peerstats.c 13 KB

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  1. /*
  2. * Copyright (c) 2019-2020 The Linux Foundation. All rights reserved.
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for
  5. * any purpose with or without fee is hereby granted, provided that the
  6. * above copyright notice and this permission notice appear in all
  7. * copies.
  8. *
  9. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
  10. * WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
  11. * WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
  12. * AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
  13. * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
  14. * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
  15. * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
  16. * PERFORMANCE OF THIS SOFTWARE.
  17. */
  18. /**
  19. * file: peer rate statitistics application
  20. * This file provides framework to display peer rate statistics
  21. */
  22. #include <netinet/in.h>
  23. #include <arpa/inet.h>
  24. #include <qcatools_lib.h>
  25. #include <dp_rate_stats_pub.h>
  26. #ifndef min
  27. #define min(x, y) ((x) < (y) ? (x) : (y))
  28. #else
  29. #error confilicting defs of min
  30. #endif
  31. #define PRINT(fmt, ...) \
  32. do { \
  33. printf(fmt, ##__VA_ARGS__); \
  34. printf("\n"); \
  35. } while (0)
  36. char interface[IFNAMSIZ];
  37. static void dp_peer_rx_rate_stats_print(uint8_t *peer_mac,
  38. uint64_t peer_cookie,
  39. void *buffer,
  40. uint32_t buffer_len)
  41. {
  42. int i = 0;
  43. struct wlan_rx_rate_stats *rx_stats;
  44. uint8_t is_lithium;
  45. uint8_t chain, max_chain, bw, max_bw;
  46. struct wlan_rx_rate_stats *tmp_rx_stats;;
  47. rx_stats = tmp_rx_stats = (struct wlan_rx_rate_stats *)buffer;
  48. PRINT("\n......................................");
  49. PRINT("......................................");
  50. PRINT("PEER %02hhx:%02hhx:%02hhx:%02hhx:%02hhx:%02hhx\n",
  51. peer_mac[0],
  52. peer_mac[1],
  53. peer_mac[2],
  54. peer_mac[3],
  55. peer_mac[4],
  56. peer_mac[5]);
  57. PRINT("\tpeer cookie: %016"PRIx64"\n",
  58. (peer_cookie & 0xFFFFFFFF00000000) >>
  59. WLANSTATS_PEER_COOKIE_LSB);
  60. is_lithium = (peer_cookie & WLANSTATS_COOKIE_PLATFORM_OFFSET)
  61. >> WLANSTATS_PEER_COOKIE_LSB;
  62. if (is_lithium) {
  63. max_chain = 8;
  64. max_bw = 8;
  65. } else {
  66. max_chain = 4;
  67. max_bw = 4;
  68. }
  69. PRINT("\n..............................................");
  70. PRINT("................................");
  71. PRINT("................................................");
  72. PRINT(".................................\n");
  73. PRINT("\tRx statistics:");
  74. PRINT(" %10s | %10s | %10s | %10s | %10s | %10s|",
  75. "rate",
  76. "rix",
  77. "bytes",
  78. "msdus",
  79. "mpdus",
  80. "ppdus");
  81. PRINT(" %10s | %10s | %10s |",
  82. "retries",
  83. "sgi",
  84. "rssi\n");
  85. for (i = 0; i < WLANSTATS_CACHE_SIZE; i++) {
  86. if (rx_stats->rix != INVALID_CACHE_IDX) {
  87. PRINT(" %10u | %10u | %10u | %10u | %10u | %10u |",
  88. rx_stats->rate,
  89. GET_DP_PEER_STATS_RIX(rx_stats->rix),
  90. rx_stats->num_bytes,
  91. rx_stats->num_msdus,
  92. rx_stats->num_mpdus,
  93. rx_stats->num_ppdus);
  94. PRINT(" %10u | %10u | %10lu |\n",
  95. rx_stats->num_retries,
  96. rx_stats->num_sgi,
  97. rx_stats->avg_rssi);
  98. }
  99. rx_stats = rx_stats + 1;
  100. }
  101. if (is_lithium) {
  102. PRINT("\n %10s | %10s | %10s | %10s | %10s |",
  103. "rate",
  104. "rssi 1 p20",
  105. "rssi 1 e20",
  106. "rssi 1 e40 low20",
  107. "rssi 1 e40 high20");
  108. PRINT("\n | %10s | %10s | %10s | %10s |",
  109. "rssi 1 ext80 low20",
  110. "rssi 1 ext80 low_high20",
  111. "rssi 1 ext80 high_low20",
  112. "rssi 1 ext80 high20");
  113. PRINT("\n | %10s | %10s | %10s | %10s |",
  114. "rssi 2 p20",
  115. "rssi 2 e20",
  116. "rssi 2 e40 low20",
  117. "rssi 2 e40 high20");
  118. PRINT("\n | %10s | %10s | %10s | %10s |",
  119. "rssi 2 ext80 low20",
  120. "rssi 2 ext80 low_high20",
  121. "rssi 2 ext80 high_low20",
  122. "rssi 2 ext80 high20");
  123. PRINT("\n | %10s | %10s | %10s | %10s |",
  124. "rssi 3 p20",
  125. "rssi 3 e20",
  126. "rssi 3 e40 low20",
  127. "rssi 3 e40 high20");
  128. PRINT("\n | %10s | %10s | %10s | %10s |",
  129. "rssi 3 ext80 low20",
  130. "rssi 3 ext80 low_high20",
  131. "rssi 3 ext80 high_low20",
  132. "rssi 3 ext80 high20");
  133. PRINT("\n | %10s | %10s | %10s | %10s |",
  134. "rssi 4 p20",
  135. "rssi 4 e20",
  136. "rssi 4 e40 low20",
  137. "rssi 4 e40 high20");
  138. PRINT("\n | %10s | %10s | %10s | %10s |",
  139. "rssi 4 ext80 low20",
  140. "rssi 4 ext80 low_high20",
  141. "rssi 4 ext80 high_low20",
  142. "rssi 4 ext80 high20");
  143. PRINT("\n | %10s | %10s | %10s | %10s |",
  144. "rssi 5 p20",
  145. "rssi 5 e20",
  146. "rssi 5 e40 low20",
  147. "rssi 5 e40 high20");
  148. PRINT("\n | %10s | %10s | %10s | %10s |",
  149. "rssi 5 ext80 low20",
  150. "rssi 5 ext80 low_high20",
  151. "rssi 5 ext80 high_low20",
  152. "rssi 5 ext80 high20");
  153. PRINT("\n | %10s | %10s | %10s | %10s |",
  154. "rssi 6 p20",
  155. "rssi 6 e20",
  156. "rssi 6 e40 low20",
  157. "rssi 6 e40 high20");
  158. PRINT("\n | %10s | %10s | %10s | %10s |",
  159. "rssi 6 ext80 low20",
  160. "rssi 6 ext80 low_high20",
  161. "rssi 6 ext80 high_low20",
  162. "rssi 6 ext80 high20");
  163. PRINT("\n | %10s | %10s | %10s | %10s |",
  164. "rssi 7 p20",
  165. "rssi 7 e20",
  166. "rssi 7 e40 low20",
  167. "rssi 7 e40 high20");
  168. PRINT("\n | %10s | %10s | %10s | %10s |",
  169. "rssi 7 ext80 low20",
  170. "rssi 7 ext80 low_high20",
  171. "rssi 7 ext80 high_low20",
  172. "rssi 7 ext80 high20");
  173. PRINT("\n | %10s | %10s | %10s | %10s |",
  174. "rssi 8 p20",
  175. "rssi 8 e20",
  176. "rssi 8 e40 low20",
  177. "rssi 8 e40 high20");
  178. PRINT("\n | %10s | %10s | %10s | %10s |\n\n\n",
  179. "rssi 8 ext80 low20",
  180. "rssi 8 ext80 low_high20",
  181. "rssi 8 ext80 high_low20",
  182. "rssi 8 ext80 high20");
  183. } else {
  184. PRINT("\n %10s | %10s | %10s | %10s | %10s |",
  185. "rate",
  186. "rssi 1 p20",
  187. "rssi 1 e20",
  188. "rssi 1 e40",
  189. "rssi 1 e80");
  190. PRINT(" | %10s | %10s | %10s | %10s |",
  191. "rssi 2 p20",
  192. "rssi 2 e20",
  193. "rssi 2 e40",
  194. "rssi 2 e80");
  195. PRINT(" | %10s | %10s | %10s | %10s |",
  196. "rssi 3 p20",
  197. "rssi 3 e20",
  198. "rssi 3 e40",
  199. "rssi 3 e80");
  200. PRINT(" | %10s | %10s | %10s | %10s |\n\n\n",
  201. "rssi 4 p20",
  202. "rssi 4 e20",
  203. "rssi 4 e40",
  204. "rssi 4 e80");
  205. }
  206. for (i = 0; i < WLANSTATS_CACHE_SIZE; i++) {
  207. if (tmp_rx_stats->rix != INVALID_CACHE_IDX) {
  208. printf(" %10u |", tmp_rx_stats->rate);
  209. for (chain = 0; chain < max_chain; chain++) {
  210. for (bw = 0; bw < max_bw; bw++) {
  211. printf(" %10lu |",
  212. tmp_rx_stats->avg_rssi_ant[chain][bw]);
  213. }
  214. printf(" \n\t ");
  215. }
  216. PRINT(" ");
  217. }
  218. tmp_rx_stats = tmp_rx_stats + 1;
  219. }
  220. }
  221. static void
  222. dp_peer_tx_sojourn_stats_print(uint8_t *peer_mac,
  223. uint64_t peer_cookie,
  224. struct wlan_tx_sojourn_stats *sojourn_stats)
  225. {
  226. uint8_t tid;
  227. PRINT("\n..........................................");
  228. PRINT("....................................");
  229. PRINT("....................................");
  230. PRINT(".........................................\n");
  231. PRINT("PEER %02hhx:%02hhx:%02hhx:%02hhx%02hhx:%02hhx\n",
  232. peer_mac[0],
  233. peer_mac[1],
  234. peer_mac[2],
  235. peer_mac[3],
  236. peer_mac[4],
  237. peer_mac[5]);
  238. PRINT("\tPEER Cookie: %016"PRIx64"\n", peer_cookie);
  239. PRINT("\n...........................................");
  240. PRINT("...................................");
  241. PRINT("..................................");
  242. PRINT("............................................");
  243. PRINT("\n\tSojourn statistics:\n");
  244. PRINT("\t\t%10s %10s %20s %20s\n", "tid", "ave", "sum", "num");
  245. for (tid = 0; tid < WLAN_DATA_TID_MAX; tid++) {
  246. /* change sum_sojourn_msdu data type to u64 */
  247. PRINT("\t\t%10d %10lu %20u %20u\n",
  248. tid,
  249. sojourn_stats->avg_sojourn_msdu[tid],
  250. sojourn_stats->sum_sojourn_msdu[tid],
  251. sojourn_stats->num_msdus[tid]);
  252. }
  253. PRINT("sizeof(avg): %"PRIu32,
  254. sizeof(sojourn_stats->avg_sojourn_msdu[tid]));
  255. PRINT("\n...........................................");
  256. PRINT("...................................");
  257. PRINT("...................................");
  258. PRINT("...........................................\n");
  259. }
  260. static void dp_peer_tx_rate_stats_print(uint8_t *peer_mac,
  261. uint64_t peer_cookie,
  262. void *buffer,
  263. uint32_t buffer_len)
  264. {
  265. int i = 0;
  266. struct wlan_tx_rate_stats *tx_stats;
  267. struct wlan_tx_sojourn_stats *sojourn_stats;
  268. if (buffer_len < (WLANSTATS_CACHE_SIZE *
  269. sizeof(struct wlan_tx_rate_stats))
  270. + sizeof(struct wlan_tx_sojourn_stats)) {
  271. PRINT("invalid buffer len, return");
  272. return;
  273. }
  274. tx_stats = (struct wlan_tx_rate_stats *)buffer;
  275. PRINT("\n...........................................");
  276. PRINT("...................................");
  277. PRINT("...................................");
  278. PRINT("...........................................\n");
  279. PRINT("PEER %02hhx:%02hhx:%02hhx:%02hhx%02hhx:%02hhx\n\n",
  280. peer_mac[0],
  281. peer_mac[1],
  282. peer_mac[2],
  283. peer_mac[3],
  284. peer_mac[4],
  285. peer_mac[5]);
  286. PRINT("\tPEER Cookie: %016"PRIx64, peer_cookie);
  287. PRINT("\n...........................................");
  288. PRINT("...................................");
  289. PRINT("...................................");
  290. PRINT("...........................................\n");
  291. PRINT("\tTx statistics:\n");
  292. PRINT("\t\t%10s | %10s | %10s | %10s | %10s",
  293. "rate",
  294. "rix",
  295. "attempts",
  296. "success",
  297. "ppdus");
  298. PRINT(" %10s | %10s | %10s |",
  299. "msdus",
  300. "bytes",
  301. "retries\n");
  302. for (i = 0; i < WLANSTATS_CACHE_SIZE; i++) {
  303. if (tx_stats->rix != INVALID_CACHE_IDX) {
  304. PRINT("\t\t%10u | %10u | %10u | %10u | %10u\n",
  305. tx_stats->rate,
  306. GET_DP_PEER_STATS_RIX(tx_stats->rix),
  307. tx_stats->mpdu_attempts,
  308. tx_stats->mpdu_success,
  309. tx_stats->num_ppdus);
  310. PRINT(" %10u | %10u | %10u |\n",
  311. tx_stats->num_msdus,
  312. tx_stats->num_bytes,
  313. tx_stats->num_retries);
  314. }
  315. tx_stats = tx_stats + 1;
  316. }
  317. sojourn_stats = (struct wlan_tx_sojourn_stats *)((uint8_t *)buffer
  318. + (WLANSTATS_CACHE_SIZE *
  319. sizeof(struct wlan_tx_rate_stats)));
  320. dp_peer_tx_sojourn_stats_print(peer_mac, peer_cookie, sojourn_stats);
  321. return;
  322. }
  323. static void dp_peer_stats_handler(uint32_t cache_type,
  324. uint8_t *peer_mac,
  325. uint64_t peer_cookie,
  326. void *buffer,
  327. uint32_t buffer_len)
  328. {
  329. switch (cache_type) {
  330. case DP_PEER_RX_RATE_STATS:
  331. dp_peer_rx_rate_stats_print(peer_mac, peer_cookie,
  332. buffer, buffer_len);
  333. break;
  334. case DP_PEER_TX_RATE_STATS:
  335. dp_peer_tx_rate_stats_print(peer_mac, peer_cookie,
  336. buffer, buffer_len);
  337. break;
  338. }
  339. }
  340. static void
  341. dp_peer_stats_event_callback(char *ifname,
  342. uint32_t cmdid,
  343. uint8_t *data,
  344. size_t len)
  345. {
  346. struct nlattr *tb_array[QCA_WLAN_VENDOR_ATTR_PEER_STATS_CACHE_MAX + 1];
  347. struct nlattr *tb;
  348. void *buffer = NULL;
  349. uint32_t buffer_len = 0;
  350. uint8_t *peer_mac;
  351. uint32_t cache_type;
  352. uint64_t peer_cookie;
  353. if (cmdid != QCA_NL80211_VENDOR_SUBCMD_PEER_STATS_CACHE_FLUSH) {
  354. /* ignore anyother events*/
  355. return;
  356. }
  357. if (strncmp(interface, ifname, sizeof(interface)) != 0) {
  358. /* ignore events for other interfaces*/
  359. return;
  360. }
  361. if (nla_parse(tb_array, QCA_WLAN_VENDOR_ATTR_PEER_STATS_CACHE_MAX,
  362. (struct nlattr *)data, len, NULL)) {
  363. PRINT("Invalid event\n");
  364. return;
  365. }
  366. tb = tb_array[QCA_WLAN_VENDOR_ATTR_PEER_STATS_CACHE_TYPE];
  367. if (!tb) {
  368. PRINT("Cache type in NULL, return");
  369. return;
  370. }
  371. cache_type = nla_get_u32(tb);
  372. tb = tb_array[QCA_WLAN_VENDOR_ATTR_PEER_STATS_CACHE_PEER_MAC];
  373. if (!tb) {
  374. PRINT("Peer mac addr is null, return");
  375. return;
  376. }
  377. peer_mac = (uint8_t *)nla_data(tb);
  378. tb = tb_array[QCA_WLAN_VENDOR_ATTR_PEER_STATS_CACHE_DATA];
  379. if (tb) {
  380. buffer = (void *)nla_data(tb);
  381. buffer_len = nla_len(tb);
  382. }
  383. tb = tb_array[QCA_WLAN_VENDOR_ATTR_PEER_STATS_CACHE_PEER_COOKIE];
  384. if (!tb) {
  385. PRINT("peer cookie attribute is null, return");
  386. return;
  387. }
  388. peer_cookie = nla_get_u64(tb);
  389. if (!buffer) {
  390. PRINT(" stats buffer is null, return");
  391. return;
  392. }
  393. dp_peer_stats_handler(cache_type, peer_mac, peer_cookie,
  394. buffer, buffer_len);
  395. }
  396. int main(int argc, char *argv[])
  397. {
  398. int err = 0;
  399. wifi_cfg80211_context cfg80211_ctxt;
  400. char *ifname;
  401. int num_msecs = 0;
  402. int status = 0;
  403. if (argc < 2) {
  404. fprintf(stderr, "Invalid commands args\n");
  405. return -EIO;
  406. }
  407. /* Reset the cfg80211 context to 0 if the application does not pass
  408. * custom private event and command sockets. In this case, the default
  409. * port is used for netlink communication.
  410. */
  411. memset(&cfg80211_ctxt, 0, sizeof(wifi_cfg80211_context));
  412. ifname = argv[1];
  413. memcpy(interface, ifname, sizeof(interface));
  414. cfg80211_ctxt.event_callback = dp_peer_stats_event_callback;
  415. err = wifi_init_nl80211(&cfg80211_ctxt);
  416. if (err) {
  417. fprintf(stderr, "unable to create NL socket\n");
  418. return -EIO;
  419. }
  420. /* Starting event thread to listen for responses*/
  421. if (wifi_nl80211_start_event_thread(&cfg80211_ctxt)) {
  422. fprintf(stderr, "Unable to setup nl80211 event thread\n");
  423. status = -EIO;
  424. goto cleanup;
  425. }
  426. while (true) {
  427. /*sleep for 1 ms*/
  428. usleep(1000);
  429. num_msecs++;
  430. }
  431. wifi_destroy_nl80211(&cfg80211_ctxt);
  432. return 0;
  433. cleanup:
  434. wifi_destroy_nl80211(&cfg80211_ctxt);
  435. return status;
  436. }