ipa_reg-v5.5.c 18 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /* Copyright (C) 2023-2024 Linaro Ltd. */
  3. #include <linux/array_size.h>
  4. #include <linux/bits.h>
  5. #include <linux/types.h>
  6. #include "../ipa_reg.h"
  7. #include "../ipa_version.h"
  8. static const u32 reg_flavor_0_fmask[] = {
  9. [MAX_PIPES] = GENMASK(7, 0),
  10. [MAX_CONS_PIPES] = GENMASK(15, 8),
  11. [MAX_PROD_PIPES] = GENMASK(23, 16),
  12. [PROD_LOWEST] = GENMASK(31, 24),
  13. };
  14. REG_FIELDS(FLAVOR_0, flavor_0, 0x00000000);
  15. static const u32 reg_comp_cfg_fmask[] = {
  16. [RAM_ARB_PRI_CLIENT_SAMP_FIX_DIS] = BIT(0),
  17. [GSI_SNOC_BYPASS_DIS] = BIT(1),
  18. [GEN_QMB_0_SNOC_BYPASS_DIS] = BIT(2),
  19. [GEN_QMB_1_SNOC_BYPASS_DIS] = BIT(3),
  20. /* Bit 4 reserved */
  21. [IPA_QMB_SELECT_CONS_EN] = BIT(5),
  22. [IPA_QMB_SELECT_PROD_EN] = BIT(6),
  23. [GSI_MULTI_INORDER_RD_DIS] = BIT(7),
  24. [GSI_MULTI_INORDER_WR_DIS] = BIT(8),
  25. [GEN_QMB_0_MULTI_INORDER_RD_DIS] = BIT(9),
  26. [GEN_QMB_1_MULTI_INORDER_RD_DIS] = BIT(10),
  27. [GEN_QMB_0_MULTI_INORDER_WR_DIS] = BIT(11),
  28. [GEN_QMB_1_MULTI_INORDER_WR_DIS] = BIT(12),
  29. [GEN_QMB_0_SNOC_CNOC_LOOP_PROT_DIS] = BIT(13),
  30. [GSI_SNOC_CNOC_LOOP_PROT_DISABLE] = BIT(14),
  31. [GSI_MULTI_AXI_MASTERS_DIS] = BIT(15),
  32. [IPA_QMB_SELECT_GLOBAL_EN] = BIT(16),
  33. /* Bits 17-18 reserved */
  34. [QMB_RAM_RD_CACHE_DISABLE] = BIT(19),
  35. [GENQMB_AOOOWR] = BIT(20),
  36. [IF_OUT_OF_BUF_STOP_RESET_MASK_EN] = BIT(21),
  37. [ATOMIC_FETCHER_ARB_LOCK_DIS] = GENMASK(27, 22),
  38. /* Bits 28-29 reserved */
  39. [GEN_QMB_1_DYNAMIC_ASIZE] = BIT(30),
  40. [GEN_QMB_0_DYNAMIC_ASIZE] = BIT(31),
  41. };
  42. REG_FIELDS(COMP_CFG, comp_cfg, 0x00000048);
  43. static const u32 reg_clkon_cfg_fmask[] = {
  44. [CLKON_RX] = BIT(0),
  45. [CLKON_PROC] = BIT(1),
  46. [TX_WRAPPER] = BIT(2),
  47. [CLKON_MISC] = BIT(3),
  48. [RAM_ARB] = BIT(4),
  49. [FTCH_HPS] = BIT(5),
  50. [FTCH_DPS] = BIT(6),
  51. [CLKON_HPS] = BIT(7),
  52. [CLKON_DPS] = BIT(8),
  53. [RX_HPS_CMDQS] = BIT(9),
  54. [HPS_DPS_CMDQS] = BIT(10),
  55. [DPS_TX_CMDQS] = BIT(11),
  56. [RSRC_MNGR] = BIT(12),
  57. [CTX_HANDLER] = BIT(13),
  58. [ACK_MNGR] = BIT(14),
  59. [D_DCPH] = BIT(15),
  60. [H_DCPH] = BIT(16),
  61. /* Bit 17 reserved */
  62. [NTF_TX_CMDQS] = BIT(18),
  63. [CLKON_TX_0] = BIT(19),
  64. [CLKON_TX_1] = BIT(20),
  65. [CLKON_FNR] = BIT(21),
  66. [QSB2AXI_CMDQ_L] = BIT(22),
  67. [AGGR_WRAPPER] = BIT(23),
  68. [RAM_SLAVEWAY] = BIT(24),
  69. [CLKON_QMB] = BIT(25),
  70. [WEIGHT_ARB] = BIT(26),
  71. [GSI_IF] = BIT(27),
  72. [CLKON_GLOBAL] = BIT(28),
  73. [GLOBAL_2X_CLK] = BIT(29),
  74. [DPL_FIFO] = BIT(30),
  75. [DRBIP] = BIT(31),
  76. };
  77. REG_FIELDS(CLKON_CFG, clkon_cfg, 0x00000050);
  78. static const u32 reg_route_fmask[] = {
  79. [ROUTE_DEF_PIPE] = GENMASK(7, 0),
  80. [ROUTE_FRAG_DEF_PIPE] = GENMASK(15, 8),
  81. [ROUTE_DEF_HDR_OFST] = GENMASK(25, 16),
  82. [ROUTE_DEF_HDR_TABLE] = BIT(26),
  83. [ROUTE_DEF_RETAIN_HDR] = BIT(27),
  84. [ROUTE_DIS] = BIT(28),
  85. /* Bits 29-31 reserved */
  86. };
  87. REG_FIELDS(ROUTE, route, 0x00000054);
  88. static const u32 reg_shared_mem_size_fmask[] = {
  89. [MEM_SIZE] = GENMASK(15, 0),
  90. [MEM_BADDR] = GENMASK(31, 16),
  91. };
  92. REG_FIELDS(SHARED_MEM_SIZE, shared_mem_size, 0x0000005c);
  93. static const u32 reg_qsb_max_writes_fmask[] = {
  94. [GEN_QMB_0_MAX_WRITES] = GENMASK(3, 0),
  95. [GEN_QMB_1_MAX_WRITES] = GENMASK(7, 4),
  96. /* Bits 8-31 reserved */
  97. };
  98. REG_FIELDS(QSB_MAX_WRITES, qsb_max_writes, 0x00000070);
  99. static const u32 reg_qsb_max_reads_fmask[] = {
  100. [GEN_QMB_0_MAX_READS] = GENMASK(3, 0),
  101. [GEN_QMB_1_MAX_READS] = GENMASK(7, 4),
  102. /* Bits 8-15 reserved */
  103. [GEN_QMB_0_MAX_READS_BEATS] = GENMASK(23, 16),
  104. [GEN_QMB_1_MAX_READS_BEATS] = GENMASK(31, 24),
  105. };
  106. REG_FIELDS(QSB_MAX_READS, qsb_max_reads, 0x00000074);
  107. /* Valid bits defined by ipa->available */
  108. REG_STRIDE(STATE_AGGR_ACTIVE, state_aggr_active, 0x00000120, 0x0004);
  109. static const u32 reg_filt_rout_cache_flush_fmask[] = {
  110. [ROUTER_CACHE] = BIT(0),
  111. /* Bits 1-3 reserved */
  112. [FILTER_CACHE] = BIT(4),
  113. /* Bits 5-31 reserved */
  114. };
  115. REG_FIELDS(FILT_ROUT_CACHE_FLUSH, filt_rout_cache_flush, 0x0000404);
  116. static const u32 reg_local_pkt_proc_cntxt_fmask[] = {
  117. [IPA_BASE_ADDR] = GENMASK(17, 0),
  118. /* Bits 18-31 reserved */
  119. };
  120. /* Offset must be a multiple of 8 */
  121. REG_FIELDS(LOCAL_PKT_PROC_CNTXT, local_pkt_proc_cntxt, 0x00000478);
  122. static const u32 reg_ipa_tx_cfg_fmask[] = {
  123. /* Bits 0-1 reserved */
  124. [PREFETCH_ALMOST_EMPTY_SIZE_TX0] = GENMASK(5, 2),
  125. [DMAW_SCND_OUTSD_PRED_THRESHOLD] = GENMASK(9, 6),
  126. [DMAW_SCND_OUTSD_PRED_EN] = BIT(10),
  127. [DMAW_MAX_BEATS_256_DIS] = BIT(11),
  128. [PA_MASK_EN] = BIT(12),
  129. [PREFETCH_ALMOST_EMPTY_SIZE_TX1] = GENMASK(16, 13),
  130. [DUAL_TX_ENABLE] = BIT(17),
  131. [SSPND_PA_NO_START_STATE] = BIT(18),
  132. /* Bit 19 reserved */
  133. [HOLB_STICKY_DROP_EN] = BIT(20),
  134. /* Bits 21-31 reserved */
  135. };
  136. REG_FIELDS(IPA_TX_CFG, ipa_tx_cfg, 0x00000488);
  137. static const u32 reg_idle_indication_cfg_fmask[] = {
  138. [ENTER_IDLE_DEBOUNCE_THRESH] = GENMASK(15, 0),
  139. [CONST_NON_IDLE_ENABLE] = BIT(16),
  140. /* Bits 17-31 reserved */
  141. };
  142. REG_FIELDS(IDLE_INDICATION_CFG, idle_indication_cfg, 0x000004a8);
  143. static const u32 reg_qtime_timestamp_cfg_fmask[] = {
  144. /* Bits 0-7 reserved */
  145. [TAG_TIMESTAMP_LSB] = GENMASK(12, 8),
  146. /* Bits 13-15 reserved */
  147. [NAT_TIMESTAMP_LSB] = GENMASK(20, 16),
  148. /* Bits 21-31 reserved */
  149. };
  150. REG_FIELDS(QTIME_TIMESTAMP_CFG, qtime_timestamp_cfg, 0x000004ac);
  151. static const u32 reg_timers_xo_clk_div_cfg_fmask[] = {
  152. [DIV_VALUE] = GENMASK(8, 0),
  153. /* Bits 9-30 reserved */
  154. [DIV_ENABLE] = BIT(31),
  155. };
  156. REG_FIELDS(TIMERS_XO_CLK_DIV_CFG, timers_xo_clk_div_cfg, 0x000004b0);
  157. static const u32 reg_timers_pulse_gran_cfg_fmask[] = {
  158. [PULSE_GRAN_0] = GENMASK(2, 0),
  159. [PULSE_GRAN_1] = GENMASK(5, 3),
  160. [PULSE_GRAN_2] = GENMASK(8, 6),
  161. [PULSE_GRAN_3] = GENMASK(11, 9),
  162. /* Bits 12-31 reserved */
  163. };
  164. REG_FIELDS(TIMERS_PULSE_GRAN_CFG, timers_pulse_gran_cfg, 0x000004b4);
  165. static const u32 reg_src_rsrc_grp_01_rsrc_type_fmask[] = {
  166. [X_MIN_LIM] = GENMASK(5, 0),
  167. /* Bits 6-7 reserved */
  168. [X_MAX_LIM] = GENMASK(13, 8),
  169. /* Bits 14-15 reserved */
  170. [Y_MIN_LIM] = GENMASK(21, 16),
  171. /* Bits 22-23 reserved */
  172. [Y_MAX_LIM] = GENMASK(29, 24),
  173. /* Bits 30-31 reserved */
  174. };
  175. REG_STRIDE_FIELDS(SRC_RSRC_GRP_01_RSRC_TYPE, src_rsrc_grp_01_rsrc_type,
  176. 0x00000500, 0x0020);
  177. static const u32 reg_src_rsrc_grp_23_rsrc_type_fmask[] = {
  178. [X_MIN_LIM] = GENMASK(5, 0),
  179. /* Bits 6-7 reserved */
  180. [X_MAX_LIM] = GENMASK(13, 8),
  181. /* Bits 14-15 reserved */
  182. [Y_MIN_LIM] = GENMASK(21, 16),
  183. /* Bits 22-23 reserved */
  184. [Y_MAX_LIM] = GENMASK(29, 24),
  185. /* Bits 30-31 reserved */
  186. };
  187. REG_STRIDE_FIELDS(SRC_RSRC_GRP_23_RSRC_TYPE, src_rsrc_grp_23_rsrc_type,
  188. 0x00000504, 0x0020);
  189. static const u32 reg_src_rsrc_grp_45_rsrc_type_fmask[] = {
  190. [X_MIN_LIM] = GENMASK(5, 0),
  191. /* Bits 6-7 reserved */
  192. [X_MAX_LIM] = GENMASK(13, 8),
  193. /* Bits 14-15 reserved */
  194. [Y_MIN_LIM] = GENMASK(21, 16),
  195. /* Bits 22-23 reserved */
  196. [Y_MAX_LIM] = GENMASK(29, 24),
  197. /* Bits 30-31 reserved */
  198. };
  199. REG_STRIDE_FIELDS(SRC_RSRC_GRP_45_RSRC_TYPE, src_rsrc_grp_45_rsrc_type,
  200. 0x00000508, 0x0020);
  201. static const u32 reg_src_rsrc_grp_67_rsrc_type_fmask[] = {
  202. [X_MIN_LIM] = GENMASK(5, 0),
  203. /* Bits 6-7 reserved */
  204. [X_MAX_LIM] = GENMASK(13, 8),
  205. /* Bits 14-15 reserved */
  206. [Y_MIN_LIM] = GENMASK(21, 16),
  207. /* Bits 22-23 reserved */
  208. [Y_MAX_LIM] = GENMASK(29, 24),
  209. /* Bits 30-31 reserved */
  210. };
  211. REG_STRIDE_FIELDS(SRC_RSRC_GRP_67_RSRC_TYPE, src_rsrc_grp_67_rsrc_type,
  212. 0x0000050c, 0x0020);
  213. static const u32 reg_dst_rsrc_grp_01_rsrc_type_fmask[] = {
  214. [X_MIN_LIM] = GENMASK(5, 0),
  215. /* Bits 6-7 reserved */
  216. [X_MAX_LIM] = GENMASK(13, 8),
  217. /* Bits 14-15 reserved */
  218. [Y_MIN_LIM] = GENMASK(21, 16),
  219. /* Bits 22-23 reserved */
  220. [Y_MAX_LIM] = GENMASK(29, 24),
  221. /* Bits 30-31 reserved */
  222. };
  223. REG_STRIDE_FIELDS(DST_RSRC_GRP_01_RSRC_TYPE, dst_rsrc_grp_01_rsrc_type,
  224. 0x00000600, 0x0020);
  225. static const u32 reg_dst_rsrc_grp_23_rsrc_type_fmask[] = {
  226. [X_MIN_LIM] = GENMASK(5, 0),
  227. /* Bits 6-7 reserved */
  228. [X_MAX_LIM] = GENMASK(13, 8),
  229. /* Bits 14-15 reserved */
  230. [Y_MIN_LIM] = GENMASK(21, 16),
  231. /* Bits 22-23 reserved */
  232. [Y_MAX_LIM] = GENMASK(29, 24),
  233. /* Bits 30-31 reserved */
  234. };
  235. REG_STRIDE_FIELDS(DST_RSRC_GRP_23_RSRC_TYPE, dst_rsrc_grp_23_rsrc_type,
  236. 0x00000604, 0x0020);
  237. static const u32 reg_dst_rsrc_grp_45_rsrc_type_fmask[] = {
  238. [X_MIN_LIM] = GENMASK(5, 0),
  239. /* Bits 6-7 reserved */
  240. [X_MAX_LIM] = GENMASK(13, 8),
  241. /* Bits 14-15 reserved */
  242. [Y_MIN_LIM] = GENMASK(21, 16),
  243. /* Bits 22-23 reserved */
  244. [Y_MAX_LIM] = GENMASK(29, 24),
  245. /* Bits 30-31 reserved */
  246. };
  247. REG_STRIDE_FIELDS(DST_RSRC_GRP_45_RSRC_TYPE, dst_rsrc_grp_45_rsrc_type,
  248. 0x00000608, 0x0020);
  249. static const u32 reg_dst_rsrc_grp_67_rsrc_type_fmask[] = {
  250. [X_MIN_LIM] = GENMASK(5, 0),
  251. /* Bits 6-7 reserved */
  252. [X_MAX_LIM] = GENMASK(13, 8),
  253. /* Bits 14-15 reserved */
  254. [Y_MIN_LIM] = GENMASK(21, 16),
  255. /* Bits 22-23 reserved */
  256. [Y_MAX_LIM] = GENMASK(29, 24),
  257. /* Bits 30-31 reserved */
  258. };
  259. REG_STRIDE_FIELDS(DST_RSRC_GRP_67_RSRC_TYPE, dst_rsrc_grp_67_rsrc_type,
  260. 0x0000060c, 0x0020);
  261. /* Valid bits defined by ipa->available */
  262. REG_STRIDE(AGGR_FORCE_CLOSE, aggr_force_close, 0x000006b0, 0x0004);
  263. static const u32 reg_endp_init_cfg_fmask[] = {
  264. [FRAG_OFFLOAD_EN] = BIT(0),
  265. [CS_OFFLOAD_EN] = GENMASK(2, 1),
  266. [CS_METADATA_HDR_OFFSET] = GENMASK(6, 3),
  267. /* Bit 7 reserved */
  268. [CS_GEN_QMB_MASTER_SEL] = BIT(8),
  269. [PIPE_REPLICATE_EN] = BIT(9),
  270. /* Bits 10-31 reserved */
  271. };
  272. REG_STRIDE_FIELDS(ENDP_INIT_CFG, endp_init_cfg, 0x00001008, 0x0080);
  273. static const u32 reg_endp_init_nat_fmask[] = {
  274. [NAT_EN] = GENMASK(1, 0),
  275. /* Bits 2-31 reserved */
  276. };
  277. REG_STRIDE_FIELDS(ENDP_INIT_NAT, endp_init_nat, 0x0000100c, 0x0080);
  278. static const u32 reg_endp_init_hdr_fmask[] = {
  279. [HDR_LEN] = GENMASK(5, 0),
  280. [HDR_OFST_METADATA_VALID] = BIT(6),
  281. [HDR_OFST_METADATA] = GENMASK(12, 7),
  282. [HDR_ADDITIONAL_CONST_LEN] = GENMASK(18, 13),
  283. [HDR_OFST_PKT_SIZE_VALID] = BIT(19),
  284. [HDR_OFST_PKT_SIZE] = GENMASK(25, 20),
  285. /* Bit 26 reserved */
  286. [HDR_LEN_INC_DEAGG_HDR] = BIT(27),
  287. [HDR_LEN_MSB] = GENMASK(29, 28),
  288. [HDR_OFST_METADATA_MSB] = GENMASK(31, 30),
  289. };
  290. REG_STRIDE_FIELDS(ENDP_INIT_HDR, endp_init_hdr, 0x00001010, 0x0080);
  291. static const u32 reg_endp_init_hdr_ext_fmask[] = {
  292. [HDR_ENDIANNESS] = BIT(0),
  293. [HDR_TOTAL_LEN_OR_PAD_VALID] = BIT(1),
  294. [HDR_TOTAL_LEN_OR_PAD] = BIT(2),
  295. [HDR_PAYLOAD_LEN_INC_PADDING] = BIT(3),
  296. [HDR_TOTAL_LEN_OR_PAD_OFFSET] = GENMASK(9, 4),
  297. [HDR_PAD_TO_ALIGNMENT] = GENMASK(13, 10),
  298. /* Bits 14-15 reserved */
  299. [HDR_TOTAL_LEN_OR_PAD_OFFSET_MSB] = GENMASK(17, 16),
  300. [HDR_OFST_PKT_SIZE_MSB] = GENMASK(19, 18),
  301. [HDR_ADDITIONAL_CONST_LEN_MSB] = GENMASK(21, 20),
  302. [HDR_BYTES_TO_REMOVE_VALID] = BIT(22),
  303. /* Bit 23 reserved */
  304. [HDR_BYTES_TO_REMOVE] = GENMASK(31, 24),
  305. };
  306. REG_STRIDE_FIELDS(ENDP_INIT_HDR_EXT, endp_init_hdr_ext, 0x00001014, 0x0080);
  307. REG_STRIDE(ENDP_INIT_HDR_METADATA_MASK, endp_init_hdr_metadata_mask,
  308. 0x00001018, 0x0080);
  309. static const u32 reg_endp_init_mode_fmask[] = {
  310. [ENDP_MODE] = GENMASK(2, 0),
  311. [DCPH_ENABLE] = BIT(3),
  312. [DEST_PIPE_INDEX] = GENMASK(11, 4),
  313. [BYTE_THRESHOLD] = GENMASK(27, 12),
  314. /* Bit 28 reserved */
  315. [PAD_EN] = BIT(29),
  316. [DRBIP_ACL_ENABLE] = BIT(30),
  317. /* Bit 31 reserved */
  318. };
  319. REG_STRIDE_FIELDS(ENDP_INIT_MODE, endp_init_mode, 0x00001020, 0x0080);
  320. static const u32 reg_endp_init_aggr_fmask[] = {
  321. [AGGR_EN] = GENMASK(1, 0),
  322. [AGGR_TYPE] = GENMASK(4, 2),
  323. [BYTE_LIMIT] = GENMASK(10, 5),
  324. /* Bit 11 reserved */
  325. [TIME_LIMIT] = GENMASK(16, 12),
  326. [PKT_LIMIT] = GENMASK(22, 17),
  327. [SW_EOF_ACTIVE] = BIT(23),
  328. [FORCE_CLOSE] = BIT(24),
  329. /* Bit 25 reserved */
  330. [HARD_BYTE_LIMIT_EN] = BIT(26),
  331. [AGGR_GRAN_SEL] = BIT(27),
  332. [AGGR_COAL_L2] = BIT(28),
  333. /* Bits 27-31 reserved */
  334. };
  335. REG_STRIDE_FIELDS(ENDP_INIT_AGGR, endp_init_aggr, 0x00001024, 0x0080);
  336. static const u32 reg_endp_init_hol_block_en_fmask[] = {
  337. [HOL_BLOCK_EN] = BIT(0),
  338. /* Bits 1-31 reserved */
  339. };
  340. REG_STRIDE_FIELDS(ENDP_INIT_HOL_BLOCK_EN, endp_init_hol_block_en,
  341. 0x0000102c, 0x0080);
  342. static const u32 reg_endp_init_hol_block_timer_fmask[] = {
  343. [TIMER_LIMIT] = GENMASK(4, 0),
  344. /* Bits 5-7 reserved */
  345. [TIMER_GRAN_SEL] = GENMASK(9, 8),
  346. /* Bits 10-31 reserved */
  347. };
  348. REG_STRIDE_FIELDS(ENDP_INIT_HOL_BLOCK_TIMER, endp_init_hol_block_timer,
  349. 0x00001030, 0x0080);
  350. static const u32 reg_endp_init_deaggr_fmask[] = {
  351. [DEAGGR_HDR_LEN] = GENMASK(5, 0),
  352. [SYSPIPE_ERR_DETECTION] = BIT(6),
  353. [PACKET_OFFSET_VALID] = BIT(7),
  354. [PACKET_OFFSET_LOCATION] = GENMASK(13, 8),
  355. [IGNORE_MIN_PKT_ERR] = BIT(14),
  356. /* Bit 15 reserved */
  357. [MAX_PACKET_LEN] = GENMASK(31, 16),
  358. };
  359. REG_STRIDE_FIELDS(ENDP_INIT_DEAGGR, endp_init_deaggr, 0x00001034, 0x0080);
  360. static const u32 reg_endp_init_rsrc_grp_fmask[] = {
  361. [ENDP_RSRC_GRP] = GENMASK(2, 0),
  362. /* Bits 3-31 reserved */
  363. };
  364. REG_STRIDE_FIELDS(ENDP_INIT_RSRC_GRP, endp_init_rsrc_grp, 0x00001038, 0x0080);
  365. static const u32 reg_endp_init_seq_fmask[] = {
  366. [SEQ_TYPE] = GENMASK(7, 0),
  367. /* Bits 8-31 reserved */
  368. };
  369. REG_STRIDE_FIELDS(ENDP_INIT_SEQ, endp_init_seq, 0x0000103c, 0x0080);
  370. static const u32 reg_endp_status_fmask[] = {
  371. [STATUS_EN] = BIT(0),
  372. [STATUS_ENDP] = GENMASK(8, 1),
  373. [STATUS_PKT_SUPPRESS] = BIT(9),
  374. /* Bits 10-31 reserved */
  375. };
  376. REG_STRIDE_FIELDS(ENDP_STATUS, endp_status, 0x00001040, 0x0080);
  377. static const u32 reg_endp_filter_cache_cfg_fmask[] = {
  378. [CACHE_MSK_SRC_ID] = BIT(0),
  379. [CACHE_MSK_SRC_IP] = BIT(1),
  380. [CACHE_MSK_DST_IP] = BIT(2),
  381. [CACHE_MSK_SRC_PORT] = BIT(3),
  382. [CACHE_MSK_DST_PORT] = BIT(4),
  383. [CACHE_MSK_PROTOCOL] = BIT(5),
  384. [CACHE_MSK_METADATA] = BIT(6),
  385. /* Bits 7-31 reserved */
  386. };
  387. REG_STRIDE_FIELDS(ENDP_FILTER_CACHE_CFG, endp_filter_cache_cfg,
  388. 0x0000105c, 0x0080);
  389. static const u32 reg_endp_router_cache_cfg_fmask[] = {
  390. [CACHE_MSK_SRC_ID] = BIT(0),
  391. [CACHE_MSK_SRC_IP] = BIT(1),
  392. [CACHE_MSK_DST_IP] = BIT(2),
  393. [CACHE_MSK_SRC_PORT] = BIT(3),
  394. [CACHE_MSK_DST_PORT] = BIT(4),
  395. [CACHE_MSK_PROTOCOL] = BIT(5),
  396. [CACHE_MSK_METADATA] = BIT(6),
  397. /* Bits 7-31 reserved */
  398. };
  399. REG_STRIDE_FIELDS(ENDP_ROUTER_CACHE_CFG, endp_router_cache_cfg,
  400. 0x00001060, 0x0080);
  401. /* Valid bits defined by enum ipa_irq_id; only used for GSI_EE_AP */
  402. REG(IPA_IRQ_STTS, ipa_irq_stts, 0x0000c008 + 0x1000 * GSI_EE_AP);
  403. /* Valid bits defined by enum ipa_irq_id; only used for GSI_EE_AP */
  404. REG(IPA_IRQ_EN, ipa_irq_en, 0x0000c00c + 0x1000 * GSI_EE_AP);
  405. /* Valid bits defined by enum ipa_irq_id; only used for GSI_EE_AP */
  406. REG(IPA_IRQ_CLR, ipa_irq_clr, 0x0000c010 + 0x1000 * GSI_EE_AP);
  407. static const u32 reg_ipa_irq_uc_fmask[] = {
  408. [UC_INTR] = BIT(0),
  409. /* Bits 1-31 reserved */
  410. };
  411. REG_FIELDS(IPA_IRQ_UC, ipa_irq_uc, 0x0000c01c + 0x1000 * GSI_EE_AP);
  412. /* Valid bits defined by ipa->available */
  413. REG_STRIDE(IRQ_SUSPEND_INFO, irq_suspend_info,
  414. 0x0000c030 + 0x1000 * GSI_EE_AP, 0x0004);
  415. /* Valid bits defined by ipa->available */
  416. REG_STRIDE(IRQ_SUSPEND_EN, irq_suspend_en,
  417. 0x0000c050 + 0x1000 * GSI_EE_AP, 0x0004);
  418. /* Valid bits defined by ipa->available */
  419. REG_STRIDE(IRQ_SUSPEND_CLR, irq_suspend_clr,
  420. 0x0000c070 + 0x1000 * GSI_EE_AP, 0x0004);
  421. static const struct reg *reg_array[] = {
  422. [COMP_CFG] = &reg_comp_cfg,
  423. [CLKON_CFG] = &reg_clkon_cfg,
  424. [ROUTE] = &reg_route,
  425. [SHARED_MEM_SIZE] = &reg_shared_mem_size,
  426. [QSB_MAX_WRITES] = &reg_qsb_max_writes,
  427. [QSB_MAX_READS] = &reg_qsb_max_reads,
  428. [FILT_ROUT_CACHE_FLUSH] = &reg_filt_rout_cache_flush,
  429. [STATE_AGGR_ACTIVE] = &reg_state_aggr_active,
  430. [LOCAL_PKT_PROC_CNTXT] = &reg_local_pkt_proc_cntxt,
  431. [AGGR_FORCE_CLOSE] = &reg_aggr_force_close,
  432. [IPA_TX_CFG] = &reg_ipa_tx_cfg,
  433. [FLAVOR_0] = &reg_flavor_0,
  434. [IDLE_INDICATION_CFG] = &reg_idle_indication_cfg,
  435. [QTIME_TIMESTAMP_CFG] = &reg_qtime_timestamp_cfg,
  436. [TIMERS_XO_CLK_DIV_CFG] = &reg_timers_xo_clk_div_cfg,
  437. [TIMERS_PULSE_GRAN_CFG] = &reg_timers_pulse_gran_cfg,
  438. [SRC_RSRC_GRP_01_RSRC_TYPE] = &reg_src_rsrc_grp_01_rsrc_type,
  439. [SRC_RSRC_GRP_23_RSRC_TYPE] = &reg_src_rsrc_grp_23_rsrc_type,
  440. [SRC_RSRC_GRP_45_RSRC_TYPE] = &reg_src_rsrc_grp_45_rsrc_type,
  441. [SRC_RSRC_GRP_67_RSRC_TYPE] = &reg_src_rsrc_grp_67_rsrc_type,
  442. [DST_RSRC_GRP_01_RSRC_TYPE] = &reg_dst_rsrc_grp_01_rsrc_type,
  443. [DST_RSRC_GRP_23_RSRC_TYPE] = &reg_dst_rsrc_grp_23_rsrc_type,
  444. [DST_RSRC_GRP_45_RSRC_TYPE] = &reg_dst_rsrc_grp_45_rsrc_type,
  445. [DST_RSRC_GRP_67_RSRC_TYPE] = &reg_dst_rsrc_grp_67_rsrc_type,
  446. [ENDP_INIT_CFG] = &reg_endp_init_cfg,
  447. [ENDP_INIT_NAT] = &reg_endp_init_nat,
  448. [ENDP_INIT_HDR] = &reg_endp_init_hdr,
  449. [ENDP_INIT_HDR_EXT] = &reg_endp_init_hdr_ext,
  450. [ENDP_INIT_HDR_METADATA_MASK] = &reg_endp_init_hdr_metadata_mask,
  451. [ENDP_INIT_MODE] = &reg_endp_init_mode,
  452. [ENDP_INIT_AGGR] = &reg_endp_init_aggr,
  453. [ENDP_INIT_HOL_BLOCK_EN] = &reg_endp_init_hol_block_en,
  454. [ENDP_INIT_HOL_BLOCK_TIMER] = &reg_endp_init_hol_block_timer,
  455. [ENDP_INIT_DEAGGR] = &reg_endp_init_deaggr,
  456. [ENDP_INIT_RSRC_GRP] = &reg_endp_init_rsrc_grp,
  457. [ENDP_INIT_SEQ] = &reg_endp_init_seq,
  458. [ENDP_STATUS] = &reg_endp_status,
  459. [ENDP_FILTER_CACHE_CFG] = &reg_endp_filter_cache_cfg,
  460. [ENDP_ROUTER_CACHE_CFG] = &reg_endp_router_cache_cfg,
  461. [IPA_IRQ_STTS] = &reg_ipa_irq_stts,
  462. [IPA_IRQ_EN] = &reg_ipa_irq_en,
  463. [IPA_IRQ_CLR] = &reg_ipa_irq_clr,
  464. [IPA_IRQ_UC] = &reg_ipa_irq_uc,
  465. [IRQ_SUSPEND_INFO] = &reg_irq_suspend_info,
  466. [IRQ_SUSPEND_EN] = &reg_irq_suspend_en,
  467. [IRQ_SUSPEND_CLR] = &reg_irq_suspend_clr,
  468. };
  469. const struct regs ipa_regs_v5_5 = {
  470. .reg_count = ARRAY_SIZE(reg_array),
  471. .reg = reg_array,
  472. };