target_if_spectral.h 63 KB

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  1. /*
  2. * Copyright (c) 2011,2017-2019 The Linux Foundation. All rights reserved.
  3. *
  4. *
  5. * Permission to use, copy, modify, and/or distribute this software for
  6. * any purpose with or without fee is hereby granted, provided that the
  7. * above copyright notice and this permission notice appear in all
  8. * copies.
  9. *
  10. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
  11. * WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
  12. * WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
  13. * AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
  14. * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
  15. * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
  16. * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
  17. * PERFORMANCE OF THIS SOFTWARE.
  18. */
  19. #ifndef _TARGET_IF_SPECTRAL_H_
  20. #define _TARGET_IF_SPECTRAL_H_
  21. #include <wlan_objmgr_cmn.h>
  22. #include <wlan_objmgr_psoc_obj.h>
  23. #include <wlan_objmgr_pdev_obj.h>
  24. #include <wlan_objmgr_vdev_obj.h>
  25. #include <qdf_lock.h>
  26. #include <wlan_spectral_public_structs.h>
  27. #include <reg_services_public_struct.h>
  28. #ifdef DIRECT_BUF_RX_ENABLE
  29. #include <target_if_direct_buf_rx_api.h>
  30. #endif
  31. #ifdef WIN32
  32. #pragma pack(push, target_if_spectral, 1)
  33. #define __ATTRIB_PACK
  34. #else
  35. #ifndef __ATTRIB_PACK
  36. #define __ATTRIB_PACK __attribute__ ((packed))
  37. #endif
  38. #endif
  39. #include <spectral_defs_i.h>
  40. #ifndef SPECTRAL_USE_NL_BCAST
  41. #define SPECTRAL_USE_NL_BCAST (0)
  42. #endif
  43. #define STATUS_PASS 1
  44. #define STATUS_FAIL 0
  45. #undef spectral_dbg_line
  46. #define spectral_dbg_line() \
  47. spectral_debug("----------------------------------------------------")
  48. #undef spectral_ops_not_registered
  49. #define spectral_ops_not_registered(str) \
  50. spectral_info("SPECTRAL : %s not registered\n", (str))
  51. #undef not_yet_implemented
  52. #define not_yet_implemented() \
  53. spectral_info("SPECTRAL : %s : %d Not yet implemented\n", \
  54. __func__, __LINE__)
  55. #define SPECTRAL_HT20_NUM_BINS 56
  56. #define SPECTRAL_HT20_FFT_LEN 56
  57. #define SPECTRAL_HT20_DC_INDEX (SPECTRAL_HT20_FFT_LEN / 2)
  58. #define SPECTRAL_HT20_DATA_LEN 60
  59. #define SPECTRAL_HT20_TOTAL_DATA_LEN (SPECTRAL_HT20_DATA_LEN + 3)
  60. #define SPECTRAL_HT40_TOTAL_NUM_BINS 128
  61. #define SPECTRAL_HT40_DATA_LEN 135
  62. #define SPECTRAL_HT40_TOTAL_DATA_LEN (SPECTRAL_HT40_DATA_LEN + 3)
  63. #define SPECTRAL_HT40_FFT_LEN 128
  64. #define SPECTRAL_HT40_DC_INDEX (SPECTRAL_HT40_FFT_LEN / 2)
  65. /*
  66. * Used for the SWAR to obtain approximate combined rssi
  67. * in secondary 80Mhz segment
  68. */
  69. #define OFFSET_CH_WIDTH_20 65
  70. #define OFFSET_CH_WIDTH_40 62
  71. #define OFFSET_CH_WIDTH_80 56
  72. #define OFFSET_CH_WIDTH_160 50
  73. /* Min and max for relevant Spectral params */
  74. #define SPECTRAL_PARAM_FFT_SIZE_MIN_GEN2 (1)
  75. #define SPECTRAL_PARAM_FFT_SIZE_MAX_GEN2 (9)
  76. #define SPECTRAL_PARAM_FFT_SIZE_MIN_GEN3 (5)
  77. #define SPECTRAL_PARAM_FFT_SIZE_MAX_GEN3 (9)
  78. #define SPECTRAL_PARAM_RPT_MODE_MIN (0)
  79. #define SPECTRAL_PARAM_RPT_MODE_MAX (3)
  80. #ifdef BIG_ENDIAN_HOST
  81. #define SPECTRAL_MESSAGE_COPY_CHAR_ARRAY(destp, srcp, len) do { \
  82. int j; \
  83. uint32_t *src, *dest; \
  84. src = (uint32_t *)(srcp); \
  85. dest = (uint32_t *)(destp); \
  86. for (j = 0; j < roundup((len), sizeof(uint32_t)) / 4; j++) { \
  87. *(dest + j) = qdf_le32_to_cpu(*(src + j)); \
  88. } \
  89. } while (0)
  90. #else
  91. #define SPECTRAL_MESSAGE_COPY_CHAR_ARRAY(destp, srcp, len) \
  92. OS_MEMCPY((destp), (srcp), (len));
  93. #endif
  94. #define DUMMY_NF_VALUE (-123)
  95. /* 5 categories x (lower + upper) bands */
  96. #define MAX_INTERF 10
  97. #define HOST_MAX_ANTENNA 3
  98. /* Mask for time stamp from descriptor */
  99. #define SPECTRAL_TSMASK 0xFFFFFFFF
  100. #define SPECTRAL_SIGNATURE 0xdeadbeef
  101. /* START of spectral GEN II HW specific details */
  102. #define SPECTRAL_PHYERR_SIGNATURE_GEN2 0xbb
  103. #define TLV_TAG_SPECTRAL_SUMMARY_REPORT_GEN2 0xF9
  104. #define TLV_TAG_ADC_REPORT_GEN2 0xFA
  105. #define TLV_TAG_SEARCH_FFT_REPORT_GEN2 0xFB
  106. /**
  107. * enum spectral_160mhz_report_delivery_state - 160 MHz state machine states
  108. * @SPECTRAL_REPORT_WAIT_PRIMARY80: Wait for primary80 report
  109. * @SPECTRAL_REPORT_RX_PRIMARY80: Receive primary 80 report
  110. * @SPECTRAL_REPORT_WAIT_SECONDARY80: Wait for secondory 80 report
  111. * @SPECTRAL_REPORT_RX_SECONDARY80: Receive secondary 80 report
  112. */
  113. enum spectral_160mhz_report_delivery_state {
  114. SPECTRAL_REPORT_WAIT_PRIMARY80,
  115. SPECTRAL_REPORT_RX_PRIMARY80,
  116. SPECTRAL_REPORT_WAIT_SECONDARY80,
  117. SPECTRAL_REPORT_RX_SECONDARY80,
  118. };
  119. /**
  120. * enum spectral_detector_id - Spectral detector id
  121. * @SPECTRAL_DETECTOR_PRIMARY: Primary detector
  122. * @SPECTRAL_DETECTOR_SECONDARY: Secondary detector
  123. * @SPECTRAL_DETECTOR_AGILE: Agile detector
  124. * @SPECTRAL_DETECTOR_INVALID: Invalid detector
  125. */
  126. enum spectral_detector_id {
  127. SPECTRAL_DETECTOR_PRIMARY,
  128. SPECTRAL_DETECTOR_SECONDARY,
  129. SPECTRAL_DETECTOR_AGILE,
  130. SPECTRAL_DETECTOR_INVALID,
  131. };
  132. /**
  133. * struct spectral_search_fft_info_gen2 - spectral search fft report for gen2
  134. * @relpwr_db: Total bin power in db
  135. * @num_str_bins_ib: Number of strong bins
  136. * @base_pwr: Base power
  137. * @total_gain_info: Total gain
  138. * @fft_chn_idx: FFT chain on which report is originated
  139. * @avgpwr_db: Average power in db
  140. * @peak_mag: Peak power seen in the bins
  141. * @peak_inx: Index of bin holding peak power
  142. */
  143. struct spectral_search_fft_info_gen2 {
  144. uint32_t relpwr_db;
  145. uint32_t num_str_bins_ib;
  146. uint32_t base_pwr;
  147. uint32_t total_gain_info;
  148. uint32_t fft_chn_idx;
  149. uint32_t avgpwr_db;
  150. uint32_t peak_mag;
  151. int16_t peak_inx;
  152. };
  153. /*
  154. * XXX Check if we should be handling the endinness difference in some
  155. * other way opaque to the host
  156. */
  157. #ifdef BIG_ENDIAN_HOST
  158. /**
  159. * struct spectral_phyerr_tlv_gen2 - phyerr tlv info for big endian host
  160. * @signature: signature
  161. * @tag: tag
  162. * @length: length
  163. */
  164. struct spectral_phyerr_tlv_gen2 {
  165. uint8_t signature;
  166. uint8_t tag;
  167. uint16_t length;
  168. } __ATTRIB_PACK;
  169. #else
  170. /**
  171. * struct spectral_phyerr_tlv_gen2 - phyerr tlv info for little endian host
  172. * @length: length
  173. * @tag: tag
  174. * @signature: signature
  175. */
  176. struct spectral_phyerr_tlv_gen2 {
  177. uint16_t length;
  178. uint8_t tag;
  179. uint8_t signature;
  180. } __ATTRIB_PACK;
  181. #endif /* BIG_ENDIAN_HOST */
  182. /**
  183. * struct spectral_phyerr_hdr_gen2 - phyerr header for gen2 HW
  184. * @hdr_a: Header[0:31]
  185. * @hdr_b: Header[32:63]
  186. */
  187. struct spectral_phyerr_hdr_gen2 {
  188. uint32_t hdr_a;
  189. uint32_t hdr_b;
  190. };
  191. /*
  192. * Segment ID information for 80+80.
  193. *
  194. * If the HW micro-architecture specification extends this DWORD for other
  195. * purposes, then redefine+rename accordingly. For now, the specification
  196. * mentions only segment ID (though this doesn't require an entire DWORD)
  197. * without mention of any generic terminology for the DWORD, or any reservation.
  198. * We use nomenclature accordingly.
  199. */
  200. typedef uint32_t SPECTRAL_SEGID_INFO;
  201. /**
  202. * struct spectral_phyerr_fft_gen2 - fft info in phyerr event
  203. * @buf: fft report
  204. */
  205. struct spectral_phyerr_fft_gen2 {
  206. uint8_t buf[0];
  207. };
  208. /* END of spectral GEN II HW specific details */
  209. /* START of spectral GEN III HW specific details */
  210. #define get_bitfield(value, size, pos) \
  211. (((value) >> (pos)) & ((1 << (size)) - 1))
  212. #define unsigned_to_signed(value, width) \
  213. (((value) >= (1 << ((width) - 1))) ? \
  214. (value - (1 << (width))) : (value))
  215. #define SSCAN_REPORT_DETECTOR_ID_POS_GEN3 (29)
  216. #define SSCAN_REPORT_DETECTOR_ID_SIZE_GEN3 (2)
  217. #define SPECTRAL_PHYERR_SIGNATURE_GEN3 (0xFA)
  218. #define TLV_TAG_SPECTRAL_SUMMARY_REPORT_GEN3 (0x02)
  219. #define TLV_TAG_SEARCH_FFT_REPORT_GEN3 (0x03)
  220. #define SPECTRAL_PHYERR_TLVSIZE_GEN3 (4)
  221. #define PHYERR_HDR_SIG_POS \
  222. (offsetof(struct spectral_phyerr_fft_report_gen3, fft_hdr_sig))
  223. #define PHYERR_HDR_TAG_POS \
  224. (offsetof(struct spectral_phyerr_fft_report_gen3, fft_hdr_tag))
  225. #define SPECTRAL_FFT_BINS_POS \
  226. (offsetof(struct spectral_phyerr_fft_report_gen3, buf))
  227. /**
  228. * struct phyerr_info - spectral search fft report for gen3
  229. * @data: handle to phyerror buffer
  230. * @datalen: length of phyerror bufer
  231. * @p_rfqual: rf quality matrices
  232. * @p_chaninfo: pointer to chaninfo
  233. * @tsf64: 64 bit TSF
  234. * @acs_stats: acs stats
  235. */
  236. struct phyerr_info {
  237. uint8_t *data;
  238. uint32_t datalen;
  239. struct target_if_spectral_rfqual_info *p_rfqual;
  240. struct target_if_spectral_chan_info *p_chaninfo;
  241. uint64_t tsf64;
  242. struct target_if_spectral_acs_stats *acs_stats;
  243. };
  244. /**
  245. * struct spectral_search_fft_info_gen3 - spectral search fft report for gen3
  246. * @timestamp: Timestamp at which fft report was generated
  247. * @fft_detector_id: Which radio generated this report
  248. * @fft_num: The FFT count number. Set to 0 for short FFT.
  249. * @fft_radar_check: NA for spectral
  250. * @fft_peak_sidx: Index of bin with maximum power
  251. * @fft_chn_idx: Rx chain index
  252. * @fft_base_pwr_db: Base power in dB
  253. * @fft_total_gain_db: Total gain in dB
  254. * @fft_num_str_bins_ib: Number of strong bins in the report
  255. * @fft_peak_mag: Peak magnitude
  256. * @fft_avgpwr_db: Average power in dB
  257. * @fft_relpwr_db: Relative power in dB
  258. */
  259. struct spectral_search_fft_info_gen3 {
  260. uint32_t timestamp;
  261. uint32_t fft_detector_id;
  262. uint32_t fft_num;
  263. uint32_t fft_radar_check;
  264. int32_t fft_peak_sidx;
  265. uint32_t fft_chn_idx;
  266. uint32_t fft_base_pwr_db;
  267. uint32_t fft_total_gain_db;
  268. uint32_t fft_num_str_bins_ib;
  269. int32_t fft_peak_mag;
  270. uint32_t fft_avgpwr_db;
  271. uint32_t fft_relpwr_db;
  272. };
  273. /**
  274. * struct spectral_phyerr_sfftreport_gen3 - fft info in phyerr event
  275. * @fft_timestamp: Timestamp at which fft report was generated
  276. * @fft_hdr_sig: signature
  277. * @fft_hdr_tag: tag
  278. * @fft_hdr_length: length
  279. * @hdr_a: Header[0:31]
  280. * @hdr_b: Header[32:63]
  281. * @hdr_c: Header[64:95]
  282. * @resv: Header[96:127]
  283. * @buf: fft bins
  284. */
  285. struct spectral_phyerr_fft_report_gen3 {
  286. uint32_t fft_timestamp;
  287. #ifdef BIG_ENDIAN_HOST
  288. uint8_t fft_hdr_sig;
  289. uint8_t fft_hdr_tag;
  290. uint16_t fft_hdr_length;
  291. #else
  292. uint16_t fft_hdr_length;
  293. uint8_t fft_hdr_tag;
  294. uint8_t fft_hdr_sig;
  295. #endif /* BIG_ENDIAN_HOST */
  296. uint32_t hdr_a;
  297. uint32_t hdr_b;
  298. uint32_t hdr_c;
  299. uint32_t resv;
  300. uint8_t buf[0];
  301. } __ATTRIB_PACK;
  302. /**
  303. * struct sscan_report_fields_gen3 - Fields of spectral report
  304. * @sscan_agc_total_gain: The AGC total gain in DB.
  305. * @inband_pwr_db: The in-band power of the signal in 1/2 DB steps
  306. * @sscan_gainchange: This bit is set to 1 if a gainchange occurred during
  307. * the spectral scan FFT. Software may choose to
  308. * disregard the results.
  309. */
  310. struct sscan_report_fields_gen3 {
  311. uint8_t sscan_agc_total_gain;
  312. int16_t inband_pwr_db;
  313. uint8_t sscan_gainchange;
  314. };
  315. /**
  316. * struct spectral_sscan_report_gen3 - spectral report in phyerr event
  317. * @sscan_timestamp: Timestamp at which fft report was generated
  318. * @sscan_hdr_sig: signature
  319. * @sscan_hdr_tag: tag
  320. * @sscan_hdr_length: length
  321. * @hdr_a: Header[0:31]
  322. * @resv: Header[32:63]
  323. * @hdr_b: Header[64:95]
  324. * @resv: Header[96:127]
  325. */
  326. struct spectral_sscan_report_gen3 {
  327. u_int32_t sscan_timestamp;
  328. #ifdef BIG_ENDIAN_HOST
  329. u_int8_t sscan_hdr_sig;
  330. u_int8_t sscan_hdr_tag;
  331. u_int16_t sscan_hdr_length;
  332. #else
  333. u_int16_t sscan_hdr_length;
  334. u_int8_t sscan_hdr_tag;
  335. u_int8_t sscan_hdr_sig;
  336. #endif /* BIG_ENDIAN_HOST */
  337. u_int32_t hdr_a;
  338. u_int32_t res1;
  339. u_int32_t hdr_b;
  340. u_int32_t res2;
  341. } __ATTRIB_PACK;
  342. #ifdef DIRECT_BUF_RX_ENABLE
  343. /**
  344. * struct Spectral_report - spectral report
  345. * @data: Report buffer
  346. * @noisefloor: Noise floor values
  347. * @reset_delay: Time taken for warm reset in us
  348. */
  349. struct spectral_report {
  350. uint8_t *data;
  351. int32_t noisefloor[DBR_MAX_CHAINS];
  352. uint32_t reset_delay;
  353. };
  354. #endif
  355. /* END of spectral GEN III HW specific details */
  356. typedef signed char pwr_dbm;
  357. /**
  358. * enum spectral_gen - spectral hw generation
  359. * @SPECTRAL_GEN1 : spectral hw gen 1
  360. * @SPECTRAL_GEN2 : spectral hw gen 2
  361. * @SPECTRAL_GEN3 : spectral hw gen 3
  362. */
  363. enum spectral_gen {
  364. SPECTRAL_GEN1,
  365. SPECTRAL_GEN2,
  366. SPECTRAL_GEN3,
  367. };
  368. /**
  369. * enum spectral_fftbin_size_war - spectral fft bin size war
  370. * @SPECTRAL_FFTBIN_SIZE_NO_WAR : No WAR applicable for Spectral FFT bin size
  371. * @SPECTRAL_FFTBIN_SIZE_2BYTE_TO_1BYTE : Spectral FFT bin size: Retain only
  372. * least significant byte from 2 byte
  373. * FFT bin transferred by HW
  374. * @SPECTRAL_FFTBIN_SIZE_4BYTE_TO_1BYTE : Spectral FFT bin size: Retain only
  375. * least significant byte from 4 byte
  376. * FFT bin transferred by HW
  377. */
  378. enum spectral_fftbin_size_war {
  379. SPECTRAL_FFTBIN_SIZE_NO_WAR = 0,
  380. SPECTRAL_FFTBIN_SIZE_WAR_2BYTE_TO_1BYTE = 1,
  381. SPECTRAL_FFTBIN_SIZE_WAR_4BYTE_TO_1BYTE = 2,
  382. };
  383. #if ATH_PERF_PWR_OFFLOAD
  384. /**
  385. * enum target_if_spectral_info - Enumerations for specifying which spectral
  386. * information (among parameters and states)
  387. * is desired.
  388. * @TARGET_IF_SPECTRAL_INFO_ACTIVE: Indicated whether spectral is active
  389. * @TARGET_IF_SPECTRAL_INFO_ENABLED: Indicated whether spectral is enabled
  390. * @TARGET_IF_SPECTRAL_INFO_PARAMS: Config params
  391. */
  392. enum target_if_spectral_info {
  393. TARGET_IF_SPECTRAL_INFO_ACTIVE,
  394. TARGET_IF_SPECTRAL_INFO_ENABLED,
  395. TARGET_IF_SPECTRAL_INFO_PARAMS,
  396. };
  397. #endif /* ATH_PERF_PWR_OFFLOAD */
  398. /* forward declaration */
  399. struct target_if_spectral;
  400. /**
  401. * struct target_if_spectral_chan_info - Channel information
  402. * @center_freq1: center frequency 1 in MHz
  403. * @center_freq2: center frequency 2 in MHz -valid only for
  404. * 11ACVHT 80PLUS80 mode
  405. * @chan_width: channel width in MHz
  406. */
  407. struct target_if_spectral_chan_info {
  408. uint16_t center_freq1;
  409. uint16_t center_freq2;
  410. uint8_t chan_width;
  411. };
  412. /**
  413. * struct target_if_spectral_acs_stats - EACS stats from spectral samples
  414. * @nfc_ctl_rssi: Control chan rssi
  415. * @nfc_ext_rssi: Extension chan rssi
  416. * @ctrl_nf: Control chan Noise Floor
  417. * @ext_nf: Extension chan Noise Floor
  418. */
  419. struct target_if_spectral_acs_stats {
  420. int8_t nfc_ctl_rssi;
  421. int8_t nfc_ext_rssi;
  422. int8_t ctrl_nf;
  423. int8_t ext_nf;
  424. };
  425. /**
  426. * struct target_if_spectral_perchain_rssi_info - per chain rssi info
  427. * @rssi_pri20: Rssi of primary 20 Mhz
  428. * @rssi_sec20: Rssi of secondary 20 Mhz
  429. * @rssi_sec40: Rssi of secondary 40 Mhz
  430. * @rssi_sec80: Rssi of secondary 80 Mhz
  431. */
  432. struct target_if_spectral_perchain_rssi_info {
  433. int8_t rssi_pri20;
  434. int8_t rssi_sec20;
  435. int8_t rssi_sec40;
  436. int8_t rssi_sec80;
  437. };
  438. /**
  439. * struct target_if_spectral_rfqual_info - RF measurement information
  440. * @rssi_comb: RSSI Information
  441. * @pc_rssi_info: XXX : For now, we know we are getting information
  442. * for only 4 chains at max. For future extensions
  443. * use a define
  444. * @noise_floor: Noise floor information
  445. */
  446. struct target_if_spectral_rfqual_info {
  447. int8_t rssi_comb;
  448. struct target_if_spectral_perchain_rssi_info pc_rssi_info[4];
  449. int16_t noise_floor[4];
  450. };
  451. #define GET_TARGET_IF_SPECTRAL_OPS(spectral) \
  452. ((struct target_if_spectral_ops *)(&((spectral)->spectral_ops)))
  453. /**
  454. * struct target_if_spectral_ops - spectral low level ops table
  455. * @get_tsf64: Get 64 bit TSF value
  456. * @get_capability: Get capability info
  457. * @set_rxfilter: Set rx filter
  458. * @get_rxfilter: Get rx filter
  459. * @is_spectral_active: Check whether icm is active
  460. * @is_spectral_enabled: Check whether spectral is enabled
  461. * @start_spectral_scan: Start spectral scan
  462. * @stop_spectral_scan: Stop spectral scan
  463. * @get_extension_channel: Get extension channel
  464. * @get_ctl_noisefloor: Get control noise floor
  465. * @get_ext_noisefloor: Get extension noise floor
  466. * @configure_spectral: Set spectral configurations
  467. * @get_spectral_config: Get spectral configurations
  468. * @get_ent_spectral_mask: Get spectral mask
  469. * @get_mac_address: Get mac address
  470. * @get_current_channel: Get current channel
  471. * @reset_hw: Reset HW
  472. * @get_chain_noise_floor: Get Channel noise floor
  473. * @spectral_process_phyerr: Process phyerr event
  474. * @process_spectral_report: Process spectral report
  475. */
  476. struct target_if_spectral_ops {
  477. uint64_t (*get_tsf64)(void *arg);
  478. uint32_t (*get_capability)(
  479. void *arg, enum spectral_capability_type type);
  480. uint32_t (*set_rxfilter)(void *arg, int rxfilter);
  481. uint32_t (*get_rxfilter)(void *arg);
  482. uint32_t (*is_spectral_active)(void *arg,
  483. enum spectral_scan_mode smode);
  484. uint32_t (*is_spectral_enabled)(void *arg,
  485. enum spectral_scan_mode smode);
  486. uint32_t (*start_spectral_scan)(void *arg,
  487. enum spectral_scan_mode smode,
  488. enum spectral_cp_error_code *err);
  489. uint32_t (*stop_spectral_scan)(void *arg,
  490. enum spectral_scan_mode smode);
  491. uint32_t (*get_extension_channel)(void *arg);
  492. int8_t (*get_ctl_noisefloor)(void *arg);
  493. int8_t (*get_ext_noisefloor)(void *arg);
  494. uint32_t (*configure_spectral)(
  495. void *arg,
  496. struct spectral_config *params,
  497. enum spectral_scan_mode smode);
  498. uint32_t (*get_spectral_config)(
  499. void *arg,
  500. struct spectral_config *params,
  501. enum spectral_scan_mode smode);
  502. uint32_t (*get_ent_spectral_mask)(void *arg);
  503. uint32_t (*get_mac_address)(void *arg, char *addr);
  504. uint32_t (*get_current_channel)(void *arg);
  505. uint32_t (*reset_hw)(void *arg);
  506. uint32_t (*get_chain_noise_floor)(void *arg, int16_t *nf_buf);
  507. int (*spectral_process_phyerr)(struct target_if_spectral *spectral,
  508. uint8_t *data, uint32_t datalen,
  509. struct target_if_spectral_rfqual_info *p_rfqual,
  510. struct target_if_spectral_chan_info *p_chaninfo,
  511. uint64_t tsf64,
  512. struct target_if_spectral_acs_stats *acs_stats);
  513. int (*process_spectral_report)(struct wlan_objmgr_pdev *pdev,
  514. void *payload);
  515. };
  516. /**
  517. * struct target_if_spectral_stats - spectral stats info
  518. * @num_spectral_detects: Total num. of spectral detects
  519. * @total_phy_errors: Total number of phyerrors
  520. * @owl_phy_errors: Indicated phyerrors in old gen1 chipsets
  521. * @pri_phy_errors: Phyerrors in primary channel
  522. * @ext_phy_errors: Phyerrors in secondary channel
  523. * @dc_phy_errors: Phyerrors due to dc
  524. * @early_ext_phy_errors: Early secondary channel phyerrors
  525. * @bwinfo_errors: Bandwidth info errors
  526. * @datalen_discards: Invalid data length errors, seen in gen1 chipsets
  527. * @rssi_discards bw: Indicates reports dropped due to RSSI threshold
  528. * @last_reset_tstamp: Last reset time stamp
  529. */
  530. struct target_if_spectral_stats {
  531. uint32_t num_spectral_detects;
  532. uint32_t total_phy_errors;
  533. uint32_t owl_phy_errors;
  534. uint32_t pri_phy_errors;
  535. uint32_t ext_phy_errors;
  536. uint32_t dc_phy_errors;
  537. uint32_t early_ext_phy_errors;
  538. uint32_t bwinfo_errors;
  539. uint32_t datalen_discards;
  540. uint32_t rssi_discards;
  541. uint64_t last_reset_tstamp;
  542. };
  543. /**
  544. * struct target_if_spectral_event - spectral event structure
  545. * @se_ts: Original 15 bit recv timestamp
  546. * @se_full_ts: 64-bit full timestamp from interrupt time
  547. * @se_rssi: Rssi of spectral event
  548. * @se_bwinfo: Rssi of spectral event
  549. * @se_dur: Duration of spectral pulse
  550. * @se_chanindex: Channel of event
  551. * @se_list: List of spectral events
  552. */
  553. struct target_if_spectral_event {
  554. uint32_t se_ts;
  555. uint64_t se_full_ts;
  556. uint8_t se_rssi;
  557. uint8_t se_bwinfo;
  558. uint8_t se_dur;
  559. uint8_t se_chanindex;
  560. STAILQ_ENTRY(spectral_event) se_list;
  561. };
  562. /**
  563. * struct target_if_chain_noise_pwr_info - Noise power info for each channel
  564. * @rptcount: Count of reports in pwr array
  565. * @un_cal_nf: Uncalibrated noise floor
  566. * @factory_cal_nf: Noise floor as calibrated at the factory for module
  567. * @median_pwr: Median power (median of pwr array)
  568. * @pwr: Power reports
  569. */
  570. struct target_if_chain_noise_pwr_info {
  571. int rptcount;
  572. pwr_dbm un_cal_nf;
  573. pwr_dbm factory_cal_nf;
  574. pwr_dbm median_pwr;
  575. pwr_dbm pwr[];
  576. } __ATTRIB_PACK;
  577. /**
  578. * struct target_if_spectral_chan_stats - Channel information
  579. * @cycle_count: Cycle count
  580. * @channel_load: Channel load
  581. * @per: Period
  582. * @noisefloor: Noise floor
  583. * @comp_usablity: Computed usability
  584. * @maxregpower: Maximum allowed regulatary power
  585. * @comp_usablity_sec80: Computed usability of secondary 80 Mhz
  586. * @maxregpower_sec80: Max regulatory power in secondary 80 Mhz
  587. */
  588. struct target_if_spectral_chan_stats {
  589. int cycle_count;
  590. int channel_load;
  591. int per;
  592. int noisefloor;
  593. uint16_t comp_usablity;
  594. int8_t maxregpower;
  595. uint16_t comp_usablity_sec80;
  596. int8_t maxregpower_sec80;
  597. };
  598. #if ATH_PERF_PWR_OFFLOAD
  599. /**
  600. * struct target_if_spectral_cache - Cache used to minimize WMI operations
  601. * in offload architecture
  602. * @osc_spectral_enabled: Whether Spectral is enabled
  603. * @osc_spectral_active: Whether spectral is active
  604. * XXX: Ideally, we should NOT cache this
  605. * since the hardware can self clear the bit,
  606. * the firmware can possibly stop spectral due to
  607. * intermittent off-channel activity, etc
  608. * A WMI read command should be introduced to handle
  609. * this This will be discussed.
  610. * @osc_params: Spectral parameters
  611. * @osc_is_valid: Whether the cache is valid
  612. */
  613. struct target_if_spectral_cache {
  614. uint8_t osc_spectral_enabled;
  615. uint8_t osc_spectral_active;
  616. struct spectral_config osc_params;
  617. uint8_t osc_is_valid;
  618. };
  619. /**
  620. * struct target_if_spectral_param_state_info - Structure used to represent and
  621. * manage spectral information
  622. * (parameters and states)
  623. * @osps_lock: Lock to synchronize accesses to information
  624. * @osps_cache: Cacheable' information
  625. */
  626. struct target_if_spectral_param_state_info {
  627. qdf_spinlock_t osps_lock;
  628. struct target_if_spectral_cache osps_cache;
  629. /* XXX - Non-cacheable information goes here, in the future */
  630. };
  631. #endif /* ATH_PERF_PWR_OFFLOAD */
  632. struct vdev_spectral_configure_params;
  633. struct vdev_spectral_enable_params;
  634. /**
  635. * struct wmi_spectral_cmd_ops - structure used holding the operations
  636. * related to wmi commands on spectral parameters.
  637. * @wmi_spectral_configure_cmd_send: Configure Spectral parameters
  638. * @wmi_spectral_enable_cmd_send: Enable/Disable Spectral
  639. * @wmi_spectral_crash_inject: Inject FW crash
  640. */
  641. struct wmi_spectral_cmd_ops {
  642. QDF_STATUS (*wmi_spectral_configure_cmd_send)(
  643. wmi_unified_t wmi_hdl,
  644. struct vdev_spectral_configure_params *param);
  645. QDF_STATUS (*wmi_spectral_enable_cmd_send)(
  646. wmi_unified_t wmi_hdl,
  647. struct vdev_spectral_enable_params *param);
  648. QDF_STATUS(*wmi_spectral_crash_inject)(
  649. wmi_unified_t wmi_handle, struct crash_inject *param);
  650. };
  651. /**
  652. * struct target_if_spectral - main spectral structure
  653. * @pdev: Pointer to pdev
  654. * @spectral_ops: Target if internal Spectral low level operations table
  655. * @capability: Spectral capabilities structure
  656. * @spectral_lock: Lock used for internal Spectral operations
  657. * @spectral_curchan_radindex: Current channel spectral index
  658. * @spectral_extchan_radindex: Extension channel spectral index
  659. * @spectraldomain: Current Spectral domain
  660. * @spectral_proc_phyerr: Flags to process for PHY errors
  661. * @spectral_defaultparams: Default PHY params per Spectral stat
  662. * @spectral_stats: Spectral related stats
  663. * @events: Events structure
  664. * @sc_spectral_ext_chan_ok: Can spectral be detected on the extension channel?
  665. * @sc_spectral_combined_rssi_ok: Can use combined spectral RSSI?
  666. * @sc_spectral_20_40_mode: Is AP in 20-40 mode?
  667. * @sc_spectral_noise_pwr_cal: Noise power cal required?
  668. * @sc_spectral_non_edma: Is the spectral capable device Non-EDMA?
  669. * @upper_is_control: Upper segment is primary
  670. * @upper_is_extension: Upper segment is secondary
  671. * @lower_is_control: Lower segment is primary
  672. * @lower_is_extension: Lower segment is secondary
  673. * @sc_spectraltest_ieeechan: IEEE channel number to return to after a spectral
  674. * mute test
  675. * @spectral_numbins: Number of bins
  676. * @spectral_fft_len: FFT length
  677. * @spectral_data_len: Total phyerror report length
  678. * @lb_edge_extrabins: Number of extra bins on left band edge
  679. * @rb_edge_extrabins: Number of extra bins on right band edge
  680. * @spectral_max_index_offset: Max FFT index offset (20 MHz mode)
  681. * @spectral_upper_max_index_offset: Upper max FFT index offset (20/40 MHz mode)
  682. * @spectral_lower_max_index_offset: Lower max FFT index offset (20/40 MHz mode)
  683. * @spectral_dc_index: At which index DC is present
  684. * @send_single_packet: Deprecated
  685. * @spectral_sent_msg: Indicates whether we send report to upper layers
  686. * @params: Spectral parameters
  687. * @last_capture_time: Indicates timestamp of previouse report
  688. * @num_spectral_data: Number of Spectral samples received in current session
  689. * @total_spectral_data: Total number of Spectral samples received
  690. * @max_rssi: Maximum RSSI
  691. * @detects_control_channel: NA
  692. * @detects_extension_channel: NA
  693. * @detects_below_dc: NA
  694. * @detects_above_dc: NA
  695. * @sc_scanning: Indicates active wifi scan
  696. * @sc_spectral_scan: Indicates active specral scan
  697. * @sc_spectral_full_scan: Deprecated
  698. * @scan_start_tstamp: Deprecated
  699. * @last_tstamp: Deprecated
  700. * @first_tstamp: Deprecated
  701. * @spectral_samp_count: Deprecated
  702. * @sc_spectral_samp_count: Deprecated
  703. * @noise_pwr_reports_reqd: Number of noise power reports required
  704. * @noise_pwr_reports_recv: Number of noise power reports received
  705. * @noise_pwr_reports_lock: Lock used for Noise power report processing
  706. * @noise_pwr_chain_ctl: Noise power report - control channel
  707. * @noise_pwr_chain_ext: Noise power report - extension channel
  708. * @chaninfo: Channel statistics
  709. * @tsf64: Latest TSF Value
  710. * @param_info: Offload architecture Spectral parameter cache information
  711. * @ch_width: Indicates Channel Width 20/40/80/160 MHz with values 0, 1, 2, 3
  712. * respectively
  713. * @diag_stats: Diagnostic statistics
  714. * @is_160_format: Indicates whether information provided by HW is in altered
  715. * format for 802.11ac 160/80+80 MHz support (QCA9984 onwards)
  716. * @is_lb_edge_extrabins_format: Indicates whether information provided by
  717. * HW has 4 extra bins, at left band edge, for report mode 2
  718. * @is_rb_edge_extrabins_format: Indicates whether information provided
  719. * by HW has 4 extra bins, at right band edge, for report mode 2
  720. * @is_sec80_rssi_war_required: Indicates whether the software workaround is
  721. * required to obtain approximate combined RSSI for secondary 80Mhz segment
  722. * @simctx: Spectral Simulation context
  723. * @spectral_gen: Spectral hardware generation
  724. * @hdr_sig_exp: Expected signature in PHYERR TLV header, for the given hardware
  725. * generation
  726. * @tag_sscan_summary_exp: Expected Spectral Scan Summary tag in PHYERR TLV
  727. * header, for the given hardware generation
  728. * @tag_sscan_fft_exp: Expected Spectral Scan FFT report tag in PHYERR TLV
  729. * header, for the given hardware generation
  730. * @tlvhdr_size: Expected PHYERR TLV header size, for the given hardware
  731. * generation
  732. * @nl_cb: Netlink callbacks
  733. * @use_nl_bcast: Whether to use Netlink broadcast/unicast
  734. * @send_phy_data: Send data to the application layer for a particular msg type
  735. * @inband_fftbin_size_adj: Whether to carry out FFT bin size adjustment for
  736. * in-band report format. This would be required on some chipsets under the
  737. * following circumstances: In report mode 2 only the in-band bins are DMA'ed.
  738. * Scatter/gather is used. However, the HW generates all bins, not just in-band,
  739. * and reports the number of bins accordingly. The subsystem arranging for the
  740. * DMA cannot change this value. On such chipsets the adjustment required at the
  741. * host driver is to check if report format is 2, and if so halve the number of
  742. * bins reported to get the number actually DMA'ed.
  743. * @null_fftbin_adj: Whether to remove NULL FFT bins for report mode (1) in
  744. * which only summary of metrics for each completed FFT + spectral scan summary
  745. * report are to be provided. This would be required on some chipsets under the
  746. * following circumstances: In report mode 1, HW reports a length corresponding
  747. * to all bins, and provides bins with value 0. This is because the subsystem
  748. * arranging for the FFT information does not arrange for DMA of FFT bin values
  749. * (as expected), but cannot arrange for a smaller length to be reported by HW.
  750. * In these circumstances, the driver would have to disregard the NULL bins and
  751. * report a bin count of 0 to higher layers.
  752. * @last_fft_timestamp: last fft report timestamp
  753. * @timestamp_war_offset: Offset to be added to correct timestamp
  754. */
  755. struct target_if_spectral {
  756. struct wlan_objmgr_pdev *pdev_obj;
  757. struct target_if_spectral_ops spectral_ops;
  758. struct spectral_caps capability;
  759. qdf_spinlock_t spectral_lock;
  760. int16_t spectral_curchan_radindex;
  761. int16_t spectral_extchan_radindex;
  762. uint32_t spectraldomain;
  763. uint32_t spectral_proc_phyerr;
  764. struct spectral_config spectral_defaultparams;
  765. struct target_if_spectral_stats spectral_stats;
  766. struct target_if_spectral_event *events;
  767. unsigned int sc_spectral_ext_chan_ok:1,
  768. sc_spectral_combined_rssi_ok:1,
  769. sc_spectral_20_40_mode:1,
  770. sc_spectral_noise_pwr_cal:1,
  771. sc_spectral_non_edma:1;
  772. int upper_is_control;
  773. int upper_is_extension;
  774. int lower_is_control;
  775. int lower_is_extension;
  776. uint8_t sc_spectraltest_ieeechan;
  777. int spectral_numbins;
  778. int spectral_fft_len;
  779. int spectral_data_len;
  780. /*
  781. * For 11ac chipsets prior to AR900B version 2.0, a max of 512 bins are
  782. * delivered. However, there can be additional bins reported for
  783. * AR900B version 2.0 and QCA9984 as described next:
  784. *
  785. * AR900B version 2.0: An additional tone is processed on the right
  786. * hand side in order to facilitate detection of radar pulses out to
  787. * the extreme band-edge of the channel frequency. Since the HW design
  788. * processes four tones at a time, this requires one additional Dword
  789. * to be added to the search FFT report.
  790. *
  791. * QCA9984: When spectral_scan_rpt_mode = 2, i.e 2-dword summary +
  792. * 1x-oversampled bins (in-band) per FFT, then 8 more bins
  793. * (4 more on left side and 4 more on right side)are added.
  794. */
  795. int lb_edge_extrabins;
  796. int rb_edge_extrabins;
  797. int spectral_max_index_offset;
  798. int spectral_upper_max_index_offset;
  799. int spectral_lower_max_index_offset;
  800. int spectral_dc_index;
  801. int send_single_packet;
  802. int spectral_sent_msg;
  803. int classify_scan;
  804. qdf_timer_t classify_timer;
  805. struct spectral_config params[SPECTRAL_SCAN_MODE_MAX];
  806. bool params_valid[SPECTRAL_SCAN_MODE_MAX];
  807. struct spectral_classifier_params classifier_params;
  808. int last_capture_time;
  809. int num_spectral_data;
  810. int total_spectral_data;
  811. int max_rssi;
  812. int detects_control_channel;
  813. int detects_extension_channel;
  814. int detects_below_dc;
  815. int detects_above_dc;
  816. int sc_scanning;
  817. int sc_spectral_scan;
  818. int sc_spectral_full_scan;
  819. uint64_t scan_start_tstamp;
  820. uint32_t last_tstamp;
  821. uint32_t first_tstamp;
  822. uint32_t spectral_samp_count;
  823. uint32_t sc_spectral_samp_count;
  824. int noise_pwr_reports_reqd;
  825. int noise_pwr_reports_recv;
  826. qdf_spinlock_t noise_pwr_reports_lock;
  827. struct target_if_chain_noise_pwr_info
  828. *noise_pwr_chain_ctl[HOST_MAX_ANTENNA];
  829. struct target_if_chain_noise_pwr_info
  830. *noise_pwr_chain_ext[HOST_MAX_ANTENNA];
  831. uint64_t tsf64;
  832. #if ATH_PERF_PWR_OFFLOAD
  833. struct target_if_spectral_param_state_info
  834. param_info[SPECTRAL_SCAN_MODE_MAX];
  835. #endif
  836. uint32_t ch_width;
  837. struct spectral_diag_stats diag_stats;
  838. bool is_160_format;
  839. bool is_lb_edge_extrabins_format;
  840. bool is_rb_edge_extrabins_format;
  841. bool is_sec80_rssi_war_required;
  842. #ifdef QCA_SUPPORT_SPECTRAL_SIMULATION
  843. void *simctx;
  844. #endif
  845. enum spectral_gen spectral_gen;
  846. uint8_t hdr_sig_exp;
  847. uint8_t tag_sscan_summary_exp;
  848. uint8_t tag_sscan_fft_exp;
  849. uint8_t tlvhdr_size;
  850. struct wmi_spectral_cmd_ops param_wmi_cmd_ops;
  851. struct spectral_nl_cb nl_cb;
  852. bool use_nl_bcast;
  853. int (*send_phy_data)(struct wlan_objmgr_pdev *pdev,
  854. enum spectral_msg_type smsg_type);
  855. enum spectral_fftbin_size_war fftbin_size_war;
  856. u_int8_t inband_fftbin_size_adj;
  857. u_int8_t null_fftbin_adj;
  858. enum spectral_160mhz_report_delivery_state state_160mhz_delivery;
  859. void *spectral_report_cache;
  860. uint32_t last_fft_timestamp[SPECTRAL_SCAN_MODE_MAX];
  861. uint32_t timestamp_war_offset[SPECTRAL_SCAN_MODE_MAX];
  862. uint16_t fft_size_min;
  863. uint16_t fft_size_max;
  864. };
  865. /**
  866. * struct target_if_samp_msg_params - Spectral Analysis Messaging Protocol
  867. * data format
  868. * @rssi: RSSI (except for secondary 80 segment)
  869. * @rssi_sec80: RSSI for secondary 80 segment
  870. * @lower_rssi: RSSI of lower band
  871. * @upper_rssi: RSSI of upper band
  872. * @chain_ctl_rssi: RSSI for control channel, for all antennas
  873. * @chain_ext_rssi: RSSI for extension channel, for all antennas
  874. * @bwinfo: bandwidth info
  875. * @data_len: length of FFT data (except for secondary 80 segment)
  876. * @data_len_sec80: length of FFT data for secondary 80 segment
  877. * @tstamp: timestamp
  878. * @last_tstamp: last time stamp
  879. * @max_mag: maximum magnitude (except for secondary 80 segment)
  880. * @max_mag_sec80: maximum magnitude for secondary 80 segment
  881. * @max_index: index of max magnitude (except for secondary 80 segment)
  882. * @max_index_sec80: index of max magnitude for secondary 80 segment
  883. * @max_exp: max exp
  884. * @peak: peak frequency (obsolete)
  885. * @pwr_count: number of FFT bins (except for secondary 80 segment)
  886. * @pwr_count_sec80: number of FFT bins in secondary 80 segment
  887. * @nb_lower: This is deprecated
  888. * @nb_upper: This is deprecated
  889. * @max_upper_index: index of max mag in upper band
  890. * @max_lower_index: index of max mag in lower band
  891. * @bin_pwr_data: Contains FFT magnitudes (except for secondary 80 segment)
  892. * @bin_pwr_data_sec80: Contains FFT magnitudes for the secondary 80 segment
  893. * @freq: Center frequency of primary 20MHz channel in MHz
  894. * @vhtop_ch_freq_seg1: VHT operation first segment center frequency in MHz
  895. * @vhtop_ch_freq_seg2: VHT operation second segment center frequency in MHz
  896. * @freq_loading: spectral control duty cycles
  897. * @noise_floor: current noise floor (except for secondary 80 segment)
  898. * @noise_floor_sec80: current noise floor for secondary 80 segment
  899. * @interf_list: List of interfernce sources
  900. * @classifier_params: classifier parameters
  901. * @sc: classifier parameters
  902. */
  903. struct target_if_samp_msg_params {
  904. int8_t rssi;
  905. int8_t rssi_sec80;
  906. int8_t lower_rssi;
  907. int8_t upper_rssi;
  908. int8_t chain_ctl_rssi[HOST_MAX_ANTENNA];
  909. int8_t chain_ext_rssi[HOST_MAX_ANTENNA];
  910. uint16_t bwinfo;
  911. uint16_t datalen;
  912. uint16_t datalen_sec80;
  913. uint32_t tstamp;
  914. uint32_t last_tstamp;
  915. uint16_t max_mag;
  916. uint16_t max_mag_sec80;
  917. uint16_t max_index;
  918. uint16_t max_index_sec80;
  919. uint8_t max_exp;
  920. int peak;
  921. int pwr_count;
  922. int pwr_count_sec80;
  923. int8_t nb_lower;
  924. int8_t nb_upper;
  925. uint16_t max_lower_index;
  926. uint16_t max_upper_index;
  927. uint8_t *bin_pwr_data;
  928. uint8_t *bin_pwr_data_sec80;
  929. uint16_t freq;
  930. uint16_t vhtop_ch_freq_seg1;
  931. uint16_t vhtop_ch_freq_seg2;
  932. uint16_t freq_loading;
  933. int16_t noise_floor;
  934. int16_t noise_floor_sec80;
  935. struct interf_src_rsp interf_list;
  936. struct spectral_classifier_params classifier_params;
  937. struct ath_softc *sc;
  938. uint8_t agc_total_gain;
  939. uint8_t agc_total_gain_sec80;
  940. uint8_t gainchange;
  941. uint8_t gainchange_sec80;
  942. enum spectral_scan_mode smode;
  943. };
  944. #ifdef WLAN_CONV_SPECTRAL_ENABLE
  945. /**
  946. * target_if_spectral_dump_fft() - Dump Spectral FFT
  947. * @pfft: Pointer to Spectral Phyerr FFT
  948. * @fftlen: FFT length
  949. *
  950. * Return: Success or failure
  951. */
  952. int target_if_spectral_dump_fft(uint8_t *pfft, int fftlen);
  953. /**
  954. * target_if_dbg_print_samp_param() - Print contents of SAMP struct
  955. * @p: Pointer to SAMP message
  956. *
  957. * Return: Void
  958. */
  959. void target_if_dbg_print_samp_param(struct target_if_samp_msg_params *p);
  960. /**
  961. * target_if_get_offset_swar_sec80() - Get offset for SWAR according to
  962. * the channel width
  963. * @channel_width: Channel width
  964. *
  965. * Return: Offset for SWAR
  966. */
  967. uint32_t target_if_get_offset_swar_sec80(uint32_t channel_width);
  968. /**
  969. * target_if_sptrl_register_tx_ops() - Register Spectral target_if Tx Ops
  970. * @tx_ops: Tx Ops
  971. *
  972. * Return: void
  973. */
  974. void target_if_sptrl_register_tx_ops(struct wlan_lmac_if_tx_ops *tx_ops);
  975. /**
  976. * target_if_spectral_create_samp_msg() - Create the spectral samp message
  977. * @spectral : Pointer to spectral internal structure
  978. * @params : spectral samp message parameters
  979. *
  980. * API to create the spectral samp message
  981. *
  982. * Return: void
  983. */
  984. void target_if_spectral_create_samp_msg(
  985. struct target_if_spectral *spectral,
  986. struct target_if_samp_msg_params *params);
  987. /**
  988. * target_if_spectral_process_phyerr_gen3() - Process phyerror event for gen3
  989. * @pdev: Pointer to pdev object
  990. * @payload: Pointer to spectral report
  991. *
  992. * Process phyerror event for gen3
  993. *
  994. * Return: Success/Failure
  995. */
  996. int target_if_spectral_process_report_gen3(
  997. struct wlan_objmgr_pdev *pdev,
  998. void *buf);
  999. /**
  1000. * target_if_process_phyerr_gen2() - Process PHY Error for gen2
  1001. * @spectral: Pointer to Spectral object
  1002. * @data: Pointer to phyerror event buffer
  1003. * @datalen: Data length
  1004. * @p_rfqual: RF quality info
  1005. * @p_chaninfo: Channel info
  1006. * @tsf64: 64 bit tsf timestamp
  1007. * @acs_stats: ACS stats
  1008. *
  1009. * Process PHY Error for gen2
  1010. *
  1011. * Return: Success/Failure
  1012. */
  1013. int target_if_process_phyerr_gen2(
  1014. struct target_if_spectral *spectral,
  1015. uint8_t *data,
  1016. uint32_t datalen, struct target_if_spectral_rfqual_info *p_rfqual,
  1017. struct target_if_spectral_chan_info *p_chaninfo,
  1018. uint64_t tsf64,
  1019. struct target_if_spectral_acs_stats *acs_stats);
  1020. /**
  1021. * target_if_spectral_send_intf_found_msg() - Indicate to application layer that
  1022. * interference has been found
  1023. * @pdev: Pointer to pdev
  1024. * @cw_int: 1 if CW interference is found, 0 if WLAN interference is found
  1025. * @dcs_enabled: 1 if DCS is enabled, 0 if DCS is disabled
  1026. *
  1027. * Send message to application layer
  1028. * indicating that interference has been found
  1029. *
  1030. * Return: None
  1031. */
  1032. void target_if_spectral_send_intf_found_msg(
  1033. struct wlan_objmgr_pdev *pdev,
  1034. uint16_t cw_int, uint32_t dcs_enabled);
  1035. /**
  1036. * target_if_stop_spectral_scan() - Stop spectral scan
  1037. * @pdev: Pointer to pdev object
  1038. * @smode: Spectral scan mode
  1039. * @err: Pointer to error code
  1040. *
  1041. * API to stop the current on-going spectral scan
  1042. *
  1043. * Return: QDF_STATUS_SUCCESS in case of success, else QDF_STATUS_E_FAILURE
  1044. */
  1045. QDF_STATUS target_if_stop_spectral_scan(struct wlan_objmgr_pdev *pdev,
  1046. const enum spectral_scan_mode smode,
  1047. enum spectral_cp_error_code *err);
  1048. /**
  1049. * target_if_spectral_get_vdev() - Get pointer to vdev to be used for Spectral
  1050. * operations
  1051. * @spectral: Pointer to Spectral target_if internal private data
  1052. *
  1053. * Spectral operates on pdev. However, in order to retrieve some WLAN
  1054. * properties, a vdev is required. To facilitate this, the function returns the
  1055. * first vdev in our pdev. The caller should release the reference to the vdev
  1056. * once it is done using it.
  1057. * TODO: If the framework later provides an API to obtain the first active
  1058. * vdev, then it would be preferable to use this API.
  1059. *
  1060. * Return: Pointer to vdev on success, NULL on failure
  1061. */
  1062. struct wlan_objmgr_vdev *target_if_spectral_get_vdev(
  1063. struct target_if_spectral *spectral);
  1064. /**
  1065. * target_if_spectral_dump_hdr_gen2() - Dump Spectral header for gen2
  1066. * @phdr: Pointer to Spectral Phyerr Header
  1067. *
  1068. * Dump Spectral header
  1069. *
  1070. * Return: Success/Failure
  1071. */
  1072. int target_if_spectral_dump_hdr_gen2(struct spectral_phyerr_hdr_gen2 *phdr);
  1073. /**
  1074. * target_if_get_combrssi_sec80_seg_gen2() - Get approximate combined RSSI
  1075. * for Secondary 80 segment
  1076. * @spectral: Pointer to spectral object
  1077. * @p_sfft_sec80: Pointer to search fft info of secondary 80 segment
  1078. *
  1079. * Get approximate combined RSSI for Secondary 80 segment
  1080. *
  1081. * Return: Combined RSSI for secondary 80Mhz segment
  1082. */
  1083. int8_t target_if_get_combrssi_sec80_seg_gen2(
  1084. struct target_if_spectral *spectral,
  1085. struct spectral_search_fft_info_gen2 *p_sfft_sec80);
  1086. /**
  1087. * target_if_spectral_dump_tlv_gen2() - Dump Spectral TLV for gen2
  1088. * @ptlv: Pointer to Spectral Phyerr TLV
  1089. * @is_160_format: Indicates 160 format
  1090. *
  1091. * Dump Spectral TLV for gen2
  1092. *
  1093. * Return: Success/Failure
  1094. */
  1095. int target_if_spectral_dump_tlv_gen2(
  1096. struct spectral_phyerr_tlv_gen2 *ptlv, bool is_160_format);
  1097. /**
  1098. * target_if_spectral_dump_phyerr_data_gen2() - Dump Spectral
  1099. * related PHY Error for gen2
  1100. * @data: Pointer to phyerror buffer
  1101. * @datalen: Data length
  1102. * @is_160_format: Indicates 160 format
  1103. *
  1104. * Dump Spectral related PHY Error for gen2
  1105. *
  1106. * Return: Success/Failure
  1107. */
  1108. int target_if_spectral_dump_phyerr_data_gen2(
  1109. uint8_t *data,
  1110. uint32_t datalen,
  1111. bool is_160_format);
  1112. /**
  1113. * target_if_dump_fft_report_gen3() - Dump FFT Report for gen3
  1114. * @spectral: Pointer to Spectral object
  1115. * @smode: Spectral scan mode
  1116. * @p_fft_report: Pointer to fft report
  1117. * @p_sfft: Pointer to search fft report
  1118. *
  1119. * Dump FFT Report for gen3
  1120. *
  1121. * Return: Success/Failure
  1122. */
  1123. int target_if_dump_fft_report_gen3(struct target_if_spectral *spectral,
  1124. enum spectral_scan_mode smode,
  1125. struct spectral_phyerr_fft_report_gen3 *p_fft_report,
  1126. struct spectral_search_fft_info_gen3 *p_sfft);
  1127. /**
  1128. * target_if_dbg_print_samp_msg() - Print contents of SAMP Message
  1129. * @p: Pointer to SAMP message
  1130. *
  1131. * Print contents of SAMP Message
  1132. *
  1133. * Return: Void
  1134. */
  1135. void target_if_dbg_print_samp_msg(struct spectral_samp_msg *pmsg);
  1136. /**
  1137. * target_if_process_sfft_report_gen3() - Process Search FFT Report for gen3
  1138. * @p_fft_report: Pointer to fft report
  1139. * @p_sfft: Pointer to search fft report
  1140. *
  1141. * Process Search FFT Report for gen3
  1142. *
  1143. * Return: Success/Failure
  1144. */
  1145. int target_if_process_sfft_report_gen3(
  1146. struct spectral_phyerr_fft_report_gen3 *p_fft_report,
  1147. struct spectral_search_fft_info_gen3 *p_fft_info);
  1148. /**
  1149. * get_target_if_spectral_handle_from_pdev() - Get handle to target_if internal
  1150. * Spectral data
  1151. * @pdev: Pointer to pdev
  1152. *
  1153. * Return: Handle to target_if internal Spectral data on success, NULL on
  1154. * failure
  1155. */
  1156. static inline
  1157. struct target_if_spectral *get_target_if_spectral_handle_from_pdev(
  1158. struct wlan_objmgr_pdev *pdev)
  1159. {
  1160. struct target_if_spectral *spectral = NULL;
  1161. struct wlan_objmgr_psoc *psoc = NULL;
  1162. psoc = wlan_pdev_get_psoc(pdev);
  1163. spectral = (struct target_if_spectral *)
  1164. psoc->soc_cb.rx_ops.sptrl_rx_ops.sptrlro_get_target_handle(
  1165. pdev);
  1166. return spectral;
  1167. }
  1168. /**
  1169. * target_if_vdev_get_chan_freq() - Get the operating channel frequency of a
  1170. * given vdev
  1171. * @pdev: Pointer to vdev
  1172. *
  1173. * Get the operating channel frequency of a given vdev
  1174. *
  1175. * Return: Operating channel frequency of a vdev
  1176. */
  1177. static inline
  1178. int16_t target_if_vdev_get_chan_freq(struct wlan_objmgr_vdev *vdev)
  1179. {
  1180. struct wlan_objmgr_psoc *psoc = NULL;
  1181. psoc = wlan_vdev_get_psoc(vdev);
  1182. if (!psoc) {
  1183. spectral_err("psoc is NULL");
  1184. return -EINVAL;
  1185. }
  1186. return psoc->soc_cb.rx_ops.sptrl_rx_ops.sptrlro_vdev_get_chan_freq(
  1187. vdev);
  1188. }
  1189. /**
  1190. * target_if_vdev_get_ch_width() - Get the operating channel bandwidth of a
  1191. * given vdev
  1192. * @pdev: Pointer to vdev
  1193. *
  1194. * Get the operating channel bandwidth of a given vdev
  1195. *
  1196. * Return: channel bandwidth enumeration corresponding to the vdev
  1197. */
  1198. static inline
  1199. enum phy_ch_width target_if_vdev_get_ch_width(struct wlan_objmgr_vdev *vdev)
  1200. {
  1201. struct wlan_objmgr_psoc *psoc = NULL;
  1202. psoc = wlan_vdev_get_psoc(vdev);
  1203. if (!psoc) {
  1204. spectral_err("psoc is NULL");
  1205. return CH_WIDTH_INVALID;
  1206. }
  1207. return psoc->soc_cb.rx_ops.sptrl_rx_ops.sptrlro_vdev_get_ch_width(
  1208. vdev);
  1209. }
  1210. /**
  1211. * target_if_vdev_get_sec20chan_freq_mhz() - Get the frequency of secondary
  1212. * 20 MHz channel for a given vdev
  1213. * @pdev: Pointer to vdev
  1214. *
  1215. * Get the frequency of secondary 20Mhz channel for a given vdev
  1216. *
  1217. * Return: Frequency of secondary 20Mhz channel for a given vdev
  1218. */
  1219. static inline
  1220. int target_if_vdev_get_sec20chan_freq_mhz(
  1221. struct wlan_objmgr_vdev *vdev,
  1222. uint16_t *sec20chan_freq)
  1223. {
  1224. struct wlan_objmgr_psoc *psoc = NULL;
  1225. psoc = wlan_vdev_get_psoc(vdev);
  1226. if (!psoc) {
  1227. spectral_err("psoc is NULL");
  1228. return -EINVAL;
  1229. }
  1230. return psoc->soc_cb.rx_ops.sptrl_rx_ops.
  1231. sptrlro_vdev_get_sec20chan_freq_mhz(vdev, sec20chan_freq);
  1232. }
  1233. /**
  1234. * target_if_spectral_set_rxchainmask() - Set Spectral Rx chainmask
  1235. * @pdev: Pointer to pdev
  1236. * @spectral_rx_chainmask: Spectral Rx chainmask
  1237. *
  1238. * Return: None
  1239. */
  1240. static inline
  1241. void target_if_spectral_set_rxchainmask(struct wlan_objmgr_pdev *pdev,
  1242. uint8_t spectral_rx_chainmask)
  1243. {
  1244. struct wlan_objmgr_psoc *psoc = NULL;
  1245. struct target_if_spectral *spectral = NULL;
  1246. enum spectral_scan_mode smode = SPECTRAL_SCAN_MODE_NORMAL;
  1247. psoc = wlan_pdev_get_psoc(pdev);
  1248. if (!psoc) {
  1249. spectral_err("psoc is NULL");
  1250. return;
  1251. }
  1252. if (smode >= SPECTRAL_SCAN_MODE_MAX) {
  1253. spectral_err("Invalid Spectral mode %u", smode);
  1254. return;
  1255. }
  1256. if (psoc->soc_cb.rx_ops.sptrl_rx_ops.
  1257. sptrlro_spectral_is_feature_disabled(psoc)) {
  1258. spectral_info("Spectral is disabled");
  1259. return;
  1260. }
  1261. spectral = get_target_if_spectral_handle_from_pdev(pdev);
  1262. /* set chainmask for all the modes */
  1263. for (; smode < SPECTRAL_SCAN_MODE_MAX; smode++)
  1264. spectral->params[smode].ss_chn_mask = spectral_rx_chainmask;
  1265. }
  1266. /**
  1267. * target_if_spectral_process_phyerr() - Process Spectral PHY error
  1268. * @pdev: Pointer to pdev
  1269. * @data: PHY error data received from FW
  1270. * @datalen: Length of data
  1271. * @p_rfqual: Pointer to RF Quality information
  1272. * @p_chaninfo: Pointer to channel information
  1273. * @tsf: TSF time instance at which the Spectral sample was received
  1274. * @acs_stats: ACS stats
  1275. *
  1276. * Process Spectral PHY error by extracting necessary information from the data
  1277. * sent by FW, and send the extracted information to application layer.
  1278. *
  1279. * Return: None
  1280. */
  1281. static inline
  1282. void target_if_spectral_process_phyerr(
  1283. struct wlan_objmgr_pdev *pdev,
  1284. uint8_t *data, uint32_t datalen,
  1285. struct target_if_spectral_rfqual_info *p_rfqual,
  1286. struct target_if_spectral_chan_info *p_chaninfo,
  1287. uint64_t tsf64,
  1288. struct target_if_spectral_acs_stats *acs_stats)
  1289. {
  1290. struct target_if_spectral *spectral = NULL;
  1291. struct target_if_spectral_ops *p_sops = NULL;
  1292. spectral = get_target_if_spectral_handle_from_pdev(pdev);
  1293. p_sops = GET_TARGET_IF_SPECTRAL_OPS(spectral);
  1294. p_sops->spectral_process_phyerr(spectral, data, datalen,
  1295. p_rfqual, p_chaninfo,
  1296. tsf64, acs_stats);
  1297. }
  1298. static QDF_STATUS
  1299. target_if_get_spectral_msg_type(enum spectral_scan_mode smode,
  1300. enum spectral_msg_type *msg_type) {
  1301. switch (smode) {
  1302. case SPECTRAL_SCAN_MODE_NORMAL:
  1303. *msg_type = SPECTRAL_MSG_NORMAL_MODE;
  1304. break;
  1305. case SPECTRAL_SCAN_MODE_AGILE:
  1306. *msg_type = SPECTRAL_MSG_AGILE_MODE;
  1307. break;
  1308. default:
  1309. spectral_err("Invalid spectral mode");
  1310. return QDF_STATUS_E_FAILURE;
  1311. }
  1312. return QDF_STATUS_SUCCESS;
  1313. }
  1314. /**
  1315. * init_160mhz_delivery_state_machine() - Initialize 160MHz Spectral
  1316. * state machine
  1317. * @spectral: Pointer to Spectral
  1318. *
  1319. * Initialize 160MHz Spectral state machine
  1320. *
  1321. * Return: void
  1322. */
  1323. static inline void
  1324. init_160mhz_delivery_state_machine(struct target_if_spectral *spectral)
  1325. {
  1326. spectral->state_160mhz_delivery =
  1327. SPECTRAL_REPORT_WAIT_PRIMARY80;
  1328. }
  1329. /**
  1330. * reset_160mhz_delivery_state_machine() - Reset 160MHz Spectral state machine
  1331. * @spectral: Pointer to Spectral
  1332. *
  1333. * Reset 160MHz Spectral state machine
  1334. *
  1335. * Return: void
  1336. */
  1337. static inline void
  1338. reset_160mhz_delivery_state_machine(struct target_if_spectral *spectral,
  1339. enum spectral_scan_mode smode)
  1340. {
  1341. enum spectral_msg_type smsg_type;
  1342. QDF_STATUS ret;
  1343. if (spectral->ch_width == CH_WIDTH_160MHZ) {
  1344. spectral->state_160mhz_delivery =
  1345. SPECTRAL_REPORT_WAIT_PRIMARY80;
  1346. ret = target_if_get_spectral_msg_type(smode, &smsg_type);
  1347. if (QDF_IS_STATUS_ERROR(ret)) {
  1348. spectral_err("Failed to reset 160 MHz state machine");
  1349. return;
  1350. }
  1351. spectral->nl_cb.free_sbuff(spectral->pdev_obj,
  1352. smsg_type);
  1353. }
  1354. }
  1355. /**
  1356. * is_secondaryseg_expected() - Is waiting for secondary 80 report
  1357. * @spectral: Pointer to Spectral
  1358. *
  1359. * Return true if secondary 80 report expected and mode is 160 MHz
  1360. *
  1361. * Return: true or false
  1362. */
  1363. static inline
  1364. bool is_secondaryseg_expected(struct target_if_spectral *spectral)
  1365. {
  1366. return
  1367. ((spectral->ch_width == CH_WIDTH_160MHZ) &&
  1368. (spectral->state_160mhz_delivery == SPECTRAL_REPORT_WAIT_SECONDARY80));
  1369. }
  1370. /**
  1371. * is_primaryseg_expected() - Is waiting for primary 80 report
  1372. * @spectral: Pointer to Spectral
  1373. *
  1374. * Return true if mode is 160 Mhz and primary 80 report expected or
  1375. * mode is not 160 Mhz
  1376. *
  1377. * Return: true or false
  1378. */
  1379. static inline
  1380. bool is_primaryseg_expected(struct target_if_spectral *spectral)
  1381. {
  1382. return
  1383. ((spectral->ch_width != CH_WIDTH_160MHZ) ||
  1384. ((spectral->ch_width == CH_WIDTH_160MHZ) &&
  1385. (spectral->state_160mhz_delivery == SPECTRAL_REPORT_WAIT_PRIMARY80)));
  1386. }
  1387. /**
  1388. * is_primaryseg_rx_inprog() - Is primary 80 report processing is in progress
  1389. * @spectral: Pointer to Spectral
  1390. *
  1391. * Is primary 80 report processing is in progress
  1392. *
  1393. * Return: true or false
  1394. */
  1395. static inline
  1396. bool is_primaryseg_rx_inprog(struct target_if_spectral *spectral)
  1397. {
  1398. return
  1399. ((spectral->ch_width != CH_WIDTH_160MHZ) ||
  1400. ((spectral->ch_width == CH_WIDTH_160MHZ) &&
  1401. ((spectral->spectral_gen == SPECTRAL_GEN2) ||
  1402. ((spectral->spectral_gen == SPECTRAL_GEN3) &&
  1403. (spectral->state_160mhz_delivery == SPECTRAL_REPORT_RX_PRIMARY80)))));
  1404. }
  1405. /**
  1406. * is_secondaryseg_rx_inprog() - Is secondary80 report processing is in progress
  1407. * @spectral: Pointer to Spectral
  1408. *
  1409. * Is secondary 80 report processing is in progress
  1410. *
  1411. * Return: true or false
  1412. */
  1413. static inline
  1414. bool is_secondaryseg_rx_inprog(struct target_if_spectral *spectral)
  1415. {
  1416. return
  1417. ((spectral->ch_width == CH_WIDTH_160MHZ) &&
  1418. ((spectral->spectral_gen == SPECTRAL_GEN2) ||
  1419. ((spectral->spectral_gen == SPECTRAL_GEN3) &&
  1420. (spectral->state_160mhz_delivery == SPECTRAL_REPORT_RX_SECONDARY80))));
  1421. }
  1422. /**
  1423. * target_if_160mhz_delivery_state_change() - State transition for 160Mhz
  1424. * Spectral
  1425. * @spectral: Pointer to spectral object
  1426. * @detector_id: Detector id
  1427. *
  1428. * Move the states of state machine for 160MHz spectral scan report receive
  1429. *
  1430. * Return: QDF_STATUS
  1431. */
  1432. QDF_STATUS
  1433. target_if_160mhz_delivery_state_change(struct target_if_spectral *spectral,
  1434. uint8_t detector_id);
  1435. /**
  1436. * target_if_sops_is_spectral_enabled() - Get whether Spectral is enabled
  1437. * @arg: Pointer to handle for Spectral target_if internal private data
  1438. * @smode: Spectral scan mode
  1439. *
  1440. * Function to check whether Spectral is enabled
  1441. *
  1442. * Return: True if Spectral is enabled, false if Spectral is not enabled
  1443. */
  1444. uint32_t target_if_sops_is_spectral_enabled(void *arg,
  1445. enum spectral_scan_mode smode);
  1446. /**
  1447. * target_if_sops_is_spectral_active() - Get whether Spectral is active
  1448. * @arg: Pointer to handle for Spectral target_if internal private data
  1449. * @smode: Spectral scan mode
  1450. *
  1451. * Function to check whether Spectral is active
  1452. *
  1453. * Return: True if Spectral is active, false if Spectral is not active
  1454. */
  1455. uint32_t target_if_sops_is_spectral_active(void *arg,
  1456. enum spectral_scan_mode smode);
  1457. /**
  1458. * target_if_sops_start_spectral_scan() - Start Spectral scan
  1459. * @arg: Pointer to handle for Spectral target_if internal private data
  1460. * @smode: Spectral scan mode
  1461. * @err: Pointer to error code
  1462. *
  1463. * Function to start spectral scan
  1464. *
  1465. * Return: 0 on success else failure
  1466. */
  1467. uint32_t target_if_sops_start_spectral_scan(void *arg,
  1468. enum spectral_scan_mode smode,
  1469. enum spectral_cp_error_code *err);
  1470. /**
  1471. * target_if_sops_stop_spectral_scan() - Stop Spectral scan
  1472. * @arg: Pointer to handle for Spectral target_if internal private data
  1473. * @smode: Spectral scan mode
  1474. *
  1475. * Function to stop spectral scan
  1476. *
  1477. * Return: 0 in case of success, -1 on failure
  1478. */
  1479. uint32_t target_if_sops_stop_spectral_scan(void *arg,
  1480. enum spectral_scan_mode smode);
  1481. /**
  1482. * target_if_spectral_get_extension_channel() - Get the current Extension
  1483. * channel (in MHz)
  1484. * @arg: Pointer to handle for Spectral target_if internal private data
  1485. *
  1486. * Return: Current Extension channel (in MHz) on success, 0 on failure or if
  1487. * extension channel is not present.
  1488. */
  1489. uint32_t target_if_spectral_get_extension_channel(void *arg);
  1490. /**
  1491. * target_if_spectral_get_current_channel() - Get the current channel (in MHz)
  1492. * @arg: Pointer to handle for Spectral target_if internal private data
  1493. *
  1494. * Return: Current channel (in MHz) on success, 0 on failure
  1495. */
  1496. uint32_t target_if_spectral_get_current_channel(void *arg);
  1497. /**
  1498. * target_if_spectral_reset_hw() - Reset the hardware
  1499. * @arg: Pointer to handle for Spectral target_if internal private data
  1500. *
  1501. * This is only a placeholder since it is not currently required in the offload
  1502. * case.
  1503. *
  1504. * Return: 0
  1505. */
  1506. uint32_t target_if_spectral_reset_hw(void *arg);
  1507. /**
  1508. * target_if_spectral_get_chain_noise_floor() - Get the Chain noise floor from
  1509. * Noisefloor history buffer
  1510. * @arg: Pointer to handle for Spectral target_if internal private data
  1511. * @nf_buf: Pointer to buffer into which chain Noise Floor data should be copied
  1512. *
  1513. * This is only a placeholder since it is not currently required in the offload
  1514. * case.
  1515. *
  1516. * Return: 0
  1517. */
  1518. uint32_t target_if_spectral_get_chain_noise_floor(void *arg, int16_t *nf_buf);
  1519. /**
  1520. * target_if_spectral_get_ext_noisefloor() - Get the extension channel
  1521. * noisefloor
  1522. * @arg: Pointer to handle for Spectral target_if internal private data
  1523. *
  1524. * This is only a placeholder since it is not currently required in the offload
  1525. * case.
  1526. *
  1527. * Return: 0
  1528. */
  1529. int8_t target_if_spectral_get_ext_noisefloor(void *arg);
  1530. /**
  1531. * target_if_spectral_get_ctl_noisefloor() - Get the control channel noisefloor
  1532. * @arg: Pointer to handle for Spectral target_if internal private data
  1533. *
  1534. * This is only a placeholder since it is not currently required in the offload
  1535. * case.
  1536. *
  1537. * Return: 0
  1538. */
  1539. int8_t target_if_spectral_get_ctl_noisefloor(void *arg);
  1540. /**
  1541. * target_if_spectral_get_capability() - Get whether a given Spectral hardware
  1542. * capability is available
  1543. * @arg: Pointer to handle for Spectral target_if internal private data
  1544. * @type: Spectral hardware capability type
  1545. *
  1546. * Return: True if the capability is available, false if the capability is not
  1547. * available
  1548. */
  1549. uint32_t target_if_spectral_get_capability(
  1550. void *arg, enum spectral_capability_type type);
  1551. /**
  1552. * target_if_spectral_set_rxfilter() - Set the RX Filter before Spectral start
  1553. * @arg: Pointer to handle for Spectral target_if internal private data
  1554. * @rxfilter: Rx filter to be used
  1555. *
  1556. * Note: This is only a placeholder function. It is not currently required since
  1557. * FW should be taking care of setting the required filters.
  1558. *
  1559. * Return: 0
  1560. */
  1561. uint32_t target_if_spectral_set_rxfilter(void *arg, int rxfilter);
  1562. /**
  1563. * target_if_spectral_sops_configure_params() - Configure user supplied Spectral
  1564. * parameters
  1565. * @arg: Pointer to handle for Spectral target_if internal private data
  1566. * @params: Spectral parameters
  1567. * @smode: Spectral scan mode
  1568. *
  1569. * Return: 0 in case of success, -1 on failure
  1570. */
  1571. uint32_t target_if_spectral_sops_configure_params(
  1572. void *arg, struct spectral_config *params,
  1573. enum spectral_scan_mode smode);
  1574. /**
  1575. * target_if_spectral_get_rxfilter() - Get the current RX Filter settings
  1576. * @arg: Pointer to handle for Spectral target_if internal private data
  1577. *
  1578. * Note: This is only a placeholder function. It is not currently required since
  1579. * FW should be taking care of setting the required filters.
  1580. *
  1581. * Return: 0
  1582. */
  1583. uint32_t target_if_spectral_get_rxfilter(void *arg);
  1584. /**
  1585. * target_if_pdev_spectral_deinit() - De-initialize target_if Spectral
  1586. * functionality for the given pdev
  1587. * @pdev: Pointer to pdev object
  1588. *
  1589. * Return: None
  1590. */
  1591. void target_if_pdev_spectral_deinit(struct wlan_objmgr_pdev *pdev);
  1592. /**
  1593. * target_if_set_spectral_config() - Set spectral config
  1594. * @pdev: Pointer to pdev object
  1595. * @threshtype: config type
  1596. * @value: config value
  1597. * @smode: Spectral scan mode
  1598. * @err: Pointer to Spectral error code
  1599. *
  1600. * API to set spectral configurations
  1601. *
  1602. * Return: QDF_STATUS_SUCCESS in case of success, else QDF_STATUS_E_FAILURE
  1603. */
  1604. QDF_STATUS target_if_set_spectral_config(struct wlan_objmgr_pdev *pdev,
  1605. const uint32_t threshtype,
  1606. const uint32_t value,
  1607. const enum spectral_scan_mode smode,
  1608. enum spectral_cp_error_code *err);
  1609. /**
  1610. * target_if_pdev_spectral_init() - Initialize target_if Spectral
  1611. * functionality for the given pdev
  1612. * @pdev: Pointer to pdev object
  1613. *
  1614. * Return: On success, pointer to Spectral target_if internal private data, on
  1615. * failure, NULL
  1616. */
  1617. void *target_if_pdev_spectral_init(struct wlan_objmgr_pdev *pdev);
  1618. /**
  1619. * target_if_spectral_sops_get_params() - Get user configured Spectral
  1620. * parameters
  1621. * @arg: Pointer to handle for Spectral target_if internal private data
  1622. * @params: Pointer to buffer into which Spectral parameters should be copied
  1623. * @smode: Spectral scan mode
  1624. *
  1625. * Return: 0 in case of success, -1 on failure
  1626. */
  1627. uint32_t target_if_spectral_sops_get_params(
  1628. void *arg, struct spectral_config *params,
  1629. enum spectral_scan_mode smode);
  1630. /**
  1631. * target_if_init_spectral_capability() - Initialize Spectral capability
  1632. * @spectral: Pointer to Spectral target_if internal private data
  1633. *
  1634. * This is a workaround.
  1635. *
  1636. * Return: QDF_STATUS
  1637. */
  1638. QDF_STATUS
  1639. target_if_init_spectral_capability(struct target_if_spectral *spectral);
  1640. /**
  1641. * target_if_start_spectral_scan() - Start spectral scan
  1642. * @pdev: Pointer to pdev object
  1643. * @smode: Spectral scan mode
  1644. * @err: Spectral error code
  1645. *
  1646. * API to start spectral scan
  1647. *
  1648. * Return: QDF_STATUS_SUCCESS in case of success, else QDF_STATUS_E_FAILURE
  1649. */
  1650. QDF_STATUS target_if_start_spectral_scan(struct wlan_objmgr_pdev *pdev,
  1651. enum spectral_scan_mode smode,
  1652. enum spectral_cp_error_code *err);
  1653. /**
  1654. * target_if_get_spectral_config() - Get spectral configuration
  1655. * @pdev: Pointer to pdev object
  1656. * @param: Pointer to spectral_config structure in which the configuration
  1657. * should be returned
  1658. * @smode: Spectral scan mode
  1659. *
  1660. * API to get the current spectral configuration
  1661. *
  1662. * Return: QDF_STATUS_SUCCESS in case of success, else QDF_STATUS_E_FAILURE
  1663. */
  1664. QDF_STATUS target_if_get_spectral_config(struct wlan_objmgr_pdev *pdev,
  1665. struct spectral_config *param,
  1666. enum spectral_scan_mode smode);
  1667. /**
  1668. * target_if_spectral_scan_enable_params() - Enable use of desired Spectral
  1669. * parameters
  1670. * @spectral: Pointer to Spectral target_if internal private data
  1671. * @spectral_params: Pointer to Spectral parameters
  1672. * @smode: Spectral scan mode
  1673. * @err: Spectral error code
  1674. *
  1675. * Enable use of desired Spectral parameters by configuring them into HW, and
  1676. * starting Spectral scan
  1677. *
  1678. * Return: 0 on success, 1 on failure
  1679. */
  1680. int target_if_spectral_scan_enable_params(
  1681. struct target_if_spectral *spectral,
  1682. struct spectral_config *spectral_params,
  1683. enum spectral_scan_mode smode,
  1684. enum spectral_cp_error_code *err);
  1685. /**
  1686. * target_if_is_spectral_active() - Get whether Spectral is active
  1687. * @pdev: Pointer to pdev object
  1688. * @smode: Spectral scan mode
  1689. *
  1690. * Return: True if Spectral is active, false if Spectral is not active
  1691. */
  1692. bool target_if_is_spectral_active(struct wlan_objmgr_pdev *pdev,
  1693. enum spectral_scan_mode smode);
  1694. /**
  1695. * target_if_is_spectral_enabled() - Get whether Spectral is enabled
  1696. * @pdev: Pointer to pdev object
  1697. * @smode: Spectral scan mode
  1698. *
  1699. * Return: True if Spectral is enabled, false if Spectral is not enabled
  1700. */
  1701. bool target_if_is_spectral_enabled(struct wlan_objmgr_pdev *pdev,
  1702. enum spectral_scan_mode smode);
  1703. /**
  1704. * target_if_set_debug_level() - Set debug level for Spectral
  1705. * @pdev: Pointer to pdev object
  1706. * @debug_level: Debug level
  1707. *
  1708. * Return: QDF_STATUS_SUCCESS in case of success, else QDF_STATUS_E_FAILURE
  1709. *
  1710. */
  1711. QDF_STATUS target_if_set_debug_level(struct wlan_objmgr_pdev *pdev,
  1712. uint32_t debug_level);
  1713. /**
  1714. * target_if_get_debug_level() - Get debug level for Spectral
  1715. * @pdev: Pointer to pdev object
  1716. *
  1717. * Return: Current debug level
  1718. */
  1719. uint32_t target_if_get_debug_level(struct wlan_objmgr_pdev *pdev);
  1720. /**
  1721. * target_if_get_spectral_capinfo() - Get Spectral capability information
  1722. * @pdev: Pointer to pdev object
  1723. * @scaps: Buffer into which data should be copied
  1724. *
  1725. * Return: QDF_STATUS_SUCCESS in case of success, else QDF_STATUS_E_FAILURE
  1726. */
  1727. QDF_STATUS target_if_get_spectral_capinfo(struct wlan_objmgr_pdev *pdev,
  1728. struct spectral_caps *scaps);
  1729. /**
  1730. * target_if_get_spectral_diagstats() - Get Spectral diagnostic statistics
  1731. * @pdev: Pointer to pdev object
  1732. * @stats: Buffer into which data should be copied
  1733. *
  1734. * Return: QDF_STATUS_SUCCESS in case of success, else QDF_STATUS_E_FAILURE
  1735. */
  1736. QDF_STATUS target_if_get_spectral_diagstats(struct wlan_objmgr_pdev *pdev,
  1737. struct spectral_diag_stats *stats);
  1738. void target_if_register_wmi_spectral_cmd_ops(
  1739. struct wlan_objmgr_pdev *pdev,
  1740. struct wmi_spectral_cmd_ops *cmd_ops);
  1741. QDF_STATUS
  1742. target_if_160mhz_delivery_state_change(struct target_if_spectral *spectral,
  1743. uint8_t detector_id);
  1744. #ifdef DIRECT_BUF_RX_ENABLE
  1745. /**
  1746. * target_if_consume_sfft_report_gen3() - Process fft report for gen3
  1747. * @spectral: Pointer to spectral object
  1748. * @report: Pointer to spectral report
  1749. *
  1750. * Process fft report for gen3
  1751. *
  1752. * Return: Success/Failure
  1753. */
  1754. int
  1755. target_if_consume_spectral_report_gen3(
  1756. struct target_if_spectral *spectral,
  1757. struct spectral_report *report);
  1758. #endif
  1759. /**
  1760. * target_if_spectral_fw_hang() - Crash the FW from Spectral module
  1761. * @spectral: Pointer to Spectral LMAC object
  1762. *
  1763. * Return: QDF_STATUS of operation
  1764. */
  1765. QDF_STATUS target_if_spectral_fw_hang(struct target_if_spectral *spectral);
  1766. #ifdef WIN32
  1767. #pragma pack(pop, target_if_spectral)
  1768. #endif
  1769. #ifdef __ATTRIB_PACK
  1770. #undef __ATTRIB_PACK
  1771. #endif
  1772. #endif /* WLAN_CONV_SPECTRAL_ENABLE */
  1773. #endif /* _TARGET_IF_SPECTRAL_H_ */