, 10/HD" },
  527. { 0x08, AA "100/FD" },
  528. { 0x09, AA "100/FD, 10/HD" },
  529. { 0x0a, AA "100/FD, 10/FD" },
  530. { 0x0b, AA "100/FD, 10/FD, 10/HD" },
  531. { 0x0c, AA "100/FD, 100/HD" },
  532. { 0x0d, AA "100/FD, 100/HD, 10/HD" },
  533. { 0x0e, AA "100/FD, 100/HD, 10/FD" },
  534. { 0x0f, AA "100/FD, 100/HD, 10/FD, 10/HD" },
  535. { 0x20, AA "1000/FD" },
  536. { 0x21, AA "1000/FD, 10/HD" },
  537. { 0x22, AA "1000/FD, 10/FD" },
  538. { 0x23, AA "1000/FD, 10/FD, 10/HD" },
  539. { 0x24, AA "1000/FD, 100/HD" },
  540. { 0x25, AA "1000/FD, 100/HD, 10/HD" },
  541. { 0x26, AA "1000/FD, 100/HD, 10/FD" },
  542. { 0x27, AA "1000/FD, 100/HD, 10/FD, 10/HD" },
  543. { 0x28, AA "1000/FD, 100/FD" },
  544. { 0x29, AA "1000/FD, 100/FD, 10/HD" },
  545. { 0x2a, AA "1000/FD, 100/FD, 10/FD" },
  546. { 0x2b, AA "1000/FD, 100/FD, 10/FD, 10/HD" },
  547. { 0x2c, AA "1000/FD, 100/FD, 100/HD" },
  548. { 0x2d, AA "1000/FD, 100/FD, 100/HD, 10/HD" },
  549. { 0x2e, AA "1000/FD, 100/FD, 100/HD, 10/FD" },
  550. { 0x2f, AA "1000/FD, 100/FD, 100/HD, 10/FD, 10/HD" }};
  551. struct e1000_option opt = {
  552. .type = list_option,
  553. .name = "AutoNeg",
  554. .err = "parameter ignored",
  555. .def = AUTONEG_ADV_DEFAULT,
  556. .arg = { .l = { .nr = ARRAY_SIZE(an_list),
  557. .p = an_list }}
  558. };
  559. int an = AutoNeg[bd];
  560. e1000_validate_option(&an, &opt, adapter);
  561. adapter->hw.autoneg_advertised = an;
  562. }
  563. switch (speed + dplx) {
  564. case 0:
  565. adapter->hw.autoneg = adapter->fc_autoneg = 1;
  566. if((num_Speed > bd) && (speed != 0 || dplx != 0))
  567. DPRINTK(PROBE, INFO,
  568. "Speed and duplex autonegotiation enabled\n");
  569. break;
  570. case HALF_DUPLEX:
  571. DPRINTK(PROBE, INFO, "Half Duplex specified without Speed\n");
  572. DPRINTK(PROBE, INFO, "Using Autonegotiation at "
  573. "Half Duplex only\n");
  574. adapter->hw.autoneg = adapter->fc_autoneg = 1;
  575. adapter->hw.autoneg_advertised = ADVERTISE_10_HALF |
  576. ADVERTISE_100_HALF;
  577. break;
  578. case FULL_DUPLEX:
  579. DPRINTK(PROBE, INFO, "Full Duplex specified without Speed\n");
  580. DPRINTK(PROBE, INFO, "Using Autonegotiation at "
  581. "Full Duplex only\n");
  582. adapter->hw.autoneg = adapter->fc_autoneg = 1;
  583. adapter->hw.autoneg_advertised = ADVERTISE_10_FULL |
  584. ADVERTISE_100_FULL |
  585. ADVERTISE_1000_FULL;
  586. break;
  587. case SPEED_10:
  588. DPRINTK(PROBE, INFO, "10 Mbps Speed specified "
  589. "without Duplex\n");
  590. DPRINTK(PROBE, INFO, "Using Autonegotiation at 10 Mbps only\n");
  591. adapter->hw.autoneg = adapter->fc_autoneg = 1;
  592. adapter->hw.autoneg_advertised = ADVERTISE_10_HALF |
  593. ADVERTISE_10_FULL;
  594. break;
  595. case SPEED_10 + HALF_DUPLEX:
  596. DPRINTK(PROBE, INFO, "Forcing to 10 Mbps Half Duplex\n");
  597. adapter->hw.autoneg = adapter->fc_autoneg = 0;
  598. adapter->hw.forced_speed_duplex = e1000_10_half;
  599. adapter->hw.autoneg_advertised = 0;
  600. break;
  601. case SPEED_10 + FULL_DUPLEX:
  602. DPRINTK(PROBE, INFO, "Forcing to 10 Mbps Full Duplex\n");
  603. adapter->hw.autoneg = adapter->fc_autoneg = 0;
  604. adapter->hw.forced_speed_duplex = e1000_10_full;
  605. adapter->hw.autoneg_advertised = 0;
  606. break;
  607. case SPEED_100:
  608. DPRINTK(PROBE, INFO, "100 Mbps Speed specified "
  609. "without Duplex\n");
  610. DPRINTK(PROBE, INFO, "Using Autonegotiation at "
  611. "100 Mbps only\n");
  612. adapter->hw.autoneg = adapter->fc_autoneg = 1;
  613. adapter->hw.autoneg_advertised = ADVERTISE_100_HALF |
  614. ADVERTISE_100_FULL;
  615. break;
  616. case SPEED_100 + HALF_DUPLEX:
  617. DPRINTK(PROBE, INFO, "Forcing to 100 Mbps Half Duplex\n");
  618. adapter->hw.autoneg = adapter->fc_autoneg = 0;
  619. adapter->hw.forced_speed_duplex = e1000_100_half;
  620. adapter->hw.autoneg_advertised = 0;
  621. break;
  622. case SPEED_100 + FULL_DUPLEX:
  623. DPRINTK(PROBE, INFO, "Forcing to 100 Mbps Full Duplex\n");
  624. adapter->hw.autoneg = adapter->fc_autoneg = 0;
  625. adapter->hw.forced_speed_duplex = e1000_100_full;
  626. adapter->hw.autoneg_advertised = 0;
  627. break;
  628. case SPEED_1000:
  629. DPRINTK(PROBE, INFO, "1000 Mbps Speed specified without "
  630. "Duplex\n");
  631. DPRINTK(PROBE, INFO,
  632. "Using Autonegotiation at 1000 Mbps "
  633. "Full Duplex only\n");
  634. adapter->hw.autoneg = adapter->fc_autoneg = 1;
  635. adapter->hw.autoneg_advertised = ADVERTISE_1000_FULL;
  636. break;
  637. case SPEED_1000 + HALF_DUPLEX:
  638. DPRINTK(PROBE, INFO,
  639. "Half Duplex is not supported at 1000 Mbps\n");
  640. DPRINTK(PROBE, INFO,
  641. "Using Autonegotiation at 1000 Mbps "
  642. "Full Duplex only\n");
  643. adapter->hw.autoneg = adapter->fc_autoneg = 1;
  644. adapter->hw.autoneg_advertised = ADVERTISE_1000_FULL;
  645. break;
  646. case SPEED_1000 + FULL_DUPLEX:
  647. DPRINTK(PROBE, INFO,
  648. "Using Autonegotiation at 1000 Mbps Full Duplex only\n");
  649. adapter->hw.autoneg = adapter->fc_autoneg = 1;
  650. adapter->hw.autoneg_advertised = ADVERTISE_1000_FULL;
  651. break;
  652. default:
  653. BUG();
  654. }
  655. /* Speed, AutoNeg and MDI/MDI-X must all play nice */
  656. if (e1000_validate_mdi_setting(&(adapter->hw)) < 0) {
  657. DPRINTK(PROBE, INFO,
  658. "Speed, AutoNeg and MDI-X specifications are "
  659. "incompatible. Setting MDI-X to a compatible value.\n");
  660. }
  661. }