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/drivers/net/wireless/bcmdhd_34/dhd_common.c

https://bitbucket.org/cyanogenmod/android_kernel_asus_tf300t
C | 2342 lines | 1807 code | 359 blank | 176 comment | 360 complexity | 5eb735704fcc817faf900dc1aab7816e MD5 | raw file
Possible License(s): LGPL-2.0, AGPL-1.0, GPL-2.0
  1. /*
  2. * Broadcom Dongle Host Driver (DHD), common DHD core.
  3. *
  4. * Copyright (C) 1999-2012, Broadcom Corporation
  5. *
  6. * Unless you and Broadcom execute a separate written software license
  7. * agreement governing use of this software, this software is licensed to you
  8. * under the terms of the GNU General Public License version 2 (the "GPL"),
  9. * available at http://www.broadcom.com/licenses/GPLv2.php, with the
  10. * following added to such license:
  11. *
  12. * As a special exception, the copyright holders of this software give you
  13. * permission to link this software with independent modules, and to copy and
  14. * distribute the resulting executable under terms of your choice, provided that
  15. * you also meet, for each linked independent module, the terms and conditions of
  16. * the license of that module. An independent module is a module which is not
  17. * derived from this software. The special exception does not apply to any
  18. * modifications of the software.
  19. *
  20. * Notwithstanding the above, under no circumstances may you combine this
  21. * software in any way with any other Broadcom software provided under a license
  22. * other than the GPL, without Broadcom's express prior written consent.
  23. *
  24. * $Id: dhd_common.c 332273 2012-05-09 20:18:24Z $
  25. */
  26. #include <typedefs.h>
  27. #include <osl.h>
  28. #include <epivers.h>
  29. #include <bcmutils.h>
  30. #include <bcmendian.h>
  31. #include <dngl_stats.h>
  32. #include <wlioctl.h>
  33. #include <dhd.h>
  34. #include <proto/bcmevent.h>
  35. #include <dhd_bus.h>
  36. #include <dhd_proto.h>
  37. #include <dhd_dbg.h>
  38. #include <msgtrace.h>
  39. #ifdef WL_CFG80211
  40. #include <wl_cfg80211.h>
  41. #endif
  42. #ifdef WLBTAMP
  43. #include <proto/bt_amp_hci.h>
  44. #include <dhd_bta.h>
  45. #endif
  46. #ifdef SET_RANDOM_MAC_SOFTAP
  47. #include <linux/random.h>
  48. #include <linux/jiffies.h>
  49. #endif
  50. #define htod32(i) i
  51. #define htod16(i) i
  52. #define dtoh32(i) i
  53. #define dtoh16(i) i
  54. #define htodchanspec(i) i
  55. #define dtohchanspec(i) i
  56. #ifdef PROP_TXSTATUS
  57. #include <wlfc_proto.h>
  58. #include <dhd_wlfc.h>
  59. #endif
  60. #ifdef WLMEDIA_HTSF
  61. extern void htsf_update(struct dhd_info *dhd, void *data);
  62. #endif
  63. int dhd_msg_level = DHD_ERROR_VAL;
  64. #include <wl_iw.h>
  65. char fw_path[MOD_PARAM_PATHLEN];
  66. char nv_path[MOD_PARAM_PATHLEN];
  67. #ifdef SOFTAP
  68. char fw_path2[MOD_PARAM_PATHLEN];
  69. extern bool softap_enabled;
  70. #endif
  71. /* Last connection success/failure status */
  72. uint32 dhd_conn_event;
  73. uint32 dhd_conn_status;
  74. uint32 dhd_conn_reason;
  75. extern int dhd_iscan_request(void * dhdp, uint16 action);
  76. extern void dhd_ind_scan_confirm(void *h, bool status);
  77. extern int dhd_iscan_in_progress(void *h);
  78. void dhd_iscan_lock(void);
  79. void dhd_iscan_unlock(void);
  80. extern int dhd_change_mtu(dhd_pub_t *dhd, int new_mtu, int ifidx);
  81. bool ap_cfg_running = FALSE;
  82. bool ap_fw_loaded = FALSE;
  83. #ifdef DHD_DEBUG
  84. const char dhd_version[] = "Dongle Host Driver, version " EPI_VERSION_STR "\nCompiled on "
  85. __DATE__ " at " __TIME__;
  86. #else
  87. const char dhd_version[] = "Dongle Host Driver, version " EPI_VERSION_STR;
  88. #endif
  89. void dhd_set_timer(void *bus, uint wdtick);
  90. /* IOVar table */
  91. enum {
  92. IOV_VERSION = 1,
  93. IOV_MSGLEVEL,
  94. IOV_BCMERRORSTR,
  95. IOV_BCMERROR,
  96. IOV_WDTICK,
  97. IOV_DUMP,
  98. IOV_CLEARCOUNTS,
  99. IOV_LOGDUMP,
  100. IOV_LOGCAL,
  101. IOV_LOGSTAMP,
  102. IOV_GPIOOB,
  103. IOV_IOCTLTIMEOUT,
  104. #ifdef WLBTAMP
  105. IOV_HCI_CMD, /* HCI command */
  106. IOV_HCI_ACL_DATA, /* HCI data packet */
  107. #endif
  108. #if defined(DHD_DEBUG)
  109. IOV_CONS,
  110. IOV_DCONSOLE_POLL,
  111. #endif /* defined(DHD_DEBUG) */
  112. #ifdef PROP_TXSTATUS
  113. IOV_PROPTXSTATUS_ENABLE,
  114. IOV_PROPTXSTATUS_MODE,
  115. #endif
  116. IOV_BUS_TYPE,
  117. #ifdef WLMEDIA_HTSF
  118. IOV_WLPKTDLYSTAT_SZ,
  119. #endif
  120. IOV_CHANGEMTU,
  121. IOV_HOSTREORDER_FLOWS,
  122. IOV_LAST
  123. };
  124. const bcm_iovar_t dhd_iovars[] = {
  125. {"version", IOV_VERSION, 0, IOVT_BUFFER, sizeof(dhd_version) },
  126. #ifdef DHD_DEBUG
  127. {"msglevel", IOV_MSGLEVEL, 0, IOVT_UINT32, 0 },
  128. #endif /* DHD_DEBUG */
  129. {"bcmerrorstr", IOV_BCMERRORSTR, 0, IOVT_BUFFER, BCME_STRLEN },
  130. {"bcmerror", IOV_BCMERROR, 0, IOVT_INT8, 0 },
  131. {"wdtick", IOV_WDTICK, 0, IOVT_UINT32, 0 },
  132. {"dump", IOV_DUMP, 0, IOVT_BUFFER, DHD_IOCTL_MAXLEN },
  133. #ifdef DHD_DEBUG
  134. {"cons", IOV_CONS, 0, IOVT_BUFFER, 0 },
  135. {"dconpoll", IOV_DCONSOLE_POLL, 0, IOVT_UINT32, 0 },
  136. #endif
  137. {"clearcounts", IOV_CLEARCOUNTS, 0, IOVT_VOID, 0 },
  138. {"gpioob", IOV_GPIOOB, 0, IOVT_UINT32, 0 },
  139. {"ioctl_timeout", IOV_IOCTLTIMEOUT, 0, IOVT_UINT32, 0 },
  140. #ifdef WLBTAMP
  141. {"HCI_cmd", IOV_HCI_CMD, 0, IOVT_BUFFER, 0},
  142. {"HCI_ACL_data", IOV_HCI_ACL_DATA, 0, IOVT_BUFFER, 0},
  143. #endif
  144. #ifdef PROP_TXSTATUS
  145. {"proptx", IOV_PROPTXSTATUS_ENABLE, 0, IOVT_UINT32, 0 },
  146. /*
  147. set the proptxtstatus operation mode:
  148. 0 - Do not do any proptxtstatus flow control
  149. 1 - Use implied credit from a packet status
  150. 2 - Use explicit credit
  151. */
  152. {"ptxmode", IOV_PROPTXSTATUS_MODE, 0, IOVT_UINT32, 0 },
  153. #endif
  154. {"bustype", IOV_BUS_TYPE, 0, IOVT_UINT32, 0},
  155. #ifdef WLMEDIA_HTSF
  156. {"pktdlystatsz", IOV_WLPKTDLYSTAT_SZ, 0, IOVT_UINT8, 0 },
  157. #endif
  158. {"changemtu", IOV_CHANGEMTU, 0, IOVT_UINT32, 0 },
  159. {"host_reorder_flows", IOV_HOSTREORDER_FLOWS, 0, IOVT_BUFFER,
  160. (WLHOST_REORDERDATA_MAXFLOWS + 1) },
  161. {NULL, 0, 0, 0, 0 }
  162. };
  163. void
  164. dhd_common_init(uint16 devid, osl_t *osh)
  165. {
  166. #ifdef CONFIG_BCMDHD_FW_PATH
  167. bcm_strncpy_s(fw_path, sizeof(fw_path), CONFIG_BCMDHD_FW_PATH, MOD_PARAM_PATHLEN-1);
  168. #elif defined(CONFIG_BCMDHD_FW_DIR) /* CONFIG_BCMDHD_FW_PATH */
  169. sprintf(fw_path, "%s/bcm%x/fw_bcmdhd.bin", CONFIG_BCMDHD_FW_DIR, devid);
  170. #else /* CONFIG_BCMDHD_FW_PATH */
  171. fw_path[0] = '\0';
  172. #endif /* CONFIG_BCMDHD_FW_PATH */
  173. #ifdef CONFIG_BCMDHD_NVRAM_PATH
  174. bcm_strncpy_s(nv_path, sizeof(nv_path), CONFIG_BCMDHD_NVRAM_PATH, MOD_PARAM_PATHLEN-1);
  175. #else /* CONFIG_BCMDHD_NVRAM_PATH */
  176. nv_path[0] = '\0';
  177. #endif /* CONFIG_BCMDHD_NVRAM_PATH */
  178. #ifdef SOFTAP
  179. fw_path2[0] = '\0';
  180. #endif
  181. DHD_ERROR(("bcmdhd: fw_path: %s nvram_path: %s\n", fw_path, nv_path));
  182. }
  183. static int
  184. dhd_dump(dhd_pub_t *dhdp, char *buf, int buflen)
  185. {
  186. char eabuf[ETHER_ADDR_STR_LEN];
  187. struct bcmstrbuf b;
  188. struct bcmstrbuf *strbuf = &b;
  189. bcm_binit(strbuf, buf, buflen);
  190. /* Base DHD info */
  191. bcm_bprintf(strbuf, "%s\n", dhd_version);
  192. bcm_bprintf(strbuf, "\n");
  193. bcm_bprintf(strbuf, "pub.up %d pub.txoff %d pub.busstate %d\n",
  194. dhdp->up, dhdp->txoff, dhdp->busstate);
  195. bcm_bprintf(strbuf, "pub.hdrlen %d pub.maxctl %d pub.rxsz %d\n",
  196. dhdp->hdrlen, dhdp->maxctl, dhdp->rxsz);
  197. bcm_bprintf(strbuf, "pub.iswl %d pub.drv_version %ld pub.mac %s\n",
  198. dhdp->iswl, dhdp->drv_version, bcm_ether_ntoa(&dhdp->mac, eabuf));
  199. bcm_bprintf(strbuf, "pub.bcmerror %d tickcnt %d\n", dhdp->bcmerror, dhdp->tickcnt);
  200. bcm_bprintf(strbuf, "dongle stats:\n");
  201. bcm_bprintf(strbuf, "tx_packets %ld tx_bytes %ld tx_errors %ld tx_dropped %ld\n",
  202. dhdp->dstats.tx_packets, dhdp->dstats.tx_bytes,
  203. dhdp->dstats.tx_errors, dhdp->dstats.tx_dropped);
  204. bcm_bprintf(strbuf, "rx_packets %ld rx_bytes %ld rx_errors %ld rx_dropped %ld\n",
  205. dhdp->dstats.rx_packets, dhdp->dstats.rx_bytes,
  206. dhdp->dstats.rx_errors, dhdp->dstats.rx_dropped);
  207. bcm_bprintf(strbuf, "multicast %ld\n", dhdp->dstats.multicast);
  208. bcm_bprintf(strbuf, "bus stats:\n");
  209. bcm_bprintf(strbuf, "tx_packets %ld tx_multicast %ld tx_errors %ld\n",
  210. dhdp->tx_packets, dhdp->tx_multicast, dhdp->tx_errors);
  211. bcm_bprintf(strbuf, "tx_ctlpkts %ld tx_ctlerrs %ld\n",
  212. dhdp->tx_ctlpkts, dhdp->tx_ctlerrs);
  213. bcm_bprintf(strbuf, "rx_packets %ld rx_multicast %ld rx_errors %ld \n",
  214. dhdp->rx_packets, dhdp->rx_multicast, dhdp->rx_errors);
  215. bcm_bprintf(strbuf, "rx_ctlpkts %ld rx_ctlerrs %ld rx_dropped %ld\n",
  216. dhdp->rx_ctlpkts, dhdp->rx_ctlerrs, dhdp->rx_dropped);
  217. bcm_bprintf(strbuf, "rx_readahead_cnt %ld tx_realloc %ld\n",
  218. dhdp->rx_readahead_cnt, dhdp->tx_realloc);
  219. bcm_bprintf(strbuf, "\n");
  220. /* Add any prot info */
  221. dhd_prot_dump(dhdp, strbuf);
  222. bcm_bprintf(strbuf, "\n");
  223. /* Add any bus info */
  224. dhd_bus_dump(dhdp, strbuf);
  225. return (!strbuf->size ? BCME_BUFTOOSHORT : 0);
  226. }
  227. int
  228. dhd_wl_ioctl_cmd(dhd_pub_t *dhd_pub, int cmd, void *arg, int len, uint8 set, int ifindex)
  229. {
  230. wl_ioctl_t ioc;
  231. ioc.cmd = cmd;
  232. ioc.buf = arg;
  233. ioc.len = len;
  234. ioc.set = set;
  235. return dhd_wl_ioctl(dhd_pub, ifindex, &ioc, arg, len);
  236. }
  237. int
  238. dhd_wl_ioctl(dhd_pub_t *dhd_pub, int ifindex, wl_ioctl_t *ioc, void *buf, int len)
  239. {
  240. int ret;
  241. dhd_os_proto_block(dhd_pub);
  242. ret = dhd_prot_ioctl(dhd_pub, ifindex, ioc, buf, len);
  243. if (!ret)
  244. dhd_os_check_hang(dhd_pub, ifindex, ret);
  245. dhd_os_proto_unblock(dhd_pub);
  246. return ret;
  247. }
  248. static int
  249. dhd_doiovar(dhd_pub_t *dhd_pub, const bcm_iovar_t *vi, uint32 actionid, const char *name,
  250. void *params, int plen, void *arg, int len, int val_size)
  251. {
  252. int bcmerror = 0;
  253. int32 int_val = 0;
  254. DHD_TRACE(("%s: Enter\n", __FUNCTION__));
  255. DHD_TRACE(("%s: actionid = %d; name %s\n", __FUNCTION__, actionid, name));
  256. if ((bcmerror = bcm_iovar_lencheck(vi, arg, len, IOV_ISSET(actionid))) != 0)
  257. goto exit;
  258. if (plen >= (int)sizeof(int_val))
  259. bcopy(params, &int_val, sizeof(int_val));
  260. switch (actionid) {
  261. case IOV_GVAL(IOV_VERSION):
  262. /* Need to have checked buffer length */
  263. bcm_strncpy_s((char*)arg, len, dhd_version, len);
  264. break;
  265. case IOV_GVAL(IOV_MSGLEVEL):
  266. int_val = (int32)dhd_msg_level;
  267. bcopy(&int_val, arg, val_size);
  268. break;
  269. case IOV_SVAL(IOV_MSGLEVEL):
  270. dhd_msg_level = int_val;
  271. #ifdef WL_CFG80211
  272. /* Enable DHD and WL logs in oneshot */
  273. if (dhd_msg_level & DHD_WL_VAL)
  274. wl_cfg80211_enable_trace(dhd_msg_level);
  275. #endif
  276. break;
  277. case IOV_GVAL(IOV_BCMERRORSTR):
  278. bcm_strncpy_s((char *)arg, len, bcmerrorstr(dhd_pub->bcmerror), BCME_STRLEN);
  279. ((char *)arg)[BCME_STRLEN - 1] = 0x00;
  280. break;
  281. case IOV_GVAL(IOV_BCMERROR):
  282. int_val = (int32)dhd_pub->bcmerror;
  283. bcopy(&int_val, arg, val_size);
  284. break;
  285. case IOV_GVAL(IOV_WDTICK):
  286. int_val = (int32)dhd_watchdog_ms;
  287. bcopy(&int_val, arg, val_size);
  288. break;
  289. case IOV_SVAL(IOV_WDTICK):
  290. if (!dhd_pub->up) {
  291. bcmerror = BCME_NOTUP;
  292. break;
  293. }
  294. dhd_os_wd_timer(dhd_pub, (uint)int_val);
  295. break;
  296. case IOV_GVAL(IOV_DUMP):
  297. bcmerror = dhd_dump(dhd_pub, arg, len);
  298. break;
  299. #ifdef DHD_DEBUG
  300. case IOV_GVAL(IOV_DCONSOLE_POLL):
  301. int_val = (int32)dhd_console_ms;
  302. bcopy(&int_val, arg, val_size);
  303. break;
  304. case IOV_SVAL(IOV_DCONSOLE_POLL):
  305. dhd_console_ms = (uint)int_val;
  306. break;
  307. case IOV_SVAL(IOV_CONS):
  308. if (len > 0)
  309. bcmerror = dhd_bus_console_in(dhd_pub, arg, len - 1);
  310. break;
  311. #endif /* DHD_DEBUG */
  312. case IOV_SVAL(IOV_CLEARCOUNTS):
  313. dhd_pub->tx_packets = dhd_pub->rx_packets = 0;
  314. dhd_pub->tx_errors = dhd_pub->rx_errors = 0;
  315. dhd_pub->tx_ctlpkts = dhd_pub->rx_ctlpkts = 0;
  316. dhd_pub->tx_ctlerrs = dhd_pub->rx_ctlerrs = 0;
  317. dhd_pub->rx_dropped = 0;
  318. dhd_pub->rx_readahead_cnt = 0;
  319. dhd_pub->tx_realloc = 0;
  320. dhd_pub->wd_dpc_sched = 0;
  321. memset(&dhd_pub->dstats, 0, sizeof(dhd_pub->dstats));
  322. dhd_bus_clearcounts(dhd_pub);
  323. #ifdef PROP_TXSTATUS
  324. /* clear proptxstatus related counters */
  325. if (dhd_pub->wlfc_state) {
  326. athost_wl_status_info_t *wlfc =
  327. (athost_wl_status_info_t*)dhd_pub->wlfc_state;
  328. wlfc_hanger_t* hanger;
  329. memset(&wlfc->stats, 0, sizeof(athost_wl_stat_counters_t));
  330. hanger = (wlfc_hanger_t*)wlfc->hanger;
  331. hanger->pushed = 0;
  332. hanger->popped = 0;
  333. hanger->failed_slotfind = 0;
  334. hanger->failed_to_pop = 0;
  335. hanger->failed_to_push = 0;
  336. }
  337. #endif /* PROP_TXSTATUS */
  338. break;
  339. case IOV_GVAL(IOV_IOCTLTIMEOUT): {
  340. int_val = (int32)dhd_os_get_ioctl_resp_timeout();
  341. bcopy(&int_val, arg, sizeof(int_val));
  342. break;
  343. }
  344. case IOV_SVAL(IOV_IOCTLTIMEOUT): {
  345. if (int_val <= 0)
  346. bcmerror = BCME_BADARG;
  347. else
  348. dhd_os_set_ioctl_resp_timeout((unsigned int)int_val);
  349. break;
  350. }
  351. #ifdef WLBTAMP
  352. case IOV_SVAL(IOV_HCI_CMD): {
  353. amp_hci_cmd_t *cmd = (amp_hci_cmd_t *)arg;
  354. /* sanity check: command preamble present */
  355. if (len < HCI_CMD_PREAMBLE_SIZE)
  356. return BCME_BUFTOOSHORT;
  357. /* sanity check: command parameters are present */
  358. if (len < (int)(HCI_CMD_PREAMBLE_SIZE + cmd->plen))
  359. return BCME_BUFTOOSHORT;
  360. dhd_bta_docmd(dhd_pub, cmd, len);
  361. break;
  362. }
  363. case IOV_SVAL(IOV_HCI_ACL_DATA): {
  364. amp_hci_ACL_data_t *ACL_data = (amp_hci_ACL_data_t *)arg;
  365. /* sanity check: HCI header present */
  366. if (len < HCI_ACL_DATA_PREAMBLE_SIZE)
  367. return BCME_BUFTOOSHORT;
  368. /* sanity check: ACL data is present */
  369. if (len < (int)(HCI_ACL_DATA_PREAMBLE_SIZE + ACL_data->dlen))
  370. return BCME_BUFTOOSHORT;
  371. dhd_bta_tx_hcidata(dhd_pub, ACL_data, len);
  372. break;
  373. }
  374. #endif /* WLBTAMP */
  375. #ifdef PROP_TXSTATUS
  376. case IOV_GVAL(IOV_PROPTXSTATUS_ENABLE):
  377. int_val = dhd_pub->wlfc_enabled? 1 : 0;
  378. bcopy(&int_val, arg, val_size);
  379. break;
  380. case IOV_SVAL(IOV_PROPTXSTATUS_ENABLE):
  381. dhd_pub->wlfc_enabled = int_val? 1 : 0;
  382. break;
  383. case IOV_GVAL(IOV_PROPTXSTATUS_MODE): {
  384. athost_wl_status_info_t *wlfc =
  385. (athost_wl_status_info_t*)dhd_pub->wlfc_state;
  386. int_val = dhd_pub->wlfc_state ? (int32)wlfc->proptxstatus_mode : 0;
  387. bcopy(&int_val, arg, val_size);
  388. break;
  389. }
  390. case IOV_SVAL(IOV_PROPTXSTATUS_MODE):
  391. if (dhd_pub->wlfc_state) {
  392. athost_wl_status_info_t *wlfc =
  393. (athost_wl_status_info_t*)dhd_pub->wlfc_state;
  394. wlfc->proptxstatus_mode = int_val & 0xff;
  395. }
  396. break;
  397. #endif /* PROP_TXSTATUS */
  398. case IOV_GVAL(IOV_BUS_TYPE):
  399. /* The dhd application queries the driver to check if its usb or sdio. */
  400. #ifdef BCMDHDUSB
  401. int_val = BUS_TYPE_USB;
  402. #endif
  403. int_val = BUS_TYPE_SDIO;
  404. bcopy(&int_val, arg, val_size);
  405. break;
  406. #ifdef WLMEDIA_HTSF
  407. case IOV_GVAL(IOV_WLPKTDLYSTAT_SZ):
  408. int_val = dhd_pub->htsfdlystat_sz;
  409. bcopy(&int_val, arg, val_size);
  410. break;
  411. case IOV_SVAL(IOV_WLPKTDLYSTAT_SZ):
  412. dhd_pub->htsfdlystat_sz = int_val & 0xff;
  413. printf("Setting tsfdlystat_sz:%d\n", dhd_pub->htsfdlystat_sz);
  414. break;
  415. #endif
  416. case IOV_SVAL(IOV_CHANGEMTU):
  417. int_val &= 0xffff;
  418. bcmerror = dhd_change_mtu(dhd_pub, int_val, 0);
  419. break;
  420. case IOV_GVAL(IOV_HOSTREORDER_FLOWS):
  421. {
  422. uint i = 0;
  423. uint8 *ptr = (uint8 *)arg;
  424. uint8 count = 0;
  425. ptr++;
  426. for (i = 0; i < WLHOST_REORDERDATA_MAXFLOWS; i++) {
  427. if (dhd_pub->reorder_bufs[i] != NULL) {
  428. *ptr = dhd_pub->reorder_bufs[i]->flow_id;
  429. ptr++;
  430. count++;
  431. }
  432. }
  433. ptr = (uint8 *)arg;
  434. *ptr = count;
  435. break;
  436. }
  437. default:
  438. bcmerror = BCME_UNSUPPORTED;
  439. break;
  440. }
  441. exit:
  442. DHD_TRACE(("%s: actionid %d, bcmerror %d\n", __FUNCTION__, actionid, bcmerror));
  443. return bcmerror;
  444. }
  445. /* Store the status of a connection attempt for later retrieval by an iovar */
  446. void
  447. dhd_store_conn_status(uint32 event, uint32 status, uint32 reason)
  448. {
  449. /* Do not overwrite a WLC_E_PRUNE with a WLC_E_SET_SSID
  450. * because an encryption/rsn mismatch results in both events, and
  451. * the important information is in the WLC_E_PRUNE.
  452. */
  453. if (!(event == WLC_E_SET_SSID && status == WLC_E_STATUS_FAIL &&
  454. dhd_conn_event == WLC_E_PRUNE)) {
  455. dhd_conn_event = event;
  456. dhd_conn_status = status;
  457. dhd_conn_reason = reason;
  458. }
  459. }
  460. bool
  461. dhd_prec_enq(dhd_pub_t *dhdp, struct pktq *q, void *pkt, int prec)
  462. {
  463. void *p;
  464. int eprec = -1; /* precedence to evict from */
  465. bool discard_oldest;
  466. /* Fast case, precedence queue is not full and we are also not
  467. * exceeding total queue length
  468. */
  469. if (!pktq_pfull(q, prec) && !pktq_full(q)) {
  470. pktq_penq(q, prec, pkt);
  471. return TRUE;
  472. }
  473. /* Determine precedence from which to evict packet, if any */
  474. if (pktq_pfull(q, prec))
  475. eprec = prec;
  476. else if (pktq_full(q)) {
  477. p = pktq_peek_tail(q, &eprec);
  478. ASSERT(p);
  479. if (eprec > prec || eprec < 0)
  480. return FALSE;
  481. }
  482. /* Evict if needed */
  483. if (eprec >= 0) {
  484. /* Detect queueing to unconfigured precedence */
  485. ASSERT(!pktq_pempty(q, eprec));
  486. discard_oldest = AC_BITMAP_TST(dhdp->wme_dp, eprec);
  487. if (eprec == prec && !discard_oldest)
  488. return FALSE; /* refuse newer (incoming) packet */
  489. /* Evict packet according to discard policy */
  490. p = discard_oldest ? pktq_pdeq(q, eprec) : pktq_pdeq_tail(q, eprec);
  491. ASSERT(p);
  492. PKTFREE(dhdp->osh, p, TRUE);
  493. }
  494. /* Enqueue */
  495. p = pktq_penq(q, prec, pkt);
  496. ASSERT(p);
  497. return TRUE;
  498. }
  499. static int
  500. dhd_iovar_op(dhd_pub_t *dhd_pub, const char *name,
  501. void *params, int plen, void *arg, int len, bool set)
  502. {
  503. int bcmerror = 0;
  504. int val_size;
  505. const bcm_iovar_t *vi = NULL;
  506. uint32 actionid;
  507. DHD_TRACE(("%s: Enter\n", __FUNCTION__));
  508. ASSERT(name);
  509. ASSERT(len >= 0);
  510. /* Get MUST have return space */
  511. ASSERT(set || (arg && len));
  512. /* Set does NOT take qualifiers */
  513. ASSERT(!set || (!params && !plen));
  514. if ((vi = bcm_iovar_lookup(dhd_iovars, name)) == NULL) {
  515. bcmerror = BCME_UNSUPPORTED;
  516. goto exit;
  517. }
  518. DHD_CTL(("%s: %s %s, len %d plen %d\n", __FUNCTION__,
  519. name, (set ? "set" : "get"), len, plen));
  520. /* set up 'params' pointer in case this is a set command so that
  521. * the convenience int and bool code can be common to set and get
  522. */
  523. if (params == NULL) {
  524. params = arg;
  525. plen = len;
  526. }
  527. if (vi->type == IOVT_VOID)
  528. val_size = 0;
  529. else if (vi->type == IOVT_BUFFER)
  530. val_size = len;
  531. else
  532. /* all other types are integer sized */
  533. val_size = sizeof(int);
  534. actionid = set ? IOV_SVAL(vi->varid) : IOV_GVAL(vi->varid);
  535. bcmerror = dhd_doiovar(dhd_pub, vi, actionid, name, params, plen, arg, len, val_size);
  536. exit:
  537. return bcmerror;
  538. }
  539. int
  540. dhd_ioctl(dhd_pub_t * dhd_pub, dhd_ioctl_t *ioc, void * buf, uint buflen)
  541. {
  542. int bcmerror = 0;
  543. DHD_TRACE(("%s: Enter\n", __FUNCTION__));
  544. if (!buf) {
  545. return BCME_BADARG;
  546. }
  547. switch (ioc->cmd) {
  548. case DHD_GET_MAGIC:
  549. if (buflen < sizeof(int))
  550. bcmerror = BCME_BUFTOOSHORT;
  551. else
  552. *(int*)buf = DHD_IOCTL_MAGIC;
  553. break;
  554. case DHD_GET_VERSION:
  555. if (buflen < sizeof(int))
  556. bcmerror = -BCME_BUFTOOSHORT;
  557. else
  558. *(int*)buf = DHD_IOCTL_VERSION;
  559. break;
  560. case DHD_GET_VAR:
  561. case DHD_SET_VAR: {
  562. char *arg;
  563. uint arglen;
  564. /* scan past the name to any arguments */
  565. for (arg = buf, arglen = buflen; *arg && arglen; arg++, arglen--)
  566. ;
  567. if (*arg) {
  568. bcmerror = BCME_BUFTOOSHORT;
  569. break;
  570. }
  571. /* account for the NUL terminator */
  572. arg++, arglen--;
  573. /* call with the appropriate arguments */
  574. if (ioc->cmd == DHD_GET_VAR)
  575. bcmerror = dhd_iovar_op(dhd_pub, buf, arg, arglen,
  576. buf, buflen, IOV_GET);
  577. else
  578. bcmerror = dhd_iovar_op(dhd_pub, buf, NULL, 0, arg, arglen, IOV_SET);
  579. if (bcmerror != BCME_UNSUPPORTED)
  580. break;
  581. /* not in generic table, try protocol module */
  582. if (ioc->cmd == DHD_GET_VAR)
  583. bcmerror = dhd_prot_iovar_op(dhd_pub, buf, arg,
  584. arglen, buf, buflen, IOV_GET);
  585. else
  586. bcmerror = dhd_prot_iovar_op(dhd_pub, buf,
  587. NULL, 0, arg, arglen, IOV_SET);
  588. if (bcmerror != BCME_UNSUPPORTED)
  589. break;
  590. /* if still not found, try bus module */
  591. if (ioc->cmd == DHD_GET_VAR) {
  592. bcmerror = dhd_bus_iovar_op(dhd_pub, buf,
  593. arg, arglen, buf, buflen, IOV_GET);
  594. } else {
  595. bcmerror = dhd_bus_iovar_op(dhd_pub, buf,
  596. NULL, 0, arg, arglen, IOV_SET);
  597. }
  598. break;
  599. }
  600. default:
  601. bcmerror = BCME_UNSUPPORTED;
  602. }
  603. return bcmerror;
  604. }
  605. #ifdef SHOW_EVENTS
  606. static void
  607. wl_show_host_event(wl_event_msg_t *event, void *event_data)
  608. {
  609. uint i, status, reason;
  610. bool group = FALSE, flush_txq = FALSE, link = FALSE;
  611. const char *auth_str;
  612. const char *event_name;
  613. uchar *buf;
  614. char err_msg[256], eabuf[ETHER_ADDR_STR_LEN];
  615. uint event_type, flags, auth_type, datalen;
  616. event_type = ntoh32(event->event_type);
  617. flags = ntoh16(event->flags);
  618. status = ntoh32(event->status);
  619. reason = ntoh32(event->reason);
  620. BCM_REFERENCE(reason);
  621. auth_type = ntoh32(event->auth_type);
  622. datalen = ntoh32(event->datalen);
  623. /* debug dump of event messages */
  624. sprintf(eabuf, "%02x:%02x:%02x:%02x:%02x:%02x",
  625. (uchar)event->addr.octet[0]&0xff,
  626. (uchar)event->addr.octet[1]&0xff,
  627. (uchar)event->addr.octet[2]&0xff,
  628. (uchar)event->addr.octet[3]&0xff,
  629. (uchar)event->addr.octet[4]&0xff,
  630. (uchar)event->addr.octet[5]&0xff);
  631. event_name = "UNKNOWN";
  632. for (i = 0; i < (uint)bcmevent_names_size; i++)
  633. if (bcmevent_names[i].event == event_type)
  634. event_name = bcmevent_names[i].name;
  635. if (flags & WLC_EVENT_MSG_LINK)
  636. link = TRUE;
  637. if (flags & WLC_EVENT_MSG_GROUP)
  638. group = TRUE;
  639. if (flags & WLC_EVENT_MSG_FLUSHTXQ)
  640. flush_txq = TRUE;
  641. switch (event_type) {
  642. case WLC_E_START:
  643. case WLC_E_DEAUTH:
  644. case WLC_E_DISASSOC:
  645. DHD_EVENT(("MACEVENT: %s, MAC %s\n", event_name, eabuf));
  646. break;
  647. case WLC_E_ASSOC_IND:
  648. case WLC_E_REASSOC_IND:
  649. DHD_EVENT(("MACEVENT: %s, MAC %s\n", event_name, eabuf));
  650. break;
  651. case WLC_E_ASSOC:
  652. case WLC_E_REASSOC:
  653. if (status == WLC_E_STATUS_SUCCESS) {
  654. DHD_EVENT(("MACEVENT: %s, MAC %s, SUCCESS\n", event_name, eabuf));
  655. } else if (status == WLC_E_STATUS_TIMEOUT) {
  656. DHD_EVENT(("MACEVENT: %s, MAC %s, TIMEOUT\n", event_name, eabuf));
  657. } else if (status == WLC_E_STATUS_FAIL) {
  658. DHD_EVENT(("MACEVENT: %s, MAC %s, FAILURE, reason %d\n",
  659. event_name, eabuf, (int)reason));
  660. } else {
  661. DHD_EVENT(("MACEVENT: %s, MAC %s, unexpected status %d\n",
  662. event_name, eabuf, (int)status));
  663. }
  664. break;
  665. case WLC_E_DEAUTH_IND:
  666. case WLC_E_DISASSOC_IND:
  667. DHD_EVENT(("MACEVENT: %s, MAC %s, reason %d\n", event_name, eabuf, (int)reason));
  668. break;
  669. case WLC_E_AUTH:
  670. case WLC_E_AUTH_IND:
  671. if (auth_type == DOT11_OPEN_SYSTEM)
  672. auth_str = "Open System";
  673. else if (auth_type == DOT11_SHARED_KEY)
  674. auth_str = "Shared Key";
  675. else {
  676. sprintf(err_msg, "AUTH unknown: %d", (int)auth_type);
  677. auth_str = err_msg;
  678. }
  679. if (event_type == WLC_E_AUTH_IND) {
  680. DHD_EVENT(("MACEVENT: %s, MAC %s, %s\n", event_name, eabuf, auth_str));
  681. } else if (status == WLC_E_STATUS_SUCCESS) {
  682. DHD_EVENT(("MACEVENT: %s, MAC %s, %s, SUCCESS\n",
  683. event_name, eabuf, auth_str));
  684. } else if (status == WLC_E_STATUS_TIMEOUT) {
  685. DHD_EVENT(("MACEVENT: %s, MAC %s, %s, TIMEOUT\n",
  686. event_name, eabuf, auth_str));
  687. } else if (status == WLC_E_STATUS_FAIL) {
  688. DHD_EVENT(("MACEVENT: %s, MAC %s, %s, FAILURE, reason %d\n",
  689. event_name, eabuf, auth_str, (int)reason));
  690. }
  691. BCM_REFERENCE(auth_str);
  692. break;
  693. case WLC_E_JOIN:
  694. case WLC_E_ROAM:
  695. case WLC_E_SET_SSID:
  696. if (status == WLC_E_STATUS_SUCCESS) {
  697. DHD_EVENT(("MACEVENT: %s, MAC %s\n", event_name, eabuf));
  698. } else if (status == WLC_E_STATUS_FAIL) {
  699. DHD_EVENT(("MACEVENT: %s, failed\n", event_name));
  700. } else if (status == WLC_E_STATUS_NO_NETWORKS) {
  701. DHD_EVENT(("MACEVENT: %s, no networks found\n", event_name));
  702. } else {
  703. DHD_EVENT(("MACEVENT: %s, unexpected status %d\n",
  704. event_name, (int)status));
  705. }
  706. break;
  707. case WLC_E_BEACON_RX:
  708. if (status == WLC_E_STATUS_SUCCESS) {
  709. DHD_EVENT(("MACEVENT: %s, SUCCESS\n", event_name));
  710. } else if (status == WLC_E_STATUS_FAIL) {
  711. DHD_EVENT(("MACEVENT: %s, FAIL\n", event_name));
  712. } else {
  713. DHD_EVENT(("MACEVENT: %s, status %d\n", event_name, status));
  714. }
  715. break;
  716. case WLC_E_LINK:
  717. DHD_EVENT(("MACEVENT: %s %s\n", event_name, link?"UP":"DOWN"));
  718. BCM_REFERENCE(link);
  719. break;
  720. case WLC_E_MIC_ERROR:
  721. DHD_EVENT(("MACEVENT: %s, MAC %s, Group %d, Flush %d\n",
  722. event_name, eabuf, group, flush_txq));
  723. BCM_REFERENCE(group);
  724. BCM_REFERENCE(flush_txq);
  725. break;
  726. case WLC_E_ICV_ERROR:
  727. case WLC_E_UNICAST_DECODE_ERROR:
  728. case WLC_E_MULTICAST_DECODE_ERROR:
  729. DHD_EVENT(("MACEVENT: %s, MAC %s\n",
  730. event_name, eabuf));
  731. break;
  732. case WLC_E_TXFAIL:
  733. DHD_EVENT(("MACEVENT: %s, RA %s\n", event_name, eabuf));
  734. break;
  735. case WLC_E_SCAN_COMPLETE:
  736. case WLC_E_ASSOC_REQ_IE:
  737. case WLC_E_ASSOC_RESP_IE:
  738. case WLC_E_PMKID_CACHE:
  739. DHD_EVENT(("MACEVENT: %s\n", event_name));
  740. break;
  741. case WLC_E_PFN_NET_FOUND:
  742. case WLC_E_PFN_NET_LOST:
  743. case WLC_E_PFN_SCAN_COMPLETE:
  744. case WLC_E_PFN_SCAN_NONE:
  745. case WLC_E_PFN_SCAN_ALLGONE:
  746. DHD_EVENT(("PNOEVENT: %s\n", event_name));
  747. break;
  748. case WLC_E_PSK_SUP:
  749. case WLC_E_PRUNE:
  750. DHD_EVENT(("MACEVENT: %s, status %d, reason %d\n",
  751. event_name, (int)status, (int)reason));
  752. break;
  753. #ifdef WIFI_ACT_FRAME
  754. case WLC_E_ACTION_FRAME:
  755. DHD_TRACE(("MACEVENT: %s Bssid %s\n", event_name, eabuf));
  756. break;
  757. #endif /* WIFI_ACT_FRAME */
  758. case WLC_E_TRACE: {
  759. static uint32 seqnum_prev = 0;
  760. msgtrace_hdr_t hdr;
  761. uint32 nblost;
  762. char *s, *p;
  763. buf = (uchar *) event_data;
  764. memcpy(&hdr, buf, MSGTRACE_HDRLEN);
  765. if (hdr.version != MSGTRACE_VERSION) {
  766. printf("\nMACEVENT: %s [unsupported version --> "
  767. "dhd version:%d dongle version:%d]\n",
  768. event_name, MSGTRACE_VERSION, hdr.version);
  769. /* Reset datalen to avoid display below */
  770. datalen = 0;
  771. break;
  772. }
  773. /* There are 2 bytes available at the end of data */
  774. buf[MSGTRACE_HDRLEN + ntoh16(hdr.len)] = '\0';
  775. if (ntoh32(hdr.discarded_bytes) || ntoh32(hdr.discarded_printf)) {
  776. printf("\nWLC_E_TRACE: [Discarded traces in dongle -->"
  777. "discarded_bytes %d discarded_printf %d]\n",
  778. ntoh32(hdr.discarded_bytes), ntoh32(hdr.discarded_printf));
  779. }
  780. nblost = ntoh32(hdr.seqnum) - seqnum_prev - 1;
  781. if (nblost > 0) {
  782. printf("\nWLC_E_TRACE: [Event lost --> seqnum %d nblost %d\n",
  783. ntoh32(hdr.seqnum), nblost);
  784. }
  785. seqnum_prev = ntoh32(hdr.seqnum);
  786. /* Display the trace buffer. Advance from \n to \n to avoid display big
  787. * printf (issue with Linux printk )
  788. */
  789. p = (char *)&buf[MSGTRACE_HDRLEN];
  790. while ((s = strstr(p, "\n")) != NULL) {
  791. *s = '\0';
  792. printf("%s\n", p);
  793. p = s+1;
  794. }
  795. printf("%s\n", p);
  796. /* Reset datalen to avoid display below */
  797. datalen = 0;
  798. break;
  799. }
  800. case WLC_E_RSSI:
  801. DHD_EVENT(("MACEVENT: %s %d\n", event_name, ntoh32(*((int *)event_data))));
  802. break;
  803. default:
  804. DHD_EVENT(("MACEVENT: %s %d, MAC %s, status %d, reason %d, auth %d\n",
  805. event_name, event_type, eabuf, (int)status, (int)reason,
  806. (int)auth_type));
  807. break;
  808. }
  809. /* show any appended data */
  810. if (datalen) {
  811. buf = (uchar *) event_data;
  812. DHD_EVENT((" data (%d) : ", datalen));
  813. for (i = 0; i < datalen; i++)
  814. DHD_EVENT((" 0x%02x ", *buf++));
  815. DHD_EVENT(("\n"));
  816. }
  817. }
  818. #endif /* SHOW_EVENTS */
  819. int
  820. wl_host_event(dhd_pub_t *dhd_pub, int *ifidx, void *pktdata,
  821. wl_event_msg_t *event, void **data_ptr)
  822. {
  823. /* check whether packet is a BRCM event pkt */
  824. bcm_event_t *pvt_data = (bcm_event_t *)pktdata;
  825. uint8 *event_data;
  826. uint32 type, status, datalen;
  827. uint16 flags;
  828. int evlen;
  829. if (bcmp(BRCM_OUI, &pvt_data->bcm_hdr.oui[0], DOT11_OUI_LEN)) {
  830. DHD_ERROR(("%s: mismatched OUI, bailing\n", __FUNCTION__));
  831. return (BCME_ERROR);
  832. }
  833. /* BRCM event pkt may be unaligned - use xxx_ua to load user_subtype. */
  834. if (ntoh16_ua((void *)&pvt_data->bcm_hdr.usr_subtype) != BCMILCP_BCM_SUBTYPE_EVENT) {
  835. DHD_ERROR(("%s: mismatched subtype, bailing\n", __FUNCTION__));
  836. return (BCME_ERROR);
  837. }
  838. *data_ptr = &pvt_data[1];
  839. event_data = *data_ptr;
  840. /* memcpy since BRCM event pkt may be unaligned. */
  841. memcpy(event, &pvt_data->event, sizeof(wl_event_msg_t));
  842. type = ntoh32_ua((void *)&event->event_type);
  843. flags = ntoh16_ua((void *)&event->flags);
  844. status = ntoh32_ua((void *)&event->status);
  845. datalen = ntoh32_ua((void *)&event->datalen);
  846. evlen = datalen + sizeof(bcm_event_t);
  847. switch (type) {
  848. #ifdef PROP_TXSTATUS
  849. case WLC_E_FIFO_CREDIT_MAP:
  850. dhd_wlfc_event(dhd_pub->info);
  851. dhd_wlfc_FIFOcreditmap_event(dhd_pub->info, event_data);
  852. WLFC_DBGMESG(("WLC_E_FIFO_CREDIT_MAP:(AC0,AC1,AC2,AC3),(BC_MC),(OTHER): "
  853. "(%d,%d,%d,%d),(%d),(%d)\n", event_data[0], event_data[1],
  854. event_data[2],
  855. event_data[3], event_data[4], event_data[5]));
  856. break;
  857. #endif
  858. case WLC_E_IF:
  859. {
  860. dhd_if_event_t *ifevent = (dhd_if_event_t *)event_data;
  861. #ifdef PROP_TXSTATUS
  862. {
  863. uint8* ea = pvt_data->eth.ether_dhost;
  864. WLFC_DBGMESG(("WLC_E_IF: idx:%d, action:%s, iftype:%s, "
  865. "[%02x:%02x:%02x:%02x:%02x:%02x]\n",
  866. ifevent->ifidx,
  867. ((ifevent->action == WLC_E_IF_ADD) ? "ADD":"DEL"),
  868. ((ifevent->is_AP == 0) ? "STA":"AP "),
  869. ea[0], ea[1], ea[2], ea[3], ea[4], ea[5]));
  870. (void)ea;
  871. if (ifevent->action == WLC_E_IF_CHANGE)
  872. dhd_wlfc_interface_event(dhd_pub->info,
  873. eWLFC_MAC_ENTRY_ACTION_UPDATE,
  874. ifevent->ifidx, ifevent->is_AP, ea);
  875. else
  876. dhd_wlfc_interface_event(dhd_pub->info,
  877. ((ifevent->action == WLC_E_IF_ADD) ?
  878. eWLFC_MAC_ENTRY_ACTION_ADD : eWLFC_MAC_ENTRY_ACTION_DEL),
  879. ifevent->ifidx, ifevent->is_AP, ea);
  880. /* dhd already has created an interface by default, for 0 */
  881. if (ifevent->ifidx == 0)
  882. break;
  883. }
  884. #endif /* PROP_TXSTATUS */
  885. #ifdef WL_CFG80211
  886. if (wl_cfg80211_is_progress_ifchange()) {
  887. DHD_ERROR(("%s: ifidx %d for %s action %d\n",
  888. __FUNCTION__, ifevent->ifidx,
  889. event->ifname, ifevent->action));
  890. if (ifevent->action == WLC_E_IF_ADD ||
  891. ifevent->action == WLC_E_IF_CHANGE)
  892. wl_cfg80211_notify_ifchange();
  893. return (BCME_OK);
  894. }
  895. #endif /* WL_CFG80211 */
  896. if (ifevent->ifidx > 0 && ifevent->ifidx < DHD_MAX_IFS) {
  897. if (ifevent->action == WLC_E_IF_ADD) {
  898. if (dhd_add_if(dhd_pub->info, ifevent->ifidx,
  899. NULL, event->ifname,
  900. event->addr.octet,
  901. ifevent->flags, ifevent->bssidx)) {
  902. DHD_ERROR(("%s: dhd_add_if failed!!"
  903. " ifidx: %d for %s\n",
  904. __FUNCTION__,
  905. ifevent->ifidx,
  906. event->ifname));
  907. return (BCME_ERROR);
  908. }
  909. }
  910. else if (ifevent->action == WLC_E_IF_DEL)
  911. dhd_del_if(dhd_pub->info, ifevent->ifidx);
  912. } else {
  913. #ifndef PROP_TXSTATUS
  914. DHD_ERROR(("%s: Invalid ifidx %d for %s\n",
  915. __FUNCTION__, ifevent->ifidx, event->ifname));
  916. #endif /* !PROP_TXSTATUS */
  917. }
  918. }
  919. /* send up the if event: btamp user needs it */
  920. *ifidx = dhd_ifname2idx(dhd_pub->info, event->ifname);
  921. /* push up to external supp/auth */
  922. dhd_event(dhd_pub->info, (char *)pvt_data, evlen, *ifidx);
  923. break;
  924. #ifdef WLMEDIA_HTSF
  925. case WLC_E_HTSFSYNC:
  926. htsf_update(dhd_pub->info, event_data);
  927. break;
  928. #endif /* WLMEDIA_HTSF */
  929. #if defined(NDIS630)
  930. case WLC_E_NDIS_LINK:
  931. break;
  932. #else /* defined(NDIS630) && defined(BCMDONGLEHOST) */
  933. case WLC_E_NDIS_LINK: {
  934. uint32 temp = hton32(WLC_E_LINK);
  935. memcpy((void *)(&pvt_data->event.event_type), &temp,
  936. sizeof(pvt_data->event.event_type));
  937. }
  938. #endif
  939. /* These are what external supplicant/authenticator wants */
  940. /* fall through */
  941. case WLC_E_LINK:
  942. case WLC_E_DEAUTH:
  943. case WLC_E_DEAUTH_IND:
  944. case WLC_E_DISASSOC:
  945. case WLC_E_DISASSOC_IND:
  946. DHD_EVENT(("%s: Link event %d, flags %x, status %x\n",
  947. __FUNCTION__, type, flags, status));
  948. /* fall through */
  949. default:
  950. *ifidx = dhd_ifname2idx(dhd_pub->info, event->ifname);
  951. /* push up to external supp/auth */
  952. dhd_event(dhd_pub->info, (char *)pvt_data, evlen, *ifidx);
  953. DHD_TRACE(("%s: MAC event %d, flags %x, status %x\n",
  954. __FUNCTION__, type, flags, status));
  955. BCM_REFERENCE(flags);
  956. BCM_REFERENCE(status);
  957. /* put it back to WLC_E_NDIS_LINK */
  958. if (type == WLC_E_NDIS_LINK) {
  959. uint32 temp;
  960. temp = ntoh32_ua((void *)&event->event_type);
  961. DHD_TRACE(("Converted to WLC_E_LINK type %d\n", temp));
  962. temp = ntoh32(WLC_E_NDIS_LINK);
  963. memcpy((void *)(&pvt_data->event.event_type), &temp,
  964. sizeof(pvt_data->event.event_type));
  965. }
  966. break;
  967. }
  968. #ifdef SHOW_EVENTS
  969. wl_show_host_event(event, (void *)event_data);
  970. #endif /* SHOW_EVENTS */
  971. return (BCME_OK);
  972. }
  973. void
  974. wl_event_to_host_order(wl_event_msg_t * evt)
  975. {
  976. /* Event struct members passed from dongle to host are stored in network
  977. * byte order. Convert all members to host-order.
  978. */
  979. evt->event_type = ntoh32(evt->event_type);
  980. evt->flags = ntoh16(evt->flags);
  981. evt->status = ntoh32(evt->status);
  982. evt->reason = ntoh32(evt->reason);
  983. evt->auth_type = ntoh32(evt->auth_type);
  984. evt->datalen = ntoh32(evt->datalen);
  985. evt->version = ntoh16(evt->version);
  986. }
  987. void
  988. dhd_print_buf(void *pbuf, int len, int bytes_per_line)
  989. {
  990. #ifdef DHD_DEBUG
  991. int i, j = 0;
  992. unsigned char *buf = pbuf;
  993. if (bytes_per_line == 0) {
  994. bytes_per_line = len;
  995. }
  996. for (i = 0; i < len; i++) {
  997. printf("%2.2x", *buf++);
  998. j++;
  999. if (j == bytes_per_line) {
  1000. printf("\n");
  1001. j = 0;
  1002. } else {
  1003. printf(":");
  1004. }
  1005. }
  1006. printf("\n");
  1007. #endif /* DHD_DEBUG */
  1008. }
  1009. #define strtoul(nptr, endptr, base) bcm_strtoul((nptr), (endptr), (base))
  1010. /* Convert user's input in hex pattern to byte-size mask */
  1011. static int
  1012. wl_pattern_atoh(char *src, char *dst)
  1013. {
  1014. int i;
  1015. if (strncmp(src, "0x", 2) != 0 &&
  1016. strncmp(src, "0X", 2) != 0) {
  1017. DHD_ERROR(("Mask invalid format. Needs to start with 0x\n"));
  1018. return -1;
  1019. }
  1020. src = src + 2; /* Skip past 0x */
  1021. if (strlen(src) % 2 != 0) {
  1022. DHD_ERROR(("Mask invalid format. Needs to be of even length\n"));
  1023. return -1;
  1024. }
  1025. for (i = 0; *src != '\0'; i++) {
  1026. char num[3];
  1027. bcm_strncpy_s(num, sizeof(num), src, 2);
  1028. num[2] = '\0';
  1029. dst[i] = (uint8)strtoul(num, NULL, 16);
  1030. src += 2;
  1031. }
  1032. return i;
  1033. }
  1034. void
  1035. dhd_pktfilter_offload_enable(dhd_pub_t * dhd, char *arg, int enable, int master_mode)
  1036. {
  1037. char *argv[8];
  1038. int i = 0;
  1039. const char *str;
  1040. int buf_len;
  1041. int str_len;
  1042. char *arg_save = 0, *arg_org = 0;
  1043. int rc;
  1044. char buf[128];
  1045. wl_pkt_filter_enable_t enable_parm;
  1046. wl_pkt_filter_enable_t * pkt_filterp;
  1047. if (!arg)
  1048. return;
  1049. if (!(arg_save = MALLOC(dhd->osh, strlen(arg) + 1))) {
  1050. DHD_ERROR(("%s: kmalloc failed\n", __FUNCTION__));
  1051. goto fail;
  1052. }
  1053. arg_org = arg_save;
  1054. memcpy(arg_save, arg, strlen(arg) + 1);
  1055. argv[i] = bcmstrtok(&arg_save, " ", 0);
  1056. i = 0;
  1057. if (argv[i] == NULL) {
  1058. DHD_ERROR(("No args provided\n"));
  1059. goto fail;
  1060. }
  1061. str = "pkt_filter_enable";
  1062. str_len = strlen(str);
  1063. bcm_strncpy_s(buf, sizeof(buf), str, str_len);
  1064. buf[str_len] = '\0';
  1065. buf_len = str_len + 1;
  1066. pkt_filterp = (wl_pkt_filter_enable_t *)(buf + str_len + 1);
  1067. /* Parse packet filter id. */
  1068. enable_parm.id = htod32(strtoul(argv[i], NULL, 0));
  1069. /* Parse enable/disable value. */
  1070. enable_parm.enable = htod32(enable);
  1071. buf_len += sizeof(enable_parm);
  1072. memcpy((char *)pkt_filterp,
  1073. &enable_parm,
  1074. sizeof(enable_parm));
  1075. /* Enable/disable the specified filter. */
  1076. rc = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, buf, buf_len, TRUE, 0);
  1077. rc = rc >= 0 ? 0 : rc;
  1078. if (rc)
  1079. DHD_TRACE(("%s: failed to add pktfilter %s, retcode = %d\n",
  1080. __FUNCTION__, arg, rc));
  1081. else
  1082. DHD_TRACE(("%s: successfully added pktfilter %s\n",
  1083. __FUNCTION__, arg));
  1084. /* Contorl the master mode */
  1085. bcm_mkiovar("pkt_filter_mode", (char *)&master_mode, 4, buf, sizeof(buf));
  1086. rc = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, buf, sizeof(buf), TRUE, 0);
  1087. rc = rc >= 0 ? 0 : rc;
  1088. if (rc)
  1089. DHD_TRACE(("%s: failed to add pktfilter %s, retcode = %d\n",
  1090. __FUNCTION__, arg, rc));
  1091. fail:
  1092. if (arg_org)
  1093. MFREE(dhd->osh, arg_org, strlen(arg) + 1);
  1094. }
  1095. void
  1096. dhd_pktfilter_offload_set(dhd_pub_t * dhd, char *arg)
  1097. {
  1098. const char *str;
  1099. wl_pkt_filter_t pkt_filter;
  1100. wl_pkt_filter_t *pkt_filterp;
  1101. int buf_len;
  1102. int str_len;
  1103. int rc;
  1104. uint32 mask_size;
  1105. uint32 pattern_size;
  1106. char *argv[8], * buf = 0;
  1107. int i = 0;
  1108. char *arg_save = 0, *arg_org = 0;
  1109. #define BUF_SIZE 2048
  1110. if (!arg)
  1111. return;
  1112. if (!(arg_save = MALLOC(dhd->osh, strlen(arg) + 1))) {
  1113. DHD_ERROR(("%s: kmalloc failed\n", __FUNCTION__));
  1114. goto fail;
  1115. }
  1116. arg_org = arg_save;
  1117. if (!(buf = MALLOC(dhd->osh, BUF_SIZE))) {
  1118. DHD_ERROR(("%s: kmalloc failed\n", __FUNCTION__));
  1119. goto fail;
  1120. }
  1121. memcpy(arg_save, arg, strlen(arg) + 1);
  1122. if (strlen(arg) > BUF_SIZE) {
  1123. DHD_ERROR(("Not enough buffer %d < %d\n", (int)strlen(arg), (int)sizeof(buf)));
  1124. goto fail;
  1125. }
  1126. argv[i] = bcmstrtok(&arg_save, " ", 0);
  1127. while (argv[i++])
  1128. argv[i] = bcmstrtok(&arg_save, " ", 0);
  1129. i = 0;
  1130. if (argv[i] == NULL) {
  1131. DHD_ERROR(("No args provided\n"));
  1132. goto fail;
  1133. }
  1134. str = "pkt_filter_add";
  1135. str_len = strlen(str);
  1136. bcm_strncpy_s(buf, BUF_SIZE, str, str_len);
  1137. buf[ str_len ] = '\0';
  1138. buf_len = str_len + 1;
  1139. pkt_filterp = (wl_pkt_filter_t *) (buf + str_len + 1);
  1140. /* Parse packet filter id. */
  1141. pkt_filter.id = htod32(strtoul(argv[i], NULL, 0));
  1142. if (argv[++i] == NULL) {
  1143. DHD_ERROR(("Polarity not provided\n"));
  1144. goto fail;
  1145. }
  1146. /* Parse filter polarity. */
  1147. pkt_filter.negate_match = htod32(strtoul(argv[i], NULL, 0));
  1148. if (argv[++i] == NULL) {
  1149. DHD_ERROR(("Filter type not provided\n"));
  1150. goto fail;
  1151. }
  1152. /* Parse filter type. */
  1153. pkt_filter.type = htod32(strtoul(argv[i], NULL, 0));
  1154. if (argv[++i] == NULL) {
  1155. DHD_ERROR(("Offset not provided\n"));
  1156. goto fail;
  1157. }
  1158. /* Parse pattern filter offset. */
  1159. pkt_filter.u.pattern.offset = htod32(strtoul(argv[i], NULL, 0));
  1160. if (argv[++i] == NULL) {
  1161. DHD_ERROR(("Bitmask not provided\n"));
  1162. goto fail;
  1163. }
  1164. /* Parse pattern filter mask. */
  1165. mask_size =
  1166. htod32(wl_pattern_atoh(argv[i], (char *) pkt_filterp->u.pattern.mask_and_pattern));
  1167. if (argv[++i] == NULL) {
  1168. DHD_ERROR(("Pattern not provided\n"));
  1169. goto fail;
  1170. }
  1171. /* Parse pattern filter pattern. */
  1172. pattern_size =
  1173. htod32(wl_pattern_atoh(argv[i],
  1174. (char *) &pkt_filterp->u.pattern.mask_and_pattern[mask_size]));
  1175. if (mask_size != pattern_size) {
  1176. DHD_ERROR(("Mask and pattern not the same size\n"));
  1177. goto fail;
  1178. }
  1179. pkt_filter.u.pattern.size_bytes = mask_size;
  1180. buf_len += WL_PKT_FILTER_FIXED_LEN;
  1181. buf_len += (WL_PKT_FILTER_PATTERN_FIXED_LEN + 2 * mask_size);
  1182. /* Keep-alive attributes are set in local variable (keep_alive_pkt), and
  1183. ** then memcpy'ed into buffer (keep_alive_pktp) since there is no
  1184. ** guarantee that the buffer is properly aligned.
  1185. */
  1186. memcpy((char *)pkt_filterp,
  1187. &pkt_filter,
  1188. WL_PKT_FILTER_FIXED_LEN + WL_PKT_FILTER_PATTERN_FIXED_LEN);
  1189. rc = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, buf, buf_len, TRUE, 0);
  1190. rc = rc >= 0 ? 0 : rc;
  1191. if (rc)
  1192. DHD_TRACE(("%s: failed to add pktfilter %s, retcode = %d\n",
  1193. __FUNCTION__, arg, rc));
  1194. else
  1195. DHD_TRACE(("%s: successfully added pktfilter %s\n",
  1196. __FUNCTION__, arg));
  1197. fail:
  1198. if (arg_org)
  1199. MFREE(dhd->osh, arg_org, strlen(arg) + 1);
  1200. if (buf)
  1201. MFREE(dhd->osh, buf, BUF_SIZE);
  1202. }
  1203. /* ========================== */
  1204. /* ==== ARP OFFLOAD SUPPORT = */
  1205. /* ========================== */
  1206. #ifdef ARP_OFFLOAD_SUPPORT
  1207. void
  1208. dhd_arp_offload_set(dhd_pub_t * dhd, int arp_mode)
  1209. {
  1210. char iovbuf[32];
  1211. int retcode;
  1212. bcm_mkiovar("arp_ol", (char *)&arp_mode, 4, iovbuf, sizeof(iovbuf));
  1213. retcode = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf, sizeof(iovbuf), TRUE, 0);
  1214. retcode = retcode >= 0 ? 0 : retcode;
  1215. if (retcode)
  1216. DHD_TRACE(("%s: failed to set ARP offload mode to 0x%x, retcode = %d\n",
  1217. __FUNCTION__, arp_mode, retcode));
  1218. else
  1219. DHD_TRACE(("%s: successfully set ARP offload mode to 0x%x\n",
  1220. __FUNCTION__, arp_mode));
  1221. }
  1222. void
  1223. dhd_arp_offload_enable(dhd_pub_t * dhd, int arp_enable)
  1224. {
  1225. char iovbuf[32];
  1226. int retcode;
  1227. bcm_mkiovar("arpoe", (char *)&arp_enable, 4, iovbuf, sizeof(iovbuf));
  1228. retcode = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf, sizeof(iovbuf), TRUE, 0);
  1229. retcode = retcode >= 0 ? 0 : retcode;
  1230. if (retcode)
  1231. DHD_TRACE(("%s: failed to enabe ARP offload to %d, retcode = %d\n",
  1232. __FUNCTION__, arp_enable, retcode));
  1233. else
  1234. DHD_TRACE(("%s: successfully enabed ARP offload to %d\n",
  1235. __FUNCTION__, arp_enable));
  1236. }
  1237. void
  1238. dhd_aoe_arp_clr(dhd_pub_t *dhd)
  1239. {
  1240. int ret = 0;
  1241. int iov_len = 0;
  1242. char iovbuf[128];
  1243. if (dhd == NULL) return;
  1244. iov_len = bcm_mkiovar("arp_table_clear", 0, 0, iovbuf, sizeof(iovbuf));
  1245. if ((ret = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf, iov_len, TRUE, 0) < 0))
  1246. DHD_ERROR(("%s failed code %d\n", __FUNCTION__, ret));
  1247. }
  1248. void
  1249. dhd_aoe_hostip_clr(dhd_pub_t *dhd)
  1250. {
  1251. int ret = 0;
  1252. int iov_len = 0;
  1253. char iovbuf[128];
  1254. if (dhd == NULL) return;
  1255. iov_len = bcm_mkiovar("arp_hostip_clear", 0, 0, iovbuf, sizeof(iovbuf));
  1256. if ((ret = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf, iov_len, TRUE, 0)) < 0)
  1257. DHD_ERROR(("%s failed code %d\n", __FUNCTION__, ret));
  1258. }
  1259. void
  1260. dhd_arp_offload_add_ip(dhd_pub_t *dhd, uint32 ipaddr)
  1261. {
  1262. int iov_len = 0;
  1263. char iovbuf[32];
  1264. int retcode;
  1265. iov_len = bcm_mkiovar("arp_hostip", (char *)&ipaddr, 4, iovbuf, sizeof(iovbuf));
  1266. retcode = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf, iov_len, TRUE, 0);
  1267. if (retcode)
  1268. DHD_TRACE(("%s: ARP ip addr add failed, retcode = %d\n",
  1269. __FUNCTION__, retcode));
  1270. else
  1271. DHD_TRACE(("%s: sARP H ipaddr entry added \n",
  1272. __FUNCTION__));
  1273. }
  1274. int
  1275. dhd_arp_get_arp_hostip_table(dhd_pub_t *dhd, void *buf, int buflen)
  1276. {
  1277. int retcode, i;
  1278. int iov_len;
  1279. uint32 *ptr32 = buf;
  1280. bool clr_bottom = FALSE;
  1281. if (!buf)
  1282. return -1;
  1283. iov_len = bcm_mkiovar("arp_hostip", 0, 0, buf, buflen);
  1284. BCM_REFERENCE(iov_len);
  1285. retcode = dhd_wl_ioctl_cmd(dhd, WLC_GET_VAR, buf, buflen, FALSE, 0);
  1286. if (retcode) {
  1287. DHD_TRACE(("%s: ioctl WLC_GET_VAR error %d\n",
  1288. __FUNCTION__, retcode));
  1289. return -1;
  1290. }
  1291. /* clean up the buf, ascii reminder */
  1292. for (i = 0; i < MAX_IPV4_ENTRIES; i++) {
  1293. if (!clr_bottom) {
  1294. if (*ptr32 == 0)
  1295. clr_bottom = TRUE;
  1296. } else {
  1297. *ptr32 = 0;
  1298. }
  1299. ptr32++;
  1300. }
  1301. return 0;
  1302. }
  1303. #endif /* ARP_OFFLOAD_SUPPORT */
  1304. /* send up locally generated event */
  1305. void
  1306. dhd_sendup_event_common(dhd_pub_t *dhdp, wl_event_msg_t *event, void *data)
  1307. {
  1308. switch (ntoh32(event->event_type)) {
  1309. #ifdef WLBTAMP
  1310. case WLC_E_BTA_HCI_EVENT:
  1311. break;
  1312. #endif /* WLBTAMP */
  1313. default:
  1314. break;
  1315. }
  1316. /* Call per-port handler. */
  1317. dhd_sendup_event(dhdp, event, data);
  1318. }
  1319. #ifdef SIMPLE_ISCAN
  1320. uint iscan_thread_id = 0;
  1321. iscan_buf_t * iscan_chain = 0;
  1322. iscan_buf_t *
  1323. dhd_iscan_allocate_buf(dhd_pub_t *dhd, iscan_buf_t **iscanbuf)
  1324. {
  1325. iscan_buf_t *iscanbuf_alloc = 0;
  1326. iscan_buf_t *iscanbuf_head;
  1327. DHD_ISCAN(("%s: Entered\n", __FUNCTION__));
  1328. dhd_iscan_lock();
  1329. iscanbuf_alloc = (iscan_buf_t*)MALLOC(dhd->osh, sizeof(iscan_buf_t));
  1330. if (iscanbuf_alloc == NULL)
  1331. goto fail;
  1332. iscanbuf_alloc->next = NULL;
  1333. iscanbuf_head = *iscanbuf;
  1334. DHD_ISCAN(("%s: addr of allocated node = 0x%X"
  1335. "addr of iscanbuf_head = 0x%X dhd = 0x%X\n",
  1336. __FUNCTION__, iscanbuf_alloc, iscanbuf_head, dhd));
  1337. if (iscanbuf_head == NULL) {
  1338. *iscanbuf = iscanbuf_alloc;
  1339. DHD_ISCAN(("%s: Head is allocated\n", __FUNCTION__));
  1340. goto fail;
  1341. }
  1342. while (iscanbuf_head->next)
  1343. iscanbuf_head = iscanbuf_head->next;
  1344. iscanbuf_head->next = iscanbuf_alloc;
  1345. fail:
  1346. dhd_iscan_unlock();
  1347. return iscanbuf_alloc;
  1348. }
  1349. void
  1350. dhd_iscan_free_buf(void *dhdp, iscan_buf_t *iscan_delete)
  1351. {
  1352. iscan_buf_t *iscanbuf_free = 0;
  1353. iscan_buf_t *iscanbuf_prv = 0;
  1354. iscan_buf_t *iscanbuf_cur;
  1355. dhd_pub_t *dhd = dhd_bus_pub(dhdp);
  1356. DHD_ISCAN(("%s: Entered\n", __FUNCTION__));
  1357. dhd_iscan_lock();
  1358. iscanbuf_cur = iscan_chain;
  1359. /* If iscan_delete is null then delete the entire
  1360. * chain or else delete specific one provided
  1361. */
  1362. if (!iscan_delete) {
  1363. while (iscanbuf_cur) {
  1364. iscanbuf_free = iscanbuf_cur;
  1365. iscanbuf_cur = iscanbuf_cur->next;
  1366. iscanbuf_free->next = 0;
  1367. MFREE(dhd->osh, iscanbuf_free, sizeof(iscan_buf_t));
  1368. }
  1369. iscan_chain = 0;
  1370. } else {
  1371. while (iscanbuf_cur) {
  1372. if (iscanbuf_cur == iscan_delete)
  1373. break;
  1374. iscanbuf_prv = iscanbuf_cur;
  1375. iscanbuf_cur = iscanbuf_cur->next;
  1376. }
  1377. if (iscanbuf_prv)
  1378. iscanbuf_prv->next = iscan_delete->next;
  1379. iscan_delete->next = 0;
  1380. MFREE(dhd->osh, iscan_delete, sizeof(iscan_buf_t));
  1381. if (!iscanbuf_prv)
  1382. iscan_chain = 0;
  1383. }
  1384. dhd_iscan_unlock();
  1385. }
  1386. iscan_buf_t *
  1387. dhd_iscan_result_buf(void)
  1388. {
  1389. return iscan_chain;
  1390. }
  1391. int
  1392. dhd_iscan_issue_request(void * dhdp, wl_iscan_params_t *pParams, uint32 size)
  1393. {
  1394. int rc = -1;
  1395. dhd_pub_t *dhd = dhd_bus_pub(dhdp);
  1396. char *buf;
  1397. char iovar[] = "iscan";
  1398. uint32 allocSize = 0;
  1399. wl_ioctl_t ioctl;
  1400. if (pParams) {
  1401. allocSize = (size + strlen(iovar) + 1);
  1402. if ((allocSize < size) || (allocSize < strlen(iovar)))
  1403. {
  1404. DHD_ERROR(("%s: overflow - allocation size too large %d < %d + %d!\n",
  1405. __FUNCTION__, allocSize, size, strlen(iovar)));
  1406. goto cleanUp;
  1407. }
  1408. buf = MALLOC(dhd->osh, allocSize);
  1409. if (buf == NULL)
  1410. {
  1411. DHD_ERROR(("%s: malloc of size %d failed!\n", __FUNCTION__, allocSize));
  1412. goto cleanUp;
  1413. }
  1414. ioctl.cmd = WLC_SET_VAR;
  1415. bcm_mkiovar(iovar, (char *)pParams, size, buf, allocSize);
  1416. rc = dhd_wl_ioctl(dhd, 0, &ioctl, buf, allocSize);
  1417. }
  1418. cleanUp:
  1419. if (buf) {
  1420. MFREE(dhd->osh, buf, allocSize);
  1421. }
  1422. return rc;
  1423. }
  1424. static int
  1425. dhd_iscan_get_partial_result(void *dhdp, uint *scan_count)
  1426. {
  1427. wl_iscan_results_t *list_buf;
  1428. wl_iscan_results_t list;
  1429. wl_scan_results_t *results;
  1430. iscan_buf_t *iscan_cur;
  1431. int status = -1;
  1432. dhd_pub_t *dhd = dhd_bus_pub(dhdp);
  1433. int rc;
  1434. wl_ioctl_t ioctl;
  1435. DHD_ISCAN(("%s: Enter\n", __FUNCTION__));
  1436. iscan_cur = dhd_iscan_allocate_buf(dhd, &iscan_chain);
  1437. if (!iscan_cur) {
  1438. DHD_ERROR(("%s: Failed to allocate node\n", __FUNCTION__));
  1439. dhd_iscan_free_buf(dhdp, 0);
  1440. dhd_iscan_request(dhdp, WL_SCAN_ACTION_ABORT);
  1441. dhd_ind_scan_confirm(dhdp, FALSE);
  1442. goto fail;
  1443. }
  1444. dhd_iscan_lock();
  1445. memset(iscan_cur->iscan_buf, 0, WLC_IW_ISCAN_MAXLEN);
  1446. list_buf = (wl_iscan_results_t*)iscan_cur->iscan_buf;
  1447. results = &list_buf->results;
  1448. results->buflen = WL_ISCAN_RESULTS_FIXED_SIZE;
  1449. results->version = 0;
  1450. results->count = 0;
  1451. memset(&list, 0, sizeof(list));
  1452. list.results.buflen = htod32(WLC_IW_ISCAN_MAXLEN);
  1453. bcm_mkiovar("iscanresults", (char *)&list, WL_ISCAN_RESULTS_FIXED_SIZE,
  1454. iscan_cur->iscan_buf, WLC_IW_ISCAN_MAXLEN);
  1455. ioctl.cmd = WLC_GET_VAR;
  1456. ioctl.set = FALSE;
  1457. rc = dhd_wl_ioctl(dhd, 0, &ioctl, iscan_cur->iscan_buf, WLC_IW_ISCAN_MAXLEN);
  1458. results->buflen = dtoh32(results->buflen);
  1459. results->version = dtoh32(results->version);
  1460. *scan_count = results->count = dtoh32(results->count);
  1461. status = dtoh32(list_buf->status);
  1462. DHD_ISCAN(("%s: Got %d resuls status = (%x)\n", __FUNCTION__, results->count, status));
  1463. dhd_iscan_unlock();
  1464. if (!(*scan_count)) {
  1465. /* TODO: race condition when FLUSH already called */
  1466. dhd_iscan_free_buf(dhdp, 0);
  1467. }
  1468. fail:
  1469. return status;
  1470. }
  1471. #endif /* SIMPLE_ISCAN */
  1472. /*
  1473. * returns = TRUE if associated, FALSE if not associated
  1474. */
  1475. bool dhd_is_associated(dhd_pub_t *dhd, void *bss_buf)
  1476. {
  1477. char bssid[6], zbuf[6];
  1478. int ret = -1;
  1479. bzero(bssid, 6);
  1480. bzero(zbuf, 6);
  1481. ret = dhd_wl_ioctl_cmd(dhd, WLC_GET_BSSID, (char *)&bssid, ETHER_ADDR_LEN, FALSE, 0);
  1482. DHD_TRACE((" %s WLC_GET_BSSID ioctl res = %d\n", __FUNCTION__, ret));
  1483. if (ret == BCME_NOTASSOCIATED) {
  1484. DHD_TRACE(("%s: not associated! res:%d\n", __FUNCTION__, ret));
  1485. }
  1486. if (ret < 0)
  1487. return FALSE;
  1488. if ((memcmp(bssid, zbuf, ETHER_ADDR_LEN) != 0)) {
  1489. /* STA is assocoated BSSID is non zero */
  1490. if (bss_buf) {
  1491. /* return bss if caller provided buf */
  1492. memcpy(bss_buf, bssid, ETHER_ADDR_LEN);
  1493. }
  1494. return TRUE;
  1495. } else {
  1496. DHD_TRACE(("%s: WLC_GET_BSSID ioctl returned zero bssid\n", __FUNCTION__));
  1497. return FALSE;
  1498. }
  1499. }
  1500. /* Function to estimate possible DTIM_SKIP value */
  1501. int
  1502. dhd_get_dtim_skip(dhd_pub_t *dhd)
  1503. {
  1504. int bcn_li_dtim;
  1505. int ret = -1;
  1506. int dtim_assoc = 0;
  1507. if ((dhd->dtim_skip == 0) || (dhd->dtim_skip == 1))
  1508. bcn_li_dtim = 3;
  1509. else
  1510. bcn_li_dtim = dhd->dtim_skip;
  1511. /* Check if associated */
  1512. if (dhd_is_associated(dhd, NULL) == FALSE) {
  1513. DHD_TRACE(("%s NOT assoc ret %d\n", __FUNCTION__, ret));
  1514. goto exit;
  1515. }
  1516. /* if assoc grab ap's dtim value */
  1517. if ((ret = dhd_wl_ioctl_cmd(dhd, WLC_GET_DTIMPRD,
  1518. &dtim_assoc, sizeof(dtim_assoc), FALSE, 0)) < 0) {
  1519. DHD_ERROR(("%s failed code %d\n", __FUNCTION__, ret));
  1520. goto exit;
  1521. }
  1522. DHD_ERROR(("%s bcn_li_dtim=%d DTIM=%d Listen=%d\n",
  1523. __FUNCTION__, bcn_li_dtim, dtim_assoc, LISTEN_INTERVAL));
  1524. /* if not assocated just eixt */
  1525. if (dtim_assoc == 0) {
  1526. goto exit;
  1527. }
  1528. /* check if sta listen interval fits into AP dtim */
  1529. if (dtim_assoc > LISTEN_INTERVAL) {
  1530. /* AP DTIM to big for our Listen Interval : no dtim skiping */
  1531. bcn_li_dtim = 1;
  1532. DHD_ERROR(("%s DTIM=%d > Listen=%d : too big ...\n",
  1533. __FUNCTION__, dtim_assoc, LISTEN_INTERVAL));
  1534. goto exit;
  1535. }
  1536. if ((bcn_li_dtim * dtim_assoc) > LISTEN_INTERVAL) {
  1537. /* Round up dtim_skip to fit into STAs Listen Interval */
  1538. bcn_li_dtim = (int)(LISTEN_INTERVAL / dtim_assoc);
  1539. DHD_TRACE(("%s agjust dtim_skip as %d\n", __FUNCTION__, bcn_li_dtim));
  1540. }
  1541. exit:
  1542. return bcn_li_dtim;
  1543. }
  1544. /* Check if HostAPD or WFD mode setup */
  1545. bool dhd_check_ap_wfd_mode_set(dhd_pub_t *dhd)
  1546. {
  1547. #ifdef WL_CFG80211
  1548. #ifndef WL_ENABLE_P2P_IF
  1549. /* To be back compatble with ICS MR1 release where p2p interface
  1550. * disable but wlan0 used for p2p
  1551. */
  1552. if (((dhd->op_mode & HOSTAPD_MASK) == HOSTAPD_MASK) ||
  1553. ((dhd->op_mode & WFD_MASK) == WFD_MASK)) {
  1554. return TRUE;
  1555. }
  1556. else
  1557. #else
  1558. /* concurent mode with p2p interface for wfd and wlan0 for sta */
  1559. if (((dhd->op_mode & P2P_GO_ENABLED) == P2P_GO_ENABLED) ||
  1560. ((dhd->op_mode & P2P_GC_ENABLED) == P2P_GC_ENABLED)) {
  1561. DHD_ERROR(("%s P2P enabled for mode=%d\n", __FUNCTION__, dhd->op_mode));
  1562. return TRUE;
  1563. }
  1564. else
  1565. #endif /* WL_ENABLE_P2P_IF */
  1566. #endif /* WL_CFG80211 */
  1567. return FALSE;
  1568. }
  1569. #if defined(PNO_SUPPORT)
  1570. int
  1571. dhd_pno_clean(dhd_pub_t *dhd)
  1572. {
  1573. char iovbuf[128];
  1574. int pfn_enabled = 0;
  1575. int iov_len = 0;
  1576. int ret;
  1577. /* Disable pfn */
  1578. iov_len = bcm_mkiovar("pfn", (char *)&pfn_enabled, 4, iovbuf, sizeof(iovbuf));
  1579. if ((ret = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf, sizeof(iovbuf), TRUE, 0)) >= 0) {
  1580. /* clear pfn */
  1581. iov_len = bcm_mkiovar("pfnclear", 0, 0, iovbuf, sizeof(iovbuf));
  1582. if (iov_len) {
  1583. if ((ret = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf,
  1584. iov_len, TRUE, 0)) < 0) {
  1585. DHD_ERROR(("%s failed code %d\n", __FUNCTION__, ret));
  1586. }
  1587. }
  1588. else {
  1589. ret = -1;
  1590. DHD_ERROR(("%s failed code %d\n", __FUNCTION__, iov_len));
  1591. }
  1592. }
  1593. else
  1594. DHD_ERROR(("%s failed code %d\n", __FUNCTION__, ret));
  1595. return ret;
  1596. }
  1597. int
  1598. dhd_pno_enable(dhd_pub_t *dhd, int pfn_enabled)
  1599. {
  1600. char iovbuf[128];
  1601. int ret = -1;
  1602. if ((!dhd) && ((pfn_enabled != 0) || (pfn_enabled != 1))) {
  1603. DHD_ERROR(("%s error exit\n", __FUNCTION__));
  1604. return ret;
  1605. }
  1606. if (dhd_check_ap_wfd_mode_set(dhd) == TRUE)
  1607. return (ret);
  1608. memset(iovbuf, 0, sizeof(iovbuf));
  1609. if ((pfn_enabled) && (dhd_is_associated(dhd, NULL) == TRUE)) {
  1610. DHD_ERROR(("%s pno is NOT enable : called in assoc mode , ignore\n", __FUNCTION__));
  1611. return ret;
  1612. }
  1613. /* Enable/disable PNO */
  1614. if ((ret = bcm_mkiovar("pfn", (char *)&pfn_enabled, 4, iovbuf, sizeof(iovbuf))) > 0) {
  1615. if ((ret = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR,
  1616. iovbuf, sizeof(iovbuf), TRUE, 0)) < 0) {
  1617. DHD_ERROR(("%s failed for error=%d\n", __FUNCTION__, ret));
  1618. return ret;
  1619. }
  1620. else {
  1621. dhd->pno_enable = pfn_enabled;
  1622. DHD_TRACE(("%s set pno as %s\n",
  1623. __FUNCTION__, dhd->pno_enable ? "Enable" : "Disable"));
  1624. }
  1625. }
  1626. else DHD_ERROR(("%s failed err=%d\n", __FUNCTION__, ret));
  1627. return ret;
  1628. }
  1629. /* Function to execute combined scan */
  1630. int
  1631. dhd_pno_set(dhd_pub_t *dhd, wlc_ssid_t* ssids_local, int nssid, ushort scan_fr,
  1632. int pno_repeat, int pno_freq_expo_max)
  1633. {
  1634. int err = -1;
  1635. char iovbuf[128];
  1636. int k, i;
  1637. wl_pfn_param_t pfn_param;
  1638. wl_pfn_t pfn_element;
  1639. uint len = 0;
  1640. DHD_TRACE(("%s nssid=%d nchan=%d\n", __FUNCTION__, nssid, scan_fr));
  1641. if ((!dhd) || (!ssids_local)) {
  1642. DHD_ERROR(("%s error exit(%s %s)\n", __FUNCTION__,
  1643. (!dhd)?"dhd is null":"", (!ssids_local)?"ssid is null":""));
  1644. err = -1;
  1645. return err;
  1646. }
  1647. if (dhd_check_ap_wfd_mode_set(dhd) == TRUE)
  1648. return (err);
  1649. /* Check for broadcast ssid */
  1650. for (k = 0; k < nssid; k++) {
  1651. if (!ssids_local[k].SSID_len) {
  1652. DHD_ERROR(("%d: Broadcast SSID is ilegal for PNO setting\n", k));
  1653. return err;
  1654. }
  1655. }
  1656. /* #define PNO_DUMP 1 */
  1657. #ifdef PNO_DUMP
  1658. {
  1659. int j;
  1660. for (j = 0; j < nssid; j++) {
  1661. DHD_ERROR(("%d: scan for %s size =%d\n", j,
  1662. ssids_local[j].SSID, ssids_local[j].SSID_len));
  1663. }
  1664. }
  1665. #endif /* PNO_DUMP */
  1666. /* clean up everything */
  1667. if ((err = dhd_pno_clean(dhd)) < 0) {
  1668. DHD_ERROR(("%s failed error=%d\n", __FUNCTION__, err));
  1669. return err;
  1670. }
  1671. memset(iovbuf, 0, sizeof(iovbuf));
  1672. memset(&pfn_param, 0, sizeof(pfn_param));
  1673. memset(&pfn_element, 0, sizeof(pfn_element));
  1674. /* set pfn parameters */
  1675. pfn_param.version = htod32(PFN_VERSION);
  1676. pfn_param.flags = htod16((PFN_LIST_ORDER << SORT_CRITERIA_BIT));
  1677. /* check and set extra pno params */
  1678. if ((pno_repeat != 0) || (pno_freq_expo_max != 0)) {
  1679. pfn_param.flags |= htod16(ENABLE << ENABLE_ADAPTSCAN_BIT);
  1680. pfn_param.repeat = (uchar) (pno_repeat);
  1681. pfn_param.exp = (uchar) (pno_freq_expo_max);
  1682. }
  1683. /* set up pno scan fr */
  1684. if (scan_fr != 0)
  1685. pfn_param.scan_freq = htod32(scan_fr);
  1686. if (pfn_param.scan_freq > PNO_SCAN_MAX_FW_SEC) {
  1687. DHD_ERROR(("%s pno freq above %d sec\n", __FUNCTION__, PNO_SCAN_MAX_FW_SEC));
  1688. return err;
  1689. }
  1690. if (pfn_param.scan_freq < PNO_SCAN_MIN_FW_SEC) {
  1691. DHD_ERROR(("%s pno freq less %d sec\n", __FUNCTION__, PNO_SCAN_MIN_FW_SEC));
  1692. return err;
  1693. }
  1694. len = bcm_mkiovar("pfn_set", (char *)&pfn_param, sizeof(pfn_param), iovbuf, sizeof(iovbuf));
  1695. if ((err = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf, len, TRUE, 0)) < 0) {
  1696. DHD_ERROR(("%s pfn_set failed for error=%d\n",
  1697. __FUNCTION__, err));
  1698. return err;
  1699. }
  1700. /* set all pfn ssid */
  1701. for (i = 0; i < nssid; i++) {
  1702. pfn_element.infra = htod32(DOT11_BSSTYPE_INFRASTRUCTURE);
  1703. pfn_element.auth = (DOT11_OPEN_SYSTEM);
  1704. pfn_element.wpa_auth = htod32(WPA_AUTH_PFN_ANY);
  1705. pfn_element.wsec = htod32(0);
  1706. pfn_element.infra = htod32(1);
  1707. pfn_element.flags = htod32(ENABLE << WL_PFN_HIDDEN_BIT);
  1708. memcpy((char *)pfn_element.ssid.SSID, ssids_local[i].SSID, ssids_local[i].SSID_len);
  1709. pfn_element.ssid.SSID_len = ssids_local[i].SSID_len;
  1710. if ((len =
  1711. bcm_mkiovar("pfn_add", (char *)&pfn_element,
  1712. sizeof(pfn_element), iovbuf, sizeof(iovbuf))) > 0) {
  1713. if ((err =
  1714. dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, iovbuf, len, TRUE, 0)) < 0) {
  1715. DHD_ERROR(("%s failed for i=%d error=%d\n",
  1716. __FUNCTION__, i, err));
  1717. return err;
  1718. }
  1719. else
  1720. DHD_TRACE(("%s set OK with PNO time=%d repeat=%d max_adjust=%d\n",
  1721. __FUNCTION__, pfn_param.scan_freq,
  1722. pfn_param.repeat, pfn_param.exp));
  1723. }
  1724. else DHD_ERROR(("%s failed err=%d\n", __FUNCTION__, err));
  1725. }
  1726. /* Enable PNO */
  1727. /* dhd_pno_enable(dhd, 1); */
  1728. return err;
  1729. }
  1730. int
  1731. dhd_pno_get_status(dhd_pub_t *dhd)
  1732. {
  1733. int ret = -1;
  1734. if (!dhd)
  1735. return ret;
  1736. else
  1737. return (dhd->pno_enable);
  1738. }
  1739. #endif /* OEM_ANDROID && PNO_SUPPORT */
  1740. #if defined(KEEP_ALIVE)
  1741. int dhd_keep_alive_onoff(dhd_pub_t *dhd)
  1742. {
  1743. char buf[256];
  1744. const char *str;
  1745. wl_mkeep_alive_pkt_t mkeep_alive_pkt;
  1746. wl_mkeep_alive_pkt_t *mkeep_alive_pktp;
  1747. int buf_len;
  1748. int str_len;
  1749. int res = -1;
  1750. if (dhd_check_ap_wfd_mode_set(dhd) == TRUE)
  1751. return (res);
  1752. DHD_TRACE(("%s execution\n", __FUNCTION__));
  1753. str = "mkeep_alive";
  1754. str_len = strlen(str);
  1755. strncpy(buf, str, str_len);
  1756. buf[ str_len ] = '\0';
  1757. mkeep_alive_pktp = (wl_mkeep_alive_pkt_t *) (buf + str_len + 1);
  1758. mkeep_alive_pkt.period_msec = KEEP_ALIVE_PERIOD;
  1759. buf_len = str_len + 1;
  1760. mkeep_alive_pkt.version = htod16(WL_MKEEP_ALIVE_VERSION);
  1761. mkeep_alive_pkt.length = htod16(WL_MKEEP_ALIVE_FIXED_LEN);
  1762. /* Setup keep alive zero for null packet generation */
  1763. mkeep_alive_pkt.keep_alive_id = 0;
  1764. mkeep_alive_pkt.len_bytes = 0;
  1765. buf_len += WL_MKEEP_ALIVE_FIXED_LEN;
  1766. /* Keep-alive attributes are set in local variable (mkeep_alive_pkt), and
  1767. * then memcpy'ed into buffer (mkeep_alive_pktp) since there is no
  1768. * guarantee that the buffer is properly aligned.
  1769. */
  1770. memcpy((char *)mkeep_alive_pktp, &mkeep_alive_pkt, WL_MKEEP_ALIVE_FIXED_LEN);
  1771. res = dhd_wl_ioctl_cmd(dhd, WLC_SET_VAR, buf, buf_len, TRUE, 0);
  1772. return res;
  1773. }
  1774. #endif /* defined(KEEP_ALIVE) */
  1775. /* Android ComboSCAN support */
  1776. /*
  1777. * data parsing from ComboScan tlv list
  1778. */
  1779. int
  1780. wl_iw_parse_data_tlv(char** list_str, void *dst, int dst_size, const char token,
  1781. int input_size, int *bytes_left)
  1782. {
  1783. char* str = *list_str;
  1784. uint16 short_temp;
  1785. uint32 int_temp;
  1786. if ((list_str == NULL) || (*list_str == NULL) ||(bytes_left == NULL) || (*bytes_left < 0)) {
  1787. DHD_ERROR(("%s error paramters\n", __FUNCTION__));
  1788. return -1;
  1789. }
  1790. /* Clean all dest bytes */
  1791. memset(dst, 0, dst_size);
  1792. while (*bytes_left > 0) {
  1793. if (str[0] != token) {
  1794. DHD_TRACE(("%s NOT Type=%d get=%d left_parse=%d \n",
  1795. __FUNCTION__, token, str[0], *bytes_left));
  1796. return -1;
  1797. }
  1798. *bytes_left -= 1;
  1799. str += 1;
  1800. if (input_size == 1) {
  1801. memcpy(dst, str, input_size);
  1802. }
  1803. else if (input_size == 2) {
  1804. memcpy(dst, (char *)htod16(memcpy(&short_temp, str, input_size)),
  1805. input_size);
  1806. }
  1807. else if (input_size == 4) {
  1808. memcpy(dst, (char *)htod32(memcpy(&int_temp, str, input_size)),
  1809. input_size);
  1810. }
  1811. *bytes_left -= input_size;
  1812. str += input_size;
  1813. *list_str = str;
  1814. return 1;
  1815. }
  1816. return 1;
  1817. }
  1818. /*
  1819. * channel list parsing from cscan tlv list
  1820. */
  1821. int
  1822. wl_iw_parse_channel_list_tlv(char** list_str, uint16* channel_list,
  1823. int channel_num, int *bytes_left)
  1824. {
  1825. char* str = *list_str;
  1826. int idx = 0;
  1827. if ((list_str == NULL) || (*list_str == NULL) ||(bytes_left == NULL) || (*bytes_left < 0)) {
  1828. DHD_ERROR(("%s error paramters\n", __FUNCTION__));
  1829. return -1;
  1830. }
  1831. while (*bytes_left > 0) {
  1832. if (str[0] != CSCAN_TLV_TYPE_CHANNEL_IE) {
  1833. *list_str = str;
  1834. DHD_TRACE(("End channel=%d left_parse=%d %d\n", idx, *bytes_left, str[0]));
  1835. return idx;
  1836. }
  1837. /* Get proper CSCAN_TLV_TYPE_CHANNEL_IE */
  1838. *bytes_left -= 1;
  1839. str += 1;
  1840. if (str[0] == 0) {
  1841. /* All channels */
  1842. channel_list[idx] = 0x0;
  1843. }
  1844. else {
  1845. channel_list[idx] = (uint16)str[0];
  1846. DHD_TRACE(("%s channel=%d \n", __FUNCTION__, channel_list[idx]));
  1847. }
  1848. *bytes_left -= 1;
  1849. str += 1;
  1850. if (idx++ > 255) {
  1851. DHD_ERROR(("%s Too many channels \n", __FUNCTION__));
  1852. return -1;
  1853. }
  1854. }
  1855. *list_str = str;
  1856. return idx;
  1857. }
  1858. /*
  1859. * SSIDs list parsing from cscan tlv list
  1860. */
  1861. int
  1862. wl_iw_parse_ssid_list_tlv(char** list_str, wlc_ssid_t* ssid, int max, int *bytes_left)
  1863. {
  1864. char* str;
  1865. int idx = 0;
  1866. if ((list_str == NULL) || (*list_str == NULL) || (*bytes_left < 0)) {
  1867. DHD_ERROR(("%s error paramters\n", __FUNCTION__));
  1868. return -1;
  1869. }
  1870. str = *list_str;
  1871. while (*bytes_left > 0) {
  1872. if (str[0] != CSCAN_TLV_TYPE_SSID_IE) {
  1873. *list_str = str;
  1874. DHD_TRACE(("nssid=%d left_parse=%d %d\n", idx, *bytes_left, str[0]));
  1875. return idx;
  1876. }
  1877. /* Get proper CSCAN_TLV_TYPE_SSID_IE */
  1878. *bytes_left -= 1;
  1879. str += 1;
  1880. if (str[0] == 0) {
  1881. /* Broadcast SSID */
  1882. ssid[idx].SSID_len = 0;
  1883. memset((char*)ssid[idx].SSID, 0x0, DOT11_MAX_SSID_LEN);
  1884. *bytes_left -= 1;
  1885. str += 1;
  1886. DHD_TRACE(("BROADCAST SCAN left=%d\n", *bytes_left));
  1887. }
  1888. else if (str[0] <= DOT11_MAX_SSID_LEN) {
  1889. /* Get proper SSID size */
  1890. ssid[idx].SSID_len = str[0];
  1891. *bytes_left -= 1;
  1892. str += 1;
  1893. /* Get SSID */
  1894. if (ssid[idx].SSID_len > *bytes_left) {
  1895. DHD_ERROR(("%s out of memory range len=%d but left=%d\n",
  1896. __FUNCTION__, ssid[idx].SSID_len, *bytes_left));
  1897. return -1;
  1898. }
  1899. memcpy((char*)ssid[idx].SSID, str, ssid[idx].SSID_len);
  1900. *bytes_left -= ssid[idx].SSID_len;
  1901. str += ssid[idx].SSID_len;
  1902. DHD_TRACE(("%s :size=%d left=%d\n",
  1903. (char*)ssid[idx].SSID, ssid[idx].SSID_len, *bytes_left));
  1904. }
  1905. else {
  1906. DHD_ERROR(("### SSID size more that %d\n", str[0]));
  1907. return -1;
  1908. }
  1909. if (idx++ > max) {
  1910. DHD_ERROR(("%s number of SSIDs more that %d\n", __FUNCTION__, idx));
  1911. return -1;
  1912. }
  1913. }
  1914. *list_str = str;
  1915. return idx;
  1916. }
  1917. /* Parse a comma-separated list from list_str into ssid array, starting
  1918. * at index idx. Max specifies size of the ssid array. Parses ssids
  1919. * and returns updated idx; if idx >= max not all fit, the excess have
  1920. * not been copied. Returns -1 on empty string, or on ssid too long.
  1921. */
  1922. int
  1923. wl_iw_parse_ssid_list(char** list_str, wlc_ssid_t* ssid, int idx, int max)
  1924. {
  1925. char* str, *ptr;
  1926. if ((list_str == NULL) || (*list_str == NULL))
  1927. return -1;
  1928. for (str = *list_str; str != NULL; str = ptr) {
  1929. /* check for next TAG */
  1930. if (!strncmp(str, GET_CHANNEL, strlen(GET_CHANNEL))) {
  1931. *list_str = str + strlen(GET_CHANNEL);
  1932. return idx;
  1933. }
  1934. if ((ptr = strchr(str, ',')) != NULL) {
  1935. *ptr++ = '\0';
  1936. }
  1937. if (strlen(str) > DOT11_MAX_SSID_LEN) {
  1938. DHD_ERROR(("ssid <%s> exceeds %d\n", str, DOT11_MAX_SSID_LEN));
  1939. return -1;
  1940. }
  1941. if (strlen(str) == 0)
  1942. ssid[idx].SSID_len = 0;
  1943. if (idx < max) {
  1944. bcm_strcpy_s((char*)ssid[idx].SSID, sizeof(ssid[idx].SSID), str);
  1945. ssid[idx].SSID_len = strlen(str);
  1946. }
  1947. idx++;
  1948. }
  1949. return idx;
  1950. }
  1951. /*
  1952. * Parse channel list from iwpriv CSCAN
  1953. */
  1954. int
  1955. wl_iw_parse_channel_list(char** list_str, uint16* channel_list, int channel_num)
  1956. {
  1957. int num;
  1958. int val;
  1959. char* str;
  1960. char* endptr = NULL;
  1961. if ((list_str == NULL)||(*list_str == NULL))
  1962. return -1;
  1963. str = *list_str;
  1964. num = 0;
  1965. while (strncmp(str, GET_NPROBE, strlen(GET_NPROBE))) {
  1966. val = (int)strtoul(str, &endptr, 0);
  1967. if (endptr == str) {
  1968. printf("could not parse channel number starting at"
  1969. " substring \"%s\" in list:\n%s\n",
  1970. str, *list_str);
  1971. return -1;
  1972. }
  1973. str = endptr + strspn(endptr, " ,");
  1974. if (num == channel_num) {
  1975. DHD_ERROR(("too many channels (more than %d) in channel list:\n%s\n",
  1976. channel_num, *list_str));
  1977. return -1;
  1978. }
  1979. channel_list[num++] = (uint16)val;
  1980. }
  1981. *list_str = str;
  1982. return num;
  1983. }