iwl-debugfs.c 64 KB

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  1. /******************************************************************************
  2. *
  3. * GPL LICENSE SUMMARY
  4. *
  5. * Copyright(c) 2008 - 2009 Intel Corporation. All rights reserved.
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it 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
  12. * WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110,
  19. * USA
  20. *
  21. * The full GNU General Public License is included in this distribution
  22. * in the file called LICENSE.GPL.
  23. *
  24. * Contact Information:
  25. * Intel Linux Wireless <ilw@linux.intel.com>
  26. * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
  27. *****************************************************************************/
  28. #include <linux/kernel.h>
  29. #include <linux/module.h>
  30. #include <linux/debugfs.h>
  31. #include <linux/ieee80211.h>
  32. #include <net/mac80211.h>
  33. #include "iwl-dev.h"
  34. #include "iwl-debug.h"
  35. #include "iwl-core.h"
  36. #include "iwl-io.h"
  37. #include "iwl-calib.h"
  38. /* create and remove of files */
  39. #define DEBUGFS_ADD_DIR(name, parent) do { \
  40. dbgfs->dir_##name = debugfs_create_dir(#name, parent); \
  41. if (!(dbgfs->dir_##name)) \
  42. goto err; \
  43. } while (0)
  44. #define DEBUGFS_ADD_FILE(name, parent) do { \
  45. dbgfs->dbgfs_##parent##_files.file_##name = \
  46. debugfs_create_file(#name, S_IWUSR | S_IRUSR, \
  47. dbgfs->dir_##parent, priv, \
  48. &iwl_dbgfs_##name##_ops); \
  49. if (!(dbgfs->dbgfs_##parent##_files.file_##name)) \
  50. goto err; \
  51. } while (0)
  52. #define DEBUGFS_ADD_BOOL(name, parent, ptr) do { \
  53. dbgfs->dbgfs_##parent##_files.file_##name = \
  54. debugfs_create_bool(#name, S_IWUSR | S_IRUSR, \
  55. dbgfs->dir_##parent, ptr); \
  56. if (IS_ERR(dbgfs->dbgfs_##parent##_files.file_##name) \
  57. || !dbgfs->dbgfs_##parent##_files.file_##name) \
  58. goto err; \
  59. } while (0)
  60. #define DEBUGFS_ADD_X32(name, parent, ptr) do { \
  61. dbgfs->dbgfs_##parent##_files.file_##name = \
  62. debugfs_create_x32(#name, S_IRUSR, dbgfs->dir_##parent, ptr); \
  63. if (IS_ERR(dbgfs->dbgfs_##parent##_files.file_##name) \
  64. || !dbgfs->dbgfs_##parent##_files.file_##name) \
  65. goto err; \
  66. } while (0)
  67. #define DEBUGFS_REMOVE(name) do { \
  68. debugfs_remove(name); \
  69. name = NULL; \
  70. } while (0);
  71. /* file operation */
  72. #define DEBUGFS_READ_FUNC(name) \
  73. static ssize_t iwl_dbgfs_##name##_read(struct file *file, \
  74. char __user *user_buf, \
  75. size_t count, loff_t *ppos);
  76. #define DEBUGFS_WRITE_FUNC(name) \
  77. static ssize_t iwl_dbgfs_##name##_write(struct file *file, \
  78. const char __user *user_buf, \
  79. size_t count, loff_t *ppos);
  80. static int iwl_dbgfs_open_file_generic(struct inode *inode, struct file *file)
  81. {
  82. file->private_data = inode->i_private;
  83. return 0;
  84. }
  85. #define DEBUGFS_READ_FILE_OPS(name) \
  86. DEBUGFS_READ_FUNC(name); \
  87. static const struct file_operations iwl_dbgfs_##name##_ops = { \
  88. .read = iwl_dbgfs_##name##_read, \
  89. .open = iwl_dbgfs_open_file_generic, \
  90. };
  91. #define DEBUGFS_WRITE_FILE_OPS(name) \
  92. DEBUGFS_WRITE_FUNC(name); \
  93. static const struct file_operations iwl_dbgfs_##name##_ops = { \
  94. .write = iwl_dbgfs_##name##_write, \
  95. .open = iwl_dbgfs_open_file_generic, \
  96. };
  97. #define DEBUGFS_READ_WRITE_FILE_OPS(name) \
  98. DEBUGFS_READ_FUNC(name); \
  99. DEBUGFS_WRITE_FUNC(name); \
  100. static const struct file_operations iwl_dbgfs_##name##_ops = { \
  101. .write = iwl_dbgfs_##name##_write, \
  102. .read = iwl_dbgfs_##name##_read, \
  103. .open = iwl_dbgfs_open_file_generic, \
  104. };
  105. static ssize_t iwl_dbgfs_tx_statistics_read(struct file *file,
  106. char __user *user_buf,
  107. size_t count, loff_t *ppos) {
  108. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  109. char *buf;
  110. int pos = 0;
  111. int cnt;
  112. ssize_t ret;
  113. const size_t bufsz = 100 + sizeof(char) * 24 * (MANAGEMENT_MAX + CONTROL_MAX);
  114. buf = kzalloc(bufsz, GFP_KERNEL);
  115. if (!buf)
  116. return -ENOMEM;
  117. pos += scnprintf(buf + pos, bufsz - pos, "Management:\n");
  118. for (cnt = 0; cnt < MANAGEMENT_MAX; cnt++) {
  119. pos += scnprintf(buf + pos, bufsz - pos,
  120. "\t%s\t\t: %u\n",
  121. get_mgmt_string(cnt),
  122. priv->tx_stats.mgmt[cnt]);
  123. }
  124. pos += scnprintf(buf + pos, bufsz - pos, "Control\n");
  125. for (cnt = 0; cnt < CONTROL_MAX; cnt++) {
  126. pos += scnprintf(buf + pos, bufsz - pos,
  127. "\t%s\t\t: %u\n",
  128. get_ctrl_string(cnt),
  129. priv->tx_stats.ctrl[cnt]);
  130. }
  131. pos += scnprintf(buf + pos, bufsz - pos, "Data:\n");
  132. pos += scnprintf(buf + pos, bufsz - pos, "\tcnt: %u\n",
  133. priv->tx_stats.data_cnt);
  134. pos += scnprintf(buf + pos, bufsz - pos, "\tbytes: %llu\n",
  135. priv->tx_stats.data_bytes);
  136. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  137. kfree(buf);
  138. return ret;
  139. }
  140. static ssize_t iwl_dbgfs_tx_statistics_write(struct file *file,
  141. const char __user *user_buf,
  142. size_t count, loff_t *ppos)
  143. {
  144. struct iwl_priv *priv = file->private_data;
  145. u32 clear_flag;
  146. char buf[8];
  147. int buf_size;
  148. memset(buf, 0, sizeof(buf));
  149. buf_size = min(count, sizeof(buf) - 1);
  150. if (copy_from_user(buf, user_buf, buf_size))
  151. return -EFAULT;
  152. if (sscanf(buf, "%x", &clear_flag) != 1)
  153. return -EFAULT;
  154. if (clear_flag == 1)
  155. iwl_clear_tx_stats(priv);
  156. return count;
  157. }
  158. static ssize_t iwl_dbgfs_rx_statistics_read(struct file *file,
  159. char __user *user_buf,
  160. size_t count, loff_t *ppos) {
  161. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  162. char *buf;
  163. int pos = 0;
  164. int cnt;
  165. ssize_t ret;
  166. const size_t bufsz = 100 +
  167. sizeof(char) * 24 * (MANAGEMENT_MAX + CONTROL_MAX);
  168. buf = kzalloc(bufsz, GFP_KERNEL);
  169. if (!buf)
  170. return -ENOMEM;
  171. pos += scnprintf(buf + pos, bufsz - pos, "Management:\n");
  172. for (cnt = 0; cnt < MANAGEMENT_MAX; cnt++) {
  173. pos += scnprintf(buf + pos, bufsz - pos,
  174. "\t%s\t\t: %u\n",
  175. get_mgmt_string(cnt),
  176. priv->rx_stats.mgmt[cnt]);
  177. }
  178. pos += scnprintf(buf + pos, bufsz - pos, "Control:\n");
  179. for (cnt = 0; cnt < CONTROL_MAX; cnt++) {
  180. pos += scnprintf(buf + pos, bufsz - pos,
  181. "\t%s\t\t: %u\n",
  182. get_ctrl_string(cnt),
  183. priv->rx_stats.ctrl[cnt]);
  184. }
  185. pos += scnprintf(buf + pos, bufsz - pos, "Data:\n");
  186. pos += scnprintf(buf + pos, bufsz - pos, "\tcnt: %u\n",
  187. priv->rx_stats.data_cnt);
  188. pos += scnprintf(buf + pos, bufsz - pos, "\tbytes: %llu\n",
  189. priv->rx_stats.data_bytes);
  190. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  191. kfree(buf);
  192. return ret;
  193. }
  194. static ssize_t iwl_dbgfs_rx_statistics_write(struct file *file,
  195. const char __user *user_buf,
  196. size_t count, loff_t *ppos)
  197. {
  198. struct iwl_priv *priv = file->private_data;
  199. u32 clear_flag;
  200. char buf[8];
  201. int buf_size;
  202. memset(buf, 0, sizeof(buf));
  203. buf_size = min(count, sizeof(buf) - 1);
  204. if (copy_from_user(buf, user_buf, buf_size))
  205. return -EFAULT;
  206. if (sscanf(buf, "%x", &clear_flag) != 1)
  207. return -EFAULT;
  208. if (clear_flag == 1)
  209. iwl_clear_rx_stats(priv);
  210. return count;
  211. }
  212. #define BYTE1_MASK 0x000000ff;
  213. #define BYTE2_MASK 0x0000ffff;
  214. #define BYTE3_MASK 0x00ffffff;
  215. static ssize_t iwl_dbgfs_sram_read(struct file *file,
  216. char __user *user_buf,
  217. size_t count, loff_t *ppos)
  218. {
  219. u32 val;
  220. char buf[1024];
  221. ssize_t ret;
  222. int i;
  223. int pos = 0;
  224. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  225. const size_t bufsz = sizeof(buf);
  226. for (i = priv->dbgfs->sram_len; i > 0; i -= 4) {
  227. val = iwl_read_targ_mem(priv, priv->dbgfs->sram_offset + \
  228. priv->dbgfs->sram_len - i);
  229. if (i < 4) {
  230. switch (i) {
  231. case 1:
  232. val &= BYTE1_MASK;
  233. break;
  234. case 2:
  235. val &= BYTE2_MASK;
  236. break;
  237. case 3:
  238. val &= BYTE3_MASK;
  239. break;
  240. }
  241. }
  242. pos += scnprintf(buf + pos, bufsz - pos, "0x%08x ", val);
  243. }
  244. pos += scnprintf(buf + pos, bufsz - pos, "\n");
  245. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  246. return ret;
  247. }
  248. static ssize_t iwl_dbgfs_sram_write(struct file *file,
  249. const char __user *user_buf,
  250. size_t count, loff_t *ppos)
  251. {
  252. struct iwl_priv *priv = file->private_data;
  253. char buf[64];
  254. int buf_size;
  255. u32 offset, len;
  256. memset(buf, 0, sizeof(buf));
  257. buf_size = min(count, sizeof(buf) - 1);
  258. if (copy_from_user(buf, user_buf, buf_size))
  259. return -EFAULT;
  260. if (sscanf(buf, "%x,%x", &offset, &len) == 2) {
  261. priv->dbgfs->sram_offset = offset;
  262. priv->dbgfs->sram_len = len;
  263. } else {
  264. priv->dbgfs->sram_offset = 0;
  265. priv->dbgfs->sram_len = 0;
  266. }
  267. return count;
  268. }
  269. static ssize_t iwl_dbgfs_stations_read(struct file *file, char __user *user_buf,
  270. size_t count, loff_t *ppos)
  271. {
  272. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  273. struct iwl_station_entry *station;
  274. int max_sta = priv->hw_params.max_stations;
  275. char *buf;
  276. int i, j, pos = 0;
  277. ssize_t ret;
  278. /* Add 30 for initial string */
  279. const size_t bufsz = 30 + sizeof(char) * 500 * (priv->num_stations);
  280. buf = kmalloc(bufsz, GFP_KERNEL);
  281. if (!buf)
  282. return -ENOMEM;
  283. pos += scnprintf(buf + pos, bufsz - pos, "num of stations: %d\n\n",
  284. priv->num_stations);
  285. for (i = 0; i < max_sta; i++) {
  286. station = &priv->stations[i];
  287. if (station->used) {
  288. pos += scnprintf(buf + pos, bufsz - pos,
  289. "station %d:\ngeneral data:\n", i+1);
  290. pos += scnprintf(buf + pos, bufsz - pos, "id: %u\n",
  291. station->sta.sta.sta_id);
  292. pos += scnprintf(buf + pos, bufsz - pos, "mode: %u\n",
  293. station->sta.mode);
  294. pos += scnprintf(buf + pos, bufsz - pos,
  295. "flags: 0x%x\n",
  296. station->sta.station_flags_msk);
  297. pos += scnprintf(buf + pos, bufsz - pos,
  298. "ps_status: %u\n", station->ps_status);
  299. pos += scnprintf(buf + pos, bufsz - pos, "tid data:\n");
  300. pos += scnprintf(buf + pos, bufsz - pos,
  301. "seq_num\t\ttxq_id");
  302. pos += scnprintf(buf + pos, bufsz - pos,
  303. "\tframe_count\twait_for_ba\t");
  304. pos += scnprintf(buf + pos, bufsz - pos,
  305. "start_idx\tbitmap0\t");
  306. pos += scnprintf(buf + pos, bufsz - pos,
  307. "bitmap1\trate_n_flags");
  308. pos += scnprintf(buf + pos, bufsz - pos, "\n");
  309. for (j = 0; j < MAX_TID_COUNT; j++) {
  310. pos += scnprintf(buf + pos, bufsz - pos,
  311. "[%d]:\t\t%u", j,
  312. station->tid[j].seq_number);
  313. pos += scnprintf(buf + pos, bufsz - pos,
  314. "\t%u\t\t%u\t\t%u\t\t",
  315. station->tid[j].agg.txq_id,
  316. station->tid[j].agg.frame_count,
  317. station->tid[j].agg.wait_for_ba);
  318. pos += scnprintf(buf + pos, bufsz - pos,
  319. "%u\t%llu\t%u",
  320. station->tid[j].agg.start_idx,
  321. (unsigned long long)station->tid[j].agg.bitmap,
  322. station->tid[j].agg.rate_n_flags);
  323. pos += scnprintf(buf + pos, bufsz - pos, "\n");
  324. }
  325. pos += scnprintf(buf + pos, bufsz - pos, "\n");
  326. }
  327. }
  328. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  329. kfree(buf);
  330. return ret;
  331. }
  332. static ssize_t iwl_dbgfs_nvm_read(struct file *file,
  333. char __user *user_buf,
  334. size_t count,
  335. loff_t *ppos)
  336. {
  337. ssize_t ret;
  338. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  339. int pos = 0, ofs = 0, buf_size = 0;
  340. const u8 *ptr;
  341. char *buf;
  342. u16 eeprom_ver;
  343. size_t eeprom_len = priv->cfg->eeprom_size;
  344. buf_size = 4 * eeprom_len + 256;
  345. if (eeprom_len % 16) {
  346. IWL_ERR(priv, "NVM size is not multiple of 16.\n");
  347. return -ENODATA;
  348. }
  349. ptr = priv->eeprom;
  350. if (!ptr) {
  351. IWL_ERR(priv, "Invalid EEPROM/OTP memory\n");
  352. return -ENOMEM;
  353. }
  354. /* 4 characters for byte 0xYY */
  355. buf = kzalloc(buf_size, GFP_KERNEL);
  356. if (!buf) {
  357. IWL_ERR(priv, "Can not allocate Buffer\n");
  358. return -ENOMEM;
  359. }
  360. eeprom_ver = iwl_eeprom_query16(priv, EEPROM_VERSION);
  361. pos += scnprintf(buf + pos, buf_size - pos, "NVM Type: %s, "
  362. "version: 0x%x\n",
  363. (priv->nvm_device_type == NVM_DEVICE_TYPE_OTP)
  364. ? "OTP" : "EEPROM", eeprom_ver);
  365. for (ofs = 0 ; ofs < eeprom_len ; ofs += 16) {
  366. pos += scnprintf(buf + pos, buf_size - pos, "0x%.4x ", ofs);
  367. hex_dump_to_buffer(ptr + ofs, 16 , 16, 2, buf + pos,
  368. buf_size - pos, 0);
  369. pos += strlen(buf + pos);
  370. if (buf_size - pos > 0)
  371. buf[pos++] = '\n';
  372. }
  373. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  374. kfree(buf);
  375. return ret;
  376. }
  377. static ssize_t iwl_dbgfs_log_event_write(struct file *file,
  378. const char __user *user_buf,
  379. size_t count, loff_t *ppos)
  380. {
  381. struct iwl_priv *priv = file->private_data;
  382. u32 event_log_flag;
  383. char buf[8];
  384. int buf_size;
  385. memset(buf, 0, sizeof(buf));
  386. buf_size = min(count, sizeof(buf) - 1);
  387. if (copy_from_user(buf, user_buf, buf_size))
  388. return -EFAULT;
  389. if (sscanf(buf, "%d", &event_log_flag) != 1)
  390. return -EFAULT;
  391. if (event_log_flag == 1)
  392. priv->cfg->ops->lib->dump_nic_event_log(priv);
  393. return count;
  394. }
  395. static ssize_t iwl_dbgfs_channels_read(struct file *file, char __user *user_buf,
  396. size_t count, loff_t *ppos)
  397. {
  398. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  399. struct ieee80211_channel *channels = NULL;
  400. const struct ieee80211_supported_band *supp_band = NULL;
  401. int pos = 0, i, bufsz = PAGE_SIZE;
  402. char *buf;
  403. ssize_t ret;
  404. if (!test_bit(STATUS_GEO_CONFIGURED, &priv->status))
  405. return -EAGAIN;
  406. buf = kzalloc(bufsz, GFP_KERNEL);
  407. if (!buf) {
  408. IWL_ERR(priv, "Can not allocate Buffer\n");
  409. return -ENOMEM;
  410. }
  411. supp_band = iwl_get_hw_mode(priv, IEEE80211_BAND_2GHZ);
  412. if (supp_band) {
  413. channels = supp_band->channels;
  414. pos += scnprintf(buf + pos, bufsz - pos,
  415. "Displaying %d channels in 2.4GHz band 802.11bg):\n",
  416. supp_band->n_channels);
  417. for (i = 0; i < supp_band->n_channels; i++)
  418. pos += scnprintf(buf + pos, bufsz - pos,
  419. "%d: %ddBm: BSS%s%s, %s.\n",
  420. ieee80211_frequency_to_channel(
  421. channels[i].center_freq),
  422. channels[i].max_power,
  423. channels[i].flags & IEEE80211_CHAN_RADAR ?
  424. " (IEEE 802.11h required)" : "",
  425. ((channels[i].flags & IEEE80211_CHAN_NO_IBSS)
  426. || (channels[i].flags &
  427. IEEE80211_CHAN_RADAR)) ? "" :
  428. ", IBSS",
  429. channels[i].flags &
  430. IEEE80211_CHAN_PASSIVE_SCAN ?
  431. "passive only" : "active/passive");
  432. }
  433. supp_band = iwl_get_hw_mode(priv, IEEE80211_BAND_5GHZ);
  434. if (supp_band) {
  435. channels = supp_band->channels;
  436. pos += scnprintf(buf + pos, bufsz - pos,
  437. "Displaying %d channels in 5.2GHz band (802.11a)\n",
  438. supp_band->n_channels);
  439. for (i = 0; i < supp_band->n_channels; i++)
  440. pos += scnprintf(buf + pos, bufsz - pos,
  441. "%d: %ddBm: BSS%s%s, %s.\n",
  442. ieee80211_frequency_to_channel(
  443. channels[i].center_freq),
  444. channels[i].max_power,
  445. channels[i].flags & IEEE80211_CHAN_RADAR ?
  446. " (IEEE 802.11h required)" : "",
  447. ((channels[i].flags & IEEE80211_CHAN_NO_IBSS)
  448. || (channels[i].flags &
  449. IEEE80211_CHAN_RADAR)) ? "" :
  450. ", IBSS",
  451. channels[i].flags &
  452. IEEE80211_CHAN_PASSIVE_SCAN ?
  453. "passive only" : "active/passive");
  454. }
  455. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  456. kfree(buf);
  457. return ret;
  458. }
  459. static ssize_t iwl_dbgfs_status_read(struct file *file,
  460. char __user *user_buf,
  461. size_t count, loff_t *ppos) {
  462. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  463. char buf[512];
  464. int pos = 0;
  465. const size_t bufsz = sizeof(buf);
  466. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_HCMD_ACTIVE:\t %d\n",
  467. test_bit(STATUS_HCMD_ACTIVE, &priv->status));
  468. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_HCMD_SYNC_ACTIVE: %d\n",
  469. test_bit(STATUS_HCMD_SYNC_ACTIVE, &priv->status));
  470. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_INT_ENABLED:\t %d\n",
  471. test_bit(STATUS_INT_ENABLED, &priv->status));
  472. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_RF_KILL_HW:\t %d\n",
  473. test_bit(STATUS_RF_KILL_HW, &priv->status));
  474. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_CT_KILL:\t\t %d\n",
  475. test_bit(STATUS_CT_KILL, &priv->status));
  476. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_INIT:\t\t %d\n",
  477. test_bit(STATUS_INIT, &priv->status));
  478. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_ALIVE:\t\t %d\n",
  479. test_bit(STATUS_ALIVE, &priv->status));
  480. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_READY:\t\t %d\n",
  481. test_bit(STATUS_READY, &priv->status));
  482. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_TEMPERATURE:\t %d\n",
  483. test_bit(STATUS_TEMPERATURE, &priv->status));
  484. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_GEO_CONFIGURED:\t %d\n",
  485. test_bit(STATUS_GEO_CONFIGURED, &priv->status));
  486. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_EXIT_PENDING:\t %d\n",
  487. test_bit(STATUS_EXIT_PENDING, &priv->status));
  488. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_STATISTICS:\t %d\n",
  489. test_bit(STATUS_STATISTICS, &priv->status));
  490. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_SCANNING:\t %d\n",
  491. test_bit(STATUS_SCANNING, &priv->status));
  492. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_SCAN_ABORTING:\t %d\n",
  493. test_bit(STATUS_SCAN_ABORTING, &priv->status));
  494. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_SCAN_HW:\t\t %d\n",
  495. test_bit(STATUS_SCAN_HW, &priv->status));
  496. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_POWER_PMI:\t %d\n",
  497. test_bit(STATUS_POWER_PMI, &priv->status));
  498. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_FW_ERROR:\t %d\n",
  499. test_bit(STATUS_FW_ERROR, &priv->status));
  500. pos += scnprintf(buf + pos, bufsz - pos, "STATUS_MODE_PENDING:\t %d\n",
  501. test_bit(STATUS_MODE_PENDING, &priv->status));
  502. return simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  503. }
  504. static ssize_t iwl_dbgfs_interrupt_read(struct file *file,
  505. char __user *user_buf,
  506. size_t count, loff_t *ppos) {
  507. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  508. int pos = 0;
  509. int cnt = 0;
  510. char *buf;
  511. int bufsz = 24 * 64; /* 24 items * 64 char per item */
  512. ssize_t ret;
  513. buf = kzalloc(bufsz, GFP_KERNEL);
  514. if (!buf) {
  515. IWL_ERR(priv, "Can not allocate Buffer\n");
  516. return -ENOMEM;
  517. }
  518. pos += scnprintf(buf + pos, bufsz - pos,
  519. "Interrupt Statistics Report:\n");
  520. pos += scnprintf(buf + pos, bufsz - pos, "HW Error:\t\t\t %u\n",
  521. priv->isr_stats.hw);
  522. pos += scnprintf(buf + pos, bufsz - pos, "SW Error:\t\t\t %u\n",
  523. priv->isr_stats.sw);
  524. if (priv->isr_stats.sw > 0) {
  525. pos += scnprintf(buf + pos, bufsz - pos,
  526. "\tLast Restarting Code: 0x%X\n",
  527. priv->isr_stats.sw_err);
  528. }
  529. #ifdef CONFIG_IWLWIFI_DEBUG
  530. pos += scnprintf(buf + pos, bufsz - pos, "Frame transmitted:\t\t %u\n",
  531. priv->isr_stats.sch);
  532. pos += scnprintf(buf + pos, bufsz - pos, "Alive interrupt:\t\t %u\n",
  533. priv->isr_stats.alive);
  534. #endif
  535. pos += scnprintf(buf + pos, bufsz - pos,
  536. "HW RF KILL switch toggled:\t %u\n",
  537. priv->isr_stats.rfkill);
  538. pos += scnprintf(buf + pos, bufsz - pos, "CT KILL:\t\t\t %u\n",
  539. priv->isr_stats.ctkill);
  540. pos += scnprintf(buf + pos, bufsz - pos, "Wakeup Interrupt:\t\t %u\n",
  541. priv->isr_stats.wakeup);
  542. pos += scnprintf(buf + pos, bufsz - pos,
  543. "Rx command responses:\t\t %u\n",
  544. priv->isr_stats.rx);
  545. for (cnt = 0; cnt < REPLY_MAX; cnt++) {
  546. if (priv->isr_stats.rx_handlers[cnt] > 0)
  547. pos += scnprintf(buf + pos, bufsz - pos,
  548. "\tRx handler[%36s]:\t\t %u\n",
  549. get_cmd_string(cnt),
  550. priv->isr_stats.rx_handlers[cnt]);
  551. }
  552. pos += scnprintf(buf + pos, bufsz - pos, "Tx/FH interrupt:\t\t %u\n",
  553. priv->isr_stats.tx);
  554. pos += scnprintf(buf + pos, bufsz - pos, "Unexpected INTA:\t\t %u\n",
  555. priv->isr_stats.unhandled);
  556. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  557. kfree(buf);
  558. return ret;
  559. }
  560. static ssize_t iwl_dbgfs_interrupt_write(struct file *file,
  561. const char __user *user_buf,
  562. size_t count, loff_t *ppos)
  563. {
  564. struct iwl_priv *priv = file->private_data;
  565. char buf[8];
  566. int buf_size;
  567. u32 reset_flag;
  568. memset(buf, 0, sizeof(buf));
  569. buf_size = min(count, sizeof(buf) - 1);
  570. if (copy_from_user(buf, user_buf, buf_size))
  571. return -EFAULT;
  572. if (sscanf(buf, "%x", &reset_flag) != 1)
  573. return -EFAULT;
  574. if (reset_flag == 0)
  575. iwl_clear_isr_stats(priv);
  576. return count;
  577. }
  578. static ssize_t iwl_dbgfs_qos_read(struct file *file, char __user *user_buf,
  579. size_t count, loff_t *ppos)
  580. {
  581. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  582. int pos = 0, i;
  583. char buf[256];
  584. const size_t bufsz = sizeof(buf);
  585. ssize_t ret;
  586. for (i = 0; i < AC_NUM; i++) {
  587. pos += scnprintf(buf + pos, bufsz - pos,
  588. "\tcw_min\tcw_max\taifsn\ttxop\n");
  589. pos += scnprintf(buf + pos, bufsz - pos,
  590. "AC[%d]\t%u\t%u\t%u\t%u\n", i,
  591. priv->qos_data.def_qos_parm.ac[i].cw_min,
  592. priv->qos_data.def_qos_parm.ac[i].cw_max,
  593. priv->qos_data.def_qos_parm.ac[i].aifsn,
  594. priv->qos_data.def_qos_parm.ac[i].edca_txop);
  595. }
  596. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  597. return ret;
  598. }
  599. static ssize_t iwl_dbgfs_led_read(struct file *file, char __user *user_buf,
  600. size_t count, loff_t *ppos)
  601. {
  602. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  603. int pos = 0;
  604. char buf[256];
  605. const size_t bufsz = sizeof(buf);
  606. ssize_t ret;
  607. pos += scnprintf(buf + pos, bufsz - pos,
  608. "allow blinking: %s\n",
  609. (priv->allow_blinking) ? "True" : "False");
  610. if (priv->allow_blinking) {
  611. pos += scnprintf(buf + pos, bufsz - pos,
  612. "Led blinking rate: %u\n",
  613. priv->last_blink_rate);
  614. pos += scnprintf(buf + pos, bufsz - pos,
  615. "Last blink time: %lu\n",
  616. priv->last_blink_time);
  617. }
  618. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  619. return ret;
  620. }
  621. static ssize_t iwl_dbgfs_thermal_throttling_read(struct file *file,
  622. char __user *user_buf,
  623. size_t count, loff_t *ppos)
  624. {
  625. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  626. struct iwl_tt_mgmt *tt = &priv->thermal_throttle;
  627. struct iwl_tt_restriction *restriction;
  628. char buf[100];
  629. int pos = 0;
  630. const size_t bufsz = sizeof(buf);
  631. ssize_t ret;
  632. pos += scnprintf(buf + pos, bufsz - pos,
  633. "Thermal Throttling Mode: %s\n",
  634. tt->advanced_tt ? "Advance" : "Legacy");
  635. pos += scnprintf(buf + pos, bufsz - pos,
  636. "Thermal Throttling State: %d\n",
  637. tt->state);
  638. if (tt->advanced_tt) {
  639. restriction = tt->restriction + tt->state;
  640. pos += scnprintf(buf + pos, bufsz - pos,
  641. "Tx mode: %d\n",
  642. restriction->tx_stream);
  643. pos += scnprintf(buf + pos, bufsz - pos,
  644. "Rx mode: %d\n",
  645. restriction->rx_stream);
  646. pos += scnprintf(buf + pos, bufsz - pos,
  647. "HT mode: %d\n",
  648. restriction->is_ht);
  649. }
  650. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  651. return ret;
  652. }
  653. static ssize_t iwl_dbgfs_disable_ht40_write(struct file *file,
  654. const char __user *user_buf,
  655. size_t count, loff_t *ppos)
  656. {
  657. struct iwl_priv *priv = file->private_data;
  658. char buf[8];
  659. int buf_size;
  660. int ht40;
  661. memset(buf, 0, sizeof(buf));
  662. buf_size = min(count, sizeof(buf) - 1);
  663. if (copy_from_user(buf, user_buf, buf_size))
  664. return -EFAULT;
  665. if (sscanf(buf, "%d", &ht40) != 1)
  666. return -EFAULT;
  667. if (!iwl_is_associated(priv))
  668. priv->disable_ht40 = ht40 ? true : false;
  669. else {
  670. IWL_ERR(priv, "Sta associated with AP - "
  671. "Change to 40MHz channel support is not allowed\n");
  672. return -EINVAL;
  673. }
  674. return count;
  675. }
  676. static ssize_t iwl_dbgfs_disable_ht40_read(struct file *file,
  677. char __user *user_buf,
  678. size_t count, loff_t *ppos)
  679. {
  680. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  681. char buf[100];
  682. int pos = 0;
  683. const size_t bufsz = sizeof(buf);
  684. ssize_t ret;
  685. pos += scnprintf(buf + pos, bufsz - pos,
  686. "11n 40MHz Mode: %s\n",
  687. priv->disable_ht40 ? "Disabled" : "Enabled");
  688. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  689. return ret;
  690. }
  691. static ssize_t iwl_dbgfs_sleep_level_override_write(struct file *file,
  692. const char __user *user_buf,
  693. size_t count, loff_t *ppos)
  694. {
  695. struct iwl_priv *priv = file->private_data;
  696. char buf[8];
  697. int buf_size;
  698. int value;
  699. memset(buf, 0, sizeof(buf));
  700. buf_size = min(count, sizeof(buf) - 1);
  701. if (copy_from_user(buf, user_buf, buf_size))
  702. return -EFAULT;
  703. if (sscanf(buf, "%d", &value) != 1)
  704. return -EINVAL;
  705. /*
  706. * Our users expect 0 to be "CAM", but 0 isn't actually
  707. * valid here. However, let's not confuse them and present
  708. * IWL_POWER_INDEX_1 as "1", not "0".
  709. */
  710. if (value == 0)
  711. return -EINVAL;
  712. else if (value > 0)
  713. value -= 1;
  714. if (value != -1 && (value < 0 || value >= IWL_POWER_NUM))
  715. return -EINVAL;
  716. priv->power_data.debug_sleep_level_override = value;
  717. iwl_power_update_mode(priv, false);
  718. return count;
  719. }
  720. static ssize_t iwl_dbgfs_sleep_level_override_read(struct file *file,
  721. char __user *user_buf,
  722. size_t count, loff_t *ppos)
  723. {
  724. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  725. char buf[10];
  726. int pos, value;
  727. const size_t bufsz = sizeof(buf);
  728. /* see the write function */
  729. value = priv->power_data.debug_sleep_level_override;
  730. if (value >= 0)
  731. value += 1;
  732. pos = scnprintf(buf, bufsz, "%d\n", value);
  733. return simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  734. }
  735. static ssize_t iwl_dbgfs_current_sleep_command_read(struct file *file,
  736. char __user *user_buf,
  737. size_t count, loff_t *ppos)
  738. {
  739. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  740. char buf[200];
  741. int pos = 0, i;
  742. const size_t bufsz = sizeof(buf);
  743. struct iwl_powertable_cmd *cmd = &priv->power_data.sleep_cmd;
  744. pos += scnprintf(buf + pos, bufsz - pos,
  745. "flags: %#.2x\n", le16_to_cpu(cmd->flags));
  746. pos += scnprintf(buf + pos, bufsz - pos,
  747. "RX/TX timeout: %d/%d usec\n",
  748. le32_to_cpu(cmd->rx_data_timeout),
  749. le32_to_cpu(cmd->tx_data_timeout));
  750. for (i = 0; i < IWL_POWER_VEC_SIZE; i++)
  751. pos += scnprintf(buf + pos, bufsz - pos,
  752. "sleep_interval[%d]: %d\n", i,
  753. le32_to_cpu(cmd->sleep_interval[i]));
  754. return simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  755. }
  756. DEBUGFS_READ_WRITE_FILE_OPS(sram);
  757. DEBUGFS_WRITE_FILE_OPS(log_event);
  758. DEBUGFS_READ_FILE_OPS(nvm);
  759. DEBUGFS_READ_FILE_OPS(stations);
  760. DEBUGFS_READ_FILE_OPS(channels);
  761. DEBUGFS_READ_FILE_OPS(status);
  762. DEBUGFS_READ_WRITE_FILE_OPS(interrupt);
  763. DEBUGFS_READ_FILE_OPS(qos);
  764. DEBUGFS_READ_FILE_OPS(led);
  765. DEBUGFS_READ_FILE_OPS(thermal_throttling);
  766. DEBUGFS_READ_WRITE_FILE_OPS(disable_ht40);
  767. DEBUGFS_READ_WRITE_FILE_OPS(sleep_level_override);
  768. DEBUGFS_READ_FILE_OPS(current_sleep_command);
  769. static ssize_t iwl_dbgfs_traffic_log_read(struct file *file,
  770. char __user *user_buf,
  771. size_t count, loff_t *ppos)
  772. {
  773. struct iwl_priv *priv = file->private_data;
  774. int pos = 0, ofs = 0;
  775. int cnt = 0, entry;
  776. struct iwl_tx_queue *txq;
  777. struct iwl_queue *q;
  778. struct iwl_rx_queue *rxq = &priv->rxq;
  779. char *buf;
  780. int bufsz = ((IWL_TRAFFIC_ENTRIES * IWL_TRAFFIC_ENTRY_SIZE * 64) * 2) +
  781. (priv->cfg->num_of_queues * 32 * 8) + 400;
  782. const u8 *ptr;
  783. ssize_t ret;
  784. if (!priv->txq) {
  785. IWL_ERR(priv, "txq not ready\n");
  786. return -EAGAIN;
  787. }
  788. buf = kzalloc(bufsz, GFP_KERNEL);
  789. if (!buf) {
  790. IWL_ERR(priv, "Can not allocate buffer\n");
  791. return -ENOMEM;
  792. }
  793. pos += scnprintf(buf + pos, bufsz - pos, "Tx Queue\n");
  794. for (cnt = 0; cnt < priv->hw_params.max_txq_num; cnt++) {
  795. txq = &priv->txq[cnt];
  796. q = &txq->q;
  797. pos += scnprintf(buf + pos, bufsz - pos,
  798. "q[%d]: read_ptr: %u, write_ptr: %u\n",
  799. cnt, q->read_ptr, q->write_ptr);
  800. }
  801. if (priv->tx_traffic && (iwl_debug_level & IWL_DL_TX)) {
  802. ptr = priv->tx_traffic;
  803. pos += scnprintf(buf + pos, bufsz - pos,
  804. "Tx Traffic idx: %u\n", priv->tx_traffic_idx);
  805. for (cnt = 0, ofs = 0; cnt < IWL_TRAFFIC_ENTRIES; cnt++) {
  806. for (entry = 0; entry < IWL_TRAFFIC_ENTRY_SIZE / 16;
  807. entry++, ofs += 16) {
  808. pos += scnprintf(buf + pos, bufsz - pos,
  809. "0x%.4x ", ofs);
  810. hex_dump_to_buffer(ptr + ofs, 16, 16, 2,
  811. buf + pos, bufsz - pos, 0);
  812. pos += strlen(buf + pos);
  813. if (bufsz - pos > 0)
  814. buf[pos++] = '\n';
  815. }
  816. }
  817. }
  818. pos += scnprintf(buf + pos, bufsz - pos, "Rx Queue\n");
  819. pos += scnprintf(buf + pos, bufsz - pos,
  820. "read: %u, write: %u\n",
  821. rxq->read, rxq->write);
  822. if (priv->rx_traffic && (iwl_debug_level & IWL_DL_RX)) {
  823. ptr = priv->rx_traffic;
  824. pos += scnprintf(buf + pos, bufsz - pos,
  825. "Rx Traffic idx: %u\n", priv->rx_traffic_idx);
  826. for (cnt = 0, ofs = 0; cnt < IWL_TRAFFIC_ENTRIES; cnt++) {
  827. for (entry = 0; entry < IWL_TRAFFIC_ENTRY_SIZE / 16;
  828. entry++, ofs += 16) {
  829. pos += scnprintf(buf + pos, bufsz - pos,
  830. "0x%.4x ", ofs);
  831. hex_dump_to_buffer(ptr + ofs, 16, 16, 2,
  832. buf + pos, bufsz - pos, 0);
  833. pos += strlen(buf + pos);
  834. if (bufsz - pos > 0)
  835. buf[pos++] = '\n';
  836. }
  837. }
  838. }
  839. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  840. kfree(buf);
  841. return ret;
  842. }
  843. static ssize_t iwl_dbgfs_traffic_log_write(struct file *file,
  844. const char __user *user_buf,
  845. size_t count, loff_t *ppos)
  846. {
  847. struct iwl_priv *priv = file->private_data;
  848. char buf[8];
  849. int buf_size;
  850. int traffic_log;
  851. memset(buf, 0, sizeof(buf));
  852. buf_size = min(count, sizeof(buf) - 1);
  853. if (copy_from_user(buf, user_buf, buf_size))
  854. return -EFAULT;
  855. if (sscanf(buf, "%d", &traffic_log) != 1)
  856. return -EFAULT;
  857. if (traffic_log == 0)
  858. iwl_reset_traffic_log(priv);
  859. return count;
  860. }
  861. static ssize_t iwl_dbgfs_tx_queue_read(struct file *file,
  862. char __user *user_buf,
  863. size_t count, loff_t *ppos) {
  864. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  865. struct iwl_tx_queue *txq;
  866. struct iwl_queue *q;
  867. char *buf;
  868. int pos = 0;
  869. int cnt;
  870. int ret;
  871. const size_t bufsz = sizeof(char) * 60 * priv->cfg->num_of_queues;
  872. if (!priv->txq) {
  873. IWL_ERR(priv, "txq not ready\n");
  874. return -EAGAIN;
  875. }
  876. buf = kzalloc(bufsz, GFP_KERNEL);
  877. if (!buf)
  878. return -ENOMEM;
  879. for (cnt = 0; cnt < priv->hw_params.max_txq_num; cnt++) {
  880. txq = &priv->txq[cnt];
  881. q = &txq->q;
  882. pos += scnprintf(buf + pos, bufsz - pos,
  883. "hwq %.2d: read=%u write=%u stop=%d"
  884. " swq_id=%#.2x (ac %d/hwq %d)\n",
  885. cnt, q->read_ptr, q->write_ptr,
  886. !!test_bit(cnt, priv->queue_stopped),
  887. txq->swq_id,
  888. txq->swq_id & 0x80 ? txq->swq_id & 3 :
  889. txq->swq_id,
  890. txq->swq_id & 0x80 ? (txq->swq_id >> 2) &
  891. 0x1f : txq->swq_id);
  892. if (cnt >= 4)
  893. continue;
  894. /* for the ACs, display the stop count too */
  895. pos += scnprintf(buf + pos, bufsz - pos,
  896. " stop-count: %d\n",
  897. atomic_read(&priv->queue_stop_count[cnt]));
  898. }
  899. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  900. kfree(buf);
  901. return ret;
  902. }
  903. static ssize_t iwl_dbgfs_rx_queue_read(struct file *file,
  904. char __user *user_buf,
  905. size_t count, loff_t *ppos) {
  906. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  907. struct iwl_rx_queue *rxq = &priv->rxq;
  908. char buf[256];
  909. int pos = 0;
  910. const size_t bufsz = sizeof(buf);
  911. pos += scnprintf(buf + pos, bufsz - pos, "read: %u\n",
  912. rxq->read);
  913. pos += scnprintf(buf + pos, bufsz - pos, "write: %u\n",
  914. rxq->write);
  915. pos += scnprintf(buf + pos, bufsz - pos, "free_count: %u\n",
  916. rxq->free_count);
  917. pos += scnprintf(buf + pos, bufsz - pos, "closed_rb_num: %u\n",
  918. le16_to_cpu(rxq->rb_stts->closed_rb_num) & 0x0FFF);
  919. return simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  920. }
  921. #define UCODE_STATISTICS_CLEAR_MSK (0x1 << 0)
  922. #define UCODE_STATISTICS_FREQUENCY_MSK (0x1 << 1)
  923. #define UCODE_STATISTICS_NARROW_BAND_MSK (0x1 << 2)
  924. static int iwl_dbgfs_statistics_flag(struct iwl_priv *priv, char *buf,
  925. int bufsz)
  926. {
  927. int p = 0;
  928. p += scnprintf(buf + p, bufsz - p,
  929. "Statistics Flag(0x%X):\n",
  930. le32_to_cpu(priv->statistics.flag));
  931. if (le32_to_cpu(priv->statistics.flag) & UCODE_STATISTICS_CLEAR_MSK)
  932. p += scnprintf(buf + p, bufsz - p,
  933. "\tStatistics have been cleared\n");
  934. p += scnprintf(buf + p, bufsz - p,
  935. "\tOperational Frequency: %s\n",
  936. (le32_to_cpu(priv->statistics.flag) &
  937. UCODE_STATISTICS_FREQUENCY_MSK)
  938. ? "2.4 GHz" : "5.2 GHz");
  939. p += scnprintf(buf + p, bufsz - p,
  940. "\tTGj Narrow Band: %s\n",
  941. (le32_to_cpu(priv->statistics.flag) &
  942. UCODE_STATISTICS_NARROW_BAND_MSK)
  943. ? "enabled" : "disabled");
  944. return p;
  945. }
  946. static ssize_t iwl_dbgfs_ucode_rx_stats_read(struct file *file,
  947. char __user *user_buf,
  948. size_t count, loff_t *ppos)
  949. {
  950. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  951. int pos = 0;
  952. char *buf;
  953. int bufsz = sizeof(struct statistics_rx_phy) * 20 +
  954. sizeof(struct statistics_rx_non_phy) * 20 +
  955. sizeof(struct statistics_rx_ht_phy) * 20 + 400;
  956. ssize_t ret;
  957. struct statistics_rx_phy *ofdm, *accum_ofdm;
  958. struct statistics_rx_phy *cck, *accum_cck;
  959. struct statistics_rx_non_phy *general, *accum_general;
  960. struct statistics_rx_ht_phy *ht, *accum_ht;
  961. if (!iwl_is_alive(priv))
  962. return -EAGAIN;
  963. /* make request to uCode to retrieve statistics information */
  964. mutex_lock(&priv->mutex);
  965. ret = iwl_send_statistics_request(priv, 0);
  966. mutex_unlock(&priv->mutex);
  967. if (ret) {
  968. IWL_ERR(priv,
  969. "Error sending statistics request: %zd\n", ret);
  970. return -EAGAIN;
  971. }
  972. buf = kzalloc(bufsz, GFP_KERNEL);
  973. if (!buf) {
  974. IWL_ERR(priv, "Can not allocate Buffer\n");
  975. return -ENOMEM;
  976. }
  977. /* the statistic information display here is based on
  978. * the last statistics notification from uCode
  979. * might not reflect the current uCode activity
  980. */
  981. ofdm = &priv->statistics.rx.ofdm;
  982. cck = &priv->statistics.rx.cck;
  983. general = &priv->statistics.rx.general;
  984. ht = &priv->statistics.rx.ofdm_ht;
  985. accum_ofdm = &priv->accum_statistics.rx.ofdm;
  986. accum_cck = &priv->accum_statistics.rx.cck;
  987. accum_general = &priv->accum_statistics.rx.general;
  988. accum_ht = &priv->accum_statistics.rx.ofdm_ht;
  989. pos += iwl_dbgfs_statistics_flag(priv, buf, bufsz);
  990. pos += scnprintf(buf + pos, bufsz - pos, "Statistics_Rx - OFDM:\n");
  991. pos += scnprintf(buf + pos, bufsz - pos,
  992. "\t\t\tcurrent\t\t\taccumulative\n");
  993. pos += scnprintf(buf + pos, bufsz - pos, "ina_cnt:\t\t%u\t\t\t%u\n",
  994. le32_to_cpu(ofdm->ina_cnt), accum_ofdm->ina_cnt);
  995. pos += scnprintf(buf + pos, bufsz - pos, "fina_cnt:\t\t%u\t\t\t%u\n",
  996. le32_to_cpu(ofdm->fina_cnt), accum_ofdm->fina_cnt);
  997. pos += scnprintf(buf + pos, bufsz - pos, "plcp_err:\t\t%u\t\t\t%u\n",
  998. le32_to_cpu(ofdm->plcp_err), accum_ofdm->plcp_err);
  999. pos += scnprintf(buf + pos, bufsz - pos, "crc32_err:\t\t%u\t\t\t%u\n",
  1000. le32_to_cpu(ofdm->crc32_err), accum_ofdm->crc32_err);
  1001. pos += scnprintf(buf + pos, bufsz - pos,
  1002. "overrun_err:\t\t%u\t\t\t%u\n",
  1003. le32_to_cpu(ofdm->overrun_err),
  1004. accum_ofdm->overrun_err);
  1005. pos += scnprintf(buf + pos, bufsz - pos,
  1006. "early_overrun_err:\t%u\t\t\t%u\n",
  1007. le32_to_cpu(ofdm->early_overrun_err),
  1008. accum_ofdm->early_overrun_err);
  1009. pos += scnprintf(buf + pos, bufsz - pos, "crc32_good:\t\t%u\t\t\t%u\n",
  1010. le32_to_cpu(ofdm->crc32_good),
  1011. accum_ofdm->crc32_good);
  1012. pos += scnprintf(buf + pos, bufsz - pos,
  1013. "false_alarm_cnt:\t%u\t\t\t%u\n",
  1014. le32_to_cpu(ofdm->false_alarm_cnt),
  1015. accum_ofdm->false_alarm_cnt);
  1016. pos += scnprintf(buf + pos, bufsz - pos,
  1017. "fina_sync_err_cnt:\t%u\t\t\t%u\n",
  1018. le32_to_cpu(ofdm->fina_sync_err_cnt),
  1019. accum_ofdm->fina_sync_err_cnt);
  1020. pos += scnprintf(buf + pos, bufsz - pos,
  1021. "sfd_timeout:\t\t%u\t\t\t%u\n",
  1022. le32_to_cpu(ofdm->sfd_timeout),
  1023. accum_ofdm->sfd_timeout);
  1024. pos += scnprintf(buf + pos, bufsz - pos,
  1025. "fina_timeout:\t\t%u\t\t\t%u\n",
  1026. le32_to_cpu(ofdm->fina_timeout),
  1027. accum_ofdm->fina_timeout);
  1028. pos += scnprintf(buf + pos, bufsz - pos,
  1029. "unresponded_rts:\t%u\t\t\t%u\n",
  1030. le32_to_cpu(ofdm->unresponded_rts),
  1031. accum_ofdm->unresponded_rts);
  1032. pos += scnprintf(buf + pos, bufsz - pos,
  1033. "rxe_frame_lmt_ovrun:\t%u\t\t\t%u\n",
  1034. le32_to_cpu(ofdm->rxe_frame_limit_overrun),
  1035. accum_ofdm->rxe_frame_limit_overrun);
  1036. pos += scnprintf(buf + pos, bufsz - pos,
  1037. "sent_ack_cnt:\t\t%u\t\t\t%u\n",
  1038. le32_to_cpu(ofdm->sent_ack_cnt),
  1039. accum_ofdm->sent_ack_cnt);
  1040. pos += scnprintf(buf + pos, bufsz - pos,
  1041. "sent_cts_cnt:\t\t%u\t\t\t%u\n",
  1042. le32_to_cpu(ofdm->sent_cts_cnt),
  1043. accum_ofdm->sent_cts_cnt);
  1044. pos += scnprintf(buf + pos, bufsz - pos,
  1045. "sent_ba_rsp_cnt:\t%u\t\t\t%u\n",
  1046. le32_to_cpu(ofdm->sent_ba_rsp_cnt),
  1047. accum_ofdm->sent_ba_rsp_cnt);
  1048. pos += scnprintf(buf + pos, bufsz - pos,
  1049. "dsp_self_kill:\t\t%u\t\t\t%u\n",
  1050. le32_to_cpu(ofdm->dsp_self_kill),
  1051. accum_ofdm->dsp_self_kill);
  1052. pos += scnprintf(buf + pos, bufsz - pos,
  1053. "mh_format_err:\t\t%u\t\t\t%u\n",
  1054. le32_to_cpu(ofdm->mh_format_err),
  1055. accum_ofdm->mh_format_err);
  1056. pos += scnprintf(buf + pos, bufsz - pos,
  1057. "re_acq_main_rssi_sum:\t%u\t\t\t%u\n",
  1058. le32_to_cpu(ofdm->re_acq_main_rssi_sum),
  1059. accum_ofdm->re_acq_main_rssi_sum);
  1060. pos += scnprintf(buf + pos, bufsz - pos, "Statistics_Rx - CCK:\n");
  1061. pos += scnprintf(buf + pos, bufsz - pos,
  1062. "\t\t\tcurrent\t\t\taccumulative\n");
  1063. pos += scnprintf(buf + pos, bufsz - pos, "ina_cnt:\t\t%u\t\t\t%u\n",
  1064. le32_to_cpu(cck->ina_cnt), accum_cck->ina_cnt);
  1065. pos += scnprintf(buf + pos, bufsz - pos, "fina_cnt:\t\t%u\t\t\t%u\n",
  1066. le32_to_cpu(cck->fina_cnt), accum_cck->fina_cnt);
  1067. pos += scnprintf(buf + pos, bufsz - pos, "plcp_err:\t\t%u\t\t\t%u\n",
  1068. le32_to_cpu(cck->plcp_err), accum_cck->plcp_err);
  1069. pos += scnprintf(buf + pos, bufsz - pos, "crc32_err:\t\t%u\t\t\t%u\n",
  1070. le32_to_cpu(cck->crc32_err), accum_cck->crc32_err);
  1071. pos += scnprintf(buf + pos, bufsz - pos,
  1072. "overrun_err:\t\t%u\t\t\t%u\n",
  1073. le32_to_cpu(cck->overrun_err),
  1074. accum_cck->overrun_err);
  1075. pos += scnprintf(buf + pos, bufsz - pos,
  1076. "early_overrun_err:\t%u\t\t\t%u\n",
  1077. le32_to_cpu(cck->early_overrun_err),
  1078. accum_cck->early_overrun_err);
  1079. pos += scnprintf(buf + pos, bufsz - pos, "crc32_good:\t\t%u\t\t\t%u\n",
  1080. le32_to_cpu(cck->crc32_good), accum_cck->crc32_good);
  1081. pos += scnprintf(buf + pos, bufsz - pos,
  1082. "false_alarm_cnt:\t%u\t\t\t%u\n",
  1083. le32_to_cpu(cck->false_alarm_cnt),
  1084. accum_cck->false_alarm_cnt);
  1085. pos += scnprintf(buf + pos, bufsz - pos,
  1086. "fina_sync_err_cnt:\t%u\t\t\t%u\n",
  1087. le32_to_cpu(cck->fina_sync_err_cnt),
  1088. accum_cck->fina_sync_err_cnt);
  1089. pos += scnprintf(buf + pos, bufsz - pos,
  1090. "sfd_timeout:\t\t%u\t\t\t%u\n",
  1091. le32_to_cpu(cck->sfd_timeout),
  1092. accum_cck->sfd_timeout);
  1093. pos += scnprintf(buf + pos, bufsz - pos,
  1094. "fina_timeout:\t\t%u\t\t\t%u\n",
  1095. le32_to_cpu(cck->fina_timeout),
  1096. accum_cck->fina_timeout);
  1097. pos += scnprintf(buf + pos, bufsz - pos,
  1098. "unresponded_rts:\t%u\t\t\t%u\n",
  1099. le32_to_cpu(cck->unresponded_rts),
  1100. accum_cck->unresponded_rts);
  1101. pos += scnprintf(buf + pos, bufsz - pos,
  1102. "rxe_frame_lmt_ovrun:\t%u\t\t\t%u\n",
  1103. le32_to_cpu(cck->rxe_frame_limit_overrun),
  1104. accum_cck->rxe_frame_limit_overrun);
  1105. pos += scnprintf(buf + pos, bufsz - pos,
  1106. "sent_ack_cnt:\t\t%u\t\t\t%u\n",
  1107. le32_to_cpu(cck->sent_ack_cnt),
  1108. accum_cck->sent_ack_cnt);
  1109. pos += scnprintf(buf + pos, bufsz - pos,
  1110. "sent_cts_cnt:\t\t%u\t\t\t%u\n",
  1111. le32_to_cpu(cck->sent_cts_cnt),
  1112. accum_cck->sent_cts_cnt);
  1113. pos += scnprintf(buf + pos, bufsz - pos,
  1114. "sent_ba_rsp_cnt:\t%u\t\t\t%u\n",
  1115. le32_to_cpu(cck->sent_ba_rsp_cnt),
  1116. accum_cck->sent_ba_rsp_cnt);
  1117. pos += scnprintf(buf + pos, bufsz - pos,
  1118. "dsp_self_kill:\t\t%u\t\t\t%u\n",
  1119. le32_to_cpu(cck->dsp_self_kill),
  1120. accum_cck->dsp_self_kill);
  1121. pos += scnprintf(buf + pos, bufsz - pos,
  1122. "mh_format_err:\t\t%u\t\t\t%u\n",
  1123. le32_to_cpu(cck->mh_format_err),
  1124. accum_cck->mh_format_err);
  1125. pos += scnprintf(buf + pos, bufsz - pos,
  1126. "re_acq_main_rssi_sum:\t%u\t\t\t%u\n",
  1127. le32_to_cpu(cck->re_acq_main_rssi_sum),
  1128. accum_cck->re_acq_main_rssi_sum);
  1129. pos += scnprintf(buf + pos, bufsz - pos, "Statistics_Rx - GENERAL:\n");
  1130. pos += scnprintf(buf + pos, bufsz - pos,
  1131. "\t\t\tcurrent\t\t\taccumulative\n");
  1132. pos += scnprintf(buf + pos, bufsz - pos, "bogus_cts:\t\t%u\t\t\t%u\n",
  1133. le32_to_cpu(general->bogus_cts),
  1134. accum_general->bogus_cts);
  1135. pos += scnprintf(buf + pos, bufsz - pos, "bogus_ack:\t\t%u\t\t\t%u\n",
  1136. le32_to_cpu(general->bogus_ack),
  1137. accum_general->bogus_ack);
  1138. pos += scnprintf(buf + pos, bufsz - pos,
  1139. "non_bssid_frames:\t%u\t\t\t%u\n",
  1140. le32_to_cpu(general->non_bssid_frames),
  1141. accum_general->non_bssid_frames);
  1142. pos += scnprintf(buf + pos, bufsz - pos,
  1143. "filtered_frames:\t%u\t\t\t%u\n",
  1144. le32_to_cpu(general->filtered_frames),
  1145. accum_general->filtered_frames);
  1146. pos += scnprintf(buf + pos, bufsz - pos,
  1147. "non_channel_beacons:\t%u\t\t\t%u\n",
  1148. le32_to_cpu(general->non_channel_beacons),
  1149. accum_general->non_channel_beacons);
  1150. pos += scnprintf(buf + pos, bufsz - pos,
  1151. "channel_beacons:\t%u\t\t\t%u\n",
  1152. le32_to_cpu(general->channel_beacons),
  1153. accum_general->channel_beacons);
  1154. pos += scnprintf(buf + pos, bufsz - pos,
  1155. "num_missed_bcon:\t%u\t\t\t%u\n",
  1156. le32_to_cpu(general->num_missed_bcon),
  1157. accum_general->num_missed_bcon);
  1158. pos += scnprintf(buf + pos, bufsz - pos,
  1159. "adc_rx_saturation_time:\t%u\t\t\t%u\n",
  1160. le32_to_cpu(general->adc_rx_saturation_time),
  1161. accum_general->adc_rx_saturation_time);
  1162. pos += scnprintf(buf + pos, bufsz - pos,
  1163. "ina_detect_search_tm:\t%u\t\t\t%u\n",
  1164. le32_to_cpu(general->ina_detection_search_time),
  1165. accum_general->ina_detection_search_time);
  1166. pos += scnprintf(buf + pos, bufsz - pos,
  1167. "beacon_silence_rssi_a:\t%u\t\t\t%u\n",
  1168. le32_to_cpu(general->beacon_silence_rssi_a),
  1169. accum_general->beacon_silence_rssi_a);
  1170. pos += scnprintf(buf + pos, bufsz - pos,
  1171. "beacon_silence_rssi_b:\t%u\t\t\t%u\n",
  1172. le32_to_cpu(general->beacon_silence_rssi_b),
  1173. accum_general->beacon_silence_rssi_b);
  1174. pos += scnprintf(buf + pos, bufsz - pos,
  1175. "beacon_silence_rssi_c:\t%u\t\t\t%u\n",
  1176. le32_to_cpu(general->beacon_silence_rssi_c),
  1177. accum_general->beacon_silence_rssi_c);
  1178. pos += scnprintf(buf + pos, bufsz - pos,
  1179. "interference_data_flag:\t%u\t\t\t%u\n",
  1180. le32_to_cpu(general->interference_data_flag),
  1181. accum_general->interference_data_flag);
  1182. pos += scnprintf(buf + pos, bufsz - pos,
  1183. "channel_load:\t\t%u\t\t\t%u\n",
  1184. le32_to_cpu(general->channel_load),
  1185. accum_general->channel_load);
  1186. pos += scnprintf(buf + pos, bufsz - pos,
  1187. "dsp_false_alarms:\t%u\t\t\t%u\n",
  1188. le32_to_cpu(general->dsp_false_alarms),
  1189. accum_general->dsp_false_alarms);
  1190. pos += scnprintf(buf + pos, bufsz - pos,
  1191. "beacon_rssi_a:\t\t%u\t\t\t%u\n",
  1192. le32_to_cpu(general->beacon_rssi_a),
  1193. accum_general->beacon_rssi_a);
  1194. pos += scnprintf(buf + pos, bufsz - pos,
  1195. "beacon_rssi_b:\t\t%u\t\t\t%u\n",
  1196. le32_to_cpu(general->beacon_rssi_b),
  1197. accum_general->beacon_rssi_b);
  1198. pos += scnprintf(buf + pos, bufsz - pos,
  1199. "beacon_rssi_c:\t\t%u\t\t\t%u\n",
  1200. le32_to_cpu(general->beacon_rssi_c),
  1201. accum_general->beacon_rssi_c);
  1202. pos += scnprintf(buf + pos, bufsz - pos,
  1203. "beacon_energy_a:\t%u\t\t\t%u\n",
  1204. le32_to_cpu(general->beacon_energy_a),
  1205. accum_general->beacon_energy_a);
  1206. pos += scnprintf(buf + pos, bufsz - pos,
  1207. "beacon_energy_b:\t%u\t\t\t%u\n",
  1208. le32_to_cpu(general->beacon_energy_b),
  1209. accum_general->beacon_energy_b);
  1210. pos += scnprintf(buf + pos, bufsz - pos,
  1211. "beacon_energy_c:\t%u\t\t\t%u\n",
  1212. le32_to_cpu(general->beacon_energy_c),
  1213. accum_general->beacon_energy_c);
  1214. pos += scnprintf(buf + pos, bufsz - pos, "Statistics_Rx - OFDM_HT:\n");
  1215. pos += scnprintf(buf + pos, bufsz - pos,
  1216. "\t\t\tcurrent\t\t\taccumulative\n");
  1217. pos += scnprintf(buf + pos, bufsz - pos, "plcp_err:\t\t%u\t\t\t%u\n",
  1218. le32_to_cpu(ht->plcp_err), accum_ht->plcp_err);
  1219. pos += scnprintf(buf + pos, bufsz - pos,
  1220. "overrun_err:\t\t%u\t\t\t%u\n",
  1221. le32_to_cpu(ht->overrun_err), accum_ht->overrun_err);
  1222. pos += scnprintf(buf + pos, bufsz - pos,
  1223. "early_overrun_err:\t%u\t\t\t%u\n",
  1224. le32_to_cpu(ht->early_overrun_err),
  1225. accum_ht->early_overrun_err);
  1226. pos += scnprintf(buf + pos, bufsz - pos, "crc32_good:\t\t%u\t\t\t%u\n",
  1227. le32_to_cpu(ht->crc32_good), accum_ht->crc32_good);
  1228. pos += scnprintf(buf + pos, bufsz - pos, "crc32_err:\t\t%u\t\t\t%u\n",
  1229. le32_to_cpu(ht->crc32_err), accum_ht->crc32_err);
  1230. pos += scnprintf(buf + pos, bufsz - pos,
  1231. "mh_format_err:\t\t%u\t\t\t%u\n",
  1232. le32_to_cpu(ht->mh_format_err),
  1233. accum_ht->mh_format_err);
  1234. pos += scnprintf(buf + pos, bufsz - pos,
  1235. "agg_crc32_good:\t\t%u\t\t\t%u\n",
  1236. le32_to_cpu(ht->agg_crc32_good),
  1237. accum_ht->agg_crc32_good);
  1238. pos += scnprintf(buf + pos, bufsz - pos,
  1239. "agg_mpdu_cnt:\t\t%u\t\t\t%u\n",
  1240. le32_to_cpu(ht->agg_mpdu_cnt),
  1241. accum_ht->agg_mpdu_cnt);
  1242. pos += scnprintf(buf + pos, bufsz - pos, "agg_cnt:\t\t%u\t\t\t%u\n",
  1243. le32_to_cpu(ht->agg_cnt), accum_ht->agg_cnt);
  1244. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  1245. kfree(buf);
  1246. return ret;
  1247. }
  1248. static ssize_t iwl_dbgfs_ucode_tx_stats_read(struct file *file,
  1249. char __user *user_buf,
  1250. size_t count, loff_t *ppos)
  1251. {
  1252. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  1253. int pos = 0;
  1254. char *buf;
  1255. int bufsz = (sizeof(struct statistics_tx) * 24) + 250;
  1256. ssize_t ret;
  1257. struct statistics_tx *tx, *accum_tx;
  1258. if (!iwl_is_alive(priv))
  1259. return -EAGAIN;
  1260. /* make request to uCode to retrieve statistics information */
  1261. mutex_lock(&priv->mutex);
  1262. ret = iwl_send_statistics_request(priv, 0);
  1263. mutex_unlock(&priv->mutex);
  1264. if (ret) {
  1265. IWL_ERR(priv,
  1266. "Error sending statistics request: %zd\n", ret);
  1267. return -EAGAIN;
  1268. }
  1269. buf = kzalloc(bufsz, GFP_KERNEL);
  1270. if (!buf) {
  1271. IWL_ERR(priv, "Can not allocate Buffer\n");
  1272. return -ENOMEM;
  1273. }
  1274. /* the statistic information display here is based on
  1275. * the last statistics notification from uCode
  1276. * might not reflect the current uCode activity
  1277. */
  1278. tx = &priv->statistics.tx;
  1279. accum_tx = &priv->accum_statistics.tx;
  1280. pos += iwl_dbgfs_statistics_flag(priv, buf, bufsz);
  1281. pos += scnprintf(buf + pos, bufsz - pos, "Statistics_Tx:\n");
  1282. pos += scnprintf(buf + pos, bufsz - pos,
  1283. "\t\t\tcurrent\t\t\taccumulative\n");
  1284. pos += scnprintf(buf + pos, bufsz - pos, "preamble:\t\t\t%u\t\t\t%u\n",
  1285. le32_to_cpu(tx->preamble_cnt),
  1286. accum_tx->preamble_cnt);
  1287. pos += scnprintf(buf + pos, bufsz - pos,
  1288. "rx_detected_cnt:\t\t%u\t\t\t%u\n",
  1289. le32_to_cpu(tx->rx_detected_cnt),
  1290. accum_tx->rx_detected_cnt);
  1291. pos += scnprintf(buf + pos, bufsz - pos,
  1292. "bt_prio_defer_cnt:\t\t%u\t\t\t%u\n",
  1293. le32_to_cpu(tx->bt_prio_defer_cnt),
  1294. accum_tx->bt_prio_defer_cnt);
  1295. pos += scnprintf(buf + pos, bufsz - pos,
  1296. "bt_prio_kill_cnt:\t\t%u\t\t\t%u\n",
  1297. le32_to_cpu(tx->bt_prio_kill_cnt),
  1298. accum_tx->bt_prio_kill_cnt);
  1299. pos += scnprintf(buf + pos, bufsz - pos,
  1300. "few_bytes_cnt:\t\t\t%u\t\t\t%u\n",
  1301. le32_to_cpu(tx->few_bytes_cnt),
  1302. accum_tx->few_bytes_cnt);
  1303. pos += scnprintf(buf + pos, bufsz - pos,
  1304. "cts_timeout:\t\t\t%u\t\t\t%u\n",
  1305. le32_to_cpu(tx->cts_timeout), accum_tx->cts_timeout);
  1306. pos += scnprintf(buf + pos, bufsz - pos,
  1307. "ack_timeout:\t\t\t%u\t\t\t%u\n",
  1308. le32_to_cpu(tx->ack_timeout),
  1309. accum_tx->ack_timeout);
  1310. pos += scnprintf(buf + pos, bufsz - pos,
  1311. "expected_ack_cnt:\t\t%u\t\t\t%u\n",
  1312. le32_to_cpu(tx->expected_ack_cnt),
  1313. accum_tx->expected_ack_cnt);
  1314. pos += scnprintf(buf + pos, bufsz - pos,
  1315. "actual_ack_cnt:\t\t\t%u\t\t\t%u\n",
  1316. le32_to_cpu(tx->actual_ack_cnt),
  1317. accum_tx->actual_ack_cnt);
  1318. pos += scnprintf(buf + pos, bufsz - pos,
  1319. "dump_msdu_cnt:\t\t\t%u\t\t\t%u\n",
  1320. le32_to_cpu(tx->dump_msdu_cnt),
  1321. accum_tx->dump_msdu_cnt);
  1322. pos += scnprintf(buf + pos, bufsz - pos,
  1323. "abort_nxt_frame_mismatch:"
  1324. "\t%u\t\t\t%u\n",
  1325. le32_to_cpu(tx->burst_abort_next_frame_mismatch_cnt),
  1326. accum_tx->burst_abort_next_frame_mismatch_cnt);
  1327. pos += scnprintf(buf + pos, bufsz - pos,
  1328. "abort_missing_nxt_frame:"
  1329. "\t%u\t\t\t%u\n",
  1330. le32_to_cpu(tx->burst_abort_missing_next_frame_cnt),
  1331. accum_tx->burst_abort_missing_next_frame_cnt);
  1332. pos += scnprintf(buf + pos, bufsz - pos,
  1333. "cts_timeout_collision:\t\t%u\t\t\t%u\n",
  1334. le32_to_cpu(tx->cts_timeout_collision),
  1335. accum_tx->cts_timeout_collision);
  1336. pos += scnprintf(buf + pos, bufsz - pos,
  1337. "ack_ba_timeout_collision:\t%u\t\t\t%u\n",
  1338. le32_to_cpu(tx->ack_or_ba_timeout_collision),
  1339. accum_tx->ack_or_ba_timeout_collision);
  1340. pos += scnprintf(buf + pos, bufsz - pos,
  1341. "agg ba_timeout:\t\t\t%u\t\t\t%u\n",
  1342. le32_to_cpu(tx->agg.ba_timeout),
  1343. accum_tx->agg.ba_timeout);
  1344. pos += scnprintf(buf + pos, bufsz - pos,
  1345. "agg ba_resched_frames:\t\t%u\t\t\t%u\n",
  1346. le32_to_cpu(tx->agg.ba_reschedule_frames),
  1347. accum_tx->agg.ba_reschedule_frames);
  1348. pos += scnprintf(buf + pos, bufsz - pos,
  1349. "agg scd_query_agg_frame:\t%u\t\t\t%u\n",
  1350. le32_to_cpu(tx->agg.scd_query_agg_frame_cnt),
  1351. accum_tx->agg.scd_query_agg_frame_cnt);
  1352. pos += scnprintf(buf + pos, bufsz - pos,
  1353. "agg scd_query_no_agg:\t\t%u\t\t\t%u\n",
  1354. le32_to_cpu(tx->agg.scd_query_no_agg),
  1355. accum_tx->agg.scd_query_no_agg);
  1356. pos += scnprintf(buf + pos, bufsz - pos,
  1357. "agg scd_query_agg:\t\t%u\t\t\t%u\n",
  1358. le32_to_cpu(tx->agg.scd_query_agg),
  1359. accum_tx->agg.scd_query_agg);
  1360. pos += scnprintf(buf + pos, bufsz - pos,
  1361. "agg scd_query_mismatch:\t\t%u\t\t\t%u\n",
  1362. le32_to_cpu(tx->agg.scd_query_mismatch),
  1363. accum_tx->agg.scd_query_mismatch);
  1364. pos += scnprintf(buf + pos, bufsz - pos,
  1365. "agg frame_not_ready:\t\t%u\t\t\t%u\n",
  1366. le32_to_cpu(tx->agg.frame_not_ready),
  1367. accum_tx->agg.frame_not_ready);
  1368. pos += scnprintf(buf + pos, bufsz - pos,
  1369. "agg underrun:\t\t\t%u\t\t\t%u\n",
  1370. le32_to_cpu(tx->agg.underrun),
  1371. accum_tx->agg.underrun);
  1372. pos += scnprintf(buf + pos, bufsz - pos,
  1373. "agg bt_prio_kill:\t\t%u\t\t\t%u\n",
  1374. le32_to_cpu(tx->agg.bt_prio_kill),
  1375. accum_tx->agg.bt_prio_kill);
  1376. pos += scnprintf(buf + pos, bufsz - pos,
  1377. "agg rx_ba_rsp_cnt:\t\t%u\t\t\t%u\n",
  1378. le32_to_cpu(tx->agg.rx_ba_rsp_cnt),
  1379. accum_tx->agg.rx_ba_rsp_cnt);
  1380. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  1381. kfree(buf);
  1382. return ret;
  1383. }
  1384. static ssize_t iwl_dbgfs_ucode_general_stats_read(struct file *file,
  1385. char __user *user_buf,
  1386. size_t count, loff_t *ppos)
  1387. {
  1388. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  1389. int pos = 0;
  1390. char *buf;
  1391. int bufsz = sizeof(struct statistics_general) * 4 + 250;
  1392. ssize_t ret;
  1393. struct statistics_general *general, *accum_general;
  1394. struct statistics_dbg *dbg, *accum_dbg;
  1395. struct statistics_div *div, *accum_div;
  1396. if (!iwl_is_alive(priv))
  1397. return -EAGAIN;
  1398. /* make request to uCode to retrieve statistics information */
  1399. mutex_lock(&priv->mutex);
  1400. ret = iwl_send_statistics_request(priv, 0);
  1401. mutex_unlock(&priv->mutex);
  1402. if (ret) {
  1403. IWL_ERR(priv,
  1404. "Error sending statistics request: %zd\n", ret);
  1405. return -EAGAIN;
  1406. }
  1407. buf = kzalloc(bufsz, GFP_KERNEL);
  1408. if (!buf) {
  1409. IWL_ERR(priv, "Can not allocate Buffer\n");
  1410. return -ENOMEM;
  1411. }
  1412. /* the statistic information display here is based on
  1413. * the last statistics notification from uCode
  1414. * might not reflect the current uCode activity
  1415. */
  1416. general = &priv->statistics.general;
  1417. dbg = &priv->statistics.general.dbg;
  1418. div = &priv->statistics.general.div;
  1419. accum_general = &priv->accum_statistics.general;
  1420. accum_dbg = &priv->accum_statistics.general.dbg;
  1421. accum_div = &priv->accum_statistics.general.div;
  1422. pos += iwl_dbgfs_statistics_flag(priv, buf, bufsz);
  1423. pos += scnprintf(buf + pos, bufsz - pos, "Statistics_General:\n");
  1424. pos += scnprintf(buf + pos, bufsz - pos,
  1425. "\t\t\tcurrent\t\t\taccumulative\n");
  1426. pos += scnprintf(buf + pos, bufsz - pos, "temperature:\t\t\t%u\n",
  1427. le32_to_cpu(general->temperature));
  1428. pos += scnprintf(buf + pos, bufsz - pos, "temperature_m:\t\t\t%u\n",
  1429. le32_to_cpu(general->temperature_m));
  1430. pos += scnprintf(buf + pos, bufsz - pos,
  1431. "burst_check:\t\t\t%u\t\t\t%u\n",
  1432. le32_to_cpu(dbg->burst_check),
  1433. accum_dbg->burst_check);
  1434. pos += scnprintf(buf + pos, bufsz - pos,
  1435. "burst_count:\t\t\t%u\t\t\t%u\n",
  1436. le32_to_cpu(dbg->burst_count),
  1437. accum_dbg->burst_count);
  1438. pos += scnprintf(buf + pos, bufsz - pos,
  1439. "sleep_time:\t\t\t%u\t\t\t%u\n",
  1440. le32_to_cpu(general->sleep_time),
  1441. accum_general->sleep_time);
  1442. pos += scnprintf(buf + pos, bufsz - pos,
  1443. "slots_out:\t\t\t%u\t\t\t%u\n",
  1444. le32_to_cpu(general->slots_out),
  1445. accum_general->slots_out);
  1446. pos += scnprintf(buf + pos, bufsz - pos,
  1447. "slots_idle:\t\t\t%u\t\t\t%u\n",
  1448. le32_to_cpu(general->slots_idle),
  1449. accum_general->slots_idle);
  1450. pos += scnprintf(buf + pos, bufsz - pos, "ttl_timestamp:\t\t\t%u\n",
  1451. le32_to_cpu(general->ttl_timestamp));
  1452. pos += scnprintf(buf + pos, bufsz - pos, "tx_on_a:\t\t\t%u\t\t\t%u\n",
  1453. le32_to_cpu(div->tx_on_a), accum_div->tx_on_a);
  1454. pos += scnprintf(buf + pos, bufsz - pos, "tx_on_b:\t\t\t%u\t\t\t%u\n",
  1455. le32_to_cpu(div->tx_on_b), accum_div->tx_on_b);
  1456. pos += scnprintf(buf + pos, bufsz - pos,
  1457. "exec_time:\t\t\t%u\t\t\t%u\n",
  1458. le32_to_cpu(div->exec_time), accum_div->exec_time);
  1459. pos += scnprintf(buf + pos, bufsz - pos,
  1460. "probe_time:\t\t\t%u\t\t\t%u\n",
  1461. le32_to_cpu(div->probe_time), accum_div->probe_time);
  1462. pos += scnprintf(buf + pos, bufsz - pos,
  1463. "rx_enable_counter:\t\t%u\t\t\t%u\n",
  1464. le32_to_cpu(general->rx_enable_counter),
  1465. accum_general->rx_enable_counter);
  1466. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  1467. kfree(buf);
  1468. return ret;
  1469. }
  1470. static ssize_t iwl_dbgfs_sensitivity_read(struct file *file,
  1471. char __user *user_buf,
  1472. size_t count, loff_t *ppos) {
  1473. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  1474. int pos = 0;
  1475. int cnt = 0;
  1476. char *buf;
  1477. int bufsz = sizeof(struct iwl_sensitivity_data) * 4 + 100;
  1478. ssize_t ret;
  1479. struct iwl_sensitivity_data *data;
  1480. data = &priv->sensitivity_data;
  1481. buf = kzalloc(bufsz, GFP_KERNEL);
  1482. if (!buf) {
  1483. IWL_ERR(priv, "Can not allocate Buffer\n");
  1484. return -ENOMEM;
  1485. }
  1486. pos += scnprintf(buf + pos, bufsz - pos, "auto_corr_ofdm:\t\t\t %u\n",
  1487. data->auto_corr_ofdm);
  1488. pos += scnprintf(buf + pos, bufsz - pos,
  1489. "auto_corr_ofdm_mrc:\t\t %u\n",
  1490. data->auto_corr_ofdm_mrc);
  1491. pos += scnprintf(buf + pos, bufsz - pos, "auto_corr_ofdm_x1:\t\t %u\n",
  1492. data->auto_corr_ofdm_x1);
  1493. pos += scnprintf(buf + pos, bufsz - pos,
  1494. "auto_corr_ofdm_mrc_x1:\t\t %u\n",
  1495. data->auto_corr_ofdm_mrc_x1);
  1496. pos += scnprintf(buf + pos, bufsz - pos, "auto_corr_cck:\t\t\t %u\n",
  1497. data->auto_corr_cck);
  1498. pos += scnprintf(buf + pos, bufsz - pos, "auto_corr_cck_mrc:\t\t %u\n",
  1499. data->auto_corr_cck_mrc);
  1500. pos += scnprintf(buf + pos, bufsz - pos,
  1501. "last_bad_plcp_cnt_ofdm:\t\t %u\n",
  1502. data->last_bad_plcp_cnt_ofdm);
  1503. pos += scnprintf(buf + pos, bufsz - pos, "last_fa_cnt_ofdm:\t\t %u\n",
  1504. data->last_fa_cnt_ofdm);
  1505. pos += scnprintf(buf + pos, bufsz - pos,
  1506. "last_bad_plcp_cnt_cck:\t\t %u\n",
  1507. data->last_bad_plcp_cnt_cck);
  1508. pos += scnprintf(buf + pos, bufsz - pos, "last_fa_cnt_cck:\t\t %u\n",
  1509. data->last_fa_cnt_cck);
  1510. pos += scnprintf(buf + pos, bufsz - pos, "nrg_curr_state:\t\t\t %u\n",
  1511. data->nrg_curr_state);
  1512. pos += scnprintf(buf + pos, bufsz - pos, "nrg_prev_state:\t\t\t %u\n",
  1513. data->nrg_prev_state);
  1514. pos += scnprintf(buf + pos, bufsz - pos, "nrg_value:\t\t\t");
  1515. for (cnt = 0; cnt < 10; cnt++) {
  1516. pos += scnprintf(buf + pos, bufsz - pos, " %u",
  1517. data->nrg_value[cnt]);
  1518. }
  1519. pos += scnprintf(buf + pos, bufsz - pos, "\n");
  1520. pos += scnprintf(buf + pos, bufsz - pos, "nrg_silence_rssi:\t\t");
  1521. for (cnt = 0; cnt < NRG_NUM_PREV_STAT_L; cnt++) {
  1522. pos += scnprintf(buf + pos, bufsz - pos, " %u",
  1523. data->nrg_silence_rssi[cnt]);
  1524. }
  1525. pos += scnprintf(buf + pos, bufsz - pos, "\n");
  1526. pos += scnprintf(buf + pos, bufsz - pos, "nrg_silence_ref:\t\t %u\n",
  1527. data->nrg_silence_ref);
  1528. pos += scnprintf(buf + pos, bufsz - pos, "nrg_energy_idx:\t\t\t %u\n",
  1529. data->nrg_energy_idx);
  1530. pos += scnprintf(buf + pos, bufsz - pos, "nrg_silence_idx:\t\t %u\n",
  1531. data->nrg_silence_idx);
  1532. pos += scnprintf(buf + pos, bufsz - pos, "nrg_th_cck:\t\t\t %u\n",
  1533. data->nrg_th_cck);
  1534. pos += scnprintf(buf + pos, bufsz - pos,
  1535. "nrg_auto_corr_silence_diff:\t %u\n",
  1536. data->nrg_auto_corr_silence_diff);
  1537. pos += scnprintf(buf + pos, bufsz - pos, "num_in_cck_no_fa:\t\t %u\n",
  1538. data->num_in_cck_no_fa);
  1539. pos += scnprintf(buf + pos, bufsz - pos, "nrg_th_ofdm:\t\t\t %u\n",
  1540. data->nrg_th_ofdm);
  1541. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  1542. kfree(buf);
  1543. return ret;
  1544. }
  1545. static ssize_t iwl_dbgfs_chain_noise_read(struct file *file,
  1546. char __user *user_buf,
  1547. size_t count, loff_t *ppos) {
  1548. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  1549. int pos = 0;
  1550. int cnt = 0;
  1551. char *buf;
  1552. int bufsz = sizeof(struct iwl_chain_noise_data) * 4 + 100;
  1553. ssize_t ret;
  1554. struct iwl_chain_noise_data *data;
  1555. data = &priv->chain_noise_data;
  1556. buf = kzalloc(bufsz, GFP_KERNEL);
  1557. if (!buf) {
  1558. IWL_ERR(priv, "Can not allocate Buffer\n");
  1559. return -ENOMEM;
  1560. }
  1561. pos += scnprintf(buf + pos, bufsz - pos, "active_chains:\t\t\t %u\n",
  1562. data->active_chains);
  1563. pos += scnprintf(buf + pos, bufsz - pos, "chain_noise_a:\t\t\t %u\n",
  1564. data->chain_noise_a);
  1565. pos += scnprintf(buf + pos, bufsz - pos, "chain_noise_b:\t\t\t %u\n",
  1566. data->chain_noise_b);
  1567. pos += scnprintf(buf + pos, bufsz - pos, "chain_noise_c:\t\t\t %u\n",
  1568. data->chain_noise_c);
  1569. pos += scnprintf(buf + pos, bufsz - pos, "chain_signal_a:\t\t\t %u\n",
  1570. data->chain_signal_a);
  1571. pos += scnprintf(buf + pos, bufsz - pos, "chain_signal_b:\t\t\t %u\n",
  1572. data->chain_signal_b);
  1573. pos += scnprintf(buf + pos, bufsz - pos, "chain_signal_c:\t\t\t %u\n",
  1574. data->chain_signal_c);
  1575. pos += scnprintf(buf + pos, bufsz - pos, "beacon_count:\t\t\t %u\n",
  1576. data->beacon_count);
  1577. pos += scnprintf(buf + pos, bufsz - pos, "disconn_array:\t\t\t");
  1578. for (cnt = 0; cnt < NUM_RX_CHAINS; cnt++) {
  1579. pos += scnprintf(buf + pos, bufsz - pos, " %u",
  1580. data->disconn_array[cnt]);
  1581. }
  1582. pos += scnprintf(buf + pos, bufsz - pos, "\n");
  1583. pos += scnprintf(buf + pos, bufsz - pos, "delta_gain_code:\t\t");
  1584. for (cnt = 0; cnt < NUM_RX_CHAINS; cnt++) {
  1585. pos += scnprintf(buf + pos, bufsz - pos, " %u",
  1586. data->delta_gain_code[cnt]);
  1587. }
  1588. pos += scnprintf(buf + pos, bufsz - pos, "\n");
  1589. pos += scnprintf(buf + pos, bufsz - pos, "radio_write:\t\t\t %u\n",
  1590. data->radio_write);
  1591. pos += scnprintf(buf + pos, bufsz - pos, "state:\t\t\t\t %u\n",
  1592. data->state);
  1593. ret = simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  1594. kfree(buf);
  1595. return ret;
  1596. }
  1597. static ssize_t iwl_dbgfs_tx_power_read(struct file *file,
  1598. char __user *user_buf,
  1599. size_t count, loff_t *ppos) {
  1600. struct iwl_priv *priv = (struct iwl_priv *)file->private_data;
  1601. char buf[128];
  1602. int pos = 0;
  1603. ssize_t ret;
  1604. const size_t bufsz = sizeof(buf);
  1605. struct statistics_tx *tx;
  1606. if (!iwl_is_alive(priv))
  1607. pos += scnprintf(buf + pos, bufsz - pos, "N/A\n");
  1608. else {
  1609. /* make request to uCode to retrieve statistics information */
  1610. mutex_lock(&priv->mutex);
  1611. ret = iwl_send_statistics_request(priv, 0);
  1612. mutex_unlock(&priv->mutex);
  1613. if (ret) {
  1614. IWL_ERR(priv, "Error sending statistics request: %zd\n",
  1615. ret);
  1616. return -EAGAIN;
  1617. }
  1618. tx = &priv->statistics.tx;
  1619. if (tx->tx_power.ant_a ||
  1620. tx->tx_power.ant_b ||
  1621. tx->tx_power.ant_c) {
  1622. pos += scnprintf(buf + pos, bufsz - pos,
  1623. "tx power: (1/2 dB step)\n");
  1624. if ((priv->cfg->valid_tx_ant & ANT_A) &&
  1625. tx->tx_power.ant_a)
  1626. pos += scnprintf(buf + pos, bufsz - pos,
  1627. "\tantenna A: 0x%X\n",
  1628. tx->tx_power.ant_a);
  1629. if ((priv->cfg->valid_tx_ant & ANT_B) &&
  1630. tx->tx_power.ant_b)
  1631. pos += scnprintf(buf + pos, bufsz - pos,
  1632. "\tantenna B: 0x%X\n",
  1633. tx->tx_power.ant_b);
  1634. if ((priv->cfg->valid_tx_ant & ANT_C) &&
  1635. tx->tx_power.ant_c)
  1636. pos += scnprintf(buf + pos, bufsz - pos,
  1637. "\tantenna C: 0x%X\n",
  1638. tx->tx_power.ant_c);
  1639. } else
  1640. pos += scnprintf(buf + pos, bufsz - pos, "N/A\n");
  1641. }
  1642. return simple_read_from_buffer(user_buf, count, ppos, buf, pos);
  1643. }
  1644. DEBUGFS_READ_WRITE_FILE_OPS(rx_statistics);
  1645. DEBUGFS_READ_WRITE_FILE_OPS(tx_statistics);
  1646. DEBUGFS_READ_WRITE_FILE_OPS(traffic_log);
  1647. DEBUGFS_READ_FILE_OPS(rx_queue);
  1648. DEBUGFS_READ_FILE_OPS(tx_queue);
  1649. DEBUGFS_READ_FILE_OPS(ucode_rx_stats);
  1650. DEBUGFS_READ_FILE_OPS(ucode_tx_stats);
  1651. DEBUGFS_READ_FILE_OPS(ucode_general_stats);
  1652. DEBUGFS_READ_FILE_OPS(sensitivity);
  1653. DEBUGFS_READ_FILE_OPS(chain_noise);
  1654. DEBUGFS_READ_FILE_OPS(tx_power);
  1655. /*
  1656. * Create the debugfs files and directories
  1657. *
  1658. */
  1659. int iwl_dbgfs_register(struct iwl_priv *priv, const char *name)
  1660. {
  1661. struct iwl_debugfs *dbgfs;
  1662. struct dentry *phyd = priv->hw->wiphy->debugfsdir;
  1663. int ret = 0;
  1664. dbgfs = kzalloc(sizeof(struct iwl_debugfs), GFP_KERNEL);
  1665. if (!dbgfs) {
  1666. ret = -ENOMEM;
  1667. goto err;
  1668. }
  1669. priv->dbgfs = dbgfs;
  1670. dbgfs->name = name;
  1671. dbgfs->dir_drv = debugfs_create_dir(name, phyd);
  1672. if (!dbgfs->dir_drv || IS_ERR(dbgfs->dir_drv)) {
  1673. ret = -ENOENT;
  1674. goto err;
  1675. }
  1676. DEBUGFS_ADD_DIR(data, dbgfs->dir_drv);
  1677. DEBUGFS_ADD_DIR(rf, dbgfs->dir_drv);
  1678. DEBUGFS_ADD_DIR(debug, dbgfs->dir_drv);
  1679. DEBUGFS_ADD_FILE(nvm, data);
  1680. DEBUGFS_ADD_FILE(sram, data);
  1681. DEBUGFS_ADD_FILE(log_event, data);
  1682. DEBUGFS_ADD_FILE(stations, data);
  1683. DEBUGFS_ADD_FILE(channels, data);
  1684. DEBUGFS_ADD_FILE(status, data);
  1685. DEBUGFS_ADD_FILE(interrupt, data);
  1686. DEBUGFS_ADD_FILE(qos, data);
  1687. DEBUGFS_ADD_FILE(led, data);
  1688. DEBUGFS_ADD_FILE(sleep_level_override, data);
  1689. DEBUGFS_ADD_FILE(current_sleep_command, data);
  1690. DEBUGFS_ADD_FILE(thermal_throttling, data);
  1691. DEBUGFS_ADD_FILE(disable_ht40, data);
  1692. DEBUGFS_ADD_FILE(rx_statistics, debug);
  1693. DEBUGFS_ADD_FILE(tx_statistics, debug);
  1694. DEBUGFS_ADD_FILE(traffic_log, debug);
  1695. DEBUGFS_ADD_FILE(rx_queue, debug);
  1696. DEBUGFS_ADD_FILE(tx_queue, debug);
  1697. DEBUGFS_ADD_FILE(tx_power, debug);
  1698. if ((priv->hw_rev & CSR_HW_REV_TYPE_MSK) != CSR_HW_REV_TYPE_3945) {
  1699. DEBUGFS_ADD_FILE(ucode_rx_stats, debug);
  1700. DEBUGFS_ADD_FILE(ucode_tx_stats, debug);
  1701. DEBUGFS_ADD_FILE(ucode_general_stats, debug);
  1702. DEBUGFS_ADD_FILE(sensitivity, debug);
  1703. DEBUGFS_ADD_FILE(chain_noise, debug);
  1704. }
  1705. DEBUGFS_ADD_BOOL(disable_sensitivity, rf, &priv->disable_sens_cal);
  1706. DEBUGFS_ADD_BOOL(disable_chain_noise, rf,
  1707. &priv->disable_chain_noise_cal);
  1708. if (((priv->hw_rev & CSR_HW_REV_TYPE_MSK) == CSR_HW_REV_TYPE_4965) ||
  1709. ((priv->hw_rev & CSR_HW_REV_TYPE_MSK) == CSR_HW_REV_TYPE_3945))
  1710. DEBUGFS_ADD_BOOL(disable_tx_power, rf,
  1711. &priv->disable_tx_power_cal);
  1712. return 0;
  1713. err:
  1714. IWL_ERR(priv, "Can't open the debugfs directory\n");
  1715. iwl_dbgfs_unregister(priv);
  1716. return ret;
  1717. }
  1718. EXPORT_SYMBOL(iwl_dbgfs_register);
  1719. /**
  1720. * Remove the debugfs files and directories
  1721. *
  1722. */
  1723. void iwl_dbgfs_unregister(struct iwl_priv *priv)
  1724. {
  1725. if (!priv->dbgfs)
  1726. return;
  1727. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_sleep_level_override);
  1728. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_current_sleep_command);
  1729. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_nvm);
  1730. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_sram);
  1731. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_log_event);
  1732. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_stations);
  1733. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_channels);
  1734. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_status);
  1735. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_interrupt);
  1736. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_qos);
  1737. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_led);
  1738. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_thermal_throttling);
  1739. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_data_files.file_disable_ht40);
  1740. DEBUGFS_REMOVE(priv->dbgfs->dir_data);
  1741. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.file_rx_statistics);
  1742. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.file_tx_statistics);
  1743. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.file_traffic_log);
  1744. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.file_rx_queue);
  1745. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.file_tx_queue);
  1746. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.file_tx_power);
  1747. if ((priv->hw_rev & CSR_HW_REV_TYPE_MSK) != CSR_HW_REV_TYPE_3945) {
  1748. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.
  1749. file_ucode_rx_stats);
  1750. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.
  1751. file_ucode_tx_stats);
  1752. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.
  1753. file_ucode_general_stats);
  1754. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.
  1755. file_sensitivity);
  1756. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_debug_files.
  1757. file_chain_noise);
  1758. }
  1759. DEBUGFS_REMOVE(priv->dbgfs->dir_debug);
  1760. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_rf_files.file_disable_sensitivity);
  1761. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_rf_files.file_disable_chain_noise);
  1762. if (((priv->hw_rev & CSR_HW_REV_TYPE_MSK) == CSR_HW_REV_TYPE_4965) ||
  1763. ((priv->hw_rev & CSR_HW_REV_TYPE_MSK) == CSR_HW_REV_TYPE_3945))
  1764. DEBUGFS_REMOVE(priv->dbgfs->dbgfs_rf_files.file_disable_tx_power);
  1765. DEBUGFS_REMOVE(priv->dbgfs->dir_rf);
  1766. DEBUGFS_REMOVE(priv->dbgfs->dir_drv);
  1767. kfree(priv->dbgfs);
  1768. priv->dbgfs = NULL;
  1769. }
  1770. EXPORT_SYMBOL(iwl_dbgfs_unregister);