fwsignal.c 55 KB

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  1. /*
  2. * Copyright (c) 2010 Broadcom Corporation
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for any
  5. * purpose with or without fee is hereby granted, provided that the above
  6. * copyright notice and this permission notice appear in all copies.
  7. *
  8. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  9. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  10. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
  11. * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  12. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
  13. * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
  14. * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  15. */
  16. #include <linux/types.h>
  17. #include <linux/module.h>
  18. #include <linux/if_ether.h>
  19. #include <linux/spinlock.h>
  20. #include <linux/skbuff.h>
  21. #include <linux/netdevice.h>
  22. #include <linux/etherdevice.h>
  23. #include <linux/err.h>
  24. #include <linux/jiffies.h>
  25. #include <net/cfg80211.h>
  26. #include <brcmu_utils.h>
  27. #include <brcmu_wifi.h>
  28. #include "dhd.h"
  29. #include "dhd_proto.h"
  30. #include "dhd_dbg.h"
  31. #include "dhd_bus.h"
  32. #include "fwil.h"
  33. #include "fwil_types.h"
  34. #include "fweh.h"
  35. #include "fwsignal.h"
  36. #include "p2p.h"
  37. #include "wl_cfg80211.h"
  38. /**
  39. * DOC: Firmware Signalling
  40. *
  41. * Firmware can send signals to host and vice versa, which are passed in the
  42. * data packets using TLV based header. This signalling layer is on top of the
  43. * BDC bus protocol layer.
  44. */
  45. /*
  46. * single definition for firmware-driver flow control tlv's.
  47. *
  48. * each tlv is specified by BRCMF_FWS_TLV_DEF(name, ID, length).
  49. * A length value 0 indicates variable length tlv.
  50. */
  51. #define BRCMF_FWS_TLV_DEFLIST \
  52. BRCMF_FWS_TLV_DEF(MAC_OPEN, 1, 1) \
  53. BRCMF_FWS_TLV_DEF(MAC_CLOSE, 2, 1) \
  54. BRCMF_FWS_TLV_DEF(MAC_REQUEST_CREDIT, 3, 2) \
  55. BRCMF_FWS_TLV_DEF(TXSTATUS, 4, 4) \
  56. BRCMF_FWS_TLV_DEF(PKTTAG, 5, 4) \
  57. BRCMF_FWS_TLV_DEF(MACDESC_ADD, 6, 8) \
  58. BRCMF_FWS_TLV_DEF(MACDESC_DEL, 7, 8) \
  59. BRCMF_FWS_TLV_DEF(RSSI, 8, 1) \
  60. BRCMF_FWS_TLV_DEF(INTERFACE_OPEN, 9, 1) \
  61. BRCMF_FWS_TLV_DEF(INTERFACE_CLOSE, 10, 1) \
  62. BRCMF_FWS_TLV_DEF(FIFO_CREDITBACK, 11, 6) \
  63. BRCMF_FWS_TLV_DEF(PENDING_TRAFFIC_BMP, 12, 2) \
  64. BRCMF_FWS_TLV_DEF(MAC_REQUEST_PACKET, 13, 3) \
  65. BRCMF_FWS_TLV_DEF(HOST_REORDER_RXPKTS, 14, 10) \
  66. BRCMF_FWS_TLV_DEF(TRANS_ID, 18, 6) \
  67. BRCMF_FWS_TLV_DEF(COMP_TXSTATUS, 19, 1) \
  68. BRCMF_FWS_TLV_DEF(FILLER, 255, 0)
  69. /*
  70. * enum brcmf_fws_tlv_type - definition of tlv identifiers.
  71. */
  72. #define BRCMF_FWS_TLV_DEF(name, id, len) \
  73. BRCMF_FWS_TYPE_ ## name = id,
  74. enum brcmf_fws_tlv_type {
  75. BRCMF_FWS_TLV_DEFLIST
  76. BRCMF_FWS_TYPE_INVALID
  77. };
  78. #undef BRCMF_FWS_TLV_DEF
  79. /*
  80. * enum brcmf_fws_tlv_len - definition of tlv lengths.
  81. */
  82. #define BRCMF_FWS_TLV_DEF(name, id, len) \
  83. BRCMF_FWS_TYPE_ ## name ## _LEN = (len),
  84. enum brcmf_fws_tlv_len {
  85. BRCMF_FWS_TLV_DEFLIST
  86. };
  87. #undef BRCMF_FWS_TLV_DEF
  88. #ifdef DEBUG
  89. /*
  90. * brcmf_fws_tlv_names - array of tlv names.
  91. */
  92. #define BRCMF_FWS_TLV_DEF(name, id, len) \
  93. { id, #name },
  94. static struct {
  95. enum brcmf_fws_tlv_type id;
  96. const char *name;
  97. } brcmf_fws_tlv_names[] = {
  98. BRCMF_FWS_TLV_DEFLIST
  99. };
  100. #undef BRCMF_FWS_TLV_DEF
  101. static const char *brcmf_fws_get_tlv_name(enum brcmf_fws_tlv_type id)
  102. {
  103. int i;
  104. for (i = 0; i < ARRAY_SIZE(brcmf_fws_tlv_names); i++)
  105. if (brcmf_fws_tlv_names[i].id == id)
  106. return brcmf_fws_tlv_names[i].name;
  107. return "INVALID";
  108. }
  109. #else
  110. static const char *brcmf_fws_get_tlv_name(enum brcmf_fws_tlv_type id)
  111. {
  112. return "NODEBUG";
  113. }
  114. #endif /* DEBUG */
  115. /*
  116. * flags used to enable tlv signalling from firmware.
  117. */
  118. #define BRCMF_FWS_FLAGS_RSSI_SIGNALS 0x0001
  119. #define BRCMF_FWS_FLAGS_XONXOFF_SIGNALS 0x0002
  120. #define BRCMF_FWS_FLAGS_CREDIT_STATUS_SIGNALS 0x0004
  121. #define BRCMF_FWS_FLAGS_HOST_PROPTXSTATUS_ACTIVE 0x0008
  122. #define BRCMF_FWS_FLAGS_PSQ_GENERATIONFSM_ENABLE 0x0010
  123. #define BRCMF_FWS_FLAGS_PSQ_ZERO_BUFFER_ENABLE 0x0020
  124. #define BRCMF_FWS_FLAGS_HOST_RXREORDER_ACTIVE 0x0040
  125. #define BRCMF_FWS_MAC_DESC_TABLE_SIZE 32
  126. #define BRCMF_FWS_MAC_DESC_ID_INVALID 0xff
  127. #define BRCMF_FWS_HOSTIF_FLOWSTATE_OFF 0
  128. #define BRCMF_FWS_HOSTIF_FLOWSTATE_ON 1
  129. #define BRCMF_FWS_FLOWCONTROL_HIWATER 128
  130. #define BRCMF_FWS_FLOWCONTROL_LOWATER 64
  131. #define BRCMF_FWS_PSQ_PREC_COUNT ((BRCMF_FWS_FIFO_COUNT + 1) * 2)
  132. #define BRCMF_FWS_PSQ_LEN 256
  133. #define BRCMF_FWS_HTOD_FLAG_PKTFROMHOST 0x01
  134. #define BRCMF_FWS_HTOD_FLAG_PKT_REQUESTED 0x02
  135. #define BRCMF_FWS_RET_OK_NOSCHEDULE 0
  136. #define BRCMF_FWS_RET_OK_SCHEDULE 1
  137. /**
  138. * enum brcmf_fws_skb_state - indicates processing state of skb.
  139. *
  140. * @BRCMF_FWS_SKBSTATE_NEW: sk_buff is newly arrived in the driver.
  141. * @BRCMF_FWS_SKBSTATE_DELAYED: sk_buff had to wait on queue.
  142. * @BRCMF_FWS_SKBSTATE_SUPPRESSED: sk_buff has been suppressed by firmware.
  143. * @BRCMF_FWS_SKBSTATE_TIM: allocated for TIM update info.
  144. */
  145. enum brcmf_fws_skb_state {
  146. BRCMF_FWS_SKBSTATE_NEW,
  147. BRCMF_FWS_SKBSTATE_DELAYED,
  148. BRCMF_FWS_SKBSTATE_SUPPRESSED,
  149. BRCMF_FWS_SKBSTATE_TIM
  150. };
  151. /**
  152. * struct brcmf_skbuff_cb - control buffer associated with skbuff.
  153. *
  154. * @if_flags: holds interface index and packet related flags.
  155. * @htod: host to device packet identifier (used in PKTTAG tlv).
  156. * @state: transmit state of the packet.
  157. * @mac: descriptor related to destination for this packet.
  158. *
  159. * This information is stored in control buffer struct sk_buff::cb, which
  160. * provides 48 bytes of storage so this structure should not exceed that.
  161. */
  162. struct brcmf_skbuff_cb {
  163. u16 if_flags;
  164. u32 htod;
  165. enum brcmf_fws_skb_state state;
  166. struct brcmf_fws_mac_descriptor *mac;
  167. };
  168. /*
  169. * macro casting skbuff control buffer to struct brcmf_skbuff_cb.
  170. */
  171. #define brcmf_skbcb(skb) ((struct brcmf_skbuff_cb *)((skb)->cb))
  172. /*
  173. * sk_buff control if flags
  174. *
  175. * b[11] - packet sent upon firmware request.
  176. * b[10] - packet only contains signalling data.
  177. * b[9] - packet is a tx packet.
  178. * b[8] - packet used requested credit
  179. * b[7] - interface in AP mode.
  180. * b[3:0] - interface index.
  181. */
  182. #define BRCMF_SKB_IF_FLAGS_REQUESTED_MASK 0x0800
  183. #define BRCMF_SKB_IF_FLAGS_REQUESTED_SHIFT 11
  184. #define BRCMF_SKB_IF_FLAGS_SIGNAL_ONLY_MASK 0x0400
  185. #define BRCMF_SKB_IF_FLAGS_SIGNAL_ONLY_SHIFT 10
  186. #define BRCMF_SKB_IF_FLAGS_TRANSMIT_MASK 0x0200
  187. #define BRCMF_SKB_IF_FLAGS_TRANSMIT_SHIFT 9
  188. #define BRCMF_SKB_IF_FLAGS_REQ_CREDIT_MASK 0x0100
  189. #define BRCMF_SKB_IF_FLAGS_REQ_CREDIT_SHIFT 8
  190. #define BRCMF_SKB_IF_FLAGS_IF_AP_MASK 0x0080
  191. #define BRCMF_SKB_IF_FLAGS_IF_AP_SHIFT 7
  192. #define BRCMF_SKB_IF_FLAGS_INDEX_MASK 0x000f
  193. #define BRCMF_SKB_IF_FLAGS_INDEX_SHIFT 0
  194. #define brcmf_skb_if_flags_set_field(skb, field, value) \
  195. brcmu_maskset16(&(brcmf_skbcb(skb)->if_flags), \
  196. BRCMF_SKB_IF_FLAGS_ ## field ## _MASK, \
  197. BRCMF_SKB_IF_FLAGS_ ## field ## _SHIFT, (value))
  198. #define brcmf_skb_if_flags_get_field(skb, field) \
  199. brcmu_maskget16(brcmf_skbcb(skb)->if_flags, \
  200. BRCMF_SKB_IF_FLAGS_ ## field ## _MASK, \
  201. BRCMF_SKB_IF_FLAGS_ ## field ## _SHIFT)
  202. /*
  203. * sk_buff control packet identifier
  204. *
  205. * 32-bit packet identifier used in PKTTAG tlv from host to dongle.
  206. *
  207. * - Generated at the host (e.g. dhd)
  208. * - Seen as a generic sequence number by firmware except for the flags field.
  209. *
  210. * Generation : b[31] => generation number for this packet [host->fw]
  211. * OR, current generation number [fw->host]
  212. * Flags : b[30:27] => command, status flags
  213. * FIFO-AC : b[26:24] => AC-FIFO id
  214. * h-slot : b[23:8] => hanger-slot
  215. * freerun : b[7:0] => A free running counter
  216. */
  217. #define BRCMF_SKB_HTOD_TAG_GENERATION_MASK 0x80000000
  218. #define BRCMF_SKB_HTOD_TAG_GENERATION_SHIFT 31
  219. #define BRCMF_SKB_HTOD_TAG_FLAGS_MASK 0x78000000
  220. #define BRCMF_SKB_HTOD_TAG_FLAGS_SHIFT 27
  221. #define BRCMF_SKB_HTOD_TAG_FIFO_MASK 0x07000000
  222. #define BRCMF_SKB_HTOD_TAG_FIFO_SHIFT 24
  223. #define BRCMF_SKB_HTOD_TAG_HSLOT_MASK 0x00ffff00
  224. #define BRCMF_SKB_HTOD_TAG_HSLOT_SHIFT 8
  225. #define BRCMF_SKB_HTOD_TAG_FREERUN_MASK 0x000000ff
  226. #define BRCMF_SKB_HTOD_TAG_FREERUN_SHIFT 0
  227. #define brcmf_skb_htod_tag_set_field(skb, field, value) \
  228. brcmu_maskset32(&(brcmf_skbcb(skb)->htod), \
  229. BRCMF_SKB_HTOD_TAG_ ## field ## _MASK, \
  230. BRCMF_SKB_HTOD_TAG_ ## field ## _SHIFT, (value))
  231. #define brcmf_skb_htod_tag_get_field(skb, field) \
  232. brcmu_maskget32(brcmf_skbcb(skb)->htod, \
  233. BRCMF_SKB_HTOD_TAG_ ## field ## _MASK, \
  234. BRCMF_SKB_HTOD_TAG_ ## field ## _SHIFT)
  235. #define BRCMF_FWS_TXSTAT_GENERATION_MASK 0x80000000
  236. #define BRCMF_FWS_TXSTAT_GENERATION_SHIFT 31
  237. #define BRCMF_FWS_TXSTAT_FLAGS_MASK 0x78000000
  238. #define BRCMF_FWS_TXSTAT_FLAGS_SHIFT 27
  239. #define BRCMF_FWS_TXSTAT_FIFO_MASK 0x07000000
  240. #define BRCMF_FWS_TXSTAT_FIFO_SHIFT 24
  241. #define BRCMF_FWS_TXSTAT_HSLOT_MASK 0x00FFFF00
  242. #define BRCMF_FWS_TXSTAT_HSLOT_SHIFT 8
  243. #define BRCMF_FWS_TXSTAT_PKTID_MASK 0x00FFFFFF
  244. #define BRCMF_FWS_TXSTAT_PKTID_SHIFT 0
  245. #define brcmf_txstatus_get_field(txs, field) \
  246. brcmu_maskget32(txs, BRCMF_FWS_TXSTAT_ ## field ## _MASK, \
  247. BRCMF_FWS_TXSTAT_ ## field ## _SHIFT)
  248. /* How long to defer borrowing in jiffies */
  249. #define BRCMF_FWS_BORROW_DEFER_PERIOD (HZ / 10)
  250. /**
  251. * enum brcmf_fws_fifo - fifo indices used by dongle firmware.
  252. *
  253. * @BRCMF_FWS_FIFO_FIRST: first fifo, ie. background.
  254. * @BRCMF_FWS_FIFO_AC_BK: fifo for background traffic.
  255. * @BRCMF_FWS_FIFO_AC_BE: fifo for best-effort traffic.
  256. * @BRCMF_FWS_FIFO_AC_VI: fifo for video traffic.
  257. * @BRCMF_FWS_FIFO_AC_VO: fifo for voice traffic.
  258. * @BRCMF_FWS_FIFO_BCMC: fifo for broadcast/multicast (AP only).
  259. * @BRCMF_FWS_FIFO_ATIM: fifo for ATIM (AP only).
  260. * @BRCMF_FWS_FIFO_COUNT: number of fifos.
  261. */
  262. enum brcmf_fws_fifo {
  263. BRCMF_FWS_FIFO_FIRST,
  264. BRCMF_FWS_FIFO_AC_BK = BRCMF_FWS_FIFO_FIRST,
  265. BRCMF_FWS_FIFO_AC_BE,
  266. BRCMF_FWS_FIFO_AC_VI,
  267. BRCMF_FWS_FIFO_AC_VO,
  268. BRCMF_FWS_FIFO_BCMC,
  269. BRCMF_FWS_FIFO_ATIM,
  270. BRCMF_FWS_FIFO_COUNT
  271. };
  272. /**
  273. * enum brcmf_fws_txstatus - txstatus flag values.
  274. *
  275. * @BRCMF_FWS_TXSTATUS_DISCARD:
  276. * host is free to discard the packet.
  277. * @BRCMF_FWS_TXSTATUS_CORE_SUPPRESS:
  278. * 802.11 core suppressed the packet.
  279. * @BRCMF_FWS_TXSTATUS_FW_PS_SUPPRESS:
  280. * firmware suppress the packet as device is already in PS mode.
  281. * @BRCMF_FWS_TXSTATUS_FW_TOSSED:
  282. * firmware tossed the packet.
  283. * @BRCMF_FWS_TXSTATUS_HOST_TOSSED:
  284. * host tossed the packet.
  285. */
  286. enum brcmf_fws_txstatus {
  287. BRCMF_FWS_TXSTATUS_DISCARD,
  288. BRCMF_FWS_TXSTATUS_CORE_SUPPRESS,
  289. BRCMF_FWS_TXSTATUS_FW_PS_SUPPRESS,
  290. BRCMF_FWS_TXSTATUS_FW_TOSSED,
  291. BRCMF_FWS_TXSTATUS_HOST_TOSSED
  292. };
  293. enum brcmf_fws_fcmode {
  294. BRCMF_FWS_FCMODE_NONE,
  295. BRCMF_FWS_FCMODE_IMPLIED_CREDIT,
  296. BRCMF_FWS_FCMODE_EXPLICIT_CREDIT
  297. };
  298. enum brcmf_fws_mac_desc_state {
  299. BRCMF_FWS_STATE_OPEN = 1,
  300. BRCMF_FWS_STATE_CLOSE
  301. };
  302. /**
  303. * struct brcmf_fws_mac_descriptor - firmware signalling data per node/interface
  304. *
  305. * @occupied: slot is in use.
  306. * @mac_handle: handle for mac entry determined by firmware.
  307. * @interface_id: interface index.
  308. * @state: current state.
  309. * @suppressed: mac entry is suppressed.
  310. * @generation: generation bit.
  311. * @ac_bitmap: ac queue bitmap.
  312. * @requested_credit: credits requested by firmware.
  313. * @ea: ethernet address.
  314. * @seq: per-node free-running sequence.
  315. * @psq: power-save queue.
  316. * @transit_count: packet in transit to firmware.
  317. */
  318. struct brcmf_fws_mac_descriptor {
  319. char name[16];
  320. u8 occupied;
  321. u8 mac_handle;
  322. u8 interface_id;
  323. u8 state;
  324. bool suppressed;
  325. u8 generation;
  326. u8 ac_bitmap;
  327. u8 requested_credit;
  328. u8 requested_packet;
  329. u8 ea[ETH_ALEN];
  330. u8 seq[BRCMF_FWS_FIFO_COUNT];
  331. struct pktq psq;
  332. int transit_count;
  333. int suppr_transit_count;
  334. bool send_tim_signal;
  335. u8 traffic_pending_bmp;
  336. u8 traffic_lastreported_bmp;
  337. };
  338. #define BRCMF_FWS_HANGER_MAXITEMS 1024
  339. /**
  340. * enum brcmf_fws_hanger_item_state - state of hanger item.
  341. *
  342. * @BRCMF_FWS_HANGER_ITEM_STATE_FREE: item is free for use.
  343. * @BRCMF_FWS_HANGER_ITEM_STATE_INUSE: item is in use.
  344. * @BRCMF_FWS_HANGER_ITEM_STATE_INUSE_SUPPRESSED: item was suppressed.
  345. */
  346. enum brcmf_fws_hanger_item_state {
  347. BRCMF_FWS_HANGER_ITEM_STATE_FREE = 1,
  348. BRCMF_FWS_HANGER_ITEM_STATE_INUSE,
  349. BRCMF_FWS_HANGER_ITEM_STATE_INUSE_SUPPRESSED
  350. };
  351. /**
  352. * struct brcmf_fws_hanger_item - single entry for tx pending packet.
  353. *
  354. * @state: entry is either free or occupied.
  355. * @pkt: packet itself.
  356. */
  357. struct brcmf_fws_hanger_item {
  358. enum brcmf_fws_hanger_item_state state;
  359. struct sk_buff *pkt;
  360. };
  361. /**
  362. * struct brcmf_fws_hanger - holds packets awaiting firmware txstatus.
  363. *
  364. * @pushed: packets pushed to await txstatus.
  365. * @popped: packets popped upon handling txstatus.
  366. * @failed_to_push: packets that could not be pushed.
  367. * @failed_to_pop: packets that could not be popped.
  368. * @failed_slotfind: packets for which failed to find an entry.
  369. * @slot_pos: last returned item index for a free entry.
  370. * @items: array of hanger items.
  371. */
  372. struct brcmf_fws_hanger {
  373. u32 pushed;
  374. u32 popped;
  375. u32 failed_to_push;
  376. u32 failed_to_pop;
  377. u32 failed_slotfind;
  378. u32 slot_pos;
  379. struct brcmf_fws_hanger_item items[BRCMF_FWS_HANGER_MAXITEMS];
  380. };
  381. struct brcmf_fws_macdesc_table {
  382. struct brcmf_fws_mac_descriptor nodes[BRCMF_FWS_MAC_DESC_TABLE_SIZE];
  383. struct brcmf_fws_mac_descriptor iface[BRCMF_MAX_IFS];
  384. struct brcmf_fws_mac_descriptor other;
  385. };
  386. struct brcmf_fws_info {
  387. struct brcmf_pub *drvr;
  388. struct brcmf_fws_stats stats;
  389. struct brcmf_fws_hanger hanger;
  390. enum brcmf_fws_fcmode fcmode;
  391. bool bcmc_credit_check;
  392. struct brcmf_fws_macdesc_table desc;
  393. struct workqueue_struct *fws_wq;
  394. struct work_struct fws_dequeue_work;
  395. u32 fifo_enqpkt[BRCMF_FWS_FIFO_COUNT];
  396. int fifo_credit[BRCMF_FWS_FIFO_COUNT];
  397. int credits_borrowed[BRCMF_FWS_FIFO_AC_VO + 1];
  398. int deq_node_pos[BRCMF_FWS_FIFO_COUNT];
  399. u32 fifo_credit_map;
  400. u32 fifo_delay_map;
  401. unsigned long borrow_defer_timestamp;
  402. bool bus_flow_blocked;
  403. bool creditmap_received;
  404. };
  405. /*
  406. * brcmf_fws_prio2fifo - mapping from 802.1d priority to firmware fifo index.
  407. */
  408. static const int brcmf_fws_prio2fifo[] = {
  409. BRCMF_FWS_FIFO_AC_BE,
  410. BRCMF_FWS_FIFO_AC_BK,
  411. BRCMF_FWS_FIFO_AC_BK,
  412. BRCMF_FWS_FIFO_AC_BE,
  413. BRCMF_FWS_FIFO_AC_VI,
  414. BRCMF_FWS_FIFO_AC_VI,
  415. BRCMF_FWS_FIFO_AC_VO,
  416. BRCMF_FWS_FIFO_AC_VO
  417. };
  418. static int fcmode;
  419. module_param(fcmode, int, S_IRUSR);
  420. MODULE_PARM_DESC(fcmode, "mode of firmware signalled flow control");
  421. #define BRCMF_FWS_TLV_DEF(name, id, len) \
  422. case BRCMF_FWS_TYPE_ ## name: \
  423. return len;
  424. /**
  425. * brcmf_fws_get_tlv_len() - returns defined length for given tlv id.
  426. *
  427. * @fws: firmware-signalling information.
  428. * @id: identifier of the TLV.
  429. *
  430. * Return: the specified length for the given TLV; Otherwise -EINVAL.
  431. */
  432. static int brcmf_fws_get_tlv_len(struct brcmf_fws_info *fws,
  433. enum brcmf_fws_tlv_type id)
  434. {
  435. switch (id) {
  436. BRCMF_FWS_TLV_DEFLIST
  437. default:
  438. fws->stats.tlv_invalid_type++;
  439. break;
  440. }
  441. return -EINVAL;
  442. }
  443. #undef BRCMF_FWS_TLV_DEF
  444. static bool brcmf_fws_ifidx_match(struct sk_buff *skb, void *arg)
  445. {
  446. u32 ifidx = brcmf_skb_if_flags_get_field(skb, INDEX);
  447. return ifidx == *(int *)arg;
  448. }
  449. static void brcmf_fws_psq_flush(struct brcmf_fws_info *fws, struct pktq *q,
  450. int ifidx)
  451. {
  452. bool (*matchfn)(struct sk_buff *, void *) = NULL;
  453. struct sk_buff *skb;
  454. int prec;
  455. if (ifidx != -1)
  456. matchfn = brcmf_fws_ifidx_match;
  457. for (prec = 0; prec < q->num_prec; prec++) {
  458. skb = brcmu_pktq_pdeq_match(q, prec, matchfn, &ifidx);
  459. while (skb) {
  460. brcmu_pkt_buf_free_skb(skb);
  461. skb = brcmu_pktq_pdeq_match(q, prec, matchfn, &ifidx);
  462. }
  463. }
  464. }
  465. static void brcmf_fws_hanger_init(struct brcmf_fws_hanger *hanger)
  466. {
  467. int i;
  468. memset(hanger, 0, sizeof(*hanger));
  469. for (i = 0; i < ARRAY_SIZE(hanger->items); i++)
  470. hanger->items[i].state = BRCMF_FWS_HANGER_ITEM_STATE_FREE;
  471. }
  472. static u32 brcmf_fws_hanger_get_free_slot(struct brcmf_fws_hanger *h)
  473. {
  474. u32 i;
  475. i = (h->slot_pos + 1) % BRCMF_FWS_HANGER_MAXITEMS;
  476. while (i != h->slot_pos) {
  477. if (h->items[i].state == BRCMF_FWS_HANGER_ITEM_STATE_FREE) {
  478. h->slot_pos = i;
  479. goto done;
  480. }
  481. i++;
  482. if (i == BRCMF_FWS_HANGER_MAXITEMS)
  483. i = 0;
  484. }
  485. brcmf_err("all slots occupied\n");
  486. h->failed_slotfind++;
  487. i = BRCMF_FWS_HANGER_MAXITEMS;
  488. done:
  489. return i;
  490. }
  491. static int brcmf_fws_hanger_pushpkt(struct brcmf_fws_hanger *h,
  492. struct sk_buff *pkt, u32 slot_id)
  493. {
  494. if (slot_id >= BRCMF_FWS_HANGER_MAXITEMS)
  495. return -ENOENT;
  496. if (h->items[slot_id].state != BRCMF_FWS_HANGER_ITEM_STATE_FREE) {
  497. brcmf_err("slot is not free\n");
  498. h->failed_to_push++;
  499. return -EINVAL;
  500. }
  501. h->items[slot_id].state = BRCMF_FWS_HANGER_ITEM_STATE_INUSE;
  502. h->items[slot_id].pkt = pkt;
  503. h->pushed++;
  504. return 0;
  505. }
  506. static int brcmf_fws_hanger_poppkt(struct brcmf_fws_hanger *h,
  507. u32 slot_id, struct sk_buff **pktout,
  508. bool remove_item)
  509. {
  510. if (slot_id >= BRCMF_FWS_HANGER_MAXITEMS)
  511. return -ENOENT;
  512. if (h->items[slot_id].state == BRCMF_FWS_HANGER_ITEM_STATE_FREE) {
  513. brcmf_err("entry not in use\n");
  514. h->failed_to_pop++;
  515. return -EINVAL;
  516. }
  517. *pktout = h->items[slot_id].pkt;
  518. if (remove_item) {
  519. h->items[slot_id].state = BRCMF_FWS_HANGER_ITEM_STATE_FREE;
  520. h->items[slot_id].pkt = NULL;
  521. h->popped++;
  522. }
  523. return 0;
  524. }
  525. static int brcmf_fws_hanger_mark_suppressed(struct brcmf_fws_hanger *h,
  526. u32 slot_id)
  527. {
  528. if (slot_id >= BRCMF_FWS_HANGER_MAXITEMS)
  529. return -ENOENT;
  530. if (h->items[slot_id].state == BRCMF_FWS_HANGER_ITEM_STATE_FREE) {
  531. brcmf_err("entry not in use\n");
  532. return -EINVAL;
  533. }
  534. h->items[slot_id].state = BRCMF_FWS_HANGER_ITEM_STATE_INUSE_SUPPRESSED;
  535. return 0;
  536. }
  537. static void brcmf_fws_hanger_cleanup(struct brcmf_fws_info *fws,
  538. bool (*fn)(struct sk_buff *, void *),
  539. int ifidx)
  540. {
  541. struct brcmf_fws_hanger *h = &fws->hanger;
  542. struct sk_buff *skb;
  543. int i;
  544. enum brcmf_fws_hanger_item_state s;
  545. for (i = 0; i < ARRAY_SIZE(h->items); i++) {
  546. s = h->items[i].state;
  547. if (s == BRCMF_FWS_HANGER_ITEM_STATE_INUSE ||
  548. s == BRCMF_FWS_HANGER_ITEM_STATE_INUSE_SUPPRESSED) {
  549. skb = h->items[i].pkt;
  550. if (fn == NULL || fn(skb, &ifidx)) {
  551. /* suppress packets freed from psq */
  552. if (s == BRCMF_FWS_HANGER_ITEM_STATE_INUSE)
  553. brcmu_pkt_buf_free_skb(skb);
  554. h->items[i].state =
  555. BRCMF_FWS_HANGER_ITEM_STATE_FREE;
  556. }
  557. }
  558. }
  559. }
  560. static void brcmf_fws_macdesc_set_name(struct brcmf_fws_info *fws,
  561. struct brcmf_fws_mac_descriptor *desc)
  562. {
  563. if (desc == &fws->desc.other)
  564. strlcpy(desc->name, "MAC-OTHER", sizeof(desc->name));
  565. else if (desc->mac_handle)
  566. scnprintf(desc->name, sizeof(desc->name), "MAC-%d:%d",
  567. desc->mac_handle, desc->interface_id);
  568. else
  569. scnprintf(desc->name, sizeof(desc->name), "MACIF:%d",
  570. desc->interface_id);
  571. }
  572. static void brcmf_fws_init_mac_descriptor(struct brcmf_fws_mac_descriptor *desc,
  573. u8 *addr, u8 ifidx)
  574. {
  575. brcmf_dbg(TRACE,
  576. "enter: desc %p ea=%pM, ifidx=%u\n", desc, addr, ifidx);
  577. desc->occupied = 1;
  578. desc->state = BRCMF_FWS_STATE_OPEN;
  579. desc->requested_credit = 0;
  580. desc->requested_packet = 0;
  581. /* depending on use may need ifp->bssidx instead */
  582. desc->interface_id = ifidx;
  583. desc->ac_bitmap = 0xff; /* update this when handling APSD */
  584. if (addr)
  585. memcpy(&desc->ea[0], addr, ETH_ALEN);
  586. }
  587. static
  588. void brcmf_fws_clear_mac_descriptor(struct brcmf_fws_mac_descriptor *desc)
  589. {
  590. brcmf_dbg(TRACE,
  591. "enter: ea=%pM, ifidx=%u\n", desc->ea, desc->interface_id);
  592. desc->occupied = 0;
  593. desc->state = BRCMF_FWS_STATE_CLOSE;
  594. desc->requested_credit = 0;
  595. desc->requested_packet = 0;
  596. }
  597. static struct brcmf_fws_mac_descriptor *
  598. brcmf_fws_mac_descriptor_lookup(struct brcmf_fws_info *fws, u8 *ea)
  599. {
  600. struct brcmf_fws_mac_descriptor *entry;
  601. int i;
  602. if (ea == NULL)
  603. return ERR_PTR(-EINVAL);
  604. entry = &fws->desc.nodes[0];
  605. for (i = 0; i < ARRAY_SIZE(fws->desc.nodes); i++) {
  606. if (entry->occupied && !memcmp(entry->ea, ea, ETH_ALEN))
  607. return entry;
  608. entry++;
  609. }
  610. return ERR_PTR(-ENOENT);
  611. }
  612. static struct brcmf_fws_mac_descriptor*
  613. brcmf_fws_find_mac_desc(struct brcmf_fws_info *fws, struct brcmf_if *ifp,
  614. u8 *da)
  615. {
  616. struct brcmf_fws_mac_descriptor *entry = &fws->desc.other;
  617. bool multicast;
  618. multicast = is_multicast_ether_addr(da);
  619. /* Multicast destination, STA and P2P clients get the interface entry.
  620. * STA/GC gets the Mac Entry for TDLS destinations, TDLS destinations
  621. * have their own entry.
  622. */
  623. if (multicast && ifp->fws_desc) {
  624. entry = ifp->fws_desc;
  625. goto done;
  626. }
  627. entry = brcmf_fws_mac_descriptor_lookup(fws, da);
  628. if (IS_ERR(entry))
  629. entry = ifp->fws_desc;
  630. done:
  631. return entry;
  632. }
  633. static bool brcmf_fws_mac_desc_closed(struct brcmf_fws_info *fws,
  634. struct brcmf_fws_mac_descriptor *entry,
  635. int fifo)
  636. {
  637. struct brcmf_fws_mac_descriptor *if_entry;
  638. bool closed;
  639. /* for unique destination entries the related interface
  640. * may be closed.
  641. */
  642. if (entry->mac_handle) {
  643. if_entry = &fws->desc.iface[entry->interface_id];
  644. if (if_entry->state == BRCMF_FWS_STATE_CLOSE)
  645. return true;
  646. }
  647. /* an entry is closed when the state is closed and
  648. * the firmware did not request anything.
  649. */
  650. closed = entry->state == BRCMF_FWS_STATE_CLOSE &&
  651. !entry->requested_credit && !entry->requested_packet;
  652. /* Or firmware does not allow traffic for given fifo */
  653. return closed || !(entry->ac_bitmap & BIT(fifo));
  654. }
  655. static void brcmf_fws_mac_desc_cleanup(struct brcmf_fws_info *fws,
  656. struct brcmf_fws_mac_descriptor *entry,
  657. int ifidx)
  658. {
  659. if (entry->occupied && (ifidx == -1 || ifidx == entry->interface_id)) {
  660. brcmf_fws_psq_flush(fws, &entry->psq, ifidx);
  661. entry->occupied = !!(entry->psq.len);
  662. }
  663. }
  664. static void brcmf_fws_bus_txq_cleanup(struct brcmf_fws_info *fws,
  665. bool (*fn)(struct sk_buff *, void *),
  666. int ifidx)
  667. {
  668. struct brcmf_fws_hanger_item *hi;
  669. struct pktq *txq;
  670. struct sk_buff *skb;
  671. int prec;
  672. u32 hslot;
  673. txq = brcmf_bus_gettxq(fws->drvr->bus_if);
  674. if (IS_ERR(txq)) {
  675. brcmf_dbg(TRACE, "no txq to clean up\n");
  676. return;
  677. }
  678. for (prec = 0; prec < txq->num_prec; prec++) {
  679. skb = brcmu_pktq_pdeq_match(txq, prec, fn, &ifidx);
  680. while (skb) {
  681. hslot = brcmf_skb_htod_tag_get_field(skb, HSLOT);
  682. hi = &fws->hanger.items[hslot];
  683. WARN_ON(skb != hi->pkt);
  684. hi->state = BRCMF_FWS_HANGER_ITEM_STATE_FREE;
  685. brcmu_pkt_buf_free_skb(skb);
  686. skb = brcmu_pktq_pdeq_match(txq, prec, fn, &ifidx);
  687. }
  688. }
  689. }
  690. static void brcmf_fws_cleanup(struct brcmf_fws_info *fws, int ifidx)
  691. {
  692. int i;
  693. struct brcmf_fws_mac_descriptor *table;
  694. bool (*matchfn)(struct sk_buff *, void *) = NULL;
  695. if (fws == NULL)
  696. return;
  697. if (ifidx != -1)
  698. matchfn = brcmf_fws_ifidx_match;
  699. /* cleanup individual nodes */
  700. table = &fws->desc.nodes[0];
  701. for (i = 0; i < ARRAY_SIZE(fws->desc.nodes); i++)
  702. brcmf_fws_mac_desc_cleanup(fws, &table[i], ifidx);
  703. brcmf_fws_mac_desc_cleanup(fws, &fws->desc.other, ifidx);
  704. brcmf_fws_bus_txq_cleanup(fws, matchfn, ifidx);
  705. brcmf_fws_hanger_cleanup(fws, matchfn, ifidx);
  706. }
  707. static int brcmf_fws_hdrpush(struct brcmf_fws_info *fws, struct sk_buff *skb)
  708. {
  709. struct brcmf_fws_mac_descriptor *entry = brcmf_skbcb(skb)->mac;
  710. u8 *wlh;
  711. u16 data_offset = 0;
  712. u8 fillers;
  713. __le32 pkttag = cpu_to_le32(brcmf_skbcb(skb)->htod);
  714. brcmf_dbg(TRACE, "enter: ea=%pM, ifidx=%u (%u), pkttag=0x%08X, hslot=%d\n",
  715. entry->ea, entry->interface_id,
  716. brcmf_skb_if_flags_get_field(skb, INDEX),
  717. le32_to_cpu(pkttag), (le32_to_cpu(pkttag) >> 8) & 0xffff);
  718. if (entry->send_tim_signal)
  719. data_offset += 2 + BRCMF_FWS_TYPE_PENDING_TRAFFIC_BMP_LEN;
  720. /* +2 is for Type[1] and Len[1] in TLV, plus TIM signal */
  721. data_offset += 2 + BRCMF_FWS_TYPE_PKTTAG_LEN;
  722. fillers = round_up(data_offset, 4) - data_offset;
  723. data_offset += fillers;
  724. skb_push(skb, data_offset);
  725. wlh = skb->data;
  726. wlh[0] = BRCMF_FWS_TYPE_PKTTAG;
  727. wlh[1] = BRCMF_FWS_TYPE_PKTTAG_LEN;
  728. memcpy(&wlh[2], &pkttag, sizeof(pkttag));
  729. wlh += BRCMF_FWS_TYPE_PKTTAG_LEN + 2;
  730. if (entry->send_tim_signal) {
  731. entry->send_tim_signal = 0;
  732. wlh[0] = BRCMF_FWS_TYPE_PENDING_TRAFFIC_BMP;
  733. wlh[1] = BRCMF_FWS_TYPE_PENDING_TRAFFIC_BMP_LEN;
  734. wlh[2] = entry->mac_handle;
  735. wlh[3] = entry->traffic_pending_bmp;
  736. brcmf_dbg(TRACE, "adding TIM info: %02X:%02X:%02X:%02X\n",
  737. wlh[0], wlh[1], wlh[2], wlh[3]);
  738. wlh += BRCMF_FWS_TYPE_PENDING_TRAFFIC_BMP_LEN + 2;
  739. entry->traffic_lastreported_bmp = entry->traffic_pending_bmp;
  740. }
  741. if (fillers)
  742. memset(wlh, BRCMF_FWS_TYPE_FILLER, fillers);
  743. brcmf_proto_hdrpush(fws->drvr, brcmf_skb_if_flags_get_field(skb, INDEX),
  744. data_offset >> 2, skb);
  745. return 0;
  746. }
  747. static bool brcmf_fws_tim_update(struct brcmf_fws_info *fws,
  748. struct brcmf_fws_mac_descriptor *entry,
  749. int fifo, bool send_immediately)
  750. {
  751. struct sk_buff *skb;
  752. struct brcmf_bus *bus;
  753. struct brcmf_skbuff_cb *skcb;
  754. s32 err;
  755. u32 len;
  756. /* check delayedQ and suppressQ in one call using bitmap */
  757. if (brcmu_pktq_mlen(&entry->psq, 3 << (fifo * 2)) == 0)
  758. entry->traffic_pending_bmp &= ~NBITVAL(fifo);
  759. else
  760. entry->traffic_pending_bmp |= NBITVAL(fifo);
  761. entry->send_tim_signal = false;
  762. if (entry->traffic_lastreported_bmp != entry->traffic_pending_bmp)
  763. entry->send_tim_signal = true;
  764. if (send_immediately && entry->send_tim_signal &&
  765. entry->state == BRCMF_FWS_STATE_CLOSE) {
  766. /* create a dummy packet and sent that. The traffic */
  767. /* bitmap info will automatically be attached to that packet */
  768. len = BRCMF_FWS_TYPE_PKTTAG_LEN + 2 +
  769. BRCMF_FWS_TYPE_PENDING_TRAFFIC_BMP_LEN + 2 +
  770. 4 + fws->drvr->hdrlen;
  771. skb = brcmu_pkt_buf_get_skb(len);
  772. if (skb == NULL)
  773. return false;
  774. skb_pull(skb, len);
  775. skcb = brcmf_skbcb(skb);
  776. skcb->mac = entry;
  777. skcb->state = BRCMF_FWS_SKBSTATE_TIM;
  778. bus = fws->drvr->bus_if;
  779. err = brcmf_fws_hdrpush(fws, skb);
  780. if (err == 0)
  781. err = brcmf_bus_txdata(bus, skb);
  782. if (err)
  783. brcmu_pkt_buf_free_skb(skb);
  784. return true;
  785. }
  786. return false;
  787. }
  788. static void
  789. brcmf_fws_flow_control_check(struct brcmf_fws_info *fws, struct pktq *pq,
  790. u8 if_id)
  791. {
  792. struct brcmf_if *ifp = fws->drvr->iflist[!if_id ? 0 : if_id + 1];
  793. if (WARN_ON(!ifp))
  794. return;
  795. if ((ifp->netif_stop & BRCMF_NETIF_STOP_REASON_FWS_FC) &&
  796. pq->len <= BRCMF_FWS_FLOWCONTROL_LOWATER)
  797. brcmf_txflowblock_if(ifp,
  798. BRCMF_NETIF_STOP_REASON_FWS_FC, false);
  799. if (!(ifp->netif_stop & BRCMF_NETIF_STOP_REASON_FWS_FC) &&
  800. pq->len >= BRCMF_FWS_FLOWCONTROL_HIWATER) {
  801. fws->stats.fws_flow_block++;
  802. brcmf_txflowblock_if(ifp, BRCMF_NETIF_STOP_REASON_FWS_FC, true);
  803. }
  804. return;
  805. }
  806. static int brcmf_fws_rssi_indicate(struct brcmf_fws_info *fws, s8 rssi)
  807. {
  808. brcmf_dbg(CTL, "rssi %d\n", rssi);
  809. return 0;
  810. }
  811. static
  812. int brcmf_fws_macdesc_indicate(struct brcmf_fws_info *fws, u8 type, u8 *data)
  813. {
  814. struct brcmf_fws_mac_descriptor *entry, *existing;
  815. u8 mac_handle;
  816. u8 ifidx;
  817. u8 *addr;
  818. mac_handle = *data++;
  819. ifidx = *data++;
  820. addr = data;
  821. entry = &fws->desc.nodes[mac_handle & 0x1F];
  822. if (type == BRCMF_FWS_TYPE_MACDESC_DEL) {
  823. if (entry->occupied) {
  824. brcmf_dbg(TRACE, "deleting %s mac %pM\n",
  825. entry->name, addr);
  826. brcmf_fws_mac_desc_cleanup(fws, entry, -1);
  827. brcmf_fws_clear_mac_descriptor(entry);
  828. } else
  829. fws->stats.mac_update_failed++;
  830. return 0;
  831. }
  832. existing = brcmf_fws_mac_descriptor_lookup(fws, addr);
  833. if (IS_ERR(existing)) {
  834. if (!entry->occupied) {
  835. entry->mac_handle = mac_handle;
  836. brcmf_fws_init_mac_descriptor(entry, addr, ifidx);
  837. brcmf_fws_macdesc_set_name(fws, entry);
  838. brcmu_pktq_init(&entry->psq, BRCMF_FWS_PSQ_PREC_COUNT,
  839. BRCMF_FWS_PSQ_LEN);
  840. brcmf_dbg(TRACE, "add %s mac %pM\n", entry->name, addr);
  841. } else {
  842. fws->stats.mac_update_failed++;
  843. }
  844. } else {
  845. if (entry != existing) {
  846. brcmf_dbg(TRACE, "copy mac %s\n", existing->name);
  847. memcpy(entry, existing,
  848. offsetof(struct brcmf_fws_mac_descriptor, psq));
  849. entry->mac_handle = mac_handle;
  850. brcmf_fws_clear_mac_descriptor(existing);
  851. brcmf_fws_macdesc_set_name(fws, entry);
  852. brcmf_dbg(TRACE, "relocate %s mac %pM\n", entry->name,
  853. addr);
  854. } else {
  855. brcmf_dbg(TRACE, "use existing\n");
  856. WARN_ON(entry->mac_handle != mac_handle);
  857. /* TODO: what should we do here: continue, reinit, .. */
  858. }
  859. }
  860. return 0;
  861. }
  862. static int brcmf_fws_macdesc_state_indicate(struct brcmf_fws_info *fws,
  863. u8 type, u8 *data)
  864. {
  865. struct brcmf_fws_mac_descriptor *entry;
  866. u8 mac_handle;
  867. mac_handle = data[0];
  868. entry = &fws->desc.nodes[mac_handle & 0x1F];
  869. if (!entry->occupied) {
  870. fws->stats.mac_ps_update_failed++;
  871. return -ESRCH;
  872. }
  873. /* a state update should wipe old credits */
  874. entry->requested_credit = 0;
  875. entry->requested_packet = 0;
  876. if (type == BRCMF_FWS_TYPE_MAC_OPEN) {
  877. entry->state = BRCMF_FWS_STATE_OPEN;
  878. return BRCMF_FWS_RET_OK_SCHEDULE;
  879. } else {
  880. entry->state = BRCMF_FWS_STATE_CLOSE;
  881. brcmf_fws_tim_update(fws, entry, BRCMF_FWS_FIFO_AC_BK, false);
  882. brcmf_fws_tim_update(fws, entry, BRCMF_FWS_FIFO_AC_BE, false);
  883. brcmf_fws_tim_update(fws, entry, BRCMF_FWS_FIFO_AC_VI, false);
  884. brcmf_fws_tim_update(fws, entry, BRCMF_FWS_FIFO_AC_VO, true);
  885. }
  886. return BRCMF_FWS_RET_OK_NOSCHEDULE;
  887. }
  888. static int brcmf_fws_interface_state_indicate(struct brcmf_fws_info *fws,
  889. u8 type, u8 *data)
  890. {
  891. struct brcmf_fws_mac_descriptor *entry;
  892. u8 ifidx;
  893. int ret;
  894. ifidx = data[0];
  895. if (ifidx >= BRCMF_MAX_IFS) {
  896. ret = -ERANGE;
  897. goto fail;
  898. }
  899. entry = &fws->desc.iface[ifidx];
  900. if (!entry->occupied) {
  901. ret = -ESRCH;
  902. goto fail;
  903. }
  904. brcmf_dbg(TRACE, "%s (%d): %s\n", brcmf_fws_get_tlv_name(type), type,
  905. entry->name);
  906. switch (type) {
  907. case BRCMF_FWS_TYPE_INTERFACE_OPEN:
  908. entry->state = BRCMF_FWS_STATE_OPEN;
  909. return BRCMF_FWS_RET_OK_SCHEDULE;
  910. case BRCMF_FWS_TYPE_INTERFACE_CLOSE:
  911. entry->state = BRCMF_FWS_STATE_CLOSE;
  912. return BRCMF_FWS_RET_OK_NOSCHEDULE;
  913. default:
  914. ret = -EINVAL;
  915. break;
  916. }
  917. fail:
  918. fws->stats.if_update_failed++;
  919. return ret;
  920. }
  921. static int brcmf_fws_request_indicate(struct brcmf_fws_info *fws, u8 type,
  922. u8 *data)
  923. {
  924. struct brcmf_fws_mac_descriptor *entry;
  925. entry = &fws->desc.nodes[data[1] & 0x1F];
  926. if (!entry->occupied) {
  927. if (type == BRCMF_FWS_TYPE_MAC_REQUEST_CREDIT)
  928. fws->stats.credit_request_failed++;
  929. else
  930. fws->stats.packet_request_failed++;
  931. return -ESRCH;
  932. }
  933. brcmf_dbg(TRACE, "%s (%d): %s cnt %d bmp %d\n",
  934. brcmf_fws_get_tlv_name(type), type, entry->name,
  935. data[0], data[2]);
  936. if (type == BRCMF_FWS_TYPE_MAC_REQUEST_CREDIT)
  937. entry->requested_credit = data[0];
  938. else
  939. entry->requested_packet = data[0];
  940. entry->ac_bitmap = data[2];
  941. return BRCMF_FWS_RET_OK_SCHEDULE;
  942. }
  943. static void
  944. brcmf_fws_macdesc_use_req_credit(struct brcmf_fws_mac_descriptor *entry,
  945. struct sk_buff *skb)
  946. {
  947. if (entry->requested_credit > 0) {
  948. entry->requested_credit--;
  949. brcmf_skb_if_flags_set_field(skb, REQUESTED, 1);
  950. brcmf_skb_if_flags_set_field(skb, REQ_CREDIT, 1);
  951. if (entry->state != BRCMF_FWS_STATE_CLOSE)
  952. brcmf_err("requested credit set while mac not closed!\n");
  953. } else if (entry->requested_packet > 0) {
  954. entry->requested_packet--;
  955. brcmf_skb_if_flags_set_field(skb, REQUESTED, 1);
  956. brcmf_skb_if_flags_set_field(skb, REQ_CREDIT, 0);
  957. if (entry->state != BRCMF_FWS_STATE_CLOSE)
  958. brcmf_err("requested packet set while mac not closed!\n");
  959. } else {
  960. brcmf_skb_if_flags_set_field(skb, REQUESTED, 0);
  961. brcmf_skb_if_flags_set_field(skb, REQ_CREDIT, 0);
  962. }
  963. }
  964. static void brcmf_fws_macdesc_return_req_credit(struct sk_buff *skb)
  965. {
  966. struct brcmf_fws_mac_descriptor *entry = brcmf_skbcb(skb)->mac;
  967. if ((brcmf_skb_if_flags_get_field(skb, REQ_CREDIT)) &&
  968. (entry->state == BRCMF_FWS_STATE_CLOSE))
  969. entry->requested_credit++;
  970. }
  971. static void brcmf_fws_return_credits(struct brcmf_fws_info *fws,
  972. u8 fifo, u8 credits)
  973. {
  974. int lender_ac;
  975. int *borrowed;
  976. int *fifo_credit;
  977. if (!credits)
  978. return;
  979. fws->fifo_credit_map |= 1 << fifo;
  980. if ((fifo == BRCMF_FWS_FIFO_AC_BE) &&
  981. (fws->credits_borrowed[0])) {
  982. for (lender_ac = BRCMF_FWS_FIFO_AC_VO; lender_ac >= 0;
  983. lender_ac--) {
  984. borrowed = &fws->credits_borrowed[lender_ac];
  985. if (*borrowed) {
  986. fws->fifo_credit_map |= (1 << lender_ac);
  987. fifo_credit = &fws->fifo_credit[lender_ac];
  988. if (*borrowed >= credits) {
  989. *borrowed -= credits;
  990. *fifo_credit += credits;
  991. return;
  992. } else {
  993. credits -= *borrowed;
  994. *fifo_credit += *borrowed;
  995. *borrowed = 0;
  996. }
  997. }
  998. }
  999. }
  1000. fws->fifo_credit[fifo] += credits;
  1001. }
  1002. static void brcmf_fws_schedule_deq(struct brcmf_fws_info *fws)
  1003. {
  1004. /* only schedule dequeue when there are credits for delayed traffic */
  1005. if (fws->fifo_credit_map & fws->fifo_delay_map)
  1006. queue_work(fws->fws_wq, &fws->fws_dequeue_work);
  1007. }
  1008. static int brcmf_fws_enq(struct brcmf_fws_info *fws,
  1009. enum brcmf_fws_skb_state state, int fifo,
  1010. struct sk_buff *p)
  1011. {
  1012. int prec = 2 * fifo;
  1013. u32 *qfull_stat = &fws->stats.delayq_full_error;
  1014. struct brcmf_fws_mac_descriptor *entry;
  1015. entry = brcmf_skbcb(p)->mac;
  1016. if (entry == NULL) {
  1017. brcmf_err("no mac descriptor found for skb %p\n", p);
  1018. return -ENOENT;
  1019. }
  1020. brcmf_dbg(DATA, "enter: fifo %d skb %p\n", fifo, p);
  1021. if (state == BRCMF_FWS_SKBSTATE_SUPPRESSED) {
  1022. prec += 1;
  1023. qfull_stat = &fws->stats.supprq_full_error;
  1024. }
  1025. if (brcmu_pktq_penq(&entry->psq, prec, p) == NULL) {
  1026. *qfull_stat += 1;
  1027. return -ENFILE;
  1028. }
  1029. /* increment total enqueued packet count */
  1030. fws->fifo_delay_map |= 1 << fifo;
  1031. fws->fifo_enqpkt[fifo]++;
  1032. /* update the sk_buff state */
  1033. brcmf_skbcb(p)->state = state;
  1034. /*
  1035. * A packet has been pushed so update traffic
  1036. * availability bitmap, if applicable
  1037. */
  1038. brcmf_fws_tim_update(fws, entry, fifo, true);
  1039. brcmf_fws_flow_control_check(fws, &entry->psq,
  1040. brcmf_skb_if_flags_get_field(p, INDEX));
  1041. return 0;
  1042. }
  1043. static struct sk_buff *brcmf_fws_deq(struct brcmf_fws_info *fws, int fifo)
  1044. {
  1045. struct brcmf_fws_mac_descriptor *table;
  1046. struct brcmf_fws_mac_descriptor *entry;
  1047. struct sk_buff *p;
  1048. int num_nodes;
  1049. int node_pos;
  1050. int prec_out;
  1051. int pmsk;
  1052. int i;
  1053. table = (struct brcmf_fws_mac_descriptor *)&fws->desc;
  1054. num_nodes = sizeof(fws->desc) / sizeof(struct brcmf_fws_mac_descriptor);
  1055. node_pos = fws->deq_node_pos[fifo];
  1056. for (i = 0; i < num_nodes; i++) {
  1057. entry = &table[(node_pos + i) % num_nodes];
  1058. if (!entry->occupied ||
  1059. brcmf_fws_mac_desc_closed(fws, entry, fifo))
  1060. continue;
  1061. if (entry->suppressed)
  1062. pmsk = 2;
  1063. else
  1064. pmsk = 3;
  1065. p = brcmu_pktq_mdeq(&entry->psq, pmsk << (fifo * 2), &prec_out);
  1066. if (p == NULL) {
  1067. if (entry->suppressed) {
  1068. if (entry->suppr_transit_count)
  1069. continue;
  1070. entry->suppressed = false;
  1071. p = brcmu_pktq_mdeq(&entry->psq,
  1072. 1 << (fifo * 2), &prec_out);
  1073. }
  1074. }
  1075. if (p == NULL)
  1076. continue;
  1077. brcmf_fws_macdesc_use_req_credit(entry, p);
  1078. /* move dequeue position to ensure fair round-robin */
  1079. fws->deq_node_pos[fifo] = (node_pos + i + 1) % num_nodes;
  1080. brcmf_fws_flow_control_check(fws, &entry->psq,
  1081. brcmf_skb_if_flags_get_field(p,
  1082. INDEX)
  1083. );
  1084. /*
  1085. * A packet has been picked up, update traffic
  1086. * availability bitmap, if applicable
  1087. */
  1088. brcmf_fws_tim_update(fws, entry, fifo, false);
  1089. /*
  1090. * decrement total enqueued fifo packets and
  1091. * clear delay bitmap if done.
  1092. */
  1093. fws->fifo_enqpkt[fifo]--;
  1094. if (fws->fifo_enqpkt[fifo] == 0)
  1095. fws->fifo_delay_map &= ~(1 << fifo);
  1096. goto done;
  1097. }
  1098. p = NULL;
  1099. done:
  1100. brcmf_dbg(DATA, "exit: fifo %d skb %p\n", fifo, p);
  1101. return p;
  1102. }
  1103. static int brcmf_fws_txstatus_suppressed(struct brcmf_fws_info *fws, int fifo,
  1104. struct sk_buff *skb, u32 genbit)
  1105. {
  1106. struct brcmf_fws_mac_descriptor *entry = brcmf_skbcb(skb)->mac;
  1107. u32 hslot;
  1108. int ret;
  1109. u8 ifidx;
  1110. hslot = brcmf_skb_htod_tag_get_field(skb, HSLOT);
  1111. /* this packet was suppressed */
  1112. if (!entry->suppressed) {
  1113. entry->suppressed = true;
  1114. entry->suppr_transit_count = entry->transit_count;
  1115. brcmf_dbg(DATA, "suppress %s: transit %d\n",
  1116. entry->name, entry->transit_count);
  1117. }
  1118. entry->generation = genbit;
  1119. ret = brcmf_proto_hdrpull(fws->drvr, false, &ifidx, skb);
  1120. if (ret == 0)
  1121. ret = brcmf_fws_enq(fws, BRCMF_FWS_SKBSTATE_SUPPRESSED, fifo,
  1122. skb);
  1123. if (ret != 0) {
  1124. /* suppress q is full or hdrpull failed, drop this packet */
  1125. brcmf_fws_hanger_poppkt(&fws->hanger, hslot, &skb,
  1126. true);
  1127. } else {
  1128. /*
  1129. * Mark suppressed to avoid a double free during
  1130. * wlfc cleanup
  1131. */
  1132. brcmf_fws_hanger_mark_suppressed(&fws->hanger, hslot);
  1133. }
  1134. return ret;
  1135. }
  1136. static int
  1137. brcmf_fws_txs_process(struct brcmf_fws_info *fws, u8 flags, u32 hslot,
  1138. u32 genbit)
  1139. {
  1140. u32 fifo;
  1141. int ret;
  1142. bool remove_from_hanger = true;
  1143. struct sk_buff *skb;
  1144. struct brcmf_skbuff_cb *skcb;
  1145. struct brcmf_fws_mac_descriptor *entry = NULL;
  1146. brcmf_dbg(DATA, "flags %d\n", flags);
  1147. if (flags == BRCMF_FWS_TXSTATUS_DISCARD)
  1148. fws->stats.txs_discard++;
  1149. else if (flags == BRCMF_FWS_TXSTATUS_CORE_SUPPRESS) {
  1150. fws->stats.txs_supp_core++;
  1151. remove_from_hanger = false;
  1152. } else if (flags == BRCMF_FWS_TXSTATUS_FW_PS_SUPPRESS) {
  1153. fws->stats.txs_supp_ps++;
  1154. remove_from_hanger = false;
  1155. } else if (flags == BRCMF_FWS_TXSTATUS_FW_TOSSED)
  1156. fws->stats.txs_tossed++;
  1157. else if (flags == BRCMF_FWS_TXSTATUS_HOST_TOSSED)
  1158. fws->stats.txs_host_tossed++;
  1159. else
  1160. brcmf_err("unexpected txstatus\n");
  1161. ret = brcmf_fws_hanger_poppkt(&fws->hanger, hslot, &skb,
  1162. remove_from_hanger);
  1163. if (ret != 0) {
  1164. brcmf_err("no packet in hanger slot: hslot=%d\n", hslot);
  1165. return ret;
  1166. }
  1167. skcb = brcmf_skbcb(skb);
  1168. entry = skcb->mac;
  1169. if (WARN_ON(!entry)) {
  1170. brcmu_pkt_buf_free_skb(skb);
  1171. return -EINVAL;
  1172. }
  1173. entry->transit_count--;
  1174. if (entry->suppressed && entry->suppr_transit_count)
  1175. entry->suppr_transit_count--;
  1176. brcmf_dbg(DATA, "%s flags %X htod %X\n", entry->name, skcb->if_flags,
  1177. skcb->htod);
  1178. /* pick up the implicit credit from this packet */
  1179. fifo = brcmf_skb_htod_tag_get_field(skb, FIFO);
  1180. if ((fws->fcmode == BRCMF_FWS_FCMODE_IMPLIED_CREDIT) ||
  1181. (brcmf_skb_if_flags_get_field(skb, REQ_CREDIT)) ||
  1182. (flags == BRCMF_FWS_TXSTATUS_HOST_TOSSED)) {
  1183. brcmf_fws_return_credits(fws, fifo, 1);
  1184. brcmf_fws_schedule_deq(fws);
  1185. }
  1186. brcmf_fws_macdesc_return_req_credit(skb);
  1187. if (!remove_from_hanger)
  1188. ret = brcmf_fws_txstatus_suppressed(fws, fifo, skb, genbit);
  1189. if (remove_from_hanger || ret)
  1190. brcmf_txfinalize(fws->drvr, skb, true);
  1191. return 0;
  1192. }
  1193. static int brcmf_fws_fifocreditback_indicate(struct brcmf_fws_info *fws,
  1194. u8 *data)
  1195. {
  1196. int i;
  1197. if (fws->fcmode != BRCMF_FWS_FCMODE_EXPLICIT_CREDIT) {
  1198. brcmf_dbg(INFO, "ignored\n");
  1199. return BRCMF_FWS_RET_OK_NOSCHEDULE;
  1200. }
  1201. brcmf_dbg(DATA, "enter: data %pM\n", data);
  1202. for (i = 0; i < BRCMF_FWS_FIFO_COUNT; i++)
  1203. brcmf_fws_return_credits(fws, i, data[i]);
  1204. brcmf_dbg(DATA, "map: credit %x delay %x\n", fws->fifo_credit_map,
  1205. fws->fifo_delay_map);
  1206. return BRCMF_FWS_RET_OK_SCHEDULE;
  1207. }
  1208. static int brcmf_fws_txstatus_indicate(struct brcmf_fws_info *fws, u8 *data)
  1209. {
  1210. __le32 status_le;
  1211. u32 status;
  1212. u32 hslot;
  1213. u32 genbit;
  1214. u8 flags;
  1215. fws->stats.txs_indicate++;
  1216. memcpy(&status_le, data, sizeof(status_le));
  1217. status = le32_to_cpu(status_le);
  1218. flags = brcmf_txstatus_get_field(status, FLAGS);
  1219. hslot = brcmf_txstatus_get_field(status, HSLOT);
  1220. genbit = brcmf_txstatus_get_field(status, GENERATION);
  1221. return brcmf_fws_txs_process(fws, flags, hslot, genbit);
  1222. }
  1223. static int brcmf_fws_dbg_seqnum_check(struct brcmf_fws_info *fws, u8 *data)
  1224. {
  1225. __le32 timestamp;
  1226. memcpy(&timestamp, &data[2], sizeof(timestamp));
  1227. brcmf_dbg(CTL, "received: seq %d, timestamp %d\n", data[1],
  1228. le32_to_cpu(timestamp));
  1229. return 0;
  1230. }
  1231. /* using macro so sparse checking does not complain
  1232. * about locking imbalance.
  1233. */
  1234. #define brcmf_fws_lock(drvr, flags) \
  1235. do { \
  1236. flags = 0; \
  1237. spin_lock_irqsave(&((drvr)->fws_spinlock), (flags)); \
  1238. } while (0)
  1239. /* using macro so sparse checking does not complain
  1240. * about locking imbalance.
  1241. */
  1242. #define brcmf_fws_unlock(drvr, flags) \
  1243. spin_unlock_irqrestore(&((drvr)->fws_spinlock), (flags))
  1244. static int brcmf_fws_notify_credit_map(struct brcmf_if *ifp,
  1245. const struct brcmf_event_msg *e,
  1246. void *data)
  1247. {
  1248. struct brcmf_fws_info *fws = ifp->drvr->fws;
  1249. int i;
  1250. ulong flags;
  1251. u8 *credits = data;
  1252. if (e->datalen < BRCMF_FWS_FIFO_COUNT) {
  1253. brcmf_err("event payload too small (%d)\n", e->datalen);
  1254. return -EINVAL;
  1255. }
  1256. if (fws->creditmap_received)
  1257. return 0;
  1258. fws->creditmap_received = true;
  1259. brcmf_dbg(TRACE, "enter: credits %pM\n", credits);
  1260. brcmf_fws_lock(ifp->drvr, flags);
  1261. for (i = 0; i < ARRAY_SIZE(fws->fifo_credit); i++) {
  1262. if (*credits)
  1263. fws->fifo_credit_map |= 1 << i;
  1264. else
  1265. fws->fifo_credit_map &= ~(1 << i);
  1266. fws->fifo_credit[i] = *credits++;
  1267. }
  1268. brcmf_fws_schedule_deq(fws);
  1269. brcmf_fws_unlock(ifp->drvr, flags);
  1270. return 0;
  1271. }
  1272. static int brcmf_fws_notify_bcmc_credit_support(struct brcmf_if *ifp,
  1273. const struct brcmf_event_msg *e,
  1274. void *data)
  1275. {
  1276. struct brcmf_fws_info *fws = ifp->drvr->fws;
  1277. ulong flags;
  1278. brcmf_fws_lock(ifp->drvr, flags);
  1279. if (fws)
  1280. fws->bcmc_credit_check = true;
  1281. brcmf_fws_unlock(ifp->drvr, flags);
  1282. return 0;
  1283. }
  1284. int brcmf_fws_hdrpull(struct brcmf_pub *drvr, int ifidx, s16 signal_len,
  1285. struct sk_buff *skb)
  1286. {
  1287. struct brcmf_fws_info *fws = drvr->fws;
  1288. ulong flags;
  1289. u8 *signal_data;
  1290. s16 data_len;
  1291. u8 type;
  1292. u8 len;
  1293. u8 *data;
  1294. s32 status;
  1295. s32 err;
  1296. brcmf_dbg(HDRS, "enter: ifidx %d, skblen %u, sig %d\n",
  1297. ifidx, skb->len, signal_len);
  1298. WARN_ON(signal_len > skb->len);
  1299. /* if flow control disabled, skip to packet data and leave */
  1300. if (!signal_len || !drvr->fw_signals) {
  1301. skb_pull(skb, signal_len);
  1302. return 0;
  1303. }
  1304. /* lock during tlv parsing */
  1305. brcmf_fws_lock(drvr, flags);
  1306. fws->stats.header_pulls++;
  1307. data_len = signal_len;
  1308. signal_data = skb->data;
  1309. status = BRCMF_FWS_RET_OK_NOSCHEDULE;
  1310. while (data_len > 0) {
  1311. /* extract tlv info */
  1312. type = signal_data[0];
  1313. /* FILLER type is actually not a TLV, but
  1314. * a single byte that can be skipped.
  1315. */
  1316. if (type == BRCMF_FWS_TYPE_FILLER) {
  1317. signal_data += 1;
  1318. data_len -= 1;
  1319. continue;
  1320. }
  1321. len = signal_data[1];
  1322. data = signal_data + 2;
  1323. brcmf_dbg(HDRS, "tlv type=%s (%d), len=%d (%d)\n",
  1324. brcmf_fws_get_tlv_name(type), type, len,
  1325. brcmf_fws_get_tlv_len(fws, type));
  1326. /* abort parsing when length invalid */
  1327. if (data_len < len + 2)
  1328. break;
  1329. if (len < brcmf_fws_get_tlv_len(fws, type))
  1330. break;
  1331. err = BRCMF_FWS_RET_OK_NOSCHEDULE;
  1332. switch (type) {
  1333. case BRCMF_FWS_TYPE_HOST_REORDER_RXPKTS:
  1334. case BRCMF_FWS_TYPE_COMP_TXSTATUS:
  1335. break;
  1336. case BRCMF_FWS_TYPE_MACDESC_ADD:
  1337. case BRCMF_FWS_TYPE_MACDESC_DEL:
  1338. brcmf_fws_macdesc_indicate(fws, type, data);
  1339. break;
  1340. case BRCMF_FWS_TYPE_MAC_OPEN:
  1341. case BRCMF_FWS_TYPE_MAC_CLOSE:
  1342. err = brcmf_fws_macdesc_state_indicate(fws, type, data);
  1343. break;
  1344. case BRCMF_FWS_TYPE_INTERFACE_OPEN:
  1345. case BRCMF_FWS_TYPE_INTERFACE_CLOSE:
  1346. err = brcmf_fws_interface_state_indicate(fws, type,
  1347. data);
  1348. break;
  1349. case BRCMF_FWS_TYPE_MAC_REQUEST_CREDIT:
  1350. case BRCMF_FWS_TYPE_MAC_REQUEST_PACKET:
  1351. err = brcmf_fws_request_indicate(fws, type, data);
  1352. break;
  1353. case BRCMF_FWS_TYPE_TXSTATUS:
  1354. brcmf_fws_txstatus_indicate(fws, data);
  1355. break;
  1356. case BRCMF_FWS_TYPE_FIFO_CREDITBACK:
  1357. err = brcmf_fws_fifocreditback_indicate(fws, data);
  1358. break;
  1359. case BRCMF_FWS_TYPE_RSSI:
  1360. brcmf_fws_rssi_indicate(fws, *data);
  1361. break;
  1362. case BRCMF_FWS_TYPE_TRANS_ID:
  1363. brcmf_fws_dbg_seqnum_check(fws, data);
  1364. break;
  1365. case BRCMF_FWS_TYPE_PKTTAG:
  1366. case BRCMF_FWS_TYPE_PENDING_TRAFFIC_BMP:
  1367. default:
  1368. fws->stats.tlv_invalid_type++;
  1369. break;
  1370. }
  1371. if (err == BRCMF_FWS_RET_OK_SCHEDULE)
  1372. status = BRCMF_FWS_RET_OK_SCHEDULE;
  1373. signal_data += len + 2;
  1374. data_len -= len + 2;
  1375. }
  1376. if (data_len != 0)
  1377. fws->stats.tlv_parse_failed++;
  1378. if (status == BRCMF_FWS_RET_OK_SCHEDULE)
  1379. brcmf_fws_schedule_deq(fws);
  1380. /* signalling processing result does
  1381. * not affect the actual ethernet packet.
  1382. */
  1383. skb_pull(skb, signal_len);
  1384. /* this may be a signal-only packet
  1385. */
  1386. if (skb->len == 0)
  1387. fws->stats.header_only_pkt++;
  1388. brcmf_fws_unlock(drvr, flags);
  1389. return 0;
  1390. }
  1391. static int brcmf_fws_precommit_skb(struct brcmf_fws_info *fws, int fifo,
  1392. struct sk_buff *p)
  1393. {
  1394. struct brcmf_skbuff_cb *skcb = brcmf_skbcb(p);
  1395. struct brcmf_fws_mac_descriptor *entry = skcb->mac;
  1396. int rc = 0;
  1397. bool first_time;
  1398. int hslot = BRCMF_FWS_HANGER_MAXITEMS;
  1399. u8 free_ctr;
  1400. u8 flags;
  1401. first_time = skcb->state != BRCMF_FWS_SKBSTATE_SUPPRESSED;
  1402. brcmf_skb_if_flags_set_field(p, TRANSMIT, 1);
  1403. brcmf_skb_htod_tag_set_field(p, FIFO, fifo);
  1404. brcmf_skb_htod_tag_set_field(p, GENERATION, entry->generation);
  1405. flags = BRCMF_FWS_HTOD_FLAG_PKTFROMHOST;
  1406. if (brcmf_skb_if_flags_get_field(p, REQUESTED)) {
  1407. /*
  1408. * Indicate that this packet is being sent in response to an
  1409. * explicit request from the firmware side.
  1410. */
  1411. flags |= BRCMF_FWS_HTOD_FLAG_PKT_REQUESTED;
  1412. }
  1413. brcmf_skb_htod_tag_set_field(p, FLAGS, flags);
  1414. if (first_time) {
  1415. /* obtaining free slot may fail, but that will be caught
  1416. * by the hanger push. This assures the packet has a BDC
  1417. * header upon return.
  1418. */
  1419. hslot = brcmf_fws_hanger_get_free_slot(&fws->hanger);
  1420. free_ctr = entry->seq[fifo];
  1421. brcmf_skb_htod_tag_set_field(p, HSLOT, hslot);
  1422. brcmf_skb_htod_tag_set_field(p, FREERUN, free_ctr);
  1423. rc = brcmf_fws_hanger_pushpkt(&fws->hanger, p, hslot);
  1424. if (rc)
  1425. brcmf_err("hanger push failed: rc=%d\n", rc);
  1426. }
  1427. if (rc == 0)
  1428. brcmf_fws_hdrpush(fws, p);
  1429. return rc;
  1430. }
  1431. static void
  1432. brcmf_fws_rollback_toq(struct brcmf_fws_info *fws,
  1433. struct sk_buff *skb, int fifo)
  1434. {
  1435. /*
  1436. put the packet back to the head of queue
  1437. - suppressed packet goes back to suppress sub-queue
  1438. - pull out the header, if new or delayed packet
  1439. Note: hslot is used only when header removal is done.
  1440. */
  1441. struct brcmf_fws_mac_descriptor *entry;
  1442. enum brcmf_fws_skb_state state;
  1443. struct sk_buff *pktout;
  1444. int rc = 0;
  1445. int hslot;
  1446. state = brcmf_skbcb(skb)->state;
  1447. entry = brcmf_skbcb(skb)->mac;
  1448. hslot = brcmf_skb_htod_tag_get_field(skb, HSLOT);
  1449. if (entry != NULL) {
  1450. if (state == BRCMF_FWS_SKBSTATE_SUPPRESSED) {
  1451. /* wl-header is saved for suppressed packets */
  1452. pktout = brcmu_pktq_penq_head(&entry->psq, 2 * fifo + 1,
  1453. skb);
  1454. if (pktout == NULL) {
  1455. brcmf_err("suppress queue full\n");
  1456. rc = -ENOSPC;
  1457. }
  1458. } else {
  1459. /* delay-q packets are going to delay-q */
  1460. pktout = brcmu_pktq_penq_head(&entry->psq,
  1461. 2 * fifo, skb);
  1462. if (pktout == NULL) {
  1463. brcmf_err("delay queue full\n");
  1464. rc = -ENOSPC;
  1465. }
  1466. /* free the hanger slot */
  1467. brcmf_fws_hanger_poppkt(&fws->hanger, hslot, &pktout,
  1468. true);
  1469. /* decrement sequence count */
  1470. entry->seq[fifo]--;
  1471. }
  1472. } else {
  1473. brcmf_err("no mac entry linked\n");
  1474. rc = -ENOENT;
  1475. }
  1476. if (rc) {
  1477. fws->stats.rollback_failed++;
  1478. brcmf_fws_txs_process(fws, BRCMF_FWS_TXSTATUS_HOST_TOSSED,
  1479. hslot, 0);
  1480. } else {
  1481. fws->stats.rollback_success++;
  1482. brcmf_fws_return_credits(fws, fifo, 1);
  1483. brcmf_fws_macdesc_return_req_credit(skb);
  1484. }
  1485. }
  1486. static int brcmf_fws_borrow_credit(struct brcmf_fws_info *fws)
  1487. {
  1488. int lender_ac;
  1489. if (time_after(fws->borrow_defer_timestamp, jiffies)) {
  1490. fws->fifo_credit_map &= ~(1 << BRCMF_FWS_FIFO_AC_BE);
  1491. return -ENAVAIL;
  1492. }
  1493. for (lender_ac = 0; lender_ac <= BRCMF_FWS_FIFO_AC_VO; lender_ac++) {
  1494. if (fws->fifo_credit[lender_ac]) {
  1495. fws->credits_borrowed[lender_ac]++;
  1496. fws->fifo_credit[lender_ac]--;
  1497. if (fws->fifo_credit[lender_ac] == 0)
  1498. fws->fifo_credit_map &= ~(1 << lender_ac);
  1499. fws->fifo_credit_map |= (1 << BRCMF_FWS_FIFO_AC_BE);
  1500. brcmf_dbg(DATA, "borrow credit from: %d\n", lender_ac);
  1501. return 0;
  1502. }
  1503. }
  1504. fws->fifo_credit_map &= ~(1 << BRCMF_FWS_FIFO_AC_BE);
  1505. return -ENAVAIL;
  1506. }
  1507. static int brcmf_fws_consume_credit(struct brcmf_fws_info *fws, int fifo,
  1508. struct sk_buff *skb)
  1509. {
  1510. struct brcmf_fws_mac_descriptor *entry = brcmf_skbcb(skb)->mac;
  1511. int *credit = &fws->fifo_credit[fifo];
  1512. if (fifo != BRCMF_FWS_FIFO_AC_BE)
  1513. fws->borrow_defer_timestamp = jiffies +
  1514. BRCMF_FWS_BORROW_DEFER_PERIOD;
  1515. if (!(*credit)) {
  1516. /* Try to borrow a credit from other queue */
  1517. if (fifo != BRCMF_FWS_FIFO_AC_BE ||
  1518. (brcmf_fws_borrow_credit(fws) != 0)) {
  1519. brcmf_dbg(DATA, "ac=%d, credits depleted\n", fifo);
  1520. return -ENAVAIL;
  1521. }
  1522. } else {
  1523. (*credit)--;
  1524. if (!(*credit))
  1525. fws->fifo_credit_map &= ~(1 << fifo);
  1526. }
  1527. brcmf_fws_macdesc_use_req_credit(entry, skb);
  1528. brcmf_dbg(DATA, "ac=%d, credits=%02d:%02d:%02d:%02d\n", fifo,
  1529. fws->fifo_credit[0], fws->fifo_credit[1],
  1530. fws->fifo_credit[2], fws->fifo_credit[3]);
  1531. return 0;
  1532. }
  1533. static int brcmf_fws_commit_skb(struct brcmf_fws_info *fws, int fifo,
  1534. struct sk_buff *skb)
  1535. {
  1536. struct brcmf_skbuff_cb *skcb = brcmf_skbcb(skb);
  1537. struct brcmf_fws_mac_descriptor *entry;
  1538. struct brcmf_bus *bus = fws->drvr->bus_if;
  1539. int rc;
  1540. u8 ifidx;
  1541. entry = skcb->mac;
  1542. if (IS_ERR(entry))
  1543. return PTR_ERR(entry);
  1544. rc = brcmf_fws_precommit_skb(fws, fifo, skb);
  1545. if (rc < 0) {
  1546. fws->stats.generic_error++;
  1547. goto rollback;
  1548. }
  1549. brcmf_dbg(DATA, "%s flags %X htod %X\n", entry->name, skcb->if_flags,
  1550. skcb->htod);
  1551. rc = brcmf_bus_txdata(bus, skb);
  1552. if (rc < 0) {
  1553. brcmf_proto_hdrpull(fws->drvr, false, &ifidx, skb);
  1554. goto rollback;
  1555. }
  1556. entry->transit_count++;
  1557. if (entry->suppressed)
  1558. entry->suppr_transit_count++;
  1559. entry->seq[fifo]++;
  1560. fws->stats.pkt2bus++;
  1561. fws->stats.send_pkts[fifo]++;
  1562. if (brcmf_skb_if_flags_get_field(skb, REQUESTED))
  1563. fws->stats.requested_sent[fifo]++;
  1564. return rc;
  1565. rollback:
  1566. brcmf_fws_rollback_toq(fws, skb, fifo);
  1567. return rc;
  1568. }
  1569. int brcmf_fws_process_skb(struct brcmf_if *ifp, struct sk_buff *skb)
  1570. {
  1571. struct brcmf_pub *drvr = ifp->drvr;
  1572. struct brcmf_fws_info *fws = drvr->fws;
  1573. struct brcmf_skbuff_cb *skcb = brcmf_skbcb(skb);
  1574. struct ethhdr *eh = (struct ethhdr *)(skb->data);
  1575. ulong flags;
  1576. int fifo = BRCMF_FWS_FIFO_BCMC;
  1577. bool multicast = is_multicast_ether_addr(eh->h_dest);
  1578. /* determine the priority */
  1579. if (!skb->priority)
  1580. skb->priority = cfg80211_classify8021d(skb);
  1581. drvr->tx_multicast += !!multicast;
  1582. if (ntohs(eh->h_proto) == ETH_P_PAE)
  1583. atomic_inc(&ifp->pend_8021x_cnt);
  1584. if (!brcmf_fws_fc_active(fws)) {
  1585. /* If the protocol uses a data header, apply it */
  1586. brcmf_proto_hdrpush(drvr, ifp->ifidx, 0, skb);
  1587. /* Use bus module to send data frame */
  1588. return brcmf_bus_txdata(drvr->bus_if, skb);
  1589. }
  1590. /* set control buffer information */
  1591. skcb->if_flags = 0;
  1592. skcb->mac = brcmf_fws_find_mac_desc(fws, ifp, eh->h_dest);
  1593. skcb->state = BRCMF_FWS_SKBSTATE_NEW;
  1594. brcmf_skb_if_flags_set_field(skb, INDEX, ifp->ifidx);
  1595. if (!multicast)
  1596. fifo = brcmf_fws_prio2fifo[skb->priority];
  1597. brcmf_dbg(DATA, "%s mac %pM multi %d fifo %d\n", skcb->mac->name,
  1598. eh->h_dest, multicast, fifo);
  1599. brcmf_fws_lock(drvr, flags);
  1600. /* multicast credit support is conditional, setting
  1601. * flag to false to assure credit is consumed below.
  1602. */
  1603. if (fws->bcmc_credit_check)
  1604. multicast = false;
  1605. if (skcb->mac->suppressed ||
  1606. fws->bus_flow_blocked ||
  1607. brcmf_fws_mac_desc_closed(fws, skcb->mac, fifo) ||
  1608. brcmu_pktq_mlen(&skcb->mac->psq, 3 << (fifo * 2)) ||
  1609. (!multicast &&
  1610. brcmf_fws_consume_credit(fws, fifo, skb) < 0)) {
  1611. /* enqueue the packet in delayQ */
  1612. drvr->fws->fifo_delay_map |= 1 << fifo;
  1613. brcmf_fws_enq(fws, BRCMF_FWS_SKBSTATE_DELAYED, fifo, skb);
  1614. } else {
  1615. brcmf_fws_commit_skb(fws, fifo, skb);
  1616. }
  1617. brcmf_fws_unlock(drvr, flags);
  1618. return 0;
  1619. }
  1620. void brcmf_fws_reset_interface(struct brcmf_if *ifp)
  1621. {
  1622. struct brcmf_fws_mac_descriptor *entry = ifp->fws_desc;
  1623. brcmf_dbg(TRACE, "enter: idx=%d\n", ifp->bssidx);
  1624. if (!entry)
  1625. return;
  1626. brcmf_fws_init_mac_descriptor(entry, ifp->mac_addr, ifp->ifidx);
  1627. }
  1628. void brcmf_fws_add_interface(struct brcmf_if *ifp)
  1629. {
  1630. struct brcmf_fws_info *fws = ifp->drvr->fws;
  1631. struct brcmf_fws_mac_descriptor *entry;
  1632. if (!ifp->ndev || !ifp->drvr->fw_signals)
  1633. return;
  1634. entry = &fws->desc.iface[ifp->ifidx];
  1635. ifp->fws_desc = entry;
  1636. brcmf_fws_init_mac_descriptor(entry, ifp->mac_addr, ifp->ifidx);
  1637. brcmf_fws_macdesc_set_name(fws, entry);
  1638. brcmu_pktq_init(&entry->psq, BRCMF_FWS_PSQ_PREC_COUNT,
  1639. BRCMF_FWS_PSQ_LEN);
  1640. brcmf_dbg(TRACE, "added %s\n", entry->name);
  1641. }
  1642. void brcmf_fws_del_interface(struct brcmf_if *ifp)
  1643. {
  1644. struct brcmf_fws_mac_descriptor *entry = ifp->fws_desc;
  1645. ulong flags;
  1646. if (!entry)
  1647. return;
  1648. brcmf_fws_lock(ifp->drvr, flags);
  1649. ifp->fws_desc = NULL;
  1650. brcmf_dbg(TRACE, "deleting %s\n", entry->name);
  1651. brcmf_fws_clear_mac_descriptor(entry);
  1652. brcmf_fws_cleanup(ifp->drvr->fws, ifp->ifidx);
  1653. brcmf_fws_unlock(ifp->drvr, flags);
  1654. }
  1655. static void brcmf_fws_dequeue_worker(struct work_struct *worker)
  1656. {
  1657. struct brcmf_fws_info *fws;
  1658. struct sk_buff *skb;
  1659. ulong flags;
  1660. int fifo;
  1661. fws = container_of(worker, struct brcmf_fws_info, fws_dequeue_work);
  1662. brcmf_fws_lock(fws->drvr, flags);
  1663. for (fifo = NL80211_NUM_ACS; fifo >= 0 && !fws->bus_flow_blocked;
  1664. fifo--) {
  1665. while ((fws->fifo_credit[fifo]) || ((!fws->bcmc_credit_check) &&
  1666. (fifo == BRCMF_FWS_FIFO_BCMC))) {
  1667. skb = brcmf_fws_deq(fws, fifo);
  1668. if (!skb)
  1669. break;
  1670. fws->fifo_credit[fifo]--;
  1671. if (brcmf_fws_commit_skb(fws, fifo, skb))
  1672. break;
  1673. if (fws->bus_flow_blocked)
  1674. break;
  1675. }
  1676. if ((fifo == BRCMF_FWS_FIFO_AC_BE) &&
  1677. (fws->fifo_credit[fifo] == 0) &&
  1678. (!fws->bus_flow_blocked)) {
  1679. while (brcmf_fws_borrow_credit(fws) == 0) {
  1680. skb = brcmf_fws_deq(fws, fifo);
  1681. if (!skb) {
  1682. brcmf_fws_return_credits(fws, fifo, 1);
  1683. break;
  1684. }
  1685. if (brcmf_fws_commit_skb(fws, fifo, skb))
  1686. break;
  1687. if (fws->bus_flow_blocked)
  1688. break;
  1689. }
  1690. }
  1691. }
  1692. brcmf_fws_unlock(fws->drvr, flags);
  1693. }
  1694. int brcmf_fws_init(struct brcmf_pub *drvr)
  1695. {
  1696. u32 tlv = BRCMF_FWS_FLAGS_RSSI_SIGNALS;
  1697. int rc;
  1698. if (!drvr->fw_signals)
  1699. return 0;
  1700. spin_lock_init(&drvr->fws_spinlock);
  1701. drvr->fws = kzalloc(sizeof(*(drvr->fws)), GFP_KERNEL);
  1702. if (!drvr->fws) {
  1703. rc = -ENOMEM;
  1704. goto fail;
  1705. }
  1706. /* set linkage back */
  1707. drvr->fws->drvr = drvr;
  1708. drvr->fws->fcmode = fcmode;
  1709. drvr->fws->fws_wq = create_singlethread_workqueue("brcmf_fws_wq");
  1710. if (drvr->fws->fws_wq == NULL) {
  1711. brcmf_err("workqueue creation failed\n");
  1712. rc = -EBADF;
  1713. goto fail;
  1714. }
  1715. INIT_WORK(&drvr->fws->fws_dequeue_work, brcmf_fws_dequeue_worker);
  1716. /* enable firmware signalling if fcmode active */
  1717. if (drvr->fws->fcmode != BRCMF_FWS_FCMODE_NONE)
  1718. tlv |= BRCMF_FWS_FLAGS_XONXOFF_SIGNALS |
  1719. BRCMF_FWS_FLAGS_CREDIT_STATUS_SIGNALS |
  1720. BRCMF_FWS_FLAGS_HOST_PROPTXSTATUS_ACTIVE;
  1721. rc = brcmf_fweh_register(drvr, BRCMF_E_FIFO_CREDIT_MAP,
  1722. brcmf_fws_notify_credit_map);
  1723. if (rc < 0) {
  1724. brcmf_err("register credit map handler failed\n");
  1725. goto fail;
  1726. }
  1727. rc = brcmf_fweh_register(drvr, BRCMF_E_BCMC_CREDIT_SUPPORT,
  1728. brcmf_fws_notify_bcmc_credit_support);
  1729. if (rc < 0) {
  1730. brcmf_err("register bcmc credit handler failed\n");
  1731. brcmf_fweh_unregister(drvr, BRCMF_E_FIFO_CREDIT_MAP);
  1732. goto fail;
  1733. }
  1734. /* setting the iovar may fail if feature is unsupported
  1735. * so leave the rc as is so driver initialization can
  1736. * continue.
  1737. */
  1738. if (brcmf_fil_iovar_int_set(drvr->iflist[0], "tlv", tlv)) {
  1739. brcmf_err("failed to set bdcv2 tlv signaling\n");
  1740. goto fail_event;
  1741. }
  1742. brcmf_fws_hanger_init(&drvr->fws->hanger);
  1743. brcmf_fws_init_mac_descriptor(&drvr->fws->desc.other, NULL, 0);
  1744. brcmf_fws_macdesc_set_name(drvr->fws, &drvr->fws->desc.other);
  1745. brcmu_pktq_init(&drvr->fws->desc.other.psq, BRCMF_FWS_PSQ_PREC_COUNT,
  1746. BRCMF_FWS_PSQ_LEN);
  1747. /* create debugfs file for statistics */
  1748. brcmf_debugfs_create_fws_stats(drvr, &drvr->fws->stats);
  1749. brcmf_dbg(INFO, "%s bdcv2 tlv signaling [%x]\n",
  1750. drvr->fw_signals ? "enabled" : "disabled", tlv);
  1751. return 0;
  1752. fail_event:
  1753. brcmf_fweh_unregister(drvr, BRCMF_E_BCMC_CREDIT_SUPPORT);
  1754. brcmf_fweh_unregister(drvr, BRCMF_E_FIFO_CREDIT_MAP);
  1755. fail:
  1756. brcmf_fws_deinit(drvr);
  1757. return rc;
  1758. }
  1759. void brcmf_fws_deinit(struct brcmf_pub *drvr)
  1760. {
  1761. struct brcmf_fws_info *fws = drvr->fws;
  1762. ulong flags;
  1763. if (!fws)
  1764. return;
  1765. /* disable firmware signalling entirely
  1766. * to avoid using the workqueue.
  1767. */
  1768. drvr->fw_signals = false;
  1769. if (drvr->fws->fws_wq)
  1770. destroy_workqueue(drvr->fws->fws_wq);
  1771. /* cleanup */
  1772. brcmf_fws_lock(drvr, flags);
  1773. brcmf_fws_cleanup(fws, -1);
  1774. drvr->fws = NULL;
  1775. brcmf_fws_unlock(drvr, flags);
  1776. /* free top structure */
  1777. kfree(fws);
  1778. }
  1779. bool brcmf_fws_fc_active(struct brcmf_fws_info *fws)
  1780. {
  1781. if (!fws)
  1782. return false;
  1783. return fws->fcmode != BRCMF_FWS_FCMODE_NONE;
  1784. }
  1785. void brcmf_fws_bustxfail(struct brcmf_fws_info *fws, struct sk_buff *skb)
  1786. {
  1787. ulong flags;
  1788. u32 hslot;
  1789. if (brcmf_skbcb(skb)->state == BRCMF_FWS_SKBSTATE_TIM) {
  1790. brcmu_pkt_buf_free_skb(skb);
  1791. return;
  1792. }
  1793. brcmf_fws_lock(fws->drvr, flags);
  1794. hslot = brcmf_skb_htod_tag_get_field(skb, HSLOT);
  1795. brcmf_fws_txs_process(fws, BRCMF_FWS_TXSTATUS_HOST_TOSSED, hslot, 0);
  1796. brcmf_fws_unlock(fws->drvr, flags);
  1797. }
  1798. void brcmf_fws_bus_blocked(struct brcmf_pub *drvr, bool flow_blocked)
  1799. {
  1800. struct brcmf_fws_info *fws = drvr->fws;
  1801. fws->bus_flow_blocked = flow_blocked;
  1802. if (!flow_blocked)
  1803. brcmf_fws_schedule_deq(fws);
  1804. else
  1805. fws->stats.bus_flow_block++;
  1806. }