rt2800pci.c 13 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. Copyright (C) 2009 - 2010 Ivo van Doorn <[email protected]>
  4. Copyright (C) 2009 Alban Browaeys <[email protected]>
  5. Copyright (C) 2009 Felix Fietkau <[email protected]>
  6. Copyright (C) 2009 Luis Correia <[email protected]>
  7. Copyright (C) 2009 Mattias Nissler <[email protected]>
  8. Copyright (C) 2009 Mark Asselstine <[email protected]>
  9. Copyright (C) 2009 Xose Vazquez Perez <[email protected]>
  10. Copyright (C) 2009 Bart Zolnierkiewicz <[email protected]>
  11. <http://rt2x00.serialmonkey.com>
  12. */
  13. /*
  14. Module: rt2800pci
  15. Abstract: rt2800pci device specific routines.
  16. Supported chipsets: RT2800E & RT2800ED.
  17. */
  18. #include <linux/delay.h>
  19. #include <linux/etherdevice.h>
  20. #include <linux/init.h>
  21. #include <linux/kernel.h>
  22. #include <linux/module.h>
  23. #include <linux/pci.h>
  24. #include <linux/eeprom_93cx6.h>
  25. #include "rt2x00.h"
  26. #include "rt2x00mmio.h"
  27. #include "rt2x00pci.h"
  28. #include "rt2800lib.h"
  29. #include "rt2800mmio.h"
  30. #include "rt2800.h"
  31. #include "rt2800pci.h"
  32. /*
  33. * Allow hardware encryption to be disabled.
  34. */
  35. static bool modparam_nohwcrypt = false;
  36. module_param_named(nohwcrypt, modparam_nohwcrypt, bool, 0444);
  37. MODULE_PARM_DESC(nohwcrypt, "Disable hardware encryption.");
  38. static bool rt2800pci_hwcrypt_disabled(struct rt2x00_dev *rt2x00dev)
  39. {
  40. return modparam_nohwcrypt;
  41. }
  42. static void rt2800pci_mcu_status(struct rt2x00_dev *rt2x00dev, const u8 token)
  43. {
  44. unsigned int i;
  45. u32 reg;
  46. /*
  47. * SOC devices don't support MCU requests.
  48. */
  49. if (rt2x00_is_soc(rt2x00dev))
  50. return;
  51. for (i = 0; i < 200; i++) {
  52. reg = rt2x00mmio_register_read(rt2x00dev, H2M_MAILBOX_CID);
  53. if ((rt2x00_get_field32(reg, H2M_MAILBOX_CID_CMD0) == token) ||
  54. (rt2x00_get_field32(reg, H2M_MAILBOX_CID_CMD1) == token) ||
  55. (rt2x00_get_field32(reg, H2M_MAILBOX_CID_CMD2) == token) ||
  56. (rt2x00_get_field32(reg, H2M_MAILBOX_CID_CMD3) == token))
  57. break;
  58. udelay(REGISTER_BUSY_DELAY);
  59. }
  60. if (i == 200)
  61. rt2x00_err(rt2x00dev, "MCU request failed, no response from hardware\n");
  62. rt2x00mmio_register_write(rt2x00dev, H2M_MAILBOX_STATUS, ~0);
  63. rt2x00mmio_register_write(rt2x00dev, H2M_MAILBOX_CID, ~0);
  64. }
  65. static void rt2800pci_eepromregister_read(struct eeprom_93cx6 *eeprom)
  66. {
  67. struct rt2x00_dev *rt2x00dev = eeprom->data;
  68. u32 reg;
  69. reg = rt2x00mmio_register_read(rt2x00dev, E2PROM_CSR);
  70. eeprom->reg_data_in = !!rt2x00_get_field32(reg, E2PROM_CSR_DATA_IN);
  71. eeprom->reg_data_out = !!rt2x00_get_field32(reg, E2PROM_CSR_DATA_OUT);
  72. eeprom->reg_data_clock =
  73. !!rt2x00_get_field32(reg, E2PROM_CSR_DATA_CLOCK);
  74. eeprom->reg_chip_select =
  75. !!rt2x00_get_field32(reg, E2PROM_CSR_CHIP_SELECT);
  76. }
  77. static void rt2800pci_eepromregister_write(struct eeprom_93cx6 *eeprom)
  78. {
  79. struct rt2x00_dev *rt2x00dev = eeprom->data;
  80. u32 reg = 0;
  81. rt2x00_set_field32(&reg, E2PROM_CSR_DATA_IN, !!eeprom->reg_data_in);
  82. rt2x00_set_field32(&reg, E2PROM_CSR_DATA_OUT, !!eeprom->reg_data_out);
  83. rt2x00_set_field32(&reg, E2PROM_CSR_DATA_CLOCK,
  84. !!eeprom->reg_data_clock);
  85. rt2x00_set_field32(&reg, E2PROM_CSR_CHIP_SELECT,
  86. !!eeprom->reg_chip_select);
  87. rt2x00mmio_register_write(rt2x00dev, E2PROM_CSR, reg);
  88. }
  89. static int rt2800pci_read_eeprom_pci(struct rt2x00_dev *rt2x00dev)
  90. {
  91. struct eeprom_93cx6 eeprom;
  92. u32 reg;
  93. reg = rt2x00mmio_register_read(rt2x00dev, E2PROM_CSR);
  94. eeprom.data = rt2x00dev;
  95. eeprom.register_read = rt2800pci_eepromregister_read;
  96. eeprom.register_write = rt2800pci_eepromregister_write;
  97. switch (rt2x00_get_field32(reg, E2PROM_CSR_TYPE))
  98. {
  99. case 0:
  100. eeprom.width = PCI_EEPROM_WIDTH_93C46;
  101. break;
  102. case 1:
  103. eeprom.width = PCI_EEPROM_WIDTH_93C66;
  104. break;
  105. default:
  106. eeprom.width = PCI_EEPROM_WIDTH_93C86;
  107. break;
  108. }
  109. eeprom.reg_data_in = 0;
  110. eeprom.reg_data_out = 0;
  111. eeprom.reg_data_clock = 0;
  112. eeprom.reg_chip_select = 0;
  113. eeprom_93cx6_multiread(&eeprom, EEPROM_BASE, rt2x00dev->eeprom,
  114. EEPROM_SIZE / sizeof(u16));
  115. return 0;
  116. }
  117. static int rt2800pci_efuse_detect(struct rt2x00_dev *rt2x00dev)
  118. {
  119. return rt2800_efuse_detect(rt2x00dev);
  120. }
  121. static inline int rt2800pci_read_eeprom_efuse(struct rt2x00_dev *rt2x00dev)
  122. {
  123. return rt2800_read_eeprom_efuse(rt2x00dev);
  124. }
  125. /*
  126. * Firmware functions
  127. */
  128. static char *rt2800pci_get_firmware_name(struct rt2x00_dev *rt2x00dev)
  129. {
  130. /*
  131. * Chip rt3290 use specific 4KB firmware named rt3290.bin.
  132. */
  133. if (rt2x00_rt(rt2x00dev, RT3290))
  134. return FIRMWARE_RT3290;
  135. else
  136. return FIRMWARE_RT2860;
  137. }
  138. static int rt2800pci_write_firmware(struct rt2x00_dev *rt2x00dev,
  139. const u8 *data, const size_t len)
  140. {
  141. u32 reg;
  142. /*
  143. * enable Host program ram write selection
  144. */
  145. reg = 0;
  146. rt2x00_set_field32(&reg, PBF_SYS_CTRL_HOST_RAM_WRITE, 1);
  147. rt2x00mmio_register_write(rt2x00dev, PBF_SYS_CTRL, reg);
  148. /*
  149. * Write firmware to device.
  150. */
  151. rt2x00mmio_register_multiwrite(rt2x00dev, FIRMWARE_IMAGE_BASE,
  152. data, len);
  153. rt2x00mmio_register_write(rt2x00dev, PBF_SYS_CTRL, 0x00000);
  154. rt2x00mmio_register_write(rt2x00dev, PBF_SYS_CTRL, 0x00001);
  155. rt2x00mmio_register_write(rt2x00dev, H2M_BBP_AGENT, 0);
  156. rt2x00mmio_register_write(rt2x00dev, H2M_MAILBOX_CSR, 0);
  157. return 0;
  158. }
  159. /*
  160. * Device state switch handlers.
  161. */
  162. static int rt2800pci_enable_radio(struct rt2x00_dev *rt2x00dev)
  163. {
  164. int retval;
  165. retval = rt2800mmio_enable_radio(rt2x00dev);
  166. if (retval)
  167. return retval;
  168. /* After resume MCU_BOOT_SIGNAL will trash these. */
  169. rt2x00mmio_register_write(rt2x00dev, H2M_MAILBOX_STATUS, ~0);
  170. rt2x00mmio_register_write(rt2x00dev, H2M_MAILBOX_CID, ~0);
  171. rt2800_mcu_request(rt2x00dev, MCU_SLEEP, TOKEN_RADIO_OFF, 0xff, 0x02);
  172. rt2800pci_mcu_status(rt2x00dev, TOKEN_RADIO_OFF);
  173. rt2800_mcu_request(rt2x00dev, MCU_WAKEUP, TOKEN_WAKEUP, 0, 0);
  174. rt2800pci_mcu_status(rt2x00dev, TOKEN_WAKEUP);
  175. return retval;
  176. }
  177. static int rt2800pci_set_state(struct rt2x00_dev *rt2x00dev,
  178. enum dev_state state)
  179. {
  180. if (state == STATE_AWAKE) {
  181. rt2800_mcu_request(rt2x00dev, MCU_WAKEUP, TOKEN_WAKEUP,
  182. 0, 0x02);
  183. rt2800pci_mcu_status(rt2x00dev, TOKEN_WAKEUP);
  184. } else if (state == STATE_SLEEP) {
  185. rt2x00mmio_register_write(rt2x00dev, H2M_MAILBOX_STATUS,
  186. 0xffffffff);
  187. rt2x00mmio_register_write(rt2x00dev, H2M_MAILBOX_CID,
  188. 0xffffffff);
  189. rt2800_mcu_request(rt2x00dev, MCU_SLEEP, TOKEN_SLEEP,
  190. 0xff, 0x01);
  191. }
  192. return 0;
  193. }
  194. static int rt2800pci_set_device_state(struct rt2x00_dev *rt2x00dev,
  195. enum dev_state state)
  196. {
  197. int retval = 0;
  198. switch (state) {
  199. case STATE_RADIO_ON:
  200. retval = rt2800pci_enable_radio(rt2x00dev);
  201. break;
  202. case STATE_RADIO_OFF:
  203. /*
  204. * After the radio has been disabled, the device should
  205. * be put to sleep for powersaving.
  206. */
  207. rt2800pci_set_state(rt2x00dev, STATE_SLEEP);
  208. break;
  209. case STATE_RADIO_IRQ_ON:
  210. case STATE_RADIO_IRQ_OFF:
  211. rt2800mmio_toggle_irq(rt2x00dev, state);
  212. break;
  213. case STATE_DEEP_SLEEP:
  214. case STATE_SLEEP:
  215. case STATE_STANDBY:
  216. case STATE_AWAKE:
  217. retval = rt2800pci_set_state(rt2x00dev, state);
  218. break;
  219. default:
  220. retval = -ENOTSUPP;
  221. break;
  222. }
  223. if (unlikely(retval))
  224. rt2x00_err(rt2x00dev, "Device failed to enter state %d (%d)\n",
  225. state, retval);
  226. return retval;
  227. }
  228. /*
  229. * Device probe functions.
  230. */
  231. static int rt2800pci_read_eeprom(struct rt2x00_dev *rt2x00dev)
  232. {
  233. int retval;
  234. if (rt2800pci_efuse_detect(rt2x00dev))
  235. retval = rt2800pci_read_eeprom_efuse(rt2x00dev);
  236. else
  237. retval = rt2800pci_read_eeprom_pci(rt2x00dev);
  238. return retval;
  239. }
  240. static const struct ieee80211_ops rt2800pci_mac80211_ops = {
  241. .tx = rt2x00mac_tx,
  242. .start = rt2x00mac_start,
  243. .stop = rt2x00mac_stop,
  244. .add_interface = rt2x00mac_add_interface,
  245. .remove_interface = rt2x00mac_remove_interface,
  246. .config = rt2x00mac_config,
  247. .configure_filter = rt2x00mac_configure_filter,
  248. .set_key = rt2x00mac_set_key,
  249. .sw_scan_start = rt2x00mac_sw_scan_start,
  250. .sw_scan_complete = rt2x00mac_sw_scan_complete,
  251. .get_stats = rt2x00mac_get_stats,
  252. .get_key_seq = rt2800_get_key_seq,
  253. .set_rts_threshold = rt2800_set_rts_threshold,
  254. .sta_add = rt2800_sta_add,
  255. .sta_remove = rt2800_sta_remove,
  256. .bss_info_changed = rt2x00mac_bss_info_changed,
  257. .conf_tx = rt2800_conf_tx,
  258. .get_tsf = rt2800_get_tsf,
  259. .rfkill_poll = rt2x00mac_rfkill_poll,
  260. .ampdu_action = rt2800_ampdu_action,
  261. .flush = rt2x00mac_flush,
  262. .get_survey = rt2800_get_survey,
  263. .get_ringparam = rt2x00mac_get_ringparam,
  264. .tx_frames_pending = rt2x00mac_tx_frames_pending,
  265. .reconfig_complete = rt2x00mac_reconfig_complete,
  266. };
  267. static const struct rt2800_ops rt2800pci_rt2800_ops = {
  268. .register_read = rt2x00mmio_register_read,
  269. .register_read_lock = rt2x00mmio_register_read, /* same for PCI */
  270. .register_write = rt2x00mmio_register_write,
  271. .register_write_lock = rt2x00mmio_register_write, /* same for PCI */
  272. .register_multiread = rt2x00mmio_register_multiread,
  273. .register_multiwrite = rt2x00mmio_register_multiwrite,
  274. .regbusy_read = rt2x00mmio_regbusy_read,
  275. .read_eeprom = rt2800pci_read_eeprom,
  276. .hwcrypt_disabled = rt2800pci_hwcrypt_disabled,
  277. .drv_write_firmware = rt2800pci_write_firmware,
  278. .drv_init_registers = rt2800mmio_init_registers,
  279. .drv_get_txwi = rt2800mmio_get_txwi,
  280. .drv_get_dma_done = rt2800mmio_get_dma_done,
  281. };
  282. static const struct rt2x00lib_ops rt2800pci_rt2x00_ops = {
  283. .irq_handler = rt2800mmio_interrupt,
  284. .txstatus_tasklet = rt2800mmio_txstatus_tasklet,
  285. .pretbtt_tasklet = rt2800mmio_pretbtt_tasklet,
  286. .tbtt_tasklet = rt2800mmio_tbtt_tasklet,
  287. .rxdone_tasklet = rt2800mmio_rxdone_tasklet,
  288. .autowake_tasklet = rt2800mmio_autowake_tasklet,
  289. .probe_hw = rt2800mmio_probe_hw,
  290. .get_firmware_name = rt2800pci_get_firmware_name,
  291. .check_firmware = rt2800_check_firmware,
  292. .load_firmware = rt2800_load_firmware,
  293. .initialize = rt2x00mmio_initialize,
  294. .uninitialize = rt2x00mmio_uninitialize,
  295. .get_entry_state = rt2800mmio_get_entry_state,
  296. .clear_entry = rt2800mmio_clear_entry,
  297. .set_device_state = rt2800pci_set_device_state,
  298. .rfkill_poll = rt2800_rfkill_poll,
  299. .link_stats = rt2800_link_stats,
  300. .reset_tuner = rt2800_reset_tuner,
  301. .link_tuner = rt2800_link_tuner,
  302. .gain_calibration = rt2800_gain_calibration,
  303. .vco_calibration = rt2800_vco_calibration,
  304. .watchdog = rt2800_watchdog,
  305. .start_queue = rt2800mmio_start_queue,
  306. .kick_queue = rt2800mmio_kick_queue,
  307. .stop_queue = rt2800mmio_stop_queue,
  308. .flush_queue = rt2800mmio_flush_queue,
  309. .write_tx_desc = rt2800mmio_write_tx_desc,
  310. .write_tx_data = rt2800_write_tx_data,
  311. .write_beacon = rt2800_write_beacon,
  312. .clear_beacon = rt2800_clear_beacon,
  313. .fill_rxdone = rt2800mmio_fill_rxdone,
  314. .config_shared_key = rt2800_config_shared_key,
  315. .config_pairwise_key = rt2800_config_pairwise_key,
  316. .config_filter = rt2800_config_filter,
  317. .config_intf = rt2800_config_intf,
  318. .config_erp = rt2800_config_erp,
  319. .config_ant = rt2800_config_ant,
  320. .config = rt2800_config,
  321. .pre_reset_hw = rt2800_pre_reset_hw,
  322. };
  323. static const struct rt2x00_ops rt2800pci_ops = {
  324. .name = KBUILD_MODNAME,
  325. .drv_data_size = sizeof(struct rt2800_drv_data),
  326. .max_ap_intf = 8,
  327. .eeprom_size = EEPROM_SIZE,
  328. .rf_size = RF_SIZE,
  329. .tx_queues = NUM_TX_QUEUES,
  330. .queue_init = rt2800mmio_queue_init,
  331. .lib = &rt2800pci_rt2x00_ops,
  332. .drv = &rt2800pci_rt2800_ops,
  333. .hw = &rt2800pci_mac80211_ops,
  334. #ifdef CONFIG_RT2X00_LIB_DEBUGFS
  335. .debugfs = &rt2800_rt2x00debug,
  336. #endif /* CONFIG_RT2X00_LIB_DEBUGFS */
  337. };
  338. /*
  339. * RT2800pci module information.
  340. */
  341. static const struct pci_device_id rt2800pci_device_table[] = {
  342. { PCI_DEVICE(0x1814, 0x0601) },
  343. { PCI_DEVICE(0x1814, 0x0681) },
  344. { PCI_DEVICE(0x1814, 0x0701) },
  345. { PCI_DEVICE(0x1814, 0x0781) },
  346. { PCI_DEVICE(0x1814, 0x3090) },
  347. { PCI_DEVICE(0x1814, 0x3091) },
  348. { PCI_DEVICE(0x1814, 0x3092) },
  349. { PCI_DEVICE(0x1432, 0x7708) },
  350. { PCI_DEVICE(0x1432, 0x7727) },
  351. { PCI_DEVICE(0x1432, 0x7728) },
  352. { PCI_DEVICE(0x1432, 0x7738) },
  353. { PCI_DEVICE(0x1432, 0x7748) },
  354. { PCI_DEVICE(0x1432, 0x7758) },
  355. { PCI_DEVICE(0x1432, 0x7768) },
  356. { PCI_DEVICE(0x1462, 0x891a) },
  357. { PCI_DEVICE(0x1a3b, 0x1059) },
  358. #ifdef CONFIG_RT2800PCI_RT3290
  359. { PCI_DEVICE(0x1814, 0x3290) },
  360. #endif
  361. #ifdef CONFIG_RT2800PCI_RT33XX
  362. { PCI_DEVICE(0x1814, 0x3390) },
  363. #endif
  364. #ifdef CONFIG_RT2800PCI_RT35XX
  365. { PCI_DEVICE(0x1432, 0x7711) },
  366. { PCI_DEVICE(0x1432, 0x7722) },
  367. { PCI_DEVICE(0x1814, 0x3060) },
  368. { PCI_DEVICE(0x1814, 0x3062) },
  369. { PCI_DEVICE(0x1814, 0x3562) },
  370. { PCI_DEVICE(0x1814, 0x3592) },
  371. { PCI_DEVICE(0x1814, 0x3593) },
  372. { PCI_DEVICE(0x1814, 0x359f) },
  373. #endif
  374. #ifdef CONFIG_RT2800PCI_RT53XX
  375. { PCI_DEVICE(0x1814, 0x5360) },
  376. { PCI_DEVICE(0x1814, 0x5362) },
  377. { PCI_DEVICE(0x1814, 0x5390) },
  378. { PCI_DEVICE(0x1814, 0x5392) },
  379. { PCI_DEVICE(0x1814, 0x539a) },
  380. { PCI_DEVICE(0x1814, 0x539b) },
  381. { PCI_DEVICE(0x1814, 0x539f) },
  382. #endif
  383. { 0, }
  384. };
  385. MODULE_AUTHOR(DRV_PROJECT);
  386. MODULE_VERSION(DRV_VERSION);
  387. MODULE_DESCRIPTION("Ralink RT2800 PCI & PCMCIA Wireless LAN driver.");
  388. MODULE_FIRMWARE(FIRMWARE_RT2860);
  389. MODULE_DEVICE_TABLE(pci, rt2800pci_device_table);
  390. MODULE_LICENSE("GPL");
  391. static int rt2800pci_probe(struct pci_dev *pci_dev,
  392. const struct pci_device_id *id)
  393. {
  394. return rt2x00pci_probe(pci_dev, &rt2800pci_ops);
  395. }
  396. static struct pci_driver rt2800pci_driver = {
  397. .name = KBUILD_MODNAME,
  398. .id_table = rt2800pci_device_table,
  399. .probe = rt2800pci_probe,
  400. .remove = rt2x00pci_remove,
  401. .driver.pm = &rt2x00pci_pm_ops,
  402. };
  403. module_pci_driver(rt2800pci_driver);