cfp.c 10 KB

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  1. /*
  2. * Marvell Wireless LAN device driver: Channel, Frequence and Power
  3. *
  4. * Copyright (C) 2011, Marvell International Ltd.
  5. *
  6. * This software file (the "File") is distributed by Marvell International
  7. * Ltd. under the terms of the GNU General Public License Version 2, June 1991
  8. * (the "License"). You may use, redistribute and/or modify this File in
  9. * accordance with the terms and conditions of the License, a copy of which
  10. * is available by writing to the Free Software Foundation, Inc.,
  11. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA or on the
  12. * worldwide web at http://www.gnu.org/licenses/old-licenses/gpl-2.0.txt.
  13. *
  14. * THE FILE IS DISTRIBUTED AS-IS, WITHOUT WARRANTY OF ANY KIND, AND THE
  15. * IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE
  16. * ARE EXPRESSLY DISCLAIMED. The License provides additional details about
  17. * this warranty disclaimer.
  18. */
  19. #include "decl.h"
  20. #include "ioctl.h"
  21. #include "util.h"
  22. #include "fw.h"
  23. #include "main.h"
  24. #include "cfg80211.h"
  25. /* 100mW */
  26. #define MWIFIEX_TX_PWR_DEFAULT 20
  27. /* 100mW */
  28. #define MWIFIEX_TX_PWR_US_DEFAULT 20
  29. /* 50mW */
  30. #define MWIFIEX_TX_PWR_JP_DEFAULT 16
  31. /* 100mW */
  32. #define MWIFIEX_TX_PWR_FR_100MW 20
  33. /* 10mW */
  34. #define MWIFIEX_TX_PWR_FR_10MW 10
  35. /* 100mW */
  36. #define MWIFIEX_TX_PWR_EMEA_DEFAULT 20
  37. static u8 adhoc_rates_b[B_SUPPORTED_RATES] = { 0x82, 0x84, 0x8b, 0x96, 0 };
  38. static u8 adhoc_rates_g[G_SUPPORTED_RATES] = { 0x8c, 0x12, 0x98, 0x24,
  39. 0xb0, 0x48, 0x60, 0x6c, 0 };
  40. static u8 adhoc_rates_bg[BG_SUPPORTED_RATES] = { 0x82, 0x84, 0x8b, 0x96,
  41. 0x0c, 0x12, 0x18, 0x24,
  42. 0x30, 0x48, 0x60, 0x6c, 0 };
  43. static u8 adhoc_rates_a[A_SUPPORTED_RATES] = { 0x8c, 0x12, 0x98, 0x24,
  44. 0xb0, 0x48, 0x60, 0x6c, 0 };
  45. static u8 supported_rates_a[A_SUPPORTED_RATES] = { 0x0c, 0x12, 0x18, 0x24,
  46. 0xb0, 0x48, 0x60, 0x6c, 0 };
  47. static u16 mwifiex_data_rates[MWIFIEX_SUPPORTED_RATES_EXT] = { 0x02, 0x04,
  48. 0x0B, 0x16, 0x00, 0x0C, 0x12, 0x18,
  49. 0x24, 0x30, 0x48, 0x60, 0x6C, 0x90,
  50. 0x0D, 0x1A, 0x27, 0x34, 0x4E, 0x68,
  51. 0x75, 0x82, 0x0C, 0x1B, 0x36, 0x51,
  52. 0x6C, 0xA2, 0xD8, 0xF3, 0x10E, 0x00 };
  53. static u8 supported_rates_b[B_SUPPORTED_RATES] = { 0x02, 0x04, 0x0b, 0x16, 0 };
  54. static u8 supported_rates_g[G_SUPPORTED_RATES] = { 0x0c, 0x12, 0x18, 0x24,
  55. 0x30, 0x48, 0x60, 0x6c, 0 };
  56. static u8 supported_rates_bg[BG_SUPPORTED_RATES] = { 0x02, 0x04, 0x0b, 0x0c,
  57. 0x12, 0x16, 0x18, 0x24, 0x30, 0x48,
  58. 0x60, 0x6c, 0 };
  59. u16 region_code_index[MWIFIEX_MAX_REGION_CODE] = { 0x10, 0x20, 0x30,
  60. 0x32, 0x40, 0x41, 0xff };
  61. static u8 supported_rates_n[N_SUPPORTED_RATES] = { 0x02, 0x04, 0 };
  62. /*
  63. * This function maps an index in supported rates table into
  64. * the corresponding data rate.
  65. */
  66. u32 mwifiex_index_to_data_rate(struct mwifiex_private *priv, u8 index,
  67. u8 ht_info)
  68. {
  69. /*
  70. * For every mcs_rate line, the first 8 bytes are for stream 1x1,
  71. * and all 16 bytes are for stream 2x2.
  72. */
  73. u16 mcs_rate[4][16] = {
  74. /* LGI 40M */
  75. { 0x1b, 0x36, 0x51, 0x6c, 0xa2, 0xd8, 0xf3, 0x10e,
  76. 0x36, 0x6c, 0xa2, 0xd8, 0x144, 0x1b0, 0x1e6, 0x21c },
  77. /* SGI 40M */
  78. { 0x1e, 0x3c, 0x5a, 0x78, 0xb4, 0xf0, 0x10e, 0x12c,
  79. 0x3c, 0x78, 0xb4, 0xf0, 0x168, 0x1e0, 0x21c, 0x258 },
  80. /* LGI 20M */
  81. { 0x0d, 0x1a, 0x27, 0x34, 0x4e, 0x68, 0x75, 0x82,
  82. 0x1a, 0x34, 0x4e, 0x68, 0x9c, 0xd0, 0xea, 0x104 },
  83. /* SGI 20M */
  84. { 0x0e, 0x1c, 0x2b, 0x39, 0x56, 0x73, 0x82, 0x90,
  85. 0x1c, 0x39, 0x56, 0x73, 0xad, 0xe7, 0x104, 0x120 }
  86. };
  87. u32 mcs_num_supp =
  88. (priv->adapter->hw_dev_mcs_support == HT_STREAM_2X2) ? 16 : 8;
  89. u32 rate;
  90. if (ht_info & BIT(0)) {
  91. if (index == MWIFIEX_RATE_BITMAP_MCS0) {
  92. if (ht_info & BIT(2))
  93. rate = 0x0D; /* MCS 32 SGI rate */
  94. else
  95. rate = 0x0C; /* MCS 32 LGI rate */
  96. } else if (index < mcs_num_supp) {
  97. if (ht_info & BIT(1)) {
  98. if (ht_info & BIT(2))
  99. /* SGI, 40M */
  100. rate = mcs_rate[1][index];
  101. else
  102. /* LGI, 40M */
  103. rate = mcs_rate[0][index];
  104. } else {
  105. if (ht_info & BIT(2))
  106. /* SGI, 20M */
  107. rate = mcs_rate[3][index];
  108. else
  109. /* LGI, 20M */
  110. rate = mcs_rate[2][index];
  111. }
  112. } else
  113. rate = mwifiex_data_rates[0];
  114. } else {
  115. if (index >= MWIFIEX_SUPPORTED_RATES_EXT)
  116. index = 0;
  117. rate = mwifiex_data_rates[index];
  118. }
  119. return rate;
  120. }
  121. /*
  122. * This function maps a data rate value into corresponding index in supported
  123. * rates table.
  124. */
  125. u8 mwifiex_data_rate_to_index(u32 rate)
  126. {
  127. u16 *ptr;
  128. if (rate) {
  129. ptr = memchr(mwifiex_data_rates, rate,
  130. sizeof(mwifiex_data_rates));
  131. if (ptr)
  132. return (u8) (ptr - mwifiex_data_rates);
  133. }
  134. return 0;
  135. }
  136. /*
  137. * This function returns the current active data rates.
  138. *
  139. * The result may vary depending upon connection status.
  140. */
  141. u32 mwifiex_get_active_data_rates(struct mwifiex_private *priv, u8 *rates)
  142. {
  143. if (!priv->media_connected)
  144. return mwifiex_get_supported_rates(priv, rates);
  145. else
  146. return mwifiex_copy_rates(rates, 0,
  147. priv->curr_bss_params.data_rates,
  148. priv->curr_bss_params.num_of_rates);
  149. }
  150. /*
  151. * This function locates the Channel-Frequency-Power triplet based upon
  152. * band and channel parameters.
  153. */
  154. struct mwifiex_chan_freq_power *
  155. mwifiex_get_cfp_by_band_and_channel_from_cfg80211(struct mwifiex_private
  156. *priv, u8 band, u16 channel)
  157. {
  158. struct mwifiex_chan_freq_power *cfp = NULL;
  159. struct ieee80211_supported_band *sband;
  160. struct ieee80211_channel *ch;
  161. int i;
  162. if (mwifiex_band_to_radio_type(band) == HostCmd_SCAN_RADIO_TYPE_BG)
  163. sband = priv->wdev->wiphy->bands[IEEE80211_BAND_2GHZ];
  164. else
  165. sband = priv->wdev->wiphy->bands[IEEE80211_BAND_5GHZ];
  166. if (!sband) {
  167. dev_err(priv->adapter->dev, "%s: cannot find cfp by band %d"
  168. " & channel %d\n", __func__, band, channel);
  169. return cfp;
  170. }
  171. for (i = 0; i < sband->n_channels; i++) {
  172. ch = &sband->channels[i];
  173. if (((ch->hw_value == channel) ||
  174. (channel == FIRST_VALID_CHANNEL))
  175. && !(ch->flags & IEEE80211_CHAN_DISABLED)) {
  176. priv->cfp.channel = channel;
  177. priv->cfp.freq = ch->center_freq;
  178. priv->cfp.max_tx_power = ch->max_power;
  179. cfp = &priv->cfp;
  180. break;
  181. }
  182. }
  183. if (i == sband->n_channels)
  184. dev_err(priv->adapter->dev, "%s: cannot find cfp by band %d"
  185. " & channel %d\n", __func__, band, channel);
  186. return cfp;
  187. }
  188. /*
  189. * This function locates the Channel-Frequency-Power triplet based upon
  190. * band and frequency parameters.
  191. */
  192. struct mwifiex_chan_freq_power *
  193. mwifiex_get_cfp_by_band_and_freq_from_cfg80211(struct mwifiex_private *priv,
  194. u8 band, u32 freq)
  195. {
  196. struct mwifiex_chan_freq_power *cfp = NULL;
  197. struct ieee80211_supported_band *sband;
  198. struct ieee80211_channel *ch;
  199. int i;
  200. if (mwifiex_band_to_radio_type(band) == HostCmd_SCAN_RADIO_TYPE_BG)
  201. sband = priv->wdev->wiphy->bands[IEEE80211_BAND_2GHZ];
  202. else
  203. sband = priv->wdev->wiphy->bands[IEEE80211_BAND_5GHZ];
  204. if (!sband) {
  205. dev_err(priv->adapter->dev, "%s: cannot find cfp by band %d"
  206. " & freq %d\n", __func__, band, freq);
  207. return cfp;
  208. }
  209. for (i = 0; i < sband->n_channels; i++) {
  210. ch = &sband->channels[i];
  211. if ((ch->center_freq == freq) &&
  212. !(ch->flags & IEEE80211_CHAN_DISABLED)) {
  213. priv->cfp.channel = ch->hw_value;
  214. priv->cfp.freq = freq;
  215. priv->cfp.max_tx_power = ch->max_power;
  216. cfp = &priv->cfp;
  217. break;
  218. }
  219. }
  220. if (i == sband->n_channels)
  221. dev_err(priv->adapter->dev, "%s: cannot find cfp by band %d"
  222. " & freq %d\n", __func__, band, freq);
  223. return cfp;
  224. }
  225. /*
  226. * This function checks if the data rate is set to auto.
  227. */
  228. u8
  229. mwifiex_is_rate_auto(struct mwifiex_private *priv)
  230. {
  231. u32 i;
  232. int rate_num = 0;
  233. for (i = 0; i < ARRAY_SIZE(priv->bitmap_rates); i++)
  234. if (priv->bitmap_rates[i])
  235. rate_num++;
  236. if (rate_num > 1)
  237. return true;
  238. else
  239. return false;
  240. }
  241. /*
  242. * This function converts rate bitmap into rate index.
  243. */
  244. int mwifiex_get_rate_index(u16 *rate_bitmap, int size)
  245. {
  246. int i;
  247. for (i = 0; i < size * 8; i++)
  248. if (rate_bitmap[i / 16] & (1 << (i % 16)))
  249. return i;
  250. return 0;
  251. }
  252. /*
  253. * This function gets the supported data rates.
  254. *
  255. * The function works in both Ad-Hoc and infra mode by printing the
  256. * band and returning the data rates.
  257. */
  258. u32 mwifiex_get_supported_rates(struct mwifiex_private *priv, u8 *rates)
  259. {
  260. u32 k = 0;
  261. struct mwifiex_adapter *adapter = priv->adapter;
  262. if (priv->bss_mode == NL80211_IFTYPE_STATION) {
  263. switch (adapter->config_bands) {
  264. case BAND_B:
  265. dev_dbg(adapter->dev, "info: infra band=%d "
  266. "supported_rates_b\n", adapter->config_bands);
  267. k = mwifiex_copy_rates(rates, k, supported_rates_b,
  268. sizeof(supported_rates_b));
  269. break;
  270. case BAND_G:
  271. case BAND_G | BAND_GN:
  272. dev_dbg(adapter->dev, "info: infra band=%d "
  273. "supported_rates_g\n", adapter->config_bands);
  274. k = mwifiex_copy_rates(rates, k, supported_rates_g,
  275. sizeof(supported_rates_g));
  276. break;
  277. case BAND_B | BAND_G:
  278. case BAND_A | BAND_B | BAND_G:
  279. case BAND_A | BAND_B:
  280. case BAND_A | BAND_B | BAND_G | BAND_GN | BAND_AN:
  281. case BAND_B | BAND_G | BAND_GN:
  282. dev_dbg(adapter->dev, "info: infra band=%d "
  283. "supported_rates_bg\n", adapter->config_bands);
  284. k = mwifiex_copy_rates(rates, k, supported_rates_bg,
  285. sizeof(supported_rates_bg));
  286. break;
  287. case BAND_A:
  288. case BAND_A | BAND_G:
  289. dev_dbg(adapter->dev, "info: infra band=%d "
  290. "supported_rates_a\n", adapter->config_bands);
  291. k = mwifiex_copy_rates(rates, k, supported_rates_a,
  292. sizeof(supported_rates_a));
  293. break;
  294. case BAND_A | BAND_AN:
  295. case BAND_A | BAND_G | BAND_AN | BAND_GN:
  296. dev_dbg(adapter->dev, "info: infra band=%d "
  297. "supported_rates_a\n", adapter->config_bands);
  298. k = mwifiex_copy_rates(rates, k, supported_rates_a,
  299. sizeof(supported_rates_a));
  300. break;
  301. case BAND_GN:
  302. dev_dbg(adapter->dev, "info: infra band=%d "
  303. "supported_rates_n\n", adapter->config_bands);
  304. k = mwifiex_copy_rates(rates, k, supported_rates_n,
  305. sizeof(supported_rates_n));
  306. break;
  307. }
  308. } else {
  309. /* Ad-hoc mode */
  310. switch (adapter->adhoc_start_band) {
  311. case BAND_B:
  312. dev_dbg(adapter->dev, "info: adhoc B\n");
  313. k = mwifiex_copy_rates(rates, k, adhoc_rates_b,
  314. sizeof(adhoc_rates_b));
  315. break;
  316. case BAND_G:
  317. case BAND_G | BAND_GN:
  318. dev_dbg(adapter->dev, "info: adhoc G only\n");
  319. k = mwifiex_copy_rates(rates, k, adhoc_rates_g,
  320. sizeof(adhoc_rates_g));
  321. break;
  322. case BAND_B | BAND_G:
  323. case BAND_B | BAND_G | BAND_GN:
  324. dev_dbg(adapter->dev, "info: adhoc BG\n");
  325. k = mwifiex_copy_rates(rates, k, adhoc_rates_bg,
  326. sizeof(adhoc_rates_bg));
  327. break;
  328. case BAND_A:
  329. case BAND_A | BAND_AN:
  330. dev_dbg(adapter->dev, "info: adhoc A\n");
  331. k = mwifiex_copy_rates(rates, k, adhoc_rates_a,
  332. sizeof(adhoc_rates_a));
  333. break;
  334. }
  335. }
  336. return k;
  337. }