hal_init.c 12 KB

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  1. /******************************************************************************
  2. * hal_init.c
  3. *
  4. * Copyright(c) 2007 - 2010 Realtek Corporation. All rights reserved.
  5. * Linux device driver for RTL8192SU
  6. *
  7. * This program is free software; you can redistribute it and/or modify it
  8. * under the terms of version 2 of the GNU General Public License as
  9. * published by the Free Software Foundation.
  10. *
  11. * This program is distributed in the hope that it will be useful, but WITHOUT
  12. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  13. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  14. * more details.
  15. *
  16. * You should have received a copy of the GNU General Public License along with
  17. * this program; if not, write to the Free Software Foundation, Inc.,
  18. * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
  19. *
  20. * Modifications for inclusion into the Linux staging tree are
  21. * Copyright(c) 2010 Larry Finger. All rights reserved.
  22. *
  23. * Contact information:
  24. * WLAN FAE <wlanfae@realtek.com>.
  25. * Larry Finger <Larry.Finger@lwfinger.net>
  26. *
  27. ******************************************************************************/
  28. #define _HAL_INIT_C_
  29. #include <linux/usb.h>
  30. #include <linux/device.h>
  31. #include <linux/usb/ch9.h>
  32. #include <linux/firmware.h>
  33. #include <linux/module.h>
  34. #include "osdep_service.h"
  35. #include "drv_types.h"
  36. #include "usb_osintf.h"
  37. #define FWBUFF_ALIGN_SZ 512
  38. #define MAX_DUMP_FWSZ 49152 /*default = 49152 (48k)*/
  39. static void rtl871x_load_fw_cb(const struct firmware *firmware, void *context)
  40. {
  41. struct _adapter *padapter = context;
  42. complete(&padapter->rtl8712_fw_ready);
  43. if (!firmware) {
  44. struct usb_device *udev = padapter->dvobjpriv.pusbdev;
  45. struct usb_interface *pusb_intf = padapter->pusb_intf;
  46. dev_err(&udev->dev, "r8712u: Firmware request failed\n");
  47. usb_put_dev(udev);
  48. usb_set_intfdata(pusb_intf, NULL);
  49. return;
  50. }
  51. padapter->fw = firmware;
  52. /* firmware available - start netdev */
  53. register_netdev(padapter->pnetdev);
  54. }
  55. static const char firmware_file[] = "rtlwifi/rtl8712u.bin";
  56. int rtl871x_load_fw(struct _adapter *padapter)
  57. {
  58. struct device *dev = &padapter->dvobjpriv.pusbdev->dev;
  59. int rc;
  60. init_completion(&padapter->rtl8712_fw_ready);
  61. dev_info(dev, "r8712u: Loading firmware from \"%s\"\n", firmware_file);
  62. rc = request_firmware_nowait(THIS_MODULE, 1, firmware_file, dev,
  63. GFP_KERNEL, padapter, rtl871x_load_fw_cb);
  64. if (rc)
  65. dev_err(dev, "r8712u: Firmware request error %d\n", rc);
  66. return rc;
  67. }
  68. MODULE_FIRMWARE("rtlwifi/rtl8712u.bin");
  69. static u32 rtl871x_open_fw(struct _adapter *padapter, const u8 **ppmappedfw)
  70. {
  71. const struct firmware **praw = &padapter->fw;
  72. if (padapter->fw->size > 200000) {
  73. dev_err(&padapter->pnetdev->dev, "r8172u: Badfw->size of %d\n",
  74. (int)padapter->fw->size);
  75. return 0;
  76. }
  77. *ppmappedfw = (*praw)->data;
  78. return (*praw)->size;
  79. }
  80. static void fill_fwpriv(struct _adapter *padapter, struct fw_priv *pfwpriv)
  81. {
  82. struct dvobj_priv *pdvobj = &padapter->dvobjpriv;
  83. struct registry_priv *pregpriv = &padapter->registrypriv;
  84. memset(pfwpriv, 0, sizeof(struct fw_priv));
  85. /* todo: check if needs endian conversion */
  86. pfwpriv->hci_sel = RTL8712_HCI_TYPE_72USB;
  87. pfwpriv->usb_ep_num = (u8)pdvobj->nr_endpoint;
  88. pfwpriv->bw_40MHz_en = pregpriv->cbw40_enable;
  89. switch (pregpriv->rf_config) {
  90. case RTL8712_RF_1T1R:
  91. pfwpriv->rf_config = RTL8712_RFC_1T1R;
  92. break;
  93. case RTL8712_RF_2T2R:
  94. pfwpriv->rf_config = RTL8712_RFC_2T2R;
  95. break;
  96. case RTL8712_RF_1T2R:
  97. default:
  98. pfwpriv->rf_config = RTL8712_RFC_1T2R;
  99. }
  100. pfwpriv->mp_mode = (pregpriv->mp_mode == 1) ? 1 : 0;
  101. pfwpriv->vcsType = pregpriv->vrtl_carrier_sense; /* 0:off 1:on 2:auto */
  102. pfwpriv->vcsMode = pregpriv->vcs_type; /* 1:RTS/CTS 2:CTS to self */
  103. /* default enable turboMode */
  104. pfwpriv->turboMode = ((pregpriv->wifi_test == 1) ? 0 : 1);
  105. pfwpriv->lowPowerMode = pregpriv->low_power;
  106. }
  107. static void update_fwhdr(struct fw_hdr *pfwhdr, const u8 *pmappedfw)
  108. {
  109. pfwhdr->signature = le16_to_cpu(*(u16 *)pmappedfw);
  110. pfwhdr->version = le16_to_cpu(*(u16 *)(pmappedfw + 2));
  111. /* define the size of boot loader */
  112. pfwhdr->dmem_size = le32_to_cpu(*(uint *)(pmappedfw + 4));
  113. /* define the size of FW in IMEM */
  114. pfwhdr->img_IMEM_size = le32_to_cpu(*(uint *)(pmappedfw + 8));
  115. /* define the size of FW in SRAM */
  116. pfwhdr->img_SRAM_size = le32_to_cpu(*(uint *)(pmappedfw + 12));
  117. /* define the size of DMEM variable */
  118. pfwhdr->fw_priv_sz = le32_to_cpu(*(uint *)(pmappedfw + 16));
  119. }
  120. static u8 chk_fwhdr(struct fw_hdr *pfwhdr, u32 ulfilelength)
  121. {
  122. u32 fwhdrsz, fw_sz;
  123. /* check signature */
  124. if ((pfwhdr->signature != 0x8712) && (pfwhdr->signature != 0x8192))
  125. return _FAIL;
  126. /* check fw_priv_sze & sizeof(struct fw_priv) */
  127. if (pfwhdr->fw_priv_sz != sizeof(struct fw_priv))
  128. return _FAIL;
  129. /* check fw_sz & image_fw_sz */
  130. fwhdrsz = FIELD_OFFSET(struct fw_hdr, fwpriv) + pfwhdr->fw_priv_sz;
  131. fw_sz = fwhdrsz + pfwhdr->img_IMEM_size + pfwhdr->img_SRAM_size +
  132. pfwhdr->dmem_size;
  133. if (fw_sz != ulfilelength)
  134. return _FAIL;
  135. return _SUCCESS;
  136. }
  137. static u8 rtl8712_dl_fw(struct _adapter *padapter)
  138. {
  139. sint i;
  140. u8 tmp8, tmp8_a;
  141. u16 tmp16;
  142. u32 maxlen = 0; /* for compare usage */
  143. uint dump_imem_sz, imem_sz, dump_emem_sz, emem_sz; /* max = 49152; */
  144. struct fw_hdr fwhdr;
  145. u32 ulfilelength; /* FW file size */
  146. const u8 *pmappedfw = NULL;
  147. u8 *ptmpchar = NULL, *ppayload, *ptr;
  148. struct tx_desc *ptx_desc;
  149. u32 txdscp_sz = sizeof(struct tx_desc);
  150. u8 ret = _FAIL;
  151. ulfilelength = rtl871x_open_fw(padapter, &pmappedfw);
  152. if (pmappedfw && (ulfilelength > 0)) {
  153. update_fwhdr(&fwhdr, pmappedfw);
  154. if (chk_fwhdr(&fwhdr, ulfilelength) == _FAIL)
  155. return ret;
  156. fill_fwpriv(padapter, &fwhdr.fwpriv);
  157. /* firmware check ok */
  158. maxlen = (fwhdr.img_IMEM_size > fwhdr.img_SRAM_size) ?
  159. fwhdr.img_IMEM_size : fwhdr.img_SRAM_size;
  160. maxlen += txdscp_sz;
  161. ptmpchar = kmalloc(maxlen + FWBUFF_ALIGN_SZ, GFP_KERNEL);
  162. if (!ptmpchar)
  163. return ret;
  164. ptx_desc = (struct tx_desc *)(ptmpchar + FWBUFF_ALIGN_SZ -
  165. ((addr_t)(ptmpchar) & (FWBUFF_ALIGN_SZ - 1)));
  166. ppayload = (u8 *)(ptx_desc) + txdscp_sz;
  167. ptr = (u8 *)pmappedfw + FIELD_OFFSET(struct fw_hdr, fwpriv) +
  168. fwhdr.fw_priv_sz;
  169. /* Download FirmWare */
  170. /* 1. determine IMEM code size and Load IMEM Code Section */
  171. imem_sz = fwhdr.img_IMEM_size;
  172. do {
  173. memset(ptx_desc, 0, TXDESC_SIZE);
  174. if (imem_sz > MAX_DUMP_FWSZ/*49152*/) {
  175. dump_imem_sz = MAX_DUMP_FWSZ;
  176. } else {
  177. dump_imem_sz = imem_sz;
  178. ptx_desc->txdw0 |= cpu_to_le32(BIT(28));
  179. }
  180. ptx_desc->txdw0 |= cpu_to_le32(dump_imem_sz &
  181. 0x0000ffff);
  182. memcpy(ppayload, ptr, dump_imem_sz);
  183. r8712_write_mem(padapter, RTL8712_DMA_VOQ,
  184. dump_imem_sz + TXDESC_SIZE,
  185. (u8 *)ptx_desc);
  186. ptr += dump_imem_sz;
  187. imem_sz -= dump_imem_sz;
  188. } while (imem_sz > 0);
  189. i = 10;
  190. tmp16 = r8712_read16(padapter, TCR);
  191. while (((tmp16 & _IMEM_CODE_DONE) == 0) && (i > 0)) {
  192. usleep_range(10, 1000);
  193. tmp16 = r8712_read16(padapter, TCR);
  194. i--;
  195. }
  196. if (i == 0 || (tmp16 & _IMEM_CHK_RPT) == 0)
  197. goto exit_fail;
  198. /* 2.Download EMEM code size and Load EMEM Code Section */
  199. emem_sz = fwhdr.img_SRAM_size;
  200. do {
  201. memset(ptx_desc, 0, TXDESC_SIZE);
  202. if (emem_sz > MAX_DUMP_FWSZ) /* max=48k */
  203. dump_emem_sz = MAX_DUMP_FWSZ;
  204. else {
  205. dump_emem_sz = emem_sz;
  206. ptx_desc->txdw0 |= cpu_to_le32(BIT(28));
  207. }
  208. ptx_desc->txdw0 |= cpu_to_le32(dump_emem_sz &
  209. 0x0000ffff);
  210. memcpy(ppayload, ptr, dump_emem_sz);
  211. r8712_write_mem(padapter, RTL8712_DMA_VOQ,
  212. dump_emem_sz + TXDESC_SIZE, (u8 *)ptx_desc);
  213. ptr += dump_emem_sz;
  214. emem_sz -= dump_emem_sz;
  215. } while (emem_sz > 0);
  216. i = 5;
  217. tmp16 = r8712_read16(padapter, TCR);
  218. while (((tmp16 & _EMEM_CODE_DONE) == 0) && (i > 0)) {
  219. usleep_range(10, 1000);
  220. tmp16 = r8712_read16(padapter, TCR);
  221. i--;
  222. }
  223. if (i == 0 || (tmp16 & _EMEM_CHK_RPT) == 0)
  224. goto exit_fail;
  225. /* 3.Enable CPU */
  226. tmp8 = r8712_read8(padapter, SYS_CLKR);
  227. r8712_write8(padapter, SYS_CLKR, tmp8 | BIT(2));
  228. tmp8_a = r8712_read8(padapter, SYS_CLKR);
  229. if (tmp8_a != (tmp8 | BIT(2)))
  230. goto exit_fail;
  231. tmp8 = r8712_read8(padapter, SYS_FUNC_EN + 1);
  232. r8712_write8(padapter, SYS_FUNC_EN + 1, tmp8 | BIT(2));
  233. tmp8_a = r8712_read8(padapter, SYS_FUNC_EN + 1);
  234. if (tmp8_a != (tmp8 | BIT(2)))
  235. goto exit_fail;
  236. r8712_read32(padapter, TCR);
  237. /* 4.polling IMEM Ready */
  238. i = 100;
  239. tmp16 = r8712_read16(padapter, TCR);
  240. while (((tmp16 & _IMEM_RDY) == 0) && (i > 0)) {
  241. msleep(20);
  242. tmp16 = r8712_read16(padapter, TCR);
  243. i--;
  244. }
  245. if (i == 0) {
  246. r8712_write16(padapter, 0x10250348, 0xc000);
  247. r8712_write16(padapter, 0x10250348, 0xc001);
  248. r8712_write16(padapter, 0x10250348, 0x2000);
  249. r8712_write16(padapter, 0x10250348, 0x2001);
  250. r8712_write16(padapter, 0x10250348, 0x2002);
  251. r8712_write16(padapter, 0x10250348, 0x2003);
  252. goto exit_fail;
  253. }
  254. /* 5.Download DMEM code size and Load EMEM Code Section */
  255. memset(ptx_desc, 0, TXDESC_SIZE);
  256. ptx_desc->txdw0 |= cpu_to_le32(fwhdr.fw_priv_sz & 0x0000ffff);
  257. ptx_desc->txdw0 |= cpu_to_le32(BIT(28));
  258. memcpy(ppayload, &fwhdr.fwpriv, fwhdr.fw_priv_sz);
  259. r8712_write_mem(padapter, RTL8712_DMA_VOQ,
  260. fwhdr.fw_priv_sz + TXDESC_SIZE, (u8 *)ptx_desc);
  261. /* polling dmem code done */
  262. i = 100;
  263. tmp16 = r8712_read16(padapter, TCR);
  264. while (((tmp16 & _DMEM_CODE_DONE) == 0) && (i > 0)) {
  265. msleep(20);
  266. tmp16 = r8712_read16(padapter, TCR);
  267. i--;
  268. }
  269. if (i == 0)
  270. goto exit_fail;
  271. tmp8 = r8712_read8(padapter, 0x1025000A);
  272. if (tmp8 & BIT(4)) /* When boot from EEPROM,
  273. & FW need more time to read EEPROM */
  274. i = 60;
  275. else /* boot from EFUSE */
  276. i = 30;
  277. tmp16 = r8712_read16(padapter, TCR);
  278. while (((tmp16 & _FWRDY) == 0) && (i > 0)) {
  279. msleep(100);
  280. tmp16 = r8712_read16(padapter, TCR);
  281. i--;
  282. }
  283. if (i == 0)
  284. goto exit_fail;
  285. } else {
  286. goto exit_fail;
  287. }
  288. ret = _SUCCESS;
  289. exit_fail:
  290. kfree(ptmpchar);
  291. return ret;
  292. }
  293. uint rtl8712_hal_init(struct _adapter *padapter)
  294. {
  295. u32 val32;
  296. int i;
  297. /* r8712 firmware download */
  298. if (rtl8712_dl_fw(padapter) != _SUCCESS)
  299. return _FAIL;
  300. netdev_info(padapter->pnetdev, "1 RCR=0x%x\n",
  301. r8712_read32(padapter, RCR));
  302. val32 = r8712_read32(padapter, RCR);
  303. r8712_write32(padapter, RCR, (val32 | BIT(26))); /* Enable RX TCP
  304. Checksum offload */
  305. netdev_info(padapter->pnetdev, "2 RCR=0x%x\n",
  306. r8712_read32(padapter, RCR));
  307. val32 = r8712_read32(padapter, RCR);
  308. r8712_write32(padapter, RCR, (val32 | BIT(25))); /* Append PHY status */
  309. val32 = 0;
  310. val32 = r8712_read32(padapter, 0x10250040);
  311. r8712_write32(padapter, 0x10250040, (val32 & 0x00FFFFFF));
  312. /* for usb rx aggregation */
  313. r8712_write8(padapter, 0x102500B5, r8712_read8(padapter, 0x102500B5) |
  314. BIT(0)); /* page = 128bytes */
  315. r8712_write8(padapter, 0x102500BD, r8712_read8(padapter, 0x102500BD) |
  316. BIT(7)); /* enable usb rx aggregation */
  317. r8712_write8(padapter, 0x102500D9, 1); /* TH=1 => means that invalidate
  318. * usb rx aggregation */
  319. r8712_write8(padapter, 0x1025FE5B, 0x04); /* 1.7ms/4 */
  320. /* Fix the RX FIFO issue(USB error) */
  321. r8712_write8(padapter, 0x1025fe5C, r8712_read8(padapter, 0x1025fe5C)
  322. | BIT(7));
  323. for (i = 0; i < 6; i++)
  324. padapter->eeprompriv.mac_addr[i] = r8712_read8(padapter,
  325. MACID + i);
  326. return _SUCCESS;
  327. }
  328. uint rtl8712_hal_deinit(struct _adapter *padapter)
  329. {
  330. r8712_write8(padapter, RF_CTRL, 0x00);
  331. /* Turn off BB */
  332. msleep(20);
  333. /* Turn off MAC */
  334. r8712_write8(padapter, SYS_CLKR + 1, 0x38); /* Switch Control Path */
  335. r8712_write8(padapter, SYS_FUNC_EN + 1, 0x70);
  336. r8712_write8(padapter, PMC_FSM, 0x06); /* Enable Loader Data Keep */
  337. r8712_write8(padapter, SYS_ISO_CTRL, 0xF9); /* Isolation signals from
  338. * CORE, PLL */
  339. r8712_write8(padapter, SYS_ISO_CTRL + 1, 0xe8); /* Enable EFUSE 1.2V */
  340. r8712_write8(padapter, AFE_PLL_CTRL, 0x00); /* Disable AFE PLL. */
  341. r8712_write8(padapter, LDOA15_CTRL, 0x54); /* Disable A15V */
  342. r8712_write8(padapter, SYS_FUNC_EN + 1, 0x50); /* Disable E-Fuse 1.2V */
  343. r8712_write8(padapter, LDOV12D_CTRL, 0x24); /* Disable LDO12(for CE) */
  344. r8712_write8(padapter, AFE_MISC, 0x30); /* Disable AFE BG&MB */
  345. /* Option for Disable 1.6V LDO. */
  346. r8712_write8(padapter, SPS0_CTRL, 0x56); /* Disable 1.6V LDO */
  347. r8712_write8(padapter, SPS0_CTRL + 1, 0x43); /* Set SW PFM */
  348. return _SUCCESS;
  349. }
  350. uint rtl871x_hal_init(struct _adapter *padapter)
  351. {
  352. padapter->hw_init_completed = false;
  353. if (!padapter->halpriv.hal_bus_init)
  354. return _FAIL;
  355. if (padapter->halpriv.hal_bus_init(padapter) != _SUCCESS)
  356. return _FAIL;
  357. if (rtl8712_hal_init(padapter) == _SUCCESS) {
  358. padapter->hw_init_completed = true;
  359. } else {
  360. padapter->hw_init_completed = false;
  361. return _FAIL;
  362. }
  363. return _SUCCESS;
  364. }