debug.c 63 KB

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  1. /*
  2. * Copyright (c) 2005-2011 Atheros Communications Inc.
  3. * Copyright (c) 2011-2013 Qualcomm Atheros, Inc.
  4. *
  5. * Permission to use, copy, modify, and/or distribute this software for any
  6. * purpose with or without fee is hereby granted, provided that the above
  7. * copyright notice and this permission notice appear in all copies.
  8. *
  9. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  10. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  11. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
  12. * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  13. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
  14. * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
  15. * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  16. */
  17. #include <linux/module.h>
  18. #include <linux/debugfs.h>
  19. #include <linux/vmalloc.h>
  20. #include <linux/utsname.h>
  21. #include <linux/crc32.h>
  22. #include <linux/firmware.h>
  23. #include <linux/devcoredump.h>
  24. #include "core.h"
  25. #include "debug.h"
  26. #include "hif.h"
  27. #include "wmi-ops.h"
  28. /* ms */
  29. #define ATH10K_DEBUG_HTT_STATS_INTERVAL 1000
  30. #define ATH10K_DEBUG_CAL_DATA_LEN 12064
  31. #define ATH10K_FW_CRASH_DUMP_VERSION 1
  32. /**
  33. * enum ath10k_fw_crash_dump_type - types of data in the dump file
  34. * @ATH10K_FW_CRASH_DUMP_REGDUMP: Register crash dump in binary format
  35. */
  36. enum ath10k_fw_crash_dump_type {
  37. ATH10K_FW_CRASH_DUMP_REGISTERS = 0,
  38. ATH10K_FW_CRASH_DUMP_CE_DATA = 1,
  39. ATH10K_FW_CRASH_DUMP_MAX,
  40. };
  41. struct ath10k_tlv_dump_data {
  42. /* see ath10k_fw_crash_dump_type above */
  43. __le32 type;
  44. /* in bytes */
  45. __le32 tlv_len;
  46. /* pad to 32-bit boundaries as needed */
  47. u8 tlv_data[];
  48. } __packed;
  49. struct ath10k_dump_file_data {
  50. /* dump file information */
  51. /* "ATH10K-FW-DUMP" */
  52. char df_magic[16];
  53. __le32 len;
  54. /* file dump version */
  55. __le32 version;
  56. /* some info we can get from ath10k struct that might help */
  57. u8 uuid[16];
  58. __le32 chip_id;
  59. /* 0 for now, in place for later hardware */
  60. __le32 bus_type;
  61. __le32 target_version;
  62. __le32 fw_version_major;
  63. __le32 fw_version_minor;
  64. __le32 fw_version_release;
  65. __le32 fw_version_build;
  66. __le32 phy_capability;
  67. __le32 hw_min_tx_power;
  68. __le32 hw_max_tx_power;
  69. __le32 ht_cap_info;
  70. __le32 vht_cap_info;
  71. __le32 num_rf_chains;
  72. /* firmware version string */
  73. char fw_ver[ETHTOOL_FWVERS_LEN];
  74. /* Kernel related information */
  75. /* time-of-day stamp */
  76. __le64 tv_sec;
  77. /* time-of-day stamp, nano-seconds */
  78. __le64 tv_nsec;
  79. /* LINUX_VERSION_CODE */
  80. __le32 kernel_ver_code;
  81. /* VERMAGIC_STRING */
  82. char kernel_ver[64];
  83. /* room for growth w/out changing binary format */
  84. u8 unused[128];
  85. /* struct ath10k_tlv_dump_data + more */
  86. u8 data[0];
  87. } __packed;
  88. void ath10k_info(struct ath10k *ar, const char *fmt, ...)
  89. {
  90. struct va_format vaf = {
  91. .fmt = fmt,
  92. };
  93. va_list args;
  94. va_start(args, fmt);
  95. vaf.va = &args;
  96. dev_info(ar->dev, "%pV", &vaf);
  97. trace_ath10k_log_info(ar, &vaf);
  98. va_end(args);
  99. }
  100. EXPORT_SYMBOL(ath10k_info);
  101. void ath10k_debug_print_hwfw_info(struct ath10k *ar)
  102. {
  103. const struct firmware *firmware;
  104. char fw_features[128] = {};
  105. u32 crc = 0;
  106. ath10k_core_get_fw_features_str(ar, fw_features, sizeof(fw_features));
  107. ath10k_info(ar, "%s target 0x%08x chip_id 0x%08x sub %04x:%04x",
  108. ar->hw_params.name,
  109. ar->target_version,
  110. ar->chip_id,
  111. ar->id.subsystem_vendor, ar->id.subsystem_device);
  112. ath10k_info(ar, "kconfig debug %d debugfs %d tracing %d dfs %d testmode %d\n",
  113. IS_ENABLED(CONFIG_ATH10K_DEBUG),
  114. IS_ENABLED(CONFIG_ATH10K_DEBUGFS),
  115. IS_ENABLED(CONFIG_ATH10K_TRACING),
  116. IS_ENABLED(CONFIG_ATH10K_DFS_CERTIFIED),
  117. IS_ENABLED(CONFIG_NL80211_TESTMODE));
  118. firmware = ar->normal_mode_fw.fw_file.firmware;
  119. if (firmware)
  120. crc = crc32_le(0, firmware->data, firmware->size);
  121. ath10k_info(ar, "firmware ver %s api %d features %s crc32 %08x\n",
  122. ar->hw->wiphy->fw_version,
  123. ar->fw_api,
  124. fw_features,
  125. crc);
  126. }
  127. void ath10k_debug_print_board_info(struct ath10k *ar)
  128. {
  129. char boardinfo[100];
  130. if (ar->id.bmi_ids_valid)
  131. scnprintf(boardinfo, sizeof(boardinfo), "%d:%d",
  132. ar->id.bmi_chip_id, ar->id.bmi_board_id);
  133. else
  134. scnprintf(boardinfo, sizeof(boardinfo), "N/A");
  135. ath10k_info(ar, "board_file api %d bmi_id %s crc32 %08x",
  136. ar->bd_api,
  137. boardinfo,
  138. crc32_le(0, ar->normal_mode_fw.board->data,
  139. ar->normal_mode_fw.board->size));
  140. }
  141. void ath10k_debug_print_boot_info(struct ath10k *ar)
  142. {
  143. ath10k_info(ar, "htt-ver %d.%d wmi-op %d htt-op %d cal %s max-sta %d raw %d hwcrypto %d\n",
  144. ar->htt.target_version_major,
  145. ar->htt.target_version_minor,
  146. ar->normal_mode_fw.fw_file.wmi_op_version,
  147. ar->normal_mode_fw.fw_file.htt_op_version,
  148. ath10k_cal_mode_str(ar->cal_mode),
  149. ar->max_num_stations,
  150. test_bit(ATH10K_FLAG_RAW_MODE, &ar->dev_flags),
  151. !test_bit(ATH10K_FLAG_HW_CRYPTO_DISABLED, &ar->dev_flags));
  152. }
  153. void ath10k_print_driver_info(struct ath10k *ar)
  154. {
  155. ath10k_debug_print_hwfw_info(ar);
  156. ath10k_debug_print_board_info(ar);
  157. ath10k_debug_print_boot_info(ar);
  158. }
  159. EXPORT_SYMBOL(ath10k_print_driver_info);
  160. void ath10k_err(struct ath10k *ar, const char *fmt, ...)
  161. {
  162. struct va_format vaf = {
  163. .fmt = fmt,
  164. };
  165. va_list args;
  166. va_start(args, fmt);
  167. vaf.va = &args;
  168. dev_err(ar->dev, "%pV", &vaf);
  169. trace_ath10k_log_err(ar, &vaf);
  170. va_end(args);
  171. }
  172. EXPORT_SYMBOL(ath10k_err);
  173. void ath10k_warn(struct ath10k *ar, const char *fmt, ...)
  174. {
  175. struct va_format vaf = {
  176. .fmt = fmt,
  177. };
  178. va_list args;
  179. va_start(args, fmt);
  180. vaf.va = &args;
  181. dev_warn_ratelimited(ar->dev, "%pV", &vaf);
  182. trace_ath10k_log_warn(ar, &vaf);
  183. va_end(args);
  184. }
  185. EXPORT_SYMBOL(ath10k_warn);
  186. #ifdef CONFIG_ATH10K_DEBUGFS
  187. static ssize_t ath10k_read_wmi_services(struct file *file,
  188. char __user *user_buf,
  189. size_t count, loff_t *ppos)
  190. {
  191. struct ath10k *ar = file->private_data;
  192. char *buf;
  193. size_t len = 0, buf_len = 4096;
  194. const char *name;
  195. ssize_t ret_cnt;
  196. bool enabled;
  197. int i;
  198. buf = kzalloc(buf_len, GFP_KERNEL);
  199. if (!buf)
  200. return -ENOMEM;
  201. mutex_lock(&ar->conf_mutex);
  202. spin_lock_bh(&ar->data_lock);
  203. for (i = 0; i < WMI_SERVICE_MAX; i++) {
  204. enabled = test_bit(i, ar->wmi.svc_map);
  205. name = wmi_service_name(i);
  206. if (!name) {
  207. if (enabled)
  208. len += scnprintf(buf + len, buf_len - len,
  209. "%-40s %s (bit %d)\n",
  210. "unknown", "enabled", i);
  211. continue;
  212. }
  213. len += scnprintf(buf + len, buf_len - len,
  214. "%-40s %s\n",
  215. name, enabled ? "enabled" : "-");
  216. }
  217. spin_unlock_bh(&ar->data_lock);
  218. ret_cnt = simple_read_from_buffer(user_buf, count, ppos, buf, len);
  219. mutex_unlock(&ar->conf_mutex);
  220. kfree(buf);
  221. return ret_cnt;
  222. }
  223. static const struct file_operations fops_wmi_services = {
  224. .read = ath10k_read_wmi_services,
  225. .open = simple_open,
  226. .owner = THIS_MODULE,
  227. .llseek = default_llseek,
  228. };
  229. static void ath10k_fw_stats_pdevs_free(struct list_head *head)
  230. {
  231. struct ath10k_fw_stats_pdev *i, *tmp;
  232. list_for_each_entry_safe(i, tmp, head, list) {
  233. list_del(&i->list);
  234. kfree(i);
  235. }
  236. }
  237. static void ath10k_fw_stats_vdevs_free(struct list_head *head)
  238. {
  239. struct ath10k_fw_stats_vdev *i, *tmp;
  240. list_for_each_entry_safe(i, tmp, head, list) {
  241. list_del(&i->list);
  242. kfree(i);
  243. }
  244. }
  245. static void ath10k_fw_stats_peers_free(struct list_head *head)
  246. {
  247. struct ath10k_fw_stats_peer *i, *tmp;
  248. list_for_each_entry_safe(i, tmp, head, list) {
  249. list_del(&i->list);
  250. kfree(i);
  251. }
  252. }
  253. static void ath10k_fw_extd_stats_peers_free(struct list_head *head)
  254. {
  255. struct ath10k_fw_extd_stats_peer *i, *tmp;
  256. list_for_each_entry_safe(i, tmp, head, list) {
  257. list_del(&i->list);
  258. kfree(i);
  259. }
  260. }
  261. static void ath10k_debug_fw_stats_reset(struct ath10k *ar)
  262. {
  263. spin_lock_bh(&ar->data_lock);
  264. ar->debug.fw_stats_done = false;
  265. ar->debug.fw_stats.extended = false;
  266. ath10k_fw_stats_pdevs_free(&ar->debug.fw_stats.pdevs);
  267. ath10k_fw_stats_vdevs_free(&ar->debug.fw_stats.vdevs);
  268. ath10k_fw_stats_peers_free(&ar->debug.fw_stats.peers);
  269. ath10k_fw_extd_stats_peers_free(&ar->debug.fw_stats.peers_extd);
  270. spin_unlock_bh(&ar->data_lock);
  271. }
  272. void ath10k_debug_fw_stats_process(struct ath10k *ar, struct sk_buff *skb)
  273. {
  274. struct ath10k_fw_stats stats = {};
  275. bool is_start, is_started, is_end;
  276. size_t num_peers;
  277. size_t num_vdevs;
  278. int ret;
  279. INIT_LIST_HEAD(&stats.pdevs);
  280. INIT_LIST_HEAD(&stats.vdevs);
  281. INIT_LIST_HEAD(&stats.peers);
  282. INIT_LIST_HEAD(&stats.peers_extd);
  283. spin_lock_bh(&ar->data_lock);
  284. ret = ath10k_wmi_pull_fw_stats(ar, skb, &stats);
  285. if (ret) {
  286. ath10k_warn(ar, "failed to pull fw stats: %d\n", ret);
  287. goto free;
  288. }
  289. /* Stat data may exceed htc-wmi buffer limit. In such case firmware
  290. * splits the stats data and delivers it in a ping-pong fashion of
  291. * request cmd-update event.
  292. *
  293. * However there is no explicit end-of-data. Instead start-of-data is
  294. * used as an implicit one. This works as follows:
  295. * a) discard stat update events until one with pdev stats is
  296. * delivered - this skips session started at end of (b)
  297. * b) consume stat update events until another one with pdev stats is
  298. * delivered which is treated as end-of-data and is itself discarded
  299. */
  300. if (ath10k_peer_stats_enabled(ar))
  301. ath10k_sta_update_rx_duration(ar, &stats);
  302. if (ar->debug.fw_stats_done) {
  303. if (!ath10k_peer_stats_enabled(ar))
  304. ath10k_warn(ar, "received unsolicited stats update event\n");
  305. goto free;
  306. }
  307. num_peers = ath10k_wmi_fw_stats_num_peers(&ar->debug.fw_stats.peers);
  308. num_vdevs = ath10k_wmi_fw_stats_num_vdevs(&ar->debug.fw_stats.vdevs);
  309. is_start = (list_empty(&ar->debug.fw_stats.pdevs) &&
  310. !list_empty(&stats.pdevs));
  311. is_end = (!list_empty(&ar->debug.fw_stats.pdevs) &&
  312. !list_empty(&stats.pdevs));
  313. if (is_start)
  314. list_splice_tail_init(&stats.pdevs, &ar->debug.fw_stats.pdevs);
  315. if (is_end)
  316. ar->debug.fw_stats_done = true;
  317. is_started = !list_empty(&ar->debug.fw_stats.pdevs);
  318. if (is_started && !is_end) {
  319. if (num_peers >= ATH10K_MAX_NUM_PEER_IDS) {
  320. /* Although this is unlikely impose a sane limit to
  321. * prevent firmware from DoS-ing the host.
  322. */
  323. ath10k_fw_stats_peers_free(&ar->debug.fw_stats.peers);
  324. ath10k_fw_extd_stats_peers_free(&ar->debug.fw_stats.peers_extd);
  325. ath10k_warn(ar, "dropping fw peer stats\n");
  326. goto free;
  327. }
  328. if (num_vdevs >= BITS_PER_LONG) {
  329. ath10k_fw_stats_vdevs_free(&ar->debug.fw_stats.vdevs);
  330. ath10k_warn(ar, "dropping fw vdev stats\n");
  331. goto free;
  332. }
  333. if (!list_empty(&stats.peers))
  334. list_splice_tail_init(&stats.peers_extd,
  335. &ar->debug.fw_stats.peers_extd);
  336. list_splice_tail_init(&stats.peers, &ar->debug.fw_stats.peers);
  337. list_splice_tail_init(&stats.vdevs, &ar->debug.fw_stats.vdevs);
  338. }
  339. complete(&ar->debug.fw_stats_complete);
  340. free:
  341. /* In some cases lists have been spliced and cleared. Free up
  342. * resources if that is not the case.
  343. */
  344. ath10k_fw_stats_pdevs_free(&stats.pdevs);
  345. ath10k_fw_stats_vdevs_free(&stats.vdevs);
  346. ath10k_fw_stats_peers_free(&stats.peers);
  347. ath10k_fw_extd_stats_peers_free(&stats.peers_extd);
  348. spin_unlock_bh(&ar->data_lock);
  349. }
  350. static int ath10k_debug_fw_stats_request(struct ath10k *ar)
  351. {
  352. unsigned long timeout, time_left;
  353. int ret;
  354. lockdep_assert_held(&ar->conf_mutex);
  355. timeout = jiffies + msecs_to_jiffies(1 * HZ);
  356. ath10k_debug_fw_stats_reset(ar);
  357. for (;;) {
  358. if (time_after(jiffies, timeout))
  359. return -ETIMEDOUT;
  360. reinit_completion(&ar->debug.fw_stats_complete);
  361. ret = ath10k_wmi_request_stats(ar, ar->fw_stats_req_mask);
  362. if (ret) {
  363. ath10k_warn(ar, "could not request stats (%d)\n", ret);
  364. return ret;
  365. }
  366. time_left =
  367. wait_for_completion_timeout(&ar->debug.fw_stats_complete,
  368. 1 * HZ);
  369. if (!time_left)
  370. return -ETIMEDOUT;
  371. spin_lock_bh(&ar->data_lock);
  372. if (ar->debug.fw_stats_done) {
  373. spin_unlock_bh(&ar->data_lock);
  374. break;
  375. }
  376. spin_unlock_bh(&ar->data_lock);
  377. }
  378. return 0;
  379. }
  380. static int ath10k_fw_stats_open(struct inode *inode, struct file *file)
  381. {
  382. struct ath10k *ar = inode->i_private;
  383. void *buf = NULL;
  384. int ret;
  385. mutex_lock(&ar->conf_mutex);
  386. if (ar->state != ATH10K_STATE_ON) {
  387. ret = -ENETDOWN;
  388. goto err_unlock;
  389. }
  390. buf = vmalloc(ATH10K_FW_STATS_BUF_SIZE);
  391. if (!buf) {
  392. ret = -ENOMEM;
  393. goto err_unlock;
  394. }
  395. ret = ath10k_debug_fw_stats_request(ar);
  396. if (ret) {
  397. ath10k_warn(ar, "failed to request fw stats: %d\n", ret);
  398. goto err_free;
  399. }
  400. ret = ath10k_wmi_fw_stats_fill(ar, &ar->debug.fw_stats, buf);
  401. if (ret) {
  402. ath10k_warn(ar, "failed to fill fw stats: %d\n", ret);
  403. goto err_free;
  404. }
  405. file->private_data = buf;
  406. mutex_unlock(&ar->conf_mutex);
  407. return 0;
  408. err_free:
  409. vfree(buf);
  410. err_unlock:
  411. mutex_unlock(&ar->conf_mutex);
  412. return ret;
  413. }
  414. static int ath10k_fw_stats_release(struct inode *inode, struct file *file)
  415. {
  416. vfree(file->private_data);
  417. return 0;
  418. }
  419. static ssize_t ath10k_fw_stats_read(struct file *file, char __user *user_buf,
  420. size_t count, loff_t *ppos)
  421. {
  422. const char *buf = file->private_data;
  423. size_t len = strlen(buf);
  424. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  425. }
  426. static const struct file_operations fops_fw_stats = {
  427. .open = ath10k_fw_stats_open,
  428. .release = ath10k_fw_stats_release,
  429. .read = ath10k_fw_stats_read,
  430. .owner = THIS_MODULE,
  431. .llseek = default_llseek,
  432. };
  433. static ssize_t ath10k_debug_fw_reset_stats_read(struct file *file,
  434. char __user *user_buf,
  435. size_t count, loff_t *ppos)
  436. {
  437. struct ath10k *ar = file->private_data;
  438. int ret;
  439. size_t len = 0, buf_len = 500;
  440. char *buf;
  441. buf = kmalloc(buf_len, GFP_KERNEL);
  442. if (!buf)
  443. return -ENOMEM;
  444. spin_lock_bh(&ar->data_lock);
  445. len += scnprintf(buf + len, buf_len - len,
  446. "fw_crash_counter\t\t%d\n", ar->stats.fw_crash_counter);
  447. len += scnprintf(buf + len, buf_len - len,
  448. "fw_warm_reset_counter\t\t%d\n",
  449. ar->stats.fw_warm_reset_counter);
  450. len += scnprintf(buf + len, buf_len - len,
  451. "fw_cold_reset_counter\t\t%d\n",
  452. ar->stats.fw_cold_reset_counter);
  453. spin_unlock_bh(&ar->data_lock);
  454. ret = simple_read_from_buffer(user_buf, count, ppos, buf, len);
  455. kfree(buf);
  456. return ret;
  457. }
  458. static const struct file_operations fops_fw_reset_stats = {
  459. .open = simple_open,
  460. .read = ath10k_debug_fw_reset_stats_read,
  461. .owner = THIS_MODULE,
  462. .llseek = default_llseek,
  463. };
  464. /* This is a clean assert crash in firmware. */
  465. static int ath10k_debug_fw_assert(struct ath10k *ar)
  466. {
  467. struct wmi_vdev_install_key_cmd *cmd;
  468. struct sk_buff *skb;
  469. skb = ath10k_wmi_alloc_skb(ar, sizeof(*cmd) + 16);
  470. if (!skb)
  471. return -ENOMEM;
  472. cmd = (struct wmi_vdev_install_key_cmd *)skb->data;
  473. memset(cmd, 0, sizeof(*cmd));
  474. /* big enough number so that firmware asserts */
  475. cmd->vdev_id = __cpu_to_le32(0x7ffe);
  476. return ath10k_wmi_cmd_send(ar, skb,
  477. ar->wmi.cmd->vdev_install_key_cmdid);
  478. }
  479. static ssize_t ath10k_read_simulate_fw_crash(struct file *file,
  480. char __user *user_buf,
  481. size_t count, loff_t *ppos)
  482. {
  483. const char buf[] =
  484. "To simulate firmware crash write one of the keywords to this file:\n"
  485. "`soft` - this will send WMI_FORCE_FW_HANG_ASSERT to firmware if FW supports that command.\n"
  486. "`hard` - this will send to firmware command with illegal parameters causing firmware crash.\n"
  487. "`assert` - this will send special illegal parameter to firmware to cause assert failure and crash.\n"
  488. "`hw-restart` - this will simply queue hw restart without fw/hw actually crashing.\n";
  489. return simple_read_from_buffer(user_buf, count, ppos, buf, strlen(buf));
  490. }
  491. /* Simulate firmware crash:
  492. * 'soft': Call wmi command causing firmware hang. This firmware hang is
  493. * recoverable by warm firmware reset.
  494. * 'hard': Force firmware crash by setting any vdev parameter for not allowed
  495. * vdev id. This is hard firmware crash because it is recoverable only by cold
  496. * firmware reset.
  497. */
  498. static ssize_t ath10k_write_simulate_fw_crash(struct file *file,
  499. const char __user *user_buf,
  500. size_t count, loff_t *ppos)
  501. {
  502. struct ath10k *ar = file->private_data;
  503. char buf[32];
  504. int ret;
  505. simple_write_to_buffer(buf, sizeof(buf) - 1, ppos, user_buf, count);
  506. /* make sure that buf is null terminated */
  507. buf[sizeof(buf) - 1] = 0;
  508. /* drop the possible '\n' from the end */
  509. if (buf[count - 1] == '\n')
  510. buf[count - 1] = 0;
  511. mutex_lock(&ar->conf_mutex);
  512. if (ar->state != ATH10K_STATE_ON &&
  513. ar->state != ATH10K_STATE_RESTARTED) {
  514. ret = -ENETDOWN;
  515. goto exit;
  516. }
  517. if (!strcmp(buf, "soft")) {
  518. ath10k_info(ar, "simulating soft firmware crash\n");
  519. ret = ath10k_wmi_force_fw_hang(ar, WMI_FORCE_FW_HANG_ASSERT, 0);
  520. } else if (!strcmp(buf, "hard")) {
  521. ath10k_info(ar, "simulating hard firmware crash\n");
  522. /* 0x7fff is vdev id, and it is always out of range for all
  523. * firmware variants in order to force a firmware crash.
  524. */
  525. ret = ath10k_wmi_vdev_set_param(ar, 0x7fff,
  526. ar->wmi.vdev_param->rts_threshold,
  527. 0);
  528. } else if (!strcmp(buf, "assert")) {
  529. ath10k_info(ar, "simulating firmware assert crash\n");
  530. ret = ath10k_debug_fw_assert(ar);
  531. } else if (!strcmp(buf, "hw-restart")) {
  532. ath10k_info(ar, "user requested hw restart\n");
  533. queue_work(ar->workqueue, &ar->restart_work);
  534. ret = 0;
  535. } else {
  536. ret = -EINVAL;
  537. goto exit;
  538. }
  539. if (ret) {
  540. ath10k_warn(ar, "failed to simulate firmware crash: %d\n", ret);
  541. goto exit;
  542. }
  543. ret = count;
  544. exit:
  545. mutex_unlock(&ar->conf_mutex);
  546. return ret;
  547. }
  548. static const struct file_operations fops_simulate_fw_crash = {
  549. .read = ath10k_read_simulate_fw_crash,
  550. .write = ath10k_write_simulate_fw_crash,
  551. .open = simple_open,
  552. .owner = THIS_MODULE,
  553. .llseek = default_llseek,
  554. };
  555. static ssize_t ath10k_read_chip_id(struct file *file, char __user *user_buf,
  556. size_t count, loff_t *ppos)
  557. {
  558. struct ath10k *ar = file->private_data;
  559. size_t len;
  560. char buf[50];
  561. len = scnprintf(buf, sizeof(buf), "0x%08x\n", ar->chip_id);
  562. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  563. }
  564. static const struct file_operations fops_chip_id = {
  565. .read = ath10k_read_chip_id,
  566. .open = simple_open,
  567. .owner = THIS_MODULE,
  568. .llseek = default_llseek,
  569. };
  570. struct ath10k_fw_crash_data *
  571. ath10k_debug_get_new_fw_crash_data(struct ath10k *ar)
  572. {
  573. struct ath10k_fw_crash_data *crash_data = ar->debug.fw_crash_data;
  574. lockdep_assert_held(&ar->data_lock);
  575. crash_data->crashed_since_read = true;
  576. uuid_le_gen(&crash_data->uuid);
  577. getnstimeofday(&crash_data->timestamp);
  578. return crash_data;
  579. }
  580. EXPORT_SYMBOL(ath10k_debug_get_new_fw_crash_data);
  581. static struct ath10k_dump_file_data *ath10k_build_dump_file(struct ath10k *ar,
  582. bool mark_read)
  583. {
  584. struct ath10k_fw_crash_data *crash_data = ar->debug.fw_crash_data;
  585. struct ath10k_ce_crash_hdr *ce_hdr;
  586. struct ath10k_dump_file_data *dump_data;
  587. struct ath10k_tlv_dump_data *dump_tlv;
  588. size_t hdr_len = sizeof(*dump_data);
  589. size_t len, sofar = 0;
  590. unsigned char *buf;
  591. len = hdr_len;
  592. len += sizeof(*dump_tlv) + sizeof(crash_data->registers);
  593. len += sizeof(*dump_tlv) + sizeof(*ce_hdr) +
  594. CE_COUNT * sizeof(ce_hdr->entries[0]);
  595. sofar += hdr_len;
  596. /* This is going to get big when we start dumping FW RAM and such,
  597. * so go ahead and use vmalloc.
  598. */
  599. buf = vzalloc(len);
  600. if (!buf)
  601. return NULL;
  602. spin_lock_bh(&ar->data_lock);
  603. if (!crash_data->crashed_since_read) {
  604. spin_unlock_bh(&ar->data_lock);
  605. vfree(buf);
  606. return NULL;
  607. }
  608. dump_data = (struct ath10k_dump_file_data *)(buf);
  609. strlcpy(dump_data->df_magic, "ATH10K-FW-DUMP",
  610. sizeof(dump_data->df_magic));
  611. dump_data->len = cpu_to_le32(len);
  612. dump_data->version = cpu_to_le32(ATH10K_FW_CRASH_DUMP_VERSION);
  613. memcpy(dump_data->uuid, &crash_data->uuid, sizeof(dump_data->uuid));
  614. dump_data->chip_id = cpu_to_le32(ar->chip_id);
  615. dump_data->bus_type = cpu_to_le32(0);
  616. dump_data->target_version = cpu_to_le32(ar->target_version);
  617. dump_data->fw_version_major = cpu_to_le32(ar->fw_version_major);
  618. dump_data->fw_version_minor = cpu_to_le32(ar->fw_version_minor);
  619. dump_data->fw_version_release = cpu_to_le32(ar->fw_version_release);
  620. dump_data->fw_version_build = cpu_to_le32(ar->fw_version_build);
  621. dump_data->phy_capability = cpu_to_le32(ar->phy_capability);
  622. dump_data->hw_min_tx_power = cpu_to_le32(ar->hw_min_tx_power);
  623. dump_data->hw_max_tx_power = cpu_to_le32(ar->hw_max_tx_power);
  624. dump_data->ht_cap_info = cpu_to_le32(ar->ht_cap_info);
  625. dump_data->vht_cap_info = cpu_to_le32(ar->vht_cap_info);
  626. dump_data->num_rf_chains = cpu_to_le32(ar->num_rf_chains);
  627. strlcpy(dump_data->fw_ver, ar->hw->wiphy->fw_version,
  628. sizeof(dump_data->fw_ver));
  629. dump_data->kernel_ver_code = 0;
  630. strlcpy(dump_data->kernel_ver, init_utsname()->release,
  631. sizeof(dump_data->kernel_ver));
  632. dump_data->tv_sec = cpu_to_le64(crash_data->timestamp.tv_sec);
  633. dump_data->tv_nsec = cpu_to_le64(crash_data->timestamp.tv_nsec);
  634. /* Gather crash-dump */
  635. dump_tlv = (struct ath10k_tlv_dump_data *)(buf + sofar);
  636. dump_tlv->type = cpu_to_le32(ATH10K_FW_CRASH_DUMP_REGISTERS);
  637. dump_tlv->tlv_len = cpu_to_le32(sizeof(crash_data->registers));
  638. memcpy(dump_tlv->tlv_data, &crash_data->registers,
  639. sizeof(crash_data->registers));
  640. sofar += sizeof(*dump_tlv) + sizeof(crash_data->registers);
  641. dump_tlv = (struct ath10k_tlv_dump_data *)(buf + sofar);
  642. dump_tlv->type = cpu_to_le32(ATH10K_FW_CRASH_DUMP_CE_DATA);
  643. dump_tlv->tlv_len = cpu_to_le32(sizeof(*ce_hdr) +
  644. CE_COUNT * sizeof(ce_hdr->entries[0]));
  645. ce_hdr = (struct ath10k_ce_crash_hdr *)(dump_tlv->tlv_data);
  646. ce_hdr->ce_count = cpu_to_le32(CE_COUNT);
  647. memset(ce_hdr->reserved, 0, sizeof(ce_hdr->reserved));
  648. memcpy(ce_hdr->entries, crash_data->ce_crash_data,
  649. CE_COUNT * sizeof(ce_hdr->entries[0]));
  650. sofar += sizeof(*dump_tlv) + sizeof(*ce_hdr) +
  651. CE_COUNT * sizeof(ce_hdr->entries[0]);
  652. ar->debug.fw_crash_data->crashed_since_read = !mark_read;
  653. spin_unlock_bh(&ar->data_lock);
  654. return dump_data;
  655. }
  656. int ath10k_debug_fw_devcoredump(struct ath10k *ar)
  657. {
  658. struct ath10k_dump_file_data *dump;
  659. void *dump_ptr;
  660. u32 dump_len;
  661. /* To keep the dump file available also for debugfs don't mark the
  662. * file read, only debugfs should do that.
  663. */
  664. dump = ath10k_build_dump_file(ar, false);
  665. if (!dump) {
  666. ath10k_warn(ar, "no crash dump data found for devcoredump");
  667. return -ENODATA;
  668. }
  669. /* Make a copy of the dump file for dev_coredumpv() as during the
  670. * transition period we need to own the original file. Once
  671. * fw_crash_dump debugfs file is removed no need to have a copy
  672. * anymore.
  673. */
  674. dump_len = le32_to_cpu(dump->len);
  675. dump_ptr = vzalloc(dump_len);
  676. if (!dump_ptr)
  677. return -ENOMEM;
  678. memcpy(dump_ptr, dump, dump_len);
  679. dev_coredumpv(ar->dev, dump_ptr, dump_len, GFP_KERNEL);
  680. return 0;
  681. }
  682. static int ath10k_fw_crash_dump_open(struct inode *inode, struct file *file)
  683. {
  684. struct ath10k *ar = inode->i_private;
  685. struct ath10k_dump_file_data *dump;
  686. ath10k_warn(ar, "fw_crash_dump debugfs file is deprecated, please use /sys/class/devcoredump instead.");
  687. dump = ath10k_build_dump_file(ar, true);
  688. if (!dump)
  689. return -ENODATA;
  690. file->private_data = dump;
  691. return 0;
  692. }
  693. static ssize_t ath10k_fw_crash_dump_read(struct file *file,
  694. char __user *user_buf,
  695. size_t count, loff_t *ppos)
  696. {
  697. struct ath10k_dump_file_data *dump_file = file->private_data;
  698. return simple_read_from_buffer(user_buf, count, ppos,
  699. dump_file,
  700. le32_to_cpu(dump_file->len));
  701. }
  702. static int ath10k_fw_crash_dump_release(struct inode *inode,
  703. struct file *file)
  704. {
  705. vfree(file->private_data);
  706. return 0;
  707. }
  708. static const struct file_operations fops_fw_crash_dump = {
  709. .open = ath10k_fw_crash_dump_open,
  710. .read = ath10k_fw_crash_dump_read,
  711. .release = ath10k_fw_crash_dump_release,
  712. .owner = THIS_MODULE,
  713. .llseek = default_llseek,
  714. };
  715. static ssize_t ath10k_reg_addr_read(struct file *file,
  716. char __user *user_buf,
  717. size_t count, loff_t *ppos)
  718. {
  719. struct ath10k *ar = file->private_data;
  720. u8 buf[32];
  721. size_t len = 0;
  722. u32 reg_addr;
  723. mutex_lock(&ar->conf_mutex);
  724. reg_addr = ar->debug.reg_addr;
  725. mutex_unlock(&ar->conf_mutex);
  726. len += scnprintf(buf + len, sizeof(buf) - len, "0x%x\n", reg_addr);
  727. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  728. }
  729. static ssize_t ath10k_reg_addr_write(struct file *file,
  730. const char __user *user_buf,
  731. size_t count, loff_t *ppos)
  732. {
  733. struct ath10k *ar = file->private_data;
  734. u32 reg_addr;
  735. int ret;
  736. ret = kstrtou32_from_user(user_buf, count, 0, &reg_addr);
  737. if (ret)
  738. return ret;
  739. if (!IS_ALIGNED(reg_addr, 4))
  740. return -EFAULT;
  741. mutex_lock(&ar->conf_mutex);
  742. ar->debug.reg_addr = reg_addr;
  743. mutex_unlock(&ar->conf_mutex);
  744. return count;
  745. }
  746. static const struct file_operations fops_reg_addr = {
  747. .read = ath10k_reg_addr_read,
  748. .write = ath10k_reg_addr_write,
  749. .open = simple_open,
  750. .owner = THIS_MODULE,
  751. .llseek = default_llseek,
  752. };
  753. static ssize_t ath10k_reg_value_read(struct file *file,
  754. char __user *user_buf,
  755. size_t count, loff_t *ppos)
  756. {
  757. struct ath10k *ar = file->private_data;
  758. u8 buf[48];
  759. size_t len;
  760. u32 reg_addr, reg_val;
  761. int ret;
  762. mutex_lock(&ar->conf_mutex);
  763. if (ar->state != ATH10K_STATE_ON &&
  764. ar->state != ATH10K_STATE_UTF) {
  765. ret = -ENETDOWN;
  766. goto exit;
  767. }
  768. reg_addr = ar->debug.reg_addr;
  769. reg_val = ath10k_hif_read32(ar, reg_addr);
  770. len = scnprintf(buf, sizeof(buf), "0x%08x:0x%08x\n", reg_addr, reg_val);
  771. ret = simple_read_from_buffer(user_buf, count, ppos, buf, len);
  772. exit:
  773. mutex_unlock(&ar->conf_mutex);
  774. return ret;
  775. }
  776. static ssize_t ath10k_reg_value_write(struct file *file,
  777. const char __user *user_buf,
  778. size_t count, loff_t *ppos)
  779. {
  780. struct ath10k *ar = file->private_data;
  781. u32 reg_addr, reg_val;
  782. int ret;
  783. mutex_lock(&ar->conf_mutex);
  784. if (ar->state != ATH10K_STATE_ON &&
  785. ar->state != ATH10K_STATE_UTF) {
  786. ret = -ENETDOWN;
  787. goto exit;
  788. }
  789. reg_addr = ar->debug.reg_addr;
  790. ret = kstrtou32_from_user(user_buf, count, 0, &reg_val);
  791. if (ret)
  792. goto exit;
  793. ath10k_hif_write32(ar, reg_addr, reg_val);
  794. ret = count;
  795. exit:
  796. mutex_unlock(&ar->conf_mutex);
  797. return ret;
  798. }
  799. static const struct file_operations fops_reg_value = {
  800. .read = ath10k_reg_value_read,
  801. .write = ath10k_reg_value_write,
  802. .open = simple_open,
  803. .owner = THIS_MODULE,
  804. .llseek = default_llseek,
  805. };
  806. static ssize_t ath10k_mem_value_read(struct file *file,
  807. char __user *user_buf,
  808. size_t count, loff_t *ppos)
  809. {
  810. struct ath10k *ar = file->private_data;
  811. u8 *buf;
  812. int ret;
  813. if (*ppos < 0)
  814. return -EINVAL;
  815. if (!count)
  816. return 0;
  817. mutex_lock(&ar->conf_mutex);
  818. buf = vmalloc(count);
  819. if (!buf) {
  820. ret = -ENOMEM;
  821. goto exit;
  822. }
  823. if (ar->state != ATH10K_STATE_ON &&
  824. ar->state != ATH10K_STATE_UTF) {
  825. ret = -ENETDOWN;
  826. goto exit;
  827. }
  828. ret = ath10k_hif_diag_read(ar, *ppos, buf, count);
  829. if (ret) {
  830. ath10k_warn(ar, "failed to read address 0x%08x via diagnose window fnrom debugfs: %d\n",
  831. (u32)(*ppos), ret);
  832. goto exit;
  833. }
  834. ret = copy_to_user(user_buf, buf, count);
  835. if (ret) {
  836. ret = -EFAULT;
  837. goto exit;
  838. }
  839. count -= ret;
  840. *ppos += count;
  841. ret = count;
  842. exit:
  843. vfree(buf);
  844. mutex_unlock(&ar->conf_mutex);
  845. return ret;
  846. }
  847. static ssize_t ath10k_mem_value_write(struct file *file,
  848. const char __user *user_buf,
  849. size_t count, loff_t *ppos)
  850. {
  851. struct ath10k *ar = file->private_data;
  852. u8 *buf;
  853. int ret;
  854. if (*ppos < 0)
  855. return -EINVAL;
  856. if (!count)
  857. return 0;
  858. mutex_lock(&ar->conf_mutex);
  859. buf = vmalloc(count);
  860. if (!buf) {
  861. ret = -ENOMEM;
  862. goto exit;
  863. }
  864. if (ar->state != ATH10K_STATE_ON &&
  865. ar->state != ATH10K_STATE_UTF) {
  866. ret = -ENETDOWN;
  867. goto exit;
  868. }
  869. ret = copy_from_user(buf, user_buf, count);
  870. if (ret) {
  871. ret = -EFAULT;
  872. goto exit;
  873. }
  874. ret = ath10k_hif_diag_write(ar, *ppos, buf, count);
  875. if (ret) {
  876. ath10k_warn(ar, "failed to write address 0x%08x via diagnose window from debugfs: %d\n",
  877. (u32)(*ppos), ret);
  878. goto exit;
  879. }
  880. *ppos += count;
  881. ret = count;
  882. exit:
  883. vfree(buf);
  884. mutex_unlock(&ar->conf_mutex);
  885. return ret;
  886. }
  887. static const struct file_operations fops_mem_value = {
  888. .read = ath10k_mem_value_read,
  889. .write = ath10k_mem_value_write,
  890. .open = simple_open,
  891. .owner = THIS_MODULE,
  892. .llseek = default_llseek,
  893. };
  894. static int ath10k_debug_htt_stats_req(struct ath10k *ar)
  895. {
  896. u64 cookie;
  897. int ret;
  898. lockdep_assert_held(&ar->conf_mutex);
  899. if (ar->debug.htt_stats_mask == 0)
  900. /* htt stats are disabled */
  901. return 0;
  902. if (ar->state != ATH10K_STATE_ON)
  903. return 0;
  904. cookie = get_jiffies_64();
  905. ret = ath10k_htt_h2t_stats_req(&ar->htt, ar->debug.htt_stats_mask,
  906. cookie);
  907. if (ret) {
  908. ath10k_warn(ar, "failed to send htt stats request: %d\n", ret);
  909. return ret;
  910. }
  911. queue_delayed_work(ar->workqueue, &ar->debug.htt_stats_dwork,
  912. msecs_to_jiffies(ATH10K_DEBUG_HTT_STATS_INTERVAL));
  913. return 0;
  914. }
  915. static void ath10k_debug_htt_stats_dwork(struct work_struct *work)
  916. {
  917. struct ath10k *ar = container_of(work, struct ath10k,
  918. debug.htt_stats_dwork.work);
  919. mutex_lock(&ar->conf_mutex);
  920. ath10k_debug_htt_stats_req(ar);
  921. mutex_unlock(&ar->conf_mutex);
  922. }
  923. static ssize_t ath10k_read_htt_stats_mask(struct file *file,
  924. char __user *user_buf,
  925. size_t count, loff_t *ppos)
  926. {
  927. struct ath10k *ar = file->private_data;
  928. char buf[32];
  929. size_t len;
  930. len = scnprintf(buf, sizeof(buf), "%lu\n", ar->debug.htt_stats_mask);
  931. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  932. }
  933. static ssize_t ath10k_write_htt_stats_mask(struct file *file,
  934. const char __user *user_buf,
  935. size_t count, loff_t *ppos)
  936. {
  937. struct ath10k *ar = file->private_data;
  938. unsigned long mask;
  939. int ret;
  940. ret = kstrtoul_from_user(user_buf, count, 0, &mask);
  941. if (ret)
  942. return ret;
  943. /* max 8 bit masks (for now) */
  944. if (mask > 0xff)
  945. return -E2BIG;
  946. mutex_lock(&ar->conf_mutex);
  947. ar->debug.htt_stats_mask = mask;
  948. ret = ath10k_debug_htt_stats_req(ar);
  949. if (ret)
  950. goto out;
  951. ret = count;
  952. out:
  953. mutex_unlock(&ar->conf_mutex);
  954. return ret;
  955. }
  956. static const struct file_operations fops_htt_stats_mask = {
  957. .read = ath10k_read_htt_stats_mask,
  958. .write = ath10k_write_htt_stats_mask,
  959. .open = simple_open,
  960. .owner = THIS_MODULE,
  961. .llseek = default_llseek,
  962. };
  963. static ssize_t ath10k_read_htt_max_amsdu_ampdu(struct file *file,
  964. char __user *user_buf,
  965. size_t count, loff_t *ppos)
  966. {
  967. struct ath10k *ar = file->private_data;
  968. char buf[64];
  969. u8 amsdu, ampdu;
  970. size_t len;
  971. mutex_lock(&ar->conf_mutex);
  972. amsdu = ar->htt.max_num_amsdu;
  973. ampdu = ar->htt.max_num_ampdu;
  974. mutex_unlock(&ar->conf_mutex);
  975. len = scnprintf(buf, sizeof(buf), "%u %u\n", amsdu, ampdu);
  976. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  977. }
  978. static ssize_t ath10k_write_htt_max_amsdu_ampdu(struct file *file,
  979. const char __user *user_buf,
  980. size_t count, loff_t *ppos)
  981. {
  982. struct ath10k *ar = file->private_data;
  983. int res;
  984. char buf[64];
  985. unsigned int amsdu, ampdu;
  986. simple_write_to_buffer(buf, sizeof(buf) - 1, ppos, user_buf, count);
  987. /* make sure that buf is null terminated */
  988. buf[sizeof(buf) - 1] = 0;
  989. res = sscanf(buf, "%u %u", &amsdu, &ampdu);
  990. if (res != 2)
  991. return -EINVAL;
  992. mutex_lock(&ar->conf_mutex);
  993. res = ath10k_htt_h2t_aggr_cfg_msg(&ar->htt, ampdu, amsdu);
  994. if (res)
  995. goto out;
  996. res = count;
  997. ar->htt.max_num_amsdu = amsdu;
  998. ar->htt.max_num_ampdu = ampdu;
  999. out:
  1000. mutex_unlock(&ar->conf_mutex);
  1001. return res;
  1002. }
  1003. static const struct file_operations fops_htt_max_amsdu_ampdu = {
  1004. .read = ath10k_read_htt_max_amsdu_ampdu,
  1005. .write = ath10k_write_htt_max_amsdu_ampdu,
  1006. .open = simple_open,
  1007. .owner = THIS_MODULE,
  1008. .llseek = default_llseek,
  1009. };
  1010. static ssize_t ath10k_read_fw_dbglog(struct file *file,
  1011. char __user *user_buf,
  1012. size_t count, loff_t *ppos)
  1013. {
  1014. struct ath10k *ar = file->private_data;
  1015. size_t len;
  1016. char buf[96];
  1017. len = scnprintf(buf, sizeof(buf), "0x%16llx %u\n",
  1018. ar->debug.fw_dbglog_mask, ar->debug.fw_dbglog_level);
  1019. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  1020. }
  1021. static ssize_t ath10k_write_fw_dbglog(struct file *file,
  1022. const char __user *user_buf,
  1023. size_t count, loff_t *ppos)
  1024. {
  1025. struct ath10k *ar = file->private_data;
  1026. int ret;
  1027. char buf[96];
  1028. unsigned int log_level;
  1029. u64 mask;
  1030. simple_write_to_buffer(buf, sizeof(buf) - 1, ppos, user_buf, count);
  1031. /* make sure that buf is null terminated */
  1032. buf[sizeof(buf) - 1] = 0;
  1033. ret = sscanf(buf, "%llx %u", &mask, &log_level);
  1034. if (!ret)
  1035. return -EINVAL;
  1036. if (ret == 1)
  1037. /* default if user did not specify */
  1038. log_level = ATH10K_DBGLOG_LEVEL_WARN;
  1039. mutex_lock(&ar->conf_mutex);
  1040. ar->debug.fw_dbglog_mask = mask;
  1041. ar->debug.fw_dbglog_level = log_level;
  1042. if (ar->state == ATH10K_STATE_ON) {
  1043. ret = ath10k_wmi_dbglog_cfg(ar, ar->debug.fw_dbglog_mask,
  1044. ar->debug.fw_dbglog_level);
  1045. if (ret) {
  1046. ath10k_warn(ar, "dbglog cfg failed from debugfs: %d\n",
  1047. ret);
  1048. goto exit;
  1049. }
  1050. }
  1051. ret = count;
  1052. exit:
  1053. mutex_unlock(&ar->conf_mutex);
  1054. return ret;
  1055. }
  1056. /* TODO: Would be nice to always support ethtool stats, would need to
  1057. * move the stats storage out of ath10k_debug, or always have ath10k_debug
  1058. * struct available..
  1059. */
  1060. /* This generally cooresponds to the debugfs fw_stats file */
  1061. static const char ath10k_gstrings_stats[][ETH_GSTRING_LEN] = {
  1062. "tx_pkts_nic",
  1063. "tx_bytes_nic",
  1064. "rx_pkts_nic",
  1065. "rx_bytes_nic",
  1066. "d_noise_floor",
  1067. "d_cycle_count",
  1068. "d_phy_error",
  1069. "d_rts_bad",
  1070. "d_rts_good",
  1071. "d_tx_power", /* in .5 dbM I think */
  1072. "d_rx_crc_err", /* fcs_bad */
  1073. "d_no_beacon",
  1074. "d_tx_mpdus_queued",
  1075. "d_tx_msdu_queued",
  1076. "d_tx_msdu_dropped",
  1077. "d_local_enqued",
  1078. "d_local_freed",
  1079. "d_tx_ppdu_hw_queued",
  1080. "d_tx_ppdu_reaped",
  1081. "d_tx_fifo_underrun",
  1082. "d_tx_ppdu_abort",
  1083. "d_tx_mpdu_requed",
  1084. "d_tx_excessive_retries",
  1085. "d_tx_hw_rate",
  1086. "d_tx_dropped_sw_retries",
  1087. "d_tx_illegal_rate",
  1088. "d_tx_continuous_xretries",
  1089. "d_tx_timeout",
  1090. "d_tx_mpdu_txop_limit",
  1091. "d_pdev_resets",
  1092. "d_rx_mid_ppdu_route_change",
  1093. "d_rx_status",
  1094. "d_rx_extra_frags_ring0",
  1095. "d_rx_extra_frags_ring1",
  1096. "d_rx_extra_frags_ring2",
  1097. "d_rx_extra_frags_ring3",
  1098. "d_rx_msdu_htt",
  1099. "d_rx_mpdu_htt",
  1100. "d_rx_msdu_stack",
  1101. "d_rx_mpdu_stack",
  1102. "d_rx_phy_err",
  1103. "d_rx_phy_err_drops",
  1104. "d_rx_mpdu_errors", /* FCS, MIC, ENC */
  1105. "d_fw_crash_count",
  1106. "d_fw_warm_reset_count",
  1107. "d_fw_cold_reset_count",
  1108. };
  1109. #define ATH10K_SSTATS_LEN ARRAY_SIZE(ath10k_gstrings_stats)
  1110. void ath10k_debug_get_et_strings(struct ieee80211_hw *hw,
  1111. struct ieee80211_vif *vif,
  1112. u32 sset, u8 *data)
  1113. {
  1114. if (sset == ETH_SS_STATS)
  1115. memcpy(data, *ath10k_gstrings_stats,
  1116. sizeof(ath10k_gstrings_stats));
  1117. }
  1118. int ath10k_debug_get_et_sset_count(struct ieee80211_hw *hw,
  1119. struct ieee80211_vif *vif, int sset)
  1120. {
  1121. if (sset == ETH_SS_STATS)
  1122. return ATH10K_SSTATS_LEN;
  1123. return 0;
  1124. }
  1125. void ath10k_debug_get_et_stats(struct ieee80211_hw *hw,
  1126. struct ieee80211_vif *vif,
  1127. struct ethtool_stats *stats, u64 *data)
  1128. {
  1129. struct ath10k *ar = hw->priv;
  1130. static const struct ath10k_fw_stats_pdev zero_stats = {};
  1131. const struct ath10k_fw_stats_pdev *pdev_stats;
  1132. int i = 0, ret;
  1133. mutex_lock(&ar->conf_mutex);
  1134. if (ar->state == ATH10K_STATE_ON) {
  1135. ret = ath10k_debug_fw_stats_request(ar);
  1136. if (ret) {
  1137. /* just print a warning and try to use older results */
  1138. ath10k_warn(ar,
  1139. "failed to get fw stats for ethtool: %d\n",
  1140. ret);
  1141. }
  1142. }
  1143. pdev_stats = list_first_entry_or_null(&ar->debug.fw_stats.pdevs,
  1144. struct ath10k_fw_stats_pdev,
  1145. list);
  1146. if (!pdev_stats) {
  1147. /* no results available so just return zeroes */
  1148. pdev_stats = &zero_stats;
  1149. }
  1150. spin_lock_bh(&ar->data_lock);
  1151. data[i++] = pdev_stats->hw_reaped; /* ppdu reaped */
  1152. data[i++] = 0; /* tx bytes */
  1153. data[i++] = pdev_stats->htt_mpdus;
  1154. data[i++] = 0; /* rx bytes */
  1155. data[i++] = pdev_stats->ch_noise_floor;
  1156. data[i++] = pdev_stats->cycle_count;
  1157. data[i++] = pdev_stats->phy_err_count;
  1158. data[i++] = pdev_stats->rts_bad;
  1159. data[i++] = pdev_stats->rts_good;
  1160. data[i++] = pdev_stats->chan_tx_power;
  1161. data[i++] = pdev_stats->fcs_bad;
  1162. data[i++] = pdev_stats->no_beacons;
  1163. data[i++] = pdev_stats->mpdu_enqued;
  1164. data[i++] = pdev_stats->msdu_enqued;
  1165. data[i++] = pdev_stats->wmm_drop;
  1166. data[i++] = pdev_stats->local_enqued;
  1167. data[i++] = pdev_stats->local_freed;
  1168. data[i++] = pdev_stats->hw_queued;
  1169. data[i++] = pdev_stats->hw_reaped;
  1170. data[i++] = pdev_stats->underrun;
  1171. data[i++] = pdev_stats->tx_abort;
  1172. data[i++] = pdev_stats->mpdus_requed;
  1173. data[i++] = pdev_stats->tx_ko;
  1174. data[i++] = pdev_stats->data_rc;
  1175. data[i++] = pdev_stats->sw_retry_failure;
  1176. data[i++] = pdev_stats->illgl_rate_phy_err;
  1177. data[i++] = pdev_stats->pdev_cont_xretry;
  1178. data[i++] = pdev_stats->pdev_tx_timeout;
  1179. data[i++] = pdev_stats->txop_ovf;
  1180. data[i++] = pdev_stats->pdev_resets;
  1181. data[i++] = pdev_stats->mid_ppdu_route_change;
  1182. data[i++] = pdev_stats->status_rcvd;
  1183. data[i++] = pdev_stats->r0_frags;
  1184. data[i++] = pdev_stats->r1_frags;
  1185. data[i++] = pdev_stats->r2_frags;
  1186. data[i++] = pdev_stats->r3_frags;
  1187. data[i++] = pdev_stats->htt_msdus;
  1188. data[i++] = pdev_stats->htt_mpdus;
  1189. data[i++] = pdev_stats->loc_msdus;
  1190. data[i++] = pdev_stats->loc_mpdus;
  1191. data[i++] = pdev_stats->phy_errs;
  1192. data[i++] = pdev_stats->phy_err_drop;
  1193. data[i++] = pdev_stats->mpdu_errs;
  1194. data[i++] = ar->stats.fw_crash_counter;
  1195. data[i++] = ar->stats.fw_warm_reset_counter;
  1196. data[i++] = ar->stats.fw_cold_reset_counter;
  1197. spin_unlock_bh(&ar->data_lock);
  1198. mutex_unlock(&ar->conf_mutex);
  1199. WARN_ON(i != ATH10K_SSTATS_LEN);
  1200. }
  1201. static const struct file_operations fops_fw_dbglog = {
  1202. .read = ath10k_read_fw_dbglog,
  1203. .write = ath10k_write_fw_dbglog,
  1204. .open = simple_open,
  1205. .owner = THIS_MODULE,
  1206. .llseek = default_llseek,
  1207. };
  1208. static int ath10k_debug_cal_data_fetch(struct ath10k *ar)
  1209. {
  1210. u32 hi_addr;
  1211. __le32 addr;
  1212. int ret;
  1213. lockdep_assert_held(&ar->conf_mutex);
  1214. if (WARN_ON(ar->hw_params.cal_data_len > ATH10K_DEBUG_CAL_DATA_LEN))
  1215. return -EINVAL;
  1216. hi_addr = host_interest_item_address(HI_ITEM(hi_board_data));
  1217. ret = ath10k_hif_diag_read(ar, hi_addr, &addr, sizeof(addr));
  1218. if (ret) {
  1219. ath10k_warn(ar, "failed to read hi_board_data address: %d\n",
  1220. ret);
  1221. return ret;
  1222. }
  1223. ret = ath10k_hif_diag_read(ar, le32_to_cpu(addr), ar->debug.cal_data,
  1224. ar->hw_params.cal_data_len);
  1225. if (ret) {
  1226. ath10k_warn(ar, "failed to read calibration data: %d\n", ret);
  1227. return ret;
  1228. }
  1229. return 0;
  1230. }
  1231. static int ath10k_debug_cal_data_open(struct inode *inode, struct file *file)
  1232. {
  1233. struct ath10k *ar = inode->i_private;
  1234. mutex_lock(&ar->conf_mutex);
  1235. if (ar->state == ATH10K_STATE_ON ||
  1236. ar->state == ATH10K_STATE_UTF) {
  1237. ath10k_debug_cal_data_fetch(ar);
  1238. }
  1239. file->private_data = ar;
  1240. mutex_unlock(&ar->conf_mutex);
  1241. return 0;
  1242. }
  1243. static ssize_t ath10k_debug_cal_data_read(struct file *file,
  1244. char __user *user_buf,
  1245. size_t count, loff_t *ppos)
  1246. {
  1247. struct ath10k *ar = file->private_data;
  1248. mutex_lock(&ar->conf_mutex);
  1249. count = simple_read_from_buffer(user_buf, count, ppos,
  1250. ar->debug.cal_data,
  1251. ar->hw_params.cal_data_len);
  1252. mutex_unlock(&ar->conf_mutex);
  1253. return count;
  1254. }
  1255. static ssize_t ath10k_write_ani_enable(struct file *file,
  1256. const char __user *user_buf,
  1257. size_t count, loff_t *ppos)
  1258. {
  1259. struct ath10k *ar = file->private_data;
  1260. int ret;
  1261. u8 enable;
  1262. if (kstrtou8_from_user(user_buf, count, 0, &enable))
  1263. return -EINVAL;
  1264. mutex_lock(&ar->conf_mutex);
  1265. if (ar->ani_enabled == enable) {
  1266. ret = count;
  1267. goto exit;
  1268. }
  1269. ret = ath10k_wmi_pdev_set_param(ar, ar->wmi.pdev_param->ani_enable,
  1270. enable);
  1271. if (ret) {
  1272. ath10k_warn(ar, "ani_enable failed from debugfs: %d\n", ret);
  1273. goto exit;
  1274. }
  1275. ar->ani_enabled = enable;
  1276. ret = count;
  1277. exit:
  1278. mutex_unlock(&ar->conf_mutex);
  1279. return ret;
  1280. }
  1281. static ssize_t ath10k_read_ani_enable(struct file *file, char __user *user_buf,
  1282. size_t count, loff_t *ppos)
  1283. {
  1284. struct ath10k *ar = file->private_data;
  1285. size_t len;
  1286. char buf[32];
  1287. len = scnprintf(buf, sizeof(buf), "%d\n", ar->ani_enabled);
  1288. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  1289. }
  1290. static const struct file_operations fops_ani_enable = {
  1291. .read = ath10k_read_ani_enable,
  1292. .write = ath10k_write_ani_enable,
  1293. .open = simple_open,
  1294. .owner = THIS_MODULE,
  1295. .llseek = default_llseek,
  1296. };
  1297. static const struct file_operations fops_cal_data = {
  1298. .open = ath10k_debug_cal_data_open,
  1299. .read = ath10k_debug_cal_data_read,
  1300. .owner = THIS_MODULE,
  1301. .llseek = default_llseek,
  1302. };
  1303. static ssize_t ath10k_read_nf_cal_period(struct file *file,
  1304. char __user *user_buf,
  1305. size_t count, loff_t *ppos)
  1306. {
  1307. struct ath10k *ar = file->private_data;
  1308. size_t len;
  1309. char buf[32];
  1310. len = scnprintf(buf, sizeof(buf), "%d\n", ar->debug.nf_cal_period);
  1311. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  1312. }
  1313. static ssize_t ath10k_write_nf_cal_period(struct file *file,
  1314. const char __user *user_buf,
  1315. size_t count, loff_t *ppos)
  1316. {
  1317. struct ath10k *ar = file->private_data;
  1318. unsigned long period;
  1319. int ret;
  1320. ret = kstrtoul_from_user(user_buf, count, 0, &period);
  1321. if (ret)
  1322. return ret;
  1323. if (period > WMI_PDEV_PARAM_CAL_PERIOD_MAX)
  1324. return -EINVAL;
  1325. /* there's no way to switch back to the firmware default */
  1326. if (period == 0)
  1327. return -EINVAL;
  1328. mutex_lock(&ar->conf_mutex);
  1329. ar->debug.nf_cal_period = period;
  1330. if (ar->state != ATH10K_STATE_ON) {
  1331. /* firmware is not running, nothing else to do */
  1332. ret = count;
  1333. goto exit;
  1334. }
  1335. ret = ath10k_wmi_pdev_set_param(ar, ar->wmi.pdev_param->cal_period,
  1336. ar->debug.nf_cal_period);
  1337. if (ret) {
  1338. ath10k_warn(ar, "cal period cfg failed from debugfs: %d\n",
  1339. ret);
  1340. goto exit;
  1341. }
  1342. ret = count;
  1343. exit:
  1344. mutex_unlock(&ar->conf_mutex);
  1345. return ret;
  1346. }
  1347. static const struct file_operations fops_nf_cal_period = {
  1348. .read = ath10k_read_nf_cal_period,
  1349. .write = ath10k_write_nf_cal_period,
  1350. .open = simple_open,
  1351. .owner = THIS_MODULE,
  1352. .llseek = default_llseek,
  1353. };
  1354. #define ATH10K_TPC_CONFIG_BUF_SIZE (1024 * 1024)
  1355. static int ath10k_debug_tpc_stats_request(struct ath10k *ar)
  1356. {
  1357. int ret;
  1358. unsigned long time_left;
  1359. lockdep_assert_held(&ar->conf_mutex);
  1360. reinit_completion(&ar->debug.tpc_complete);
  1361. ret = ath10k_wmi_pdev_get_tpc_config(ar, WMI_TPC_CONFIG_PARAM);
  1362. if (ret) {
  1363. ath10k_warn(ar, "failed to request tpc config: %d\n", ret);
  1364. return ret;
  1365. }
  1366. time_left = wait_for_completion_timeout(&ar->debug.tpc_complete,
  1367. 1 * HZ);
  1368. if (time_left == 0)
  1369. return -ETIMEDOUT;
  1370. return 0;
  1371. }
  1372. void ath10k_debug_tpc_stats_process(struct ath10k *ar,
  1373. struct ath10k_tpc_stats *tpc_stats)
  1374. {
  1375. spin_lock_bh(&ar->data_lock);
  1376. kfree(ar->debug.tpc_stats);
  1377. ar->debug.tpc_stats = tpc_stats;
  1378. complete(&ar->debug.tpc_complete);
  1379. spin_unlock_bh(&ar->data_lock);
  1380. }
  1381. static void ath10k_tpc_stats_print(struct ath10k_tpc_stats *tpc_stats,
  1382. unsigned int j, char *buf, size_t *len)
  1383. {
  1384. int i;
  1385. size_t buf_len;
  1386. static const char table_str[][5] = { "CDD",
  1387. "STBC",
  1388. "TXBF" };
  1389. static const char pream_str[][6] = { "CCK",
  1390. "OFDM",
  1391. "HT20",
  1392. "HT40",
  1393. "VHT20",
  1394. "VHT40",
  1395. "VHT80",
  1396. "HTCUP" };
  1397. buf_len = ATH10K_TPC_CONFIG_BUF_SIZE;
  1398. *len += scnprintf(buf + *len, buf_len - *len,
  1399. "********************************\n");
  1400. *len += scnprintf(buf + *len, buf_len - *len,
  1401. "******************* %s POWER TABLE ****************\n",
  1402. table_str[j]);
  1403. *len += scnprintf(buf + *len, buf_len - *len,
  1404. "********************************\n");
  1405. *len += scnprintf(buf + *len, buf_len - *len,
  1406. "No. Preamble Rate_code tpc_value1 tpc_value2 tpc_value3\n");
  1407. for (i = 0; i < tpc_stats->rate_max; i++) {
  1408. *len += scnprintf(buf + *len, buf_len - *len,
  1409. "%8d %s 0x%2x %s\n", i,
  1410. pream_str[tpc_stats->tpc_table[j].pream_idx[i]],
  1411. tpc_stats->tpc_table[j].rate_code[i],
  1412. tpc_stats->tpc_table[j].tpc_value[i]);
  1413. }
  1414. *len += scnprintf(buf + *len, buf_len - *len,
  1415. "***********************************\n");
  1416. }
  1417. static void ath10k_tpc_stats_fill(struct ath10k *ar,
  1418. struct ath10k_tpc_stats *tpc_stats,
  1419. char *buf)
  1420. {
  1421. int j;
  1422. size_t len, buf_len;
  1423. len = 0;
  1424. buf_len = ATH10K_TPC_CONFIG_BUF_SIZE;
  1425. spin_lock_bh(&ar->data_lock);
  1426. if (!tpc_stats) {
  1427. ath10k_warn(ar, "failed to get tpc stats\n");
  1428. goto unlock;
  1429. }
  1430. len += scnprintf(buf + len, buf_len - len, "\n");
  1431. len += scnprintf(buf + len, buf_len - len,
  1432. "*************************************\n");
  1433. len += scnprintf(buf + len, buf_len - len,
  1434. "TPC config for channel %4d mode %d\n",
  1435. tpc_stats->chan_freq,
  1436. tpc_stats->phy_mode);
  1437. len += scnprintf(buf + len, buf_len - len,
  1438. "*************************************\n");
  1439. len += scnprintf(buf + len, buf_len - len,
  1440. "CTL = 0x%2x Reg. Domain = %2d\n",
  1441. tpc_stats->ctl,
  1442. tpc_stats->reg_domain);
  1443. len += scnprintf(buf + len, buf_len - len,
  1444. "Antenna Gain = %2d Reg. Max Antenna Gain = %2d\n",
  1445. tpc_stats->twice_antenna_gain,
  1446. tpc_stats->twice_antenna_reduction);
  1447. len += scnprintf(buf + len, buf_len - len,
  1448. "Power Limit = %2d Reg. Max Power = %2d\n",
  1449. tpc_stats->power_limit,
  1450. tpc_stats->twice_max_rd_power / 2);
  1451. len += scnprintf(buf + len, buf_len - len,
  1452. "Num tx chains = %2d Num supported rates = %2d\n",
  1453. tpc_stats->num_tx_chain,
  1454. tpc_stats->rate_max);
  1455. for (j = 0; j < WMI_TPC_FLAG; j++) {
  1456. switch (j) {
  1457. case WMI_TPC_TABLE_TYPE_CDD:
  1458. if (tpc_stats->flag[j] == ATH10K_TPC_TABLE_TYPE_FLAG) {
  1459. len += scnprintf(buf + len, buf_len - len,
  1460. "CDD not supported\n");
  1461. break;
  1462. }
  1463. ath10k_tpc_stats_print(tpc_stats, j, buf, &len);
  1464. break;
  1465. case WMI_TPC_TABLE_TYPE_STBC:
  1466. if (tpc_stats->flag[j] == ATH10K_TPC_TABLE_TYPE_FLAG) {
  1467. len += scnprintf(buf + len, buf_len - len,
  1468. "STBC not supported\n");
  1469. break;
  1470. }
  1471. ath10k_tpc_stats_print(tpc_stats, j, buf, &len);
  1472. break;
  1473. case WMI_TPC_TABLE_TYPE_TXBF:
  1474. if (tpc_stats->flag[j] == ATH10K_TPC_TABLE_TYPE_FLAG) {
  1475. len += scnprintf(buf + len, buf_len - len,
  1476. "TXBF not supported\n***************************\n");
  1477. break;
  1478. }
  1479. ath10k_tpc_stats_print(tpc_stats, j, buf, &len);
  1480. break;
  1481. default:
  1482. len += scnprintf(buf + len, buf_len - len,
  1483. "Invalid Type\n");
  1484. break;
  1485. }
  1486. }
  1487. unlock:
  1488. spin_unlock_bh(&ar->data_lock);
  1489. if (len >= buf_len)
  1490. buf[len - 1] = 0;
  1491. else
  1492. buf[len] = 0;
  1493. }
  1494. static int ath10k_tpc_stats_open(struct inode *inode, struct file *file)
  1495. {
  1496. struct ath10k *ar = inode->i_private;
  1497. void *buf = NULL;
  1498. int ret;
  1499. mutex_lock(&ar->conf_mutex);
  1500. if (ar->state != ATH10K_STATE_ON) {
  1501. ret = -ENETDOWN;
  1502. goto err_unlock;
  1503. }
  1504. buf = vmalloc(ATH10K_TPC_CONFIG_BUF_SIZE);
  1505. if (!buf) {
  1506. ret = -ENOMEM;
  1507. goto err_unlock;
  1508. }
  1509. ret = ath10k_debug_tpc_stats_request(ar);
  1510. if (ret) {
  1511. ath10k_warn(ar, "failed to request tpc config stats: %d\n",
  1512. ret);
  1513. goto err_free;
  1514. }
  1515. ath10k_tpc_stats_fill(ar, ar->debug.tpc_stats, buf);
  1516. file->private_data = buf;
  1517. mutex_unlock(&ar->conf_mutex);
  1518. return 0;
  1519. err_free:
  1520. vfree(buf);
  1521. err_unlock:
  1522. mutex_unlock(&ar->conf_mutex);
  1523. return ret;
  1524. }
  1525. static int ath10k_tpc_stats_release(struct inode *inode, struct file *file)
  1526. {
  1527. vfree(file->private_data);
  1528. return 0;
  1529. }
  1530. static ssize_t ath10k_tpc_stats_read(struct file *file, char __user *user_buf,
  1531. size_t count, loff_t *ppos)
  1532. {
  1533. const char *buf = file->private_data;
  1534. size_t len = strlen(buf);
  1535. return simple_read_from_buffer(user_buf, count, ppos, buf, len);
  1536. }
  1537. static const struct file_operations fops_tpc_stats = {
  1538. .open = ath10k_tpc_stats_open,
  1539. .release = ath10k_tpc_stats_release,
  1540. .read = ath10k_tpc_stats_read,
  1541. .owner = THIS_MODULE,
  1542. .llseek = default_llseek,
  1543. };
  1544. int ath10k_debug_start(struct ath10k *ar)
  1545. {
  1546. int ret;
  1547. lockdep_assert_held(&ar->conf_mutex);
  1548. ret = ath10k_debug_htt_stats_req(ar);
  1549. if (ret)
  1550. /* continue normally anyway, this isn't serious */
  1551. ath10k_warn(ar, "failed to start htt stats workqueue: %d\n",
  1552. ret);
  1553. if (ar->debug.fw_dbglog_mask) {
  1554. ret = ath10k_wmi_dbglog_cfg(ar, ar->debug.fw_dbglog_mask,
  1555. ATH10K_DBGLOG_LEVEL_WARN);
  1556. if (ret)
  1557. /* not serious */
  1558. ath10k_warn(ar, "failed to enable dbglog during start: %d",
  1559. ret);
  1560. }
  1561. if (ar->debug.pktlog_filter) {
  1562. ret = ath10k_wmi_pdev_pktlog_enable(ar,
  1563. ar->debug.pktlog_filter);
  1564. if (ret)
  1565. /* not serious */
  1566. ath10k_warn(ar,
  1567. "failed to enable pktlog filter %x: %d\n",
  1568. ar->debug.pktlog_filter, ret);
  1569. } else {
  1570. ret = ath10k_wmi_pdev_pktlog_disable(ar);
  1571. if (ret)
  1572. /* not serious */
  1573. ath10k_warn(ar, "failed to disable pktlog: %d\n", ret);
  1574. }
  1575. if (ar->debug.nf_cal_period) {
  1576. ret = ath10k_wmi_pdev_set_param(ar,
  1577. ar->wmi.pdev_param->cal_period,
  1578. ar->debug.nf_cal_period);
  1579. if (ret)
  1580. /* not serious */
  1581. ath10k_warn(ar, "cal period cfg failed from debug start: %d\n",
  1582. ret);
  1583. }
  1584. return ret;
  1585. }
  1586. void ath10k_debug_stop(struct ath10k *ar)
  1587. {
  1588. lockdep_assert_held(&ar->conf_mutex);
  1589. ath10k_debug_cal_data_fetch(ar);
  1590. /* Must not use _sync to avoid deadlock, we do that in
  1591. * ath10k_debug_destroy(). The check for htt_stats_mask is to avoid
  1592. * warning from del_timer().
  1593. */
  1594. if (ar->debug.htt_stats_mask != 0)
  1595. cancel_delayed_work(&ar->debug.htt_stats_dwork);
  1596. ath10k_wmi_pdev_pktlog_disable(ar);
  1597. }
  1598. static ssize_t ath10k_write_simulate_radar(struct file *file,
  1599. const char __user *user_buf,
  1600. size_t count, loff_t *ppos)
  1601. {
  1602. struct ath10k *ar = file->private_data;
  1603. struct ath10k_vif *arvif;
  1604. /* Just check for for the first vif alone, as all the vifs will be
  1605. * sharing the same channel and if the channel is disabled, all the
  1606. * vifs will share the same 'is_started' state.
  1607. */
  1608. arvif = list_first_entry(&ar->arvifs, typeof(*arvif), list);
  1609. if (!arvif->is_started)
  1610. return -EINVAL;
  1611. ieee80211_radar_detected(ar->hw);
  1612. return count;
  1613. }
  1614. static const struct file_operations fops_simulate_radar = {
  1615. .write = ath10k_write_simulate_radar,
  1616. .open = simple_open,
  1617. .owner = THIS_MODULE,
  1618. .llseek = default_llseek,
  1619. };
  1620. #define ATH10K_DFS_STAT(s, p) (\
  1621. len += scnprintf(buf + len, size - len, "%-28s : %10u\n", s, \
  1622. ar->debug.dfs_stats.p))
  1623. #define ATH10K_DFS_POOL_STAT(s, p) (\
  1624. len += scnprintf(buf + len, size - len, "%-28s : %10u\n", s, \
  1625. ar->debug.dfs_pool_stats.p))
  1626. static ssize_t ath10k_read_dfs_stats(struct file *file, char __user *user_buf,
  1627. size_t count, loff_t *ppos)
  1628. {
  1629. int retval = 0, len = 0;
  1630. const int size = 8000;
  1631. struct ath10k *ar = file->private_data;
  1632. char *buf;
  1633. buf = kzalloc(size, GFP_KERNEL);
  1634. if (buf == NULL)
  1635. return -ENOMEM;
  1636. if (!ar->dfs_detector) {
  1637. len += scnprintf(buf + len, size - len, "DFS not enabled\n");
  1638. goto exit;
  1639. }
  1640. ar->debug.dfs_pool_stats =
  1641. ar->dfs_detector->get_stats(ar->dfs_detector);
  1642. len += scnprintf(buf + len, size - len, "Pulse detector statistics:\n");
  1643. ATH10K_DFS_STAT("reported phy errors", phy_errors);
  1644. ATH10K_DFS_STAT("pulse events reported", pulses_total);
  1645. ATH10K_DFS_STAT("DFS pulses detected", pulses_detected);
  1646. ATH10K_DFS_STAT("DFS pulses discarded", pulses_discarded);
  1647. ATH10K_DFS_STAT("Radars detected", radar_detected);
  1648. len += scnprintf(buf + len, size - len, "Global Pool statistics:\n");
  1649. ATH10K_DFS_POOL_STAT("Pool references", pool_reference);
  1650. ATH10K_DFS_POOL_STAT("Pulses allocated", pulse_allocated);
  1651. ATH10K_DFS_POOL_STAT("Pulses alloc error", pulse_alloc_error);
  1652. ATH10K_DFS_POOL_STAT("Pulses in use", pulse_used);
  1653. ATH10K_DFS_POOL_STAT("Seqs. allocated", pseq_allocated);
  1654. ATH10K_DFS_POOL_STAT("Seqs. alloc error", pseq_alloc_error);
  1655. ATH10K_DFS_POOL_STAT("Seqs. in use", pseq_used);
  1656. exit:
  1657. if (len > size)
  1658. len = size;
  1659. retval = simple_read_from_buffer(user_buf, count, ppos, buf, len);
  1660. kfree(buf);
  1661. return retval;
  1662. }
  1663. static const struct file_operations fops_dfs_stats = {
  1664. .read = ath10k_read_dfs_stats,
  1665. .open = simple_open,
  1666. .owner = THIS_MODULE,
  1667. .llseek = default_llseek,
  1668. };
  1669. static ssize_t ath10k_write_pktlog_filter(struct file *file,
  1670. const char __user *ubuf,
  1671. size_t count, loff_t *ppos)
  1672. {
  1673. struct ath10k *ar = file->private_data;
  1674. u32 filter;
  1675. int ret;
  1676. if (kstrtouint_from_user(ubuf, count, 0, &filter))
  1677. return -EINVAL;
  1678. mutex_lock(&ar->conf_mutex);
  1679. if (ar->state != ATH10K_STATE_ON) {
  1680. ar->debug.pktlog_filter = filter;
  1681. ret = count;
  1682. goto out;
  1683. }
  1684. if (filter == ar->debug.pktlog_filter) {
  1685. ret = count;
  1686. goto out;
  1687. }
  1688. if (filter) {
  1689. ret = ath10k_wmi_pdev_pktlog_enable(ar, filter);
  1690. if (ret) {
  1691. ath10k_warn(ar, "failed to enable pktlog filter %x: %d\n",
  1692. ar->debug.pktlog_filter, ret);
  1693. goto out;
  1694. }
  1695. } else {
  1696. ret = ath10k_wmi_pdev_pktlog_disable(ar);
  1697. if (ret) {
  1698. ath10k_warn(ar, "failed to disable pktlog: %d\n", ret);
  1699. goto out;
  1700. }
  1701. }
  1702. ar->debug.pktlog_filter = filter;
  1703. ret = count;
  1704. out:
  1705. mutex_unlock(&ar->conf_mutex);
  1706. return ret;
  1707. }
  1708. static ssize_t ath10k_read_pktlog_filter(struct file *file, char __user *ubuf,
  1709. size_t count, loff_t *ppos)
  1710. {
  1711. char buf[32];
  1712. struct ath10k *ar = file->private_data;
  1713. int len = 0;
  1714. mutex_lock(&ar->conf_mutex);
  1715. len = scnprintf(buf, sizeof(buf) - len, "%08x\n",
  1716. ar->debug.pktlog_filter);
  1717. mutex_unlock(&ar->conf_mutex);
  1718. return simple_read_from_buffer(ubuf, count, ppos, buf, len);
  1719. }
  1720. static const struct file_operations fops_pktlog_filter = {
  1721. .read = ath10k_read_pktlog_filter,
  1722. .write = ath10k_write_pktlog_filter,
  1723. .open = simple_open
  1724. };
  1725. static ssize_t ath10k_write_quiet_period(struct file *file,
  1726. const char __user *ubuf,
  1727. size_t count, loff_t *ppos)
  1728. {
  1729. struct ath10k *ar = file->private_data;
  1730. u32 period;
  1731. if (kstrtouint_from_user(ubuf, count, 0, &period))
  1732. return -EINVAL;
  1733. if (period < ATH10K_QUIET_PERIOD_MIN) {
  1734. ath10k_warn(ar, "Quiet period %u can not be lesser than 25ms\n",
  1735. period);
  1736. return -EINVAL;
  1737. }
  1738. mutex_lock(&ar->conf_mutex);
  1739. ar->thermal.quiet_period = period;
  1740. ath10k_thermal_set_throttling(ar);
  1741. mutex_unlock(&ar->conf_mutex);
  1742. return count;
  1743. }
  1744. static ssize_t ath10k_read_quiet_period(struct file *file, char __user *ubuf,
  1745. size_t count, loff_t *ppos)
  1746. {
  1747. char buf[32];
  1748. struct ath10k *ar = file->private_data;
  1749. int len = 0;
  1750. mutex_lock(&ar->conf_mutex);
  1751. len = scnprintf(buf, sizeof(buf) - len, "%d\n",
  1752. ar->thermal.quiet_period);
  1753. mutex_unlock(&ar->conf_mutex);
  1754. return simple_read_from_buffer(ubuf, count, ppos, buf, len);
  1755. }
  1756. static const struct file_operations fops_quiet_period = {
  1757. .read = ath10k_read_quiet_period,
  1758. .write = ath10k_write_quiet_period,
  1759. .open = simple_open
  1760. };
  1761. static ssize_t ath10k_write_btcoex(struct file *file,
  1762. const char __user *ubuf,
  1763. size_t count, loff_t *ppos)
  1764. {
  1765. struct ath10k *ar = file->private_data;
  1766. char buf[32];
  1767. size_t buf_size;
  1768. int ret;
  1769. bool val;
  1770. u32 pdev_param;
  1771. buf_size = min(count, (sizeof(buf) - 1));
  1772. if (copy_from_user(buf, ubuf, buf_size))
  1773. return -EFAULT;
  1774. buf[buf_size] = '\0';
  1775. if (strtobool(buf, &val) != 0)
  1776. return -EINVAL;
  1777. mutex_lock(&ar->conf_mutex);
  1778. if (ar->state != ATH10K_STATE_ON &&
  1779. ar->state != ATH10K_STATE_RESTARTED) {
  1780. ret = -ENETDOWN;
  1781. goto exit;
  1782. }
  1783. if (!(test_bit(ATH10K_FLAG_BTCOEX, &ar->dev_flags) ^ val)) {
  1784. ret = count;
  1785. goto exit;
  1786. }
  1787. pdev_param = ar->wmi.pdev_param->enable_btcoex;
  1788. if (test_bit(ATH10K_FW_FEATURE_BTCOEX_PARAM,
  1789. ar->running_fw->fw_file.fw_features)) {
  1790. ret = ath10k_wmi_pdev_set_param(ar, pdev_param, val);
  1791. if (ret) {
  1792. ath10k_warn(ar, "failed to enable btcoex: %d\n", ret);
  1793. ret = count;
  1794. goto exit;
  1795. }
  1796. } else {
  1797. ath10k_info(ar, "restarting firmware due to btcoex change");
  1798. queue_work(ar->workqueue, &ar->restart_work);
  1799. }
  1800. if (val)
  1801. set_bit(ATH10K_FLAG_BTCOEX, &ar->dev_flags);
  1802. else
  1803. clear_bit(ATH10K_FLAG_BTCOEX, &ar->dev_flags);
  1804. ret = count;
  1805. exit:
  1806. mutex_unlock(&ar->conf_mutex);
  1807. return ret;
  1808. }
  1809. static ssize_t ath10k_read_btcoex(struct file *file, char __user *ubuf,
  1810. size_t count, loff_t *ppos)
  1811. {
  1812. char buf[32];
  1813. struct ath10k *ar = file->private_data;
  1814. int len = 0;
  1815. mutex_lock(&ar->conf_mutex);
  1816. len = scnprintf(buf, sizeof(buf) - len, "%d\n",
  1817. test_bit(ATH10K_FLAG_BTCOEX, &ar->dev_flags));
  1818. mutex_unlock(&ar->conf_mutex);
  1819. return simple_read_from_buffer(ubuf, count, ppos, buf, len);
  1820. }
  1821. static const struct file_operations fops_btcoex = {
  1822. .read = ath10k_read_btcoex,
  1823. .write = ath10k_write_btcoex,
  1824. .open = simple_open
  1825. };
  1826. static ssize_t ath10k_write_peer_stats(struct file *file,
  1827. const char __user *ubuf,
  1828. size_t count, loff_t *ppos)
  1829. {
  1830. struct ath10k *ar = file->private_data;
  1831. char buf[32];
  1832. size_t buf_size;
  1833. int ret;
  1834. bool val;
  1835. buf_size = min(count, (sizeof(buf) - 1));
  1836. if (copy_from_user(buf, ubuf, buf_size))
  1837. return -EFAULT;
  1838. buf[buf_size] = '\0';
  1839. if (strtobool(buf, &val) != 0)
  1840. return -EINVAL;
  1841. mutex_lock(&ar->conf_mutex);
  1842. if (ar->state != ATH10K_STATE_ON &&
  1843. ar->state != ATH10K_STATE_RESTARTED) {
  1844. ret = -ENETDOWN;
  1845. goto exit;
  1846. }
  1847. if (!(test_bit(ATH10K_FLAG_PEER_STATS, &ar->dev_flags) ^ val)) {
  1848. ret = count;
  1849. goto exit;
  1850. }
  1851. if (val)
  1852. set_bit(ATH10K_FLAG_PEER_STATS, &ar->dev_flags);
  1853. else
  1854. clear_bit(ATH10K_FLAG_PEER_STATS, &ar->dev_flags);
  1855. ath10k_info(ar, "restarting firmware due to Peer stats change");
  1856. queue_work(ar->workqueue, &ar->restart_work);
  1857. ret = count;
  1858. exit:
  1859. mutex_unlock(&ar->conf_mutex);
  1860. return ret;
  1861. }
  1862. static ssize_t ath10k_read_peer_stats(struct file *file, char __user *ubuf,
  1863. size_t count, loff_t *ppos)
  1864. {
  1865. char buf[32];
  1866. struct ath10k *ar = file->private_data;
  1867. int len = 0;
  1868. mutex_lock(&ar->conf_mutex);
  1869. len = scnprintf(buf, sizeof(buf) - len, "%d\n",
  1870. test_bit(ATH10K_FLAG_PEER_STATS, &ar->dev_flags));
  1871. mutex_unlock(&ar->conf_mutex);
  1872. return simple_read_from_buffer(ubuf, count, ppos, buf, len);
  1873. }
  1874. static const struct file_operations fops_peer_stats = {
  1875. .read = ath10k_read_peer_stats,
  1876. .write = ath10k_write_peer_stats,
  1877. .open = simple_open
  1878. };
  1879. static ssize_t ath10k_debug_fw_checksums_read(struct file *file,
  1880. char __user *user_buf,
  1881. size_t count, loff_t *ppos)
  1882. {
  1883. struct ath10k *ar = file->private_data;
  1884. size_t len = 0, buf_len = 4096;
  1885. ssize_t ret_cnt;
  1886. char *buf;
  1887. buf = kzalloc(buf_len, GFP_KERNEL);
  1888. if (!buf)
  1889. return -ENOMEM;
  1890. mutex_lock(&ar->conf_mutex);
  1891. len += scnprintf(buf + len, buf_len - len,
  1892. "firmware-N.bin\t\t%08x\n",
  1893. crc32_le(0, ar->normal_mode_fw.fw_file.firmware->data,
  1894. ar->normal_mode_fw.fw_file.firmware->size));
  1895. len += scnprintf(buf + len, buf_len - len,
  1896. "athwlan\t\t\t%08x\n",
  1897. crc32_le(0, ar->normal_mode_fw.fw_file.firmware_data,
  1898. ar->normal_mode_fw.fw_file.firmware_len));
  1899. len += scnprintf(buf + len, buf_len - len,
  1900. "otp\t\t\t%08x\n",
  1901. crc32_le(0, ar->normal_mode_fw.fw_file.otp_data,
  1902. ar->normal_mode_fw.fw_file.otp_len));
  1903. len += scnprintf(buf + len, buf_len - len,
  1904. "codeswap\t\t%08x\n",
  1905. crc32_le(0, ar->normal_mode_fw.fw_file.codeswap_data,
  1906. ar->normal_mode_fw.fw_file.codeswap_len));
  1907. len += scnprintf(buf + len, buf_len - len,
  1908. "board-N.bin\t\t%08x\n",
  1909. crc32_le(0, ar->normal_mode_fw.board->data,
  1910. ar->normal_mode_fw.board->size));
  1911. len += scnprintf(buf + len, buf_len - len,
  1912. "board\t\t\t%08x\n",
  1913. crc32_le(0, ar->normal_mode_fw.board_data,
  1914. ar->normal_mode_fw.board_len));
  1915. ret_cnt = simple_read_from_buffer(user_buf, count, ppos, buf, len);
  1916. mutex_unlock(&ar->conf_mutex);
  1917. kfree(buf);
  1918. return ret_cnt;
  1919. }
  1920. static const struct file_operations fops_fw_checksums = {
  1921. .read = ath10k_debug_fw_checksums_read,
  1922. .open = simple_open,
  1923. .owner = THIS_MODULE,
  1924. .llseek = default_llseek,
  1925. };
  1926. int ath10k_debug_create(struct ath10k *ar)
  1927. {
  1928. ar->debug.fw_crash_data = vzalloc(sizeof(*ar->debug.fw_crash_data));
  1929. if (!ar->debug.fw_crash_data)
  1930. return -ENOMEM;
  1931. ar->debug.cal_data = vzalloc(ATH10K_DEBUG_CAL_DATA_LEN);
  1932. if (!ar->debug.cal_data)
  1933. return -ENOMEM;
  1934. INIT_LIST_HEAD(&ar->debug.fw_stats.pdevs);
  1935. INIT_LIST_HEAD(&ar->debug.fw_stats.vdevs);
  1936. INIT_LIST_HEAD(&ar->debug.fw_stats.peers);
  1937. INIT_LIST_HEAD(&ar->debug.fw_stats.peers_extd);
  1938. return 0;
  1939. }
  1940. void ath10k_debug_destroy(struct ath10k *ar)
  1941. {
  1942. vfree(ar->debug.fw_crash_data);
  1943. ar->debug.fw_crash_data = NULL;
  1944. vfree(ar->debug.cal_data);
  1945. ar->debug.cal_data = NULL;
  1946. ath10k_debug_fw_stats_reset(ar);
  1947. kfree(ar->debug.tpc_stats);
  1948. }
  1949. int ath10k_debug_register(struct ath10k *ar)
  1950. {
  1951. ar->debug.debugfs_phy = debugfs_create_dir("ath10k",
  1952. ar->hw->wiphy->debugfsdir);
  1953. if (IS_ERR_OR_NULL(ar->debug.debugfs_phy)) {
  1954. if (IS_ERR(ar->debug.debugfs_phy))
  1955. return PTR_ERR(ar->debug.debugfs_phy);
  1956. return -ENOMEM;
  1957. }
  1958. INIT_DELAYED_WORK(&ar->debug.htt_stats_dwork,
  1959. ath10k_debug_htt_stats_dwork);
  1960. init_completion(&ar->debug.tpc_complete);
  1961. init_completion(&ar->debug.fw_stats_complete);
  1962. debugfs_create_file("fw_stats", 0400, ar->debug.debugfs_phy, ar,
  1963. &fops_fw_stats);
  1964. debugfs_create_file("fw_reset_stats", 0400, ar->debug.debugfs_phy, ar,
  1965. &fops_fw_reset_stats);
  1966. debugfs_create_file("wmi_services", 0400, ar->debug.debugfs_phy, ar,
  1967. &fops_wmi_services);
  1968. debugfs_create_file("simulate_fw_crash", 0600, ar->debug.debugfs_phy, ar,
  1969. &fops_simulate_fw_crash);
  1970. debugfs_create_file("fw_crash_dump", 0400, ar->debug.debugfs_phy, ar,
  1971. &fops_fw_crash_dump);
  1972. debugfs_create_file("reg_addr", 0600, ar->debug.debugfs_phy, ar,
  1973. &fops_reg_addr);
  1974. debugfs_create_file("reg_value", 0600, ar->debug.debugfs_phy, ar,
  1975. &fops_reg_value);
  1976. debugfs_create_file("mem_value", 0600, ar->debug.debugfs_phy, ar,
  1977. &fops_mem_value);
  1978. debugfs_create_file("chip_id", 0400, ar->debug.debugfs_phy, ar,
  1979. &fops_chip_id);
  1980. debugfs_create_file("htt_stats_mask", 0600, ar->debug.debugfs_phy, ar,
  1981. &fops_htt_stats_mask);
  1982. debugfs_create_file("htt_max_amsdu_ampdu", 0600, ar->debug.debugfs_phy, ar,
  1983. &fops_htt_max_amsdu_ampdu);
  1984. debugfs_create_file("fw_dbglog", 0600, ar->debug.debugfs_phy, ar,
  1985. &fops_fw_dbglog);
  1986. debugfs_create_file("cal_data", 0400, ar->debug.debugfs_phy, ar,
  1987. &fops_cal_data);
  1988. debugfs_create_file("ani_enable", 0600, ar->debug.debugfs_phy, ar,
  1989. &fops_ani_enable);
  1990. debugfs_create_file("nf_cal_period", 0600, ar->debug.debugfs_phy, ar,
  1991. &fops_nf_cal_period);
  1992. if (IS_ENABLED(CONFIG_ATH10K_DFS_CERTIFIED)) {
  1993. debugfs_create_file("dfs_simulate_radar", 0200, ar->debug.debugfs_phy,
  1994. ar, &fops_simulate_radar);
  1995. debugfs_create_bool("dfs_block_radar_events", 0200,
  1996. ar->debug.debugfs_phy,
  1997. &ar->dfs_block_radar_events);
  1998. debugfs_create_file("dfs_stats", 0400, ar->debug.debugfs_phy, ar,
  1999. &fops_dfs_stats);
  2000. }
  2001. debugfs_create_file("pktlog_filter", 0644, ar->debug.debugfs_phy, ar,
  2002. &fops_pktlog_filter);
  2003. debugfs_create_file("quiet_period", 0644, ar->debug.debugfs_phy, ar,
  2004. &fops_quiet_period);
  2005. debugfs_create_file("tpc_stats", 0400, ar->debug.debugfs_phy, ar,
  2006. &fops_tpc_stats);
  2007. if (test_bit(WMI_SERVICE_COEX_GPIO, ar->wmi.svc_map))
  2008. debugfs_create_file("btcoex", 0644, ar->debug.debugfs_phy, ar,
  2009. &fops_btcoex);
  2010. if (test_bit(WMI_SERVICE_PEER_STATS, ar->wmi.svc_map))
  2011. debugfs_create_file("peer_stats", 0644, ar->debug.debugfs_phy, ar,
  2012. &fops_peer_stats);
  2013. debugfs_create_file("fw_checksums", 0400, ar->debug.debugfs_phy, ar,
  2014. &fops_fw_checksums);
  2015. return 0;
  2016. }
  2017. void ath10k_debug_unregister(struct ath10k *ar)
  2018. {
  2019. cancel_delayed_work_sync(&ar->debug.htt_stats_dwork);
  2020. }
  2021. #endif /* CONFIG_ATH10K_DEBUGFS */
  2022. #ifdef CONFIG_ATH10K_DEBUG
  2023. void ath10k_dbg(struct ath10k *ar, enum ath10k_debug_mask mask,
  2024. const char *fmt, ...)
  2025. {
  2026. struct va_format vaf;
  2027. va_list args;
  2028. va_start(args, fmt);
  2029. vaf.fmt = fmt;
  2030. vaf.va = &args;
  2031. if (ath10k_debug_mask & mask)
  2032. dev_printk(KERN_DEBUG, ar->dev, "%pV", &vaf);
  2033. trace_ath10k_log_dbg(ar, mask, &vaf);
  2034. va_end(args);
  2035. }
  2036. EXPORT_SYMBOL(ath10k_dbg);
  2037. void ath10k_dbg_dump(struct ath10k *ar,
  2038. enum ath10k_debug_mask mask,
  2039. const char *msg, const char *prefix,
  2040. const void *buf, size_t len)
  2041. {
  2042. char linebuf[256];
  2043. size_t linebuflen;
  2044. const void *ptr;
  2045. if (ath10k_debug_mask & mask) {
  2046. if (msg)
  2047. ath10k_dbg(ar, mask, "%s\n", msg);
  2048. for (ptr = buf; (ptr - buf) < len; ptr += 16) {
  2049. linebuflen = 0;
  2050. linebuflen += scnprintf(linebuf + linebuflen,
  2051. sizeof(linebuf) - linebuflen,
  2052. "%s%08x: ",
  2053. (prefix ? prefix : ""),
  2054. (unsigned int)(ptr - buf));
  2055. hex_dump_to_buffer(ptr, len - (ptr - buf), 16, 1,
  2056. linebuf + linebuflen,
  2057. sizeof(linebuf) - linebuflen, true);
  2058. dev_printk(KERN_DEBUG, ar->dev, "%s\n", linebuf);
  2059. }
  2060. }
  2061. /* tracing code doesn't like null strings :/ */
  2062. trace_ath10k_log_dbg_dump(ar, msg ? msg : "", prefix ? prefix : "",
  2063. buf, len);
  2064. }
  2065. EXPORT_SYMBOL(ath10k_dbg_dump);
  2066. #endif /* CONFIG_ATH10K_DEBUG */