phy_ht.c 9.8 KB

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  1. /*
  2. Broadcom B43 wireless driver
  3. IEEE 802.11n HT-PHY support
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; see the file COPYING. If not, write to
  14. the Free Software Foundation, Inc., 51 Franklin Steet, Fifth Floor,
  15. Boston, MA 02110-1301, USA.
  16. */
  17. #include <linux/slab.h>
  18. #include "b43.h"
  19. #include "phy_ht.h"
  20. #include "tables_phy_ht.h"
  21. #include "radio_2059.h"
  22. #include "main.h"
  23. /**************************************************
  24. * Radio 2059.
  25. **************************************************/
  26. static void b43_radio_2059_channel_setup(struct b43_wldev *dev,
  27. const struct b43_phy_ht_channeltab_e_radio2059 *e)
  28. {
  29. u8 i;
  30. u16 routing;
  31. b43_radio_write(dev, 0x16, e->radio_syn16);
  32. b43_radio_write(dev, 0x17, e->radio_syn17);
  33. b43_radio_write(dev, 0x22, e->radio_syn22);
  34. b43_radio_write(dev, 0x25, e->radio_syn25);
  35. b43_radio_write(dev, 0x27, e->radio_syn27);
  36. b43_radio_write(dev, 0x28, e->radio_syn28);
  37. b43_radio_write(dev, 0x29, e->radio_syn29);
  38. b43_radio_write(dev, 0x2c, e->radio_syn2c);
  39. b43_radio_write(dev, 0x2d, e->radio_syn2d);
  40. b43_radio_write(dev, 0x37, e->radio_syn37);
  41. b43_radio_write(dev, 0x41, e->radio_syn41);
  42. b43_radio_write(dev, 0x43, e->radio_syn43);
  43. b43_radio_write(dev, 0x47, e->radio_syn47);
  44. b43_radio_write(dev, 0x4a, e->radio_syn4a);
  45. b43_radio_write(dev, 0x58, e->radio_syn58);
  46. b43_radio_write(dev, 0x5a, e->radio_syn5a);
  47. b43_radio_write(dev, 0x6a, e->radio_syn6a);
  48. b43_radio_write(dev, 0x6d, e->radio_syn6d);
  49. b43_radio_write(dev, 0x6e, e->radio_syn6e);
  50. b43_radio_write(dev, 0x92, e->radio_syn92);
  51. b43_radio_write(dev, 0x98, e->radio_syn98);
  52. for (i = 0; i < 2; i++) {
  53. routing = i ? R2059_RXRX1 : R2059_TXRX0;
  54. b43_radio_write(dev, routing | 0x4a, e->radio_rxtx4a);
  55. b43_radio_write(dev, routing | 0x58, e->radio_rxtx58);
  56. b43_radio_write(dev, routing | 0x5a, e->radio_rxtx5a);
  57. b43_radio_write(dev, routing | 0x6a, e->radio_rxtx6a);
  58. b43_radio_write(dev, routing | 0x6d, e->radio_rxtx6d);
  59. b43_radio_write(dev, routing | 0x6e, e->radio_rxtx6e);
  60. b43_radio_write(dev, routing | 0x92, e->radio_rxtx92);
  61. b43_radio_write(dev, routing | 0x98, e->radio_rxtx98);
  62. }
  63. udelay(50);
  64. /* Calibration */
  65. b43_radio_mask(dev, 0x2b, ~0x1);
  66. b43_radio_mask(dev, 0x2e, ~0x4);
  67. b43_radio_set(dev, 0x2e, 0x4);
  68. b43_radio_set(dev, 0x2b, 0x1);
  69. udelay(300);
  70. }
  71. static void b43_radio_2059_init(struct b43_wldev *dev)
  72. {
  73. const u16 routing[] = { R2059_SYN, R2059_TXRX0, R2059_RXRX1 };
  74. u8 i;
  75. b43_radio_write(dev, R2059_ALL | 0x51, 0x0070);
  76. b43_radio_write(dev, R2059_ALL | 0x5a, 0x0003);
  77. for (i = 0; i < ARRAY_SIZE(routing); i++)
  78. b43_radio_set(dev, routing[i] | 0x146, 0x3);
  79. b43_radio_set(dev, 0x2e, 0x0078);
  80. b43_radio_set(dev, 0xc0, 0x0080);
  81. msleep(2);
  82. b43_radio_mask(dev, 0x2e, ~0x0078);
  83. b43_radio_mask(dev, 0xc0, ~0x0080);
  84. b43_radio_mask(dev, 0x11, 0x0008);
  85. }
  86. /**************************************************
  87. * Channel switching ops.
  88. **************************************************/
  89. static void b43_phy_ht_channel_setup(struct b43_wldev *dev,
  90. const struct b43_phy_ht_channeltab_e_phy *e,
  91. struct ieee80211_channel *new_channel)
  92. {
  93. bool old_band_5ghz;
  94. u8 i;
  95. old_band_5ghz = b43_phy_read(dev, B43_PHY_HT_BANDCTL) & 0; /* FIXME */
  96. if (new_channel->band == IEEE80211_BAND_5GHZ && !old_band_5ghz) {
  97. /* TODO */
  98. } else if (new_channel->band == IEEE80211_BAND_2GHZ && old_band_5ghz) {
  99. /* TODO */
  100. }
  101. b43_phy_write(dev, B43_PHY_HT_BW1, e->bw1);
  102. b43_phy_write(dev, B43_PHY_HT_BW2, e->bw2);
  103. b43_phy_write(dev, B43_PHY_HT_BW3, e->bw3);
  104. b43_phy_write(dev, B43_PHY_HT_BW4, e->bw4);
  105. b43_phy_write(dev, B43_PHY_HT_BW5, e->bw5);
  106. b43_phy_write(dev, B43_PHY_HT_BW6, e->bw6);
  107. /* TODO: some ops on PHY regs 0x0B0 and 0xC0A */
  108. /* TODO: separated function? */
  109. for (i = 0; i < 3; i++) {
  110. u16 mask;
  111. u32 tmp = b43_httab_read(dev, B43_HTTAB32(26, 0xE8));
  112. if (0) /* FIXME */
  113. mask = 0x2 << (i * 4);
  114. else
  115. mask = 0;
  116. b43_phy_mask(dev, B43_PHY_EXTG(0x108), mask);
  117. b43_httab_write(dev, B43_HTTAB16(7, 0x110 + i), tmp >> 16);
  118. b43_httab_write(dev, B43_HTTAB8(13, 0x63 + (i * 4)),
  119. tmp & 0xFF);
  120. b43_httab_write(dev, B43_HTTAB8(13, 0x73 + (i * 4)),
  121. tmp & 0xFF);
  122. }
  123. b43_phy_write(dev, 0x017e, 0x3830);
  124. }
  125. static int b43_phy_ht_set_channel(struct b43_wldev *dev,
  126. struct ieee80211_channel *channel,
  127. enum nl80211_channel_type channel_type)
  128. {
  129. struct b43_phy *phy = &dev->phy;
  130. const struct b43_phy_ht_channeltab_e_radio2059 *chent_r2059 = NULL;
  131. if (phy->radio_ver == 0x2059) {
  132. chent_r2059 = b43_phy_ht_get_channeltab_e_r2059(dev,
  133. channel->center_freq);
  134. if (!chent_r2059)
  135. return -ESRCH;
  136. } else {
  137. return -ESRCH;
  138. }
  139. /* TODO: In case of N-PHY some bandwidth switching goes here */
  140. if (phy->radio_ver == 0x2059) {
  141. b43_radio_2059_channel_setup(dev, chent_r2059);
  142. b43_phy_ht_channel_setup(dev, &(chent_r2059->phy_regs),
  143. channel);
  144. } else {
  145. return -ESRCH;
  146. }
  147. return 0;
  148. }
  149. /**************************************************
  150. * Basic PHY ops.
  151. **************************************************/
  152. static int b43_phy_ht_op_allocate(struct b43_wldev *dev)
  153. {
  154. struct b43_phy_ht *phy_ht;
  155. phy_ht = kzalloc(sizeof(*phy_ht), GFP_KERNEL);
  156. if (!phy_ht)
  157. return -ENOMEM;
  158. dev->phy.ht = phy_ht;
  159. return 0;
  160. }
  161. static void b43_phy_ht_op_prepare_structs(struct b43_wldev *dev)
  162. {
  163. struct b43_phy *phy = &dev->phy;
  164. struct b43_phy_ht *phy_ht = phy->ht;
  165. memset(phy_ht, 0, sizeof(*phy_ht));
  166. }
  167. static void b43_phy_ht_op_free(struct b43_wldev *dev)
  168. {
  169. struct b43_phy *phy = &dev->phy;
  170. struct b43_phy_ht *phy_ht = phy->ht;
  171. kfree(phy_ht);
  172. phy->ht = NULL;
  173. }
  174. /* http://bcm-v4.sipsolutions.net/802.11/Radio/Switch%20Radio */
  175. static void b43_phy_ht_op_software_rfkill(struct b43_wldev *dev,
  176. bool blocked)
  177. {
  178. if (b43_read32(dev, B43_MMIO_MACCTL) & B43_MACCTL_ENABLED)
  179. b43err(dev->wl, "MAC not suspended\n");
  180. if (blocked) {
  181. b43_phy_mask(dev, B43_PHY_HT_RF_CTL1, ~0);
  182. } else {
  183. b43_phy_mask(dev, B43_PHY_HT_RF_CTL1, ~0);
  184. b43_phy_maskset(dev, B43_PHY_HT_RF_CTL1, ~0, 0x1);
  185. b43_phy_mask(dev, B43_PHY_HT_RF_CTL1, ~0);
  186. b43_phy_maskset(dev, B43_PHY_HT_RF_CTL1, ~0, 0x2);
  187. if (dev->phy.radio_ver == 0x2059)
  188. b43_radio_2059_init(dev);
  189. else
  190. B43_WARN_ON(1);
  191. }
  192. }
  193. static void b43_phy_ht_op_switch_analog(struct b43_wldev *dev, bool on)
  194. {
  195. if (on) {
  196. b43_phy_write(dev, B43_PHY_HT_AFE_CTL2, 0x00cd);
  197. b43_phy_write(dev, B43_PHY_HT_AFE_CTL1, 0x0000);
  198. b43_phy_write(dev, B43_PHY_HT_AFE_CTL4, 0x00cd);
  199. b43_phy_write(dev, B43_PHY_HT_AFE_CTL3, 0x0000);
  200. b43_phy_write(dev, B43_PHY_HT_AFE_CTL6, 0x00cd);
  201. b43_phy_write(dev, B43_PHY_HT_AFE_CTL5, 0x0000);
  202. } else {
  203. b43_phy_write(dev, B43_PHY_HT_AFE_CTL1, 0x07ff);
  204. b43_phy_write(dev, B43_PHY_HT_AFE_CTL2, 0x00fd);
  205. b43_phy_write(dev, B43_PHY_HT_AFE_CTL3, 0x07ff);
  206. b43_phy_write(dev, B43_PHY_HT_AFE_CTL4, 0x00fd);
  207. b43_phy_write(dev, B43_PHY_HT_AFE_CTL5, 0x07ff);
  208. b43_phy_write(dev, B43_PHY_HT_AFE_CTL6, 0x00fd);
  209. }
  210. }
  211. static int b43_phy_ht_op_switch_channel(struct b43_wldev *dev,
  212. unsigned int new_channel)
  213. {
  214. struct ieee80211_channel *channel = dev->wl->hw->conf.channel;
  215. enum nl80211_channel_type channel_type = dev->wl->hw->conf.channel_type;
  216. if (b43_current_band(dev->wl) == IEEE80211_BAND_2GHZ) {
  217. if ((new_channel < 1) || (new_channel > 14))
  218. return -EINVAL;
  219. } else {
  220. return -EINVAL;
  221. }
  222. return b43_phy_ht_set_channel(dev, channel, channel_type);
  223. }
  224. static unsigned int b43_phy_ht_op_get_default_chan(struct b43_wldev *dev)
  225. {
  226. if (b43_current_band(dev->wl) == IEEE80211_BAND_2GHZ)
  227. return 1;
  228. return 36;
  229. }
  230. /**************************************************
  231. * R/W ops.
  232. **************************************************/
  233. static u16 b43_phy_ht_op_read(struct b43_wldev *dev, u16 reg)
  234. {
  235. b43_write16(dev, B43_MMIO_PHY_CONTROL, reg);
  236. return b43_read16(dev, B43_MMIO_PHY_DATA);
  237. }
  238. static void b43_phy_ht_op_write(struct b43_wldev *dev, u16 reg, u16 value)
  239. {
  240. b43_write16(dev, B43_MMIO_PHY_CONTROL, reg);
  241. b43_write16(dev, B43_MMIO_PHY_DATA, value);
  242. }
  243. static void b43_phy_ht_op_maskset(struct b43_wldev *dev, u16 reg, u16 mask,
  244. u16 set)
  245. {
  246. b43_write16(dev, B43_MMIO_PHY_CONTROL, reg);
  247. b43_write16(dev, B43_MMIO_PHY_DATA,
  248. (b43_read16(dev, B43_MMIO_PHY_DATA) & mask) | set);
  249. }
  250. static u16 b43_phy_ht_op_radio_read(struct b43_wldev *dev, u16 reg)
  251. {
  252. /* HT-PHY needs 0x200 for read access */
  253. reg |= 0x200;
  254. b43_write16(dev, B43_MMIO_RADIO24_CONTROL, reg);
  255. return b43_read16(dev, B43_MMIO_RADIO24_DATA);
  256. }
  257. static void b43_phy_ht_op_radio_write(struct b43_wldev *dev, u16 reg,
  258. u16 value)
  259. {
  260. b43_write16(dev, B43_MMIO_RADIO24_CONTROL, reg);
  261. b43_write16(dev, B43_MMIO_RADIO24_DATA, value);
  262. }
  263. /**************************************************
  264. * PHY ops struct.
  265. **************************************************/
  266. const struct b43_phy_operations b43_phyops_ht = {
  267. .allocate = b43_phy_ht_op_allocate,
  268. .free = b43_phy_ht_op_free,
  269. .prepare_structs = b43_phy_ht_op_prepare_structs,
  270. /*
  271. .init = b43_phy_ht_op_init,
  272. */
  273. .phy_read = b43_phy_ht_op_read,
  274. .phy_write = b43_phy_ht_op_write,
  275. .phy_maskset = b43_phy_ht_op_maskset,
  276. .radio_read = b43_phy_ht_op_radio_read,
  277. .radio_write = b43_phy_ht_op_radio_write,
  278. .software_rfkill = b43_phy_ht_op_software_rfkill,
  279. .switch_analog = b43_phy_ht_op_switch_analog,
  280. .switch_channel = b43_phy_ht_op_switch_channel,
  281. .get_default_chan = b43_phy_ht_op_get_default_chan,
  282. /*
  283. .recalc_txpower = b43_phy_ht_op_recalc_txpower,
  284. .adjust_txpower = b43_phy_ht_op_adjust_txpower,
  285. */
  286. };