xref: /linux/drivers/net/ethernet/broadcom/bnxt/bnxt.h (revision d9afbb3509900a953f5cf90bc57e793ee80c1108)
1 /* Broadcom NetXtreme-C/E network driver.
2  *
3  * Copyright (c) 2014-2016 Broadcom Corporation
4  * Copyright (c) 2016-2018 Broadcom Limited
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License as published by
8  * the Free Software Foundation.
9  */
10 
11 #ifndef BNXT_H
12 #define BNXT_H
13 
14 #define DRV_MODULE_NAME		"bnxt_en"
15 
16 /* DO NOT CHANGE DRV_VER_* defines
17  * FIXME: Delete them
18  */
19 #define DRV_VER_MAJ	1
20 #define DRV_VER_MIN	10
21 #define DRV_VER_UPD	1
22 
23 #include <linux/interrupt.h>
24 #include <linux/rhashtable.h>
25 #include <linux/crash_dump.h>
26 #include <net/devlink.h>
27 #include <net/dst_metadata.h>
28 #include <net/xdp.h>
29 #include <linux/dim.h>
30 #ifdef CONFIG_TEE_BNXT_FW
31 #include <linux/firmware/broadcom/tee_bnxt_fw.h>
32 #endif
33 
34 extern struct list_head bnxt_block_cb_list;
35 
36 struct page_pool;
37 
38 struct tx_bd {
39 	__le32 tx_bd_len_flags_type;
40 	#define TX_BD_TYPE					(0x3f << 0)
41 	 #define TX_BD_TYPE_SHORT_TX_BD				 (0x00 << 0)
42 	 #define TX_BD_TYPE_LONG_TX_BD				 (0x10 << 0)
43 	#define TX_BD_FLAGS_PACKET_END				(1 << 6)
44 	#define TX_BD_FLAGS_NO_CMPL				(1 << 7)
45 	#define TX_BD_FLAGS_BD_CNT				(0x1f << 8)
46 	 #define TX_BD_FLAGS_BD_CNT_SHIFT			 8
47 	#define TX_BD_FLAGS_LHINT				(3 << 13)
48 	 #define TX_BD_FLAGS_LHINT_SHIFT			 13
49 	 #define TX_BD_FLAGS_LHINT_512_AND_SMALLER		 (0 << 13)
50 	 #define TX_BD_FLAGS_LHINT_512_TO_1023			 (1 << 13)
51 	 #define TX_BD_FLAGS_LHINT_1024_TO_2047			 (2 << 13)
52 	 #define TX_BD_FLAGS_LHINT_2048_AND_LARGER		 (3 << 13)
53 	#define TX_BD_FLAGS_COAL_NOW				(1 << 15)
54 	#define TX_BD_LEN					(0xffff << 16)
55 	 #define TX_BD_LEN_SHIFT				 16
56 
57 	u32 tx_bd_opaque;
58 	__le64 tx_bd_haddr;
59 } __packed;
60 
61 struct tx_bd_ext {
62 	__le32 tx_bd_hsize_lflags;
63 	#define TX_BD_FLAGS_TCP_UDP_CHKSUM			(1 << 0)
64 	#define TX_BD_FLAGS_IP_CKSUM				(1 << 1)
65 	#define TX_BD_FLAGS_NO_CRC				(1 << 2)
66 	#define TX_BD_FLAGS_STAMP				(1 << 3)
67 	#define TX_BD_FLAGS_T_IP_CHKSUM				(1 << 4)
68 	#define TX_BD_FLAGS_LSO					(1 << 5)
69 	#define TX_BD_FLAGS_IPID_FMT				(1 << 6)
70 	#define TX_BD_FLAGS_T_IPID				(1 << 7)
71 	#define TX_BD_HSIZE					(0xff << 16)
72 	 #define TX_BD_HSIZE_SHIFT				 16
73 
74 	__le32 tx_bd_mss;
75 	__le32 tx_bd_cfa_action;
76 	#define TX_BD_CFA_ACTION				(0xffff << 16)
77 	 #define TX_BD_CFA_ACTION_SHIFT				 16
78 
79 	__le32 tx_bd_cfa_meta;
80 	#define TX_BD_CFA_META_MASK                             0xfffffff
81 	#define TX_BD_CFA_META_VID_MASK                         0xfff
82 	#define TX_BD_CFA_META_PRI_MASK                         (0xf << 12)
83 	 #define TX_BD_CFA_META_PRI_SHIFT                        12
84 	#define TX_BD_CFA_META_TPID_MASK                        (3 << 16)
85 	 #define TX_BD_CFA_META_TPID_SHIFT                       16
86 	#define TX_BD_CFA_META_KEY                              (0xf << 28)
87 	 #define TX_BD_CFA_META_KEY_SHIFT			 28
88 	#define TX_BD_CFA_META_KEY_VLAN                         (1 << 28)
89 };
90 
91 struct rx_bd {
92 	__le32 rx_bd_len_flags_type;
93 	#define RX_BD_TYPE					(0x3f << 0)
94 	 #define RX_BD_TYPE_RX_PACKET_BD			 0x4
95 	 #define RX_BD_TYPE_RX_BUFFER_BD			 0x5
96 	 #define RX_BD_TYPE_RX_AGG_BD				 0x6
97 	 #define RX_BD_TYPE_16B_BD_SIZE				 (0 << 4)
98 	 #define RX_BD_TYPE_32B_BD_SIZE				 (1 << 4)
99 	 #define RX_BD_TYPE_48B_BD_SIZE				 (2 << 4)
100 	 #define RX_BD_TYPE_64B_BD_SIZE				 (3 << 4)
101 	#define RX_BD_FLAGS_SOP					(1 << 6)
102 	#define RX_BD_FLAGS_EOP					(1 << 7)
103 	#define RX_BD_FLAGS_BUFFERS				(3 << 8)
104 	 #define RX_BD_FLAGS_1_BUFFER_PACKET			 (0 << 8)
105 	 #define RX_BD_FLAGS_2_BUFFER_PACKET			 (1 << 8)
106 	 #define RX_BD_FLAGS_3_BUFFER_PACKET			 (2 << 8)
107 	 #define RX_BD_FLAGS_4_BUFFER_PACKET			 (3 << 8)
108 	#define RX_BD_LEN					(0xffff << 16)
109 	 #define RX_BD_LEN_SHIFT				 16
110 
111 	u32 rx_bd_opaque;
112 	__le64 rx_bd_haddr;
113 };
114 
115 struct tx_cmp {
116 	__le32 tx_cmp_flags_type;
117 	#define CMP_TYPE					(0x3f << 0)
118 	 #define CMP_TYPE_TX_L2_CMP				 0
119 	 #define CMP_TYPE_RX_L2_CMP				 17
120 	 #define CMP_TYPE_RX_AGG_CMP				 18
121 	 #define CMP_TYPE_RX_L2_TPA_START_CMP			 19
122 	 #define CMP_TYPE_RX_L2_TPA_END_CMP			 21
123 	 #define CMP_TYPE_RX_TPA_AGG_CMP			 22
124 	 #define CMP_TYPE_STATUS_CMP				 32
125 	 #define CMP_TYPE_REMOTE_DRIVER_REQ			 34
126 	 #define CMP_TYPE_REMOTE_DRIVER_RESP			 36
127 	 #define CMP_TYPE_ERROR_STATUS				 48
128 	 #define CMPL_BASE_TYPE_STAT_EJECT			 0x1aUL
129 	 #define CMPL_BASE_TYPE_HWRM_DONE			 0x20UL
130 	 #define CMPL_BASE_TYPE_HWRM_FWD_REQ			 0x22UL
131 	 #define CMPL_BASE_TYPE_HWRM_FWD_RESP			 0x24UL
132 	 #define CMPL_BASE_TYPE_HWRM_ASYNC_EVENT		 0x2eUL
133 
134 	#define TX_CMP_FLAGS_ERROR				(1 << 6)
135 	#define TX_CMP_FLAGS_PUSH				(1 << 7)
136 
137 	u32 tx_cmp_opaque;
138 	__le32 tx_cmp_errors_v;
139 	#define TX_CMP_V					(1 << 0)
140 	#define TX_CMP_ERRORS_BUFFER_ERROR			(7 << 1)
141 	 #define TX_CMP_ERRORS_BUFFER_ERROR_NO_ERROR		 0
142 	 #define TX_CMP_ERRORS_BUFFER_ERROR_BAD_FORMAT		 2
143 	 #define TX_CMP_ERRORS_BUFFER_ERROR_INVALID_STAG	 4
144 	 #define TX_CMP_ERRORS_BUFFER_ERROR_STAG_BOUNDS		 5
145 	 #define TX_CMP_ERRORS_ZERO_LENGTH_PKT			 (1 << 4)
146 	 #define TX_CMP_ERRORS_EXCESSIVE_BD_LEN			 (1 << 5)
147 	 #define TX_CMP_ERRORS_DMA_ERROR			 (1 << 6)
148 	 #define TX_CMP_ERRORS_HINT_TOO_SHORT			 (1 << 7)
149 
150 	__le32 tx_cmp_unsed_3;
151 };
152 
153 struct rx_cmp {
154 	__le32 rx_cmp_len_flags_type;
155 	#define RX_CMP_CMP_TYPE					(0x3f << 0)
156 	#define RX_CMP_FLAGS_ERROR				(1 << 6)
157 	#define RX_CMP_FLAGS_PLACEMENT				(7 << 7)
158 	#define RX_CMP_FLAGS_RSS_VALID				(1 << 10)
159 	#define RX_CMP_FLAGS_UNUSED				(1 << 11)
160 	 #define RX_CMP_FLAGS_ITYPES_SHIFT			 12
161 	 #define RX_CMP_FLAGS_ITYPE_UNKNOWN			 (0 << 12)
162 	 #define RX_CMP_FLAGS_ITYPE_IP				 (1 << 12)
163 	 #define RX_CMP_FLAGS_ITYPE_TCP				 (2 << 12)
164 	 #define RX_CMP_FLAGS_ITYPE_UDP				 (3 << 12)
165 	 #define RX_CMP_FLAGS_ITYPE_FCOE			 (4 << 12)
166 	 #define RX_CMP_FLAGS_ITYPE_ROCE			 (5 << 12)
167 	 #define RX_CMP_FLAGS_ITYPE_PTP_WO_TS			 (8 << 12)
168 	 #define RX_CMP_FLAGS_ITYPE_PTP_W_TS			 (9 << 12)
169 	#define RX_CMP_LEN					(0xffff << 16)
170 	 #define RX_CMP_LEN_SHIFT				 16
171 
172 	u32 rx_cmp_opaque;
173 	__le32 rx_cmp_misc_v1;
174 	#define RX_CMP_V1					(1 << 0)
175 	#define RX_CMP_AGG_BUFS					(0x1f << 1)
176 	 #define RX_CMP_AGG_BUFS_SHIFT				 1
177 	#define RX_CMP_RSS_HASH_TYPE				(0x7f << 9)
178 	 #define RX_CMP_RSS_HASH_TYPE_SHIFT			 9
179 	#define RX_CMP_PAYLOAD_OFFSET				(0xff << 16)
180 	 #define RX_CMP_PAYLOAD_OFFSET_SHIFT			 16
181 
182 	__le32 rx_cmp_rss_hash;
183 };
184 
185 #define RX_CMP_HASH_VALID(rxcmp)				\
186 	((rxcmp)->rx_cmp_len_flags_type & cpu_to_le32(RX_CMP_FLAGS_RSS_VALID))
187 
188 #define RSS_PROFILE_ID_MASK	0x1f
189 
190 #define RX_CMP_HASH_TYPE(rxcmp)					\
191 	(((le32_to_cpu((rxcmp)->rx_cmp_misc_v1) & RX_CMP_RSS_HASH_TYPE) >>\
192 	  RX_CMP_RSS_HASH_TYPE_SHIFT) & RSS_PROFILE_ID_MASK)
193 
194 struct rx_cmp_ext {
195 	__le32 rx_cmp_flags2;
196 	#define RX_CMP_FLAGS2_IP_CS_CALC			0x1
197 	#define RX_CMP_FLAGS2_L4_CS_CALC			(0x1 << 1)
198 	#define RX_CMP_FLAGS2_T_IP_CS_CALC			(0x1 << 2)
199 	#define RX_CMP_FLAGS2_T_L4_CS_CALC			(0x1 << 3)
200 	#define RX_CMP_FLAGS2_META_FORMAT_VLAN			(0x1 << 4)
201 	__le32 rx_cmp_meta_data;
202 	#define RX_CMP_FLAGS2_METADATA_TCI_MASK			0xffff
203 	#define RX_CMP_FLAGS2_METADATA_VID_MASK			0xfff
204 	#define RX_CMP_FLAGS2_METADATA_TPID_MASK		0xffff0000
205 	 #define RX_CMP_FLAGS2_METADATA_TPID_SFT		 16
206 	__le32 rx_cmp_cfa_code_errors_v2;
207 	#define RX_CMP_V					(1 << 0)
208 	#define RX_CMPL_ERRORS_MASK				(0x7fff << 1)
209 	 #define RX_CMPL_ERRORS_SFT				 1
210 	#define RX_CMPL_ERRORS_BUFFER_ERROR_MASK		(0x7 << 1)
211 	 #define RX_CMPL_ERRORS_BUFFER_ERROR_NO_BUFFER		 (0x0 << 1)
212 	 #define RX_CMPL_ERRORS_BUFFER_ERROR_DID_NOT_FIT	 (0x1 << 1)
213 	 #define RX_CMPL_ERRORS_BUFFER_ERROR_NOT_ON_CHIP	 (0x2 << 1)
214 	 #define RX_CMPL_ERRORS_BUFFER_ERROR_BAD_FORMAT		 (0x3 << 1)
215 	#define RX_CMPL_ERRORS_IP_CS_ERROR			(0x1 << 4)
216 	#define RX_CMPL_ERRORS_L4_CS_ERROR			(0x1 << 5)
217 	#define RX_CMPL_ERRORS_T_IP_CS_ERROR			(0x1 << 6)
218 	#define RX_CMPL_ERRORS_T_L4_CS_ERROR			(0x1 << 7)
219 	#define RX_CMPL_ERRORS_CRC_ERROR			(0x1 << 8)
220 	#define RX_CMPL_ERRORS_T_PKT_ERROR_MASK			(0x7 << 9)
221 	 #define RX_CMPL_ERRORS_T_PKT_ERROR_NO_ERROR		 (0x0 << 9)
222 	 #define RX_CMPL_ERRORS_T_PKT_ERROR_T_L3_BAD_VERSION	 (0x1 << 9)
223 	 #define RX_CMPL_ERRORS_T_PKT_ERROR_T_L3_BAD_HDR_LEN	 (0x2 << 9)
224 	 #define RX_CMPL_ERRORS_T_PKT_ERROR_TUNNEL_TOTAL_ERROR	 (0x3 << 9)
225 	 #define RX_CMPL_ERRORS_T_PKT_ERROR_T_IP_TOTAL_ERROR	 (0x4 << 9)
226 	 #define RX_CMPL_ERRORS_T_PKT_ERROR_T_UDP_TOTAL_ERROR	 (0x5 << 9)
227 	 #define RX_CMPL_ERRORS_T_PKT_ERROR_T_L3_BAD_TTL	 (0x6 << 9)
228 	#define RX_CMPL_ERRORS_PKT_ERROR_MASK			(0xf << 12)
229 	 #define RX_CMPL_ERRORS_PKT_ERROR_NO_ERROR		 (0x0 << 12)
230 	 #define RX_CMPL_ERRORS_PKT_ERROR_L3_BAD_VERSION	 (0x1 << 12)
231 	 #define RX_CMPL_ERRORS_PKT_ERROR_L3_BAD_HDR_LEN	 (0x2 << 12)
232 	 #define RX_CMPL_ERRORS_PKT_ERROR_L3_BAD_TTL		 (0x3 << 12)
233 	 #define RX_CMPL_ERRORS_PKT_ERROR_IP_TOTAL_ERROR	 (0x4 << 12)
234 	 #define RX_CMPL_ERRORS_PKT_ERROR_UDP_TOTAL_ERROR	 (0x5 << 12)
235 	 #define RX_CMPL_ERRORS_PKT_ERROR_L4_BAD_HDR_LEN	 (0x6 << 12)
236 	 #define RX_CMPL_ERRORS_PKT_ERROR_L4_BAD_HDR_LEN_TOO_SMALL (0x7 << 12)
237 	 #define RX_CMPL_ERRORS_PKT_ERROR_L4_BAD_OPT_LEN	 (0x8 << 12)
238 
239 	#define RX_CMPL_CFA_CODE_MASK				(0xffff << 16)
240 	 #define RX_CMPL_CFA_CODE_SFT				 16
241 
242 	__le32 rx_cmp_unused3;
243 };
244 
245 #define RX_CMP_L2_ERRORS						\
246 	cpu_to_le32(RX_CMPL_ERRORS_BUFFER_ERROR_MASK | RX_CMPL_ERRORS_CRC_ERROR)
247 
248 #define RX_CMP_L4_CS_BITS						\
249 	(cpu_to_le32(RX_CMP_FLAGS2_L4_CS_CALC | RX_CMP_FLAGS2_T_L4_CS_CALC))
250 
251 #define RX_CMP_L4_CS_ERR_BITS						\
252 	(cpu_to_le32(RX_CMPL_ERRORS_L4_CS_ERROR | RX_CMPL_ERRORS_T_L4_CS_ERROR))
253 
254 #define RX_CMP_L4_CS_OK(rxcmp1)						\
255 	    (((rxcmp1)->rx_cmp_flags2 &	RX_CMP_L4_CS_BITS) &&		\
256 	     !((rxcmp1)->rx_cmp_cfa_code_errors_v2 & RX_CMP_L4_CS_ERR_BITS))
257 
258 #define RX_CMP_ENCAP(rxcmp1)						\
259 	    ((le32_to_cpu((rxcmp1)->rx_cmp_flags2) &			\
260 	     RX_CMP_FLAGS2_T_L4_CS_CALC) >> 3)
261 
262 #define RX_CMP_CFA_CODE(rxcmpl1)					\
263 	((le32_to_cpu((rxcmpl1)->rx_cmp_cfa_code_errors_v2) &		\
264 	  RX_CMPL_CFA_CODE_MASK) >> RX_CMPL_CFA_CODE_SFT)
265 
266 struct rx_agg_cmp {
267 	__le32 rx_agg_cmp_len_flags_type;
268 	#define RX_AGG_CMP_TYPE					(0x3f << 0)
269 	#define RX_AGG_CMP_LEN					(0xffff << 16)
270 	 #define RX_AGG_CMP_LEN_SHIFT				 16
271 	u32 rx_agg_cmp_opaque;
272 	__le32 rx_agg_cmp_v;
273 	#define RX_AGG_CMP_V					(1 << 0)
274 	#define RX_AGG_CMP_AGG_ID				(0xffff << 16)
275 	 #define RX_AGG_CMP_AGG_ID_SHIFT			 16
276 	__le32 rx_agg_cmp_unused;
277 };
278 
279 #define TPA_AGG_AGG_ID(rx_agg)				\
280 	((le32_to_cpu((rx_agg)->rx_agg_cmp_v) &		\
281 	 RX_AGG_CMP_AGG_ID) >> RX_AGG_CMP_AGG_ID_SHIFT)
282 
283 struct rx_tpa_start_cmp {
284 	__le32 rx_tpa_start_cmp_len_flags_type;
285 	#define RX_TPA_START_CMP_TYPE				(0x3f << 0)
286 	#define RX_TPA_START_CMP_FLAGS				(0x3ff << 6)
287 	 #define RX_TPA_START_CMP_FLAGS_SHIFT			 6
288 	#define RX_TPA_START_CMP_FLAGS_ERROR			(0x1 << 6)
289 	#define RX_TPA_START_CMP_FLAGS_PLACEMENT		(0x7 << 7)
290 	 #define RX_TPA_START_CMP_FLAGS_PLACEMENT_SHIFT		 7
291 	 #define RX_TPA_START_CMP_FLAGS_PLACEMENT_JUMBO		 (0x1 << 7)
292 	 #define RX_TPA_START_CMP_FLAGS_PLACEMENT_HDS		 (0x2 << 7)
293 	 #define RX_TPA_START_CMP_FLAGS_PLACEMENT_GRO_JUMBO	 (0x5 << 7)
294 	 #define RX_TPA_START_CMP_FLAGS_PLACEMENT_GRO_HDS	 (0x6 << 7)
295 	#define RX_TPA_START_CMP_FLAGS_RSS_VALID		(0x1 << 10)
296 	#define RX_TPA_START_CMP_FLAGS_TIMESTAMP		(0x1 << 11)
297 	#define RX_TPA_START_CMP_FLAGS_ITYPES			(0xf << 12)
298 	 #define RX_TPA_START_CMP_FLAGS_ITYPES_SHIFT		 12
299 	 #define RX_TPA_START_CMP_FLAGS_ITYPE_TCP		 (0x2 << 12)
300 	#define RX_TPA_START_CMP_LEN				(0xffff << 16)
301 	 #define RX_TPA_START_CMP_LEN_SHIFT			 16
302 
303 	u32 rx_tpa_start_cmp_opaque;
304 	__le32 rx_tpa_start_cmp_misc_v1;
305 	#define RX_TPA_START_CMP_V1				(0x1 << 0)
306 	#define RX_TPA_START_CMP_RSS_HASH_TYPE			(0x7f << 9)
307 	 #define RX_TPA_START_CMP_RSS_HASH_TYPE_SHIFT		 9
308 	#define RX_TPA_START_CMP_AGG_ID				(0x7f << 25)
309 	 #define RX_TPA_START_CMP_AGG_ID_SHIFT			 25
310 	#define RX_TPA_START_CMP_AGG_ID_P5			(0xffff << 16)
311 	 #define RX_TPA_START_CMP_AGG_ID_SHIFT_P5		 16
312 
313 	__le32 rx_tpa_start_cmp_rss_hash;
314 };
315 
316 #define TPA_START_HASH_VALID(rx_tpa_start)				\
317 	((rx_tpa_start)->rx_tpa_start_cmp_len_flags_type &		\
318 	 cpu_to_le32(RX_TPA_START_CMP_FLAGS_RSS_VALID))
319 
320 #define TPA_START_HASH_TYPE(rx_tpa_start)				\
321 	(((le32_to_cpu((rx_tpa_start)->rx_tpa_start_cmp_misc_v1) &	\
322 	   RX_TPA_START_CMP_RSS_HASH_TYPE) >>				\
323 	  RX_TPA_START_CMP_RSS_HASH_TYPE_SHIFT) & RSS_PROFILE_ID_MASK)
324 
325 #define TPA_START_AGG_ID(rx_tpa_start)					\
326 	((le32_to_cpu((rx_tpa_start)->rx_tpa_start_cmp_misc_v1) &	\
327 	 RX_TPA_START_CMP_AGG_ID) >> RX_TPA_START_CMP_AGG_ID_SHIFT)
328 
329 #define TPA_START_AGG_ID_P5(rx_tpa_start)				\
330 	((le32_to_cpu((rx_tpa_start)->rx_tpa_start_cmp_misc_v1) &	\
331 	 RX_TPA_START_CMP_AGG_ID_P5) >> RX_TPA_START_CMP_AGG_ID_SHIFT_P5)
332 
333 #define TPA_START_ERROR(rx_tpa_start)					\
334 	((rx_tpa_start)->rx_tpa_start_cmp_len_flags_type &		\
335 	 cpu_to_le32(RX_TPA_START_CMP_FLAGS_ERROR))
336 
337 struct rx_tpa_start_cmp_ext {
338 	__le32 rx_tpa_start_cmp_flags2;
339 	#define RX_TPA_START_CMP_FLAGS2_IP_CS_CALC		(0x1 << 0)
340 	#define RX_TPA_START_CMP_FLAGS2_L4_CS_CALC		(0x1 << 1)
341 	#define RX_TPA_START_CMP_FLAGS2_T_IP_CS_CALC		(0x1 << 2)
342 	#define RX_TPA_START_CMP_FLAGS2_T_L4_CS_CALC		(0x1 << 3)
343 	#define RX_TPA_START_CMP_FLAGS2_IP_TYPE			(0x1 << 8)
344 	#define RX_TPA_START_CMP_FLAGS2_CSUM_CMPL_VALID		(0x1 << 9)
345 	#define RX_TPA_START_CMP_FLAGS2_EXT_META_FORMAT		(0x3 << 10)
346 	 #define RX_TPA_START_CMP_FLAGS2_EXT_META_FORMAT_SHIFT	 10
347 	#define RX_TPA_START_CMP_FLAGS2_CSUM_CMPL		(0xffff << 16)
348 	 #define RX_TPA_START_CMP_FLAGS2_CSUM_CMPL_SHIFT	 16
349 
350 	__le32 rx_tpa_start_cmp_metadata;
351 	__le32 rx_tpa_start_cmp_cfa_code_v2;
352 	#define RX_TPA_START_CMP_V2				(0x1 << 0)
353 	#define RX_TPA_START_CMP_ERRORS_BUFFER_ERROR_MASK	(0x7 << 1)
354 	 #define RX_TPA_START_CMP_ERRORS_BUFFER_ERROR_SHIFT	 1
355 	 #define RX_TPA_START_CMP_ERRORS_BUFFER_ERROR_NO_BUFFER	 (0x0 << 1)
356 	 #define RX_TPA_START_CMP_ERRORS_BUFFER_ERROR_BAD_FORMAT (0x3 << 1)
357 	 #define RX_TPA_START_CMP_ERRORS_BUFFER_ERROR_FLUSH	 (0x5 << 1)
358 	#define RX_TPA_START_CMP_CFA_CODE			(0xffff << 16)
359 	 #define RX_TPA_START_CMPL_CFA_CODE_SHIFT		 16
360 	__le32 rx_tpa_start_cmp_hdr_info;
361 };
362 
363 #define TPA_START_CFA_CODE(rx_tpa_start)				\
364 	((le32_to_cpu((rx_tpa_start)->rx_tpa_start_cmp_cfa_code_v2) &	\
365 	 RX_TPA_START_CMP_CFA_CODE) >> RX_TPA_START_CMPL_CFA_CODE_SHIFT)
366 
367 #define TPA_START_IS_IPV6(rx_tpa_start)				\
368 	(!!((rx_tpa_start)->rx_tpa_start_cmp_flags2 &		\
369 	    cpu_to_le32(RX_TPA_START_CMP_FLAGS2_IP_TYPE)))
370 
371 #define TPA_START_ERROR_CODE(rx_tpa_start)				\
372 	((le32_to_cpu((rx_tpa_start)->rx_tpa_start_cmp_cfa_code_v2) &	\
373 	  RX_TPA_START_CMP_ERRORS_BUFFER_ERROR_MASK) >>			\
374 	 RX_TPA_START_CMP_ERRORS_BUFFER_ERROR_SHIFT)
375 
376 struct rx_tpa_end_cmp {
377 	__le32 rx_tpa_end_cmp_len_flags_type;
378 	#define RX_TPA_END_CMP_TYPE				(0x3f << 0)
379 	#define RX_TPA_END_CMP_FLAGS				(0x3ff << 6)
380 	 #define RX_TPA_END_CMP_FLAGS_SHIFT			 6
381 	#define RX_TPA_END_CMP_FLAGS_PLACEMENT			(0x7 << 7)
382 	 #define RX_TPA_END_CMP_FLAGS_PLACEMENT_SHIFT		 7
383 	 #define RX_TPA_END_CMP_FLAGS_PLACEMENT_JUMBO		 (0x1 << 7)
384 	 #define RX_TPA_END_CMP_FLAGS_PLACEMENT_HDS		 (0x2 << 7)
385 	 #define RX_TPA_END_CMP_FLAGS_PLACEMENT_GRO_JUMBO	 (0x5 << 7)
386 	 #define RX_TPA_END_CMP_FLAGS_PLACEMENT_GRO_HDS		 (0x6 << 7)
387 	#define RX_TPA_END_CMP_FLAGS_RSS_VALID			(0x1 << 10)
388 	#define RX_TPA_END_CMP_FLAGS_ITYPES			(0xf << 12)
389 	 #define RX_TPA_END_CMP_FLAGS_ITYPES_SHIFT		 12
390 	 #define RX_TPA_END_CMP_FLAGS_ITYPE_TCP			 (0x2 << 12)
391 	#define RX_TPA_END_CMP_LEN				(0xffff << 16)
392 	 #define RX_TPA_END_CMP_LEN_SHIFT			 16
393 
394 	u32 rx_tpa_end_cmp_opaque;
395 	__le32 rx_tpa_end_cmp_misc_v1;
396 	#define RX_TPA_END_CMP_V1				(0x1 << 0)
397 	#define RX_TPA_END_CMP_AGG_BUFS				(0x3f << 1)
398 	 #define RX_TPA_END_CMP_AGG_BUFS_SHIFT			 1
399 	#define RX_TPA_END_CMP_TPA_SEGS				(0xff << 8)
400 	 #define RX_TPA_END_CMP_TPA_SEGS_SHIFT			 8
401 	#define RX_TPA_END_CMP_PAYLOAD_OFFSET			(0xff << 16)
402 	 #define RX_TPA_END_CMP_PAYLOAD_OFFSET_SHIFT		 16
403 	#define RX_TPA_END_CMP_AGG_ID				(0x7f << 25)
404 	 #define RX_TPA_END_CMP_AGG_ID_SHIFT			 25
405 	#define RX_TPA_END_CMP_AGG_ID_P5			(0xffff << 16)
406 	 #define RX_TPA_END_CMP_AGG_ID_SHIFT_P5			 16
407 
408 	__le32 rx_tpa_end_cmp_tsdelta;
409 	#define RX_TPA_END_GRO_TS				(0x1 << 31)
410 };
411 
412 #define TPA_END_AGG_ID(rx_tpa_end)					\
413 	((le32_to_cpu((rx_tpa_end)->rx_tpa_end_cmp_misc_v1) &		\
414 	 RX_TPA_END_CMP_AGG_ID) >> RX_TPA_END_CMP_AGG_ID_SHIFT)
415 
416 #define TPA_END_AGG_ID_P5(rx_tpa_end)					\
417 	((le32_to_cpu((rx_tpa_end)->rx_tpa_end_cmp_misc_v1) &		\
418 	 RX_TPA_END_CMP_AGG_ID_P5) >> RX_TPA_END_CMP_AGG_ID_SHIFT_P5)
419 
420 #define TPA_END_PAYLOAD_OFF(rx_tpa_end)					\
421 	((le32_to_cpu((rx_tpa_end)->rx_tpa_end_cmp_misc_v1) &		\
422 	 RX_TPA_END_CMP_PAYLOAD_OFFSET) >> RX_TPA_END_CMP_PAYLOAD_OFFSET_SHIFT)
423 
424 #define TPA_END_AGG_BUFS(rx_tpa_end)					\
425 	((le32_to_cpu((rx_tpa_end)->rx_tpa_end_cmp_misc_v1) &		\
426 	 RX_TPA_END_CMP_AGG_BUFS) >> RX_TPA_END_CMP_AGG_BUFS_SHIFT)
427 
428 #define TPA_END_TPA_SEGS(rx_tpa_end)					\
429 	((le32_to_cpu((rx_tpa_end)->rx_tpa_end_cmp_misc_v1) &		\
430 	 RX_TPA_END_CMP_TPA_SEGS) >> RX_TPA_END_CMP_TPA_SEGS_SHIFT)
431 
432 #define RX_TPA_END_CMP_FLAGS_PLACEMENT_ANY_GRO				\
433 	cpu_to_le32(RX_TPA_END_CMP_FLAGS_PLACEMENT_GRO_JUMBO &		\
434 		    RX_TPA_END_CMP_FLAGS_PLACEMENT_GRO_HDS)
435 
436 #define TPA_END_GRO(rx_tpa_end)						\
437 	((rx_tpa_end)->rx_tpa_end_cmp_len_flags_type &			\
438 	 RX_TPA_END_CMP_FLAGS_PLACEMENT_ANY_GRO)
439 
440 #define TPA_END_GRO_TS(rx_tpa_end)					\
441 	(!!((rx_tpa_end)->rx_tpa_end_cmp_tsdelta &			\
442 	    cpu_to_le32(RX_TPA_END_GRO_TS)))
443 
444 struct rx_tpa_end_cmp_ext {
445 	__le32 rx_tpa_end_cmp_dup_acks;
446 	#define RX_TPA_END_CMP_TPA_DUP_ACKS			(0xf << 0)
447 	#define RX_TPA_END_CMP_PAYLOAD_OFFSET_P5		(0xff << 16)
448 	 #define RX_TPA_END_CMP_PAYLOAD_OFFSET_SHIFT_P5		 16
449 	#define RX_TPA_END_CMP_AGG_BUFS_P5			(0xff << 24)
450 	 #define RX_TPA_END_CMP_AGG_BUFS_SHIFT_P5		 24
451 
452 	__le32 rx_tpa_end_cmp_seg_len;
453 	#define RX_TPA_END_CMP_TPA_SEG_LEN			(0xffff << 0)
454 
455 	__le32 rx_tpa_end_cmp_errors_v2;
456 	#define RX_TPA_END_CMP_V2				(0x1 << 0)
457 	#define RX_TPA_END_CMP_ERRORS				(0x3 << 1)
458 	#define RX_TPA_END_CMP_ERRORS_P5			(0x7 << 1)
459 	#define RX_TPA_END_CMPL_ERRORS_SHIFT			 1
460 	 #define RX_TPA_END_CMP_ERRORS_BUFFER_ERROR_NO_BUFFER	 (0x0 << 1)
461 	 #define RX_TPA_END_CMP_ERRORS_BUFFER_ERROR_NOT_ON_CHIP	 (0x2 << 1)
462 	 #define RX_TPA_END_CMP_ERRORS_BUFFER_ERROR_BAD_FORMAT	 (0x3 << 1)
463 	 #define RX_TPA_END_CMP_ERRORS_BUFFER_ERROR_RSV_ERROR	 (0x4 << 1)
464 	 #define RX_TPA_END_CMP_ERRORS_BUFFER_ERROR_FLUSH	 (0x5 << 1)
465 
466 	u32 rx_tpa_end_cmp_start_opaque;
467 };
468 
469 #define TPA_END_ERRORS(rx_tpa_end_ext)					\
470 	((rx_tpa_end_ext)->rx_tpa_end_cmp_errors_v2 &			\
471 	 cpu_to_le32(RX_TPA_END_CMP_ERRORS))
472 
473 #define TPA_END_PAYLOAD_OFF_P5(rx_tpa_end_ext)				\
474 	((le32_to_cpu((rx_tpa_end_ext)->rx_tpa_end_cmp_dup_acks) &	\
475 	 RX_TPA_END_CMP_PAYLOAD_OFFSET_P5) >>				\
476 	RX_TPA_END_CMP_PAYLOAD_OFFSET_SHIFT_P5)
477 
478 #define TPA_END_AGG_BUFS_P5(rx_tpa_end_ext)				\
479 	((le32_to_cpu((rx_tpa_end_ext)->rx_tpa_end_cmp_dup_acks) &	\
480 	 RX_TPA_END_CMP_AGG_BUFS_P5) >> RX_TPA_END_CMP_AGG_BUFS_SHIFT_P5)
481 
482 #define EVENT_DATA1_RESET_NOTIFY_FATAL(data1)				\
483 	(((data1) &							\
484 	  ASYNC_EVENT_CMPL_RESET_NOTIFY_EVENT_DATA1_REASON_CODE_MASK) ==\
485 	 ASYNC_EVENT_CMPL_RESET_NOTIFY_EVENT_DATA1_REASON_CODE_FW_EXCEPTION_FATAL)
486 
487 #define EVENT_DATA1_RECOVERY_MASTER_FUNC(data1)				\
488 	!!((data1) &							\
489 	   ASYNC_EVENT_CMPL_ERROR_RECOVERY_EVENT_DATA1_FLAGS_MASTER_FUNC)
490 
491 #define EVENT_DATA1_RECOVERY_ENABLED(data1)				\
492 	!!((data1) &							\
493 	   ASYNC_EVENT_CMPL_ERROR_RECOVERY_EVENT_DATA1_FLAGS_RECOVERY_ENABLED)
494 
495 struct nqe_cn {
496 	__le16	type;
497 	#define NQ_CN_TYPE_MASK           0x3fUL
498 	#define NQ_CN_TYPE_SFT            0
499 	#define NQ_CN_TYPE_CQ_NOTIFICATION  0x30UL
500 	#define NQ_CN_TYPE_LAST            NQ_CN_TYPE_CQ_NOTIFICATION
501 	__le16	reserved16;
502 	__le32	cq_handle_low;
503 	__le32	v;
504 	#define NQ_CN_V     0x1UL
505 	__le32	cq_handle_high;
506 };
507 
508 #define DB_IDX_MASK						0xffffff
509 #define DB_IDX_VALID						(0x1 << 26)
510 #define DB_IRQ_DIS						(0x1 << 27)
511 #define DB_KEY_TX						(0x0 << 28)
512 #define DB_KEY_RX						(0x1 << 28)
513 #define DB_KEY_CP						(0x2 << 28)
514 #define DB_KEY_ST						(0x3 << 28)
515 #define DB_KEY_TX_PUSH						(0x4 << 28)
516 #define DB_LONG_TX_PUSH						(0x2 << 24)
517 
518 #define BNXT_MIN_ROCE_CP_RINGS	2
519 #define BNXT_MIN_ROCE_STAT_CTXS	1
520 
521 /* 64-bit doorbell */
522 #define DBR_INDEX_MASK					0x0000000000ffffffULL
523 #define DBR_XID_MASK					0x000fffff00000000ULL
524 #define DBR_XID_SFT					32
525 #define DBR_PATH_L2					(0x1ULL << 56)
526 #define DBR_TYPE_SQ					(0x0ULL << 60)
527 #define DBR_TYPE_RQ					(0x1ULL << 60)
528 #define DBR_TYPE_SRQ					(0x2ULL << 60)
529 #define DBR_TYPE_SRQ_ARM				(0x3ULL << 60)
530 #define DBR_TYPE_CQ					(0x4ULL << 60)
531 #define DBR_TYPE_CQ_ARMSE				(0x5ULL << 60)
532 #define DBR_TYPE_CQ_ARMALL				(0x6ULL << 60)
533 #define DBR_TYPE_CQ_ARMENA				(0x7ULL << 60)
534 #define DBR_TYPE_SRQ_ARMENA				(0x8ULL << 60)
535 #define DBR_TYPE_CQ_CUTOFF_ACK				(0x9ULL << 60)
536 #define DBR_TYPE_NQ					(0xaULL << 60)
537 #define DBR_TYPE_NQ_ARM					(0xbULL << 60)
538 #define DBR_TYPE_NULL					(0xfULL << 60)
539 
540 #define INVALID_HW_RING_ID	((u16)-1)
541 
542 /* The hardware supports certain page sizes.  Use the supported page sizes
543  * to allocate the rings.
544  */
545 #if (PAGE_SHIFT < 12)
546 #define BNXT_PAGE_SHIFT	12
547 #elif (PAGE_SHIFT <= 13)
548 #define BNXT_PAGE_SHIFT	PAGE_SHIFT
549 #elif (PAGE_SHIFT < 16)
550 #define BNXT_PAGE_SHIFT	13
551 #else
552 #define BNXT_PAGE_SHIFT	16
553 #endif
554 
555 #define BNXT_PAGE_SIZE	(1 << BNXT_PAGE_SHIFT)
556 
557 /* The RXBD length is 16-bit so we can only support page sizes < 64K */
558 #if (PAGE_SHIFT > 15)
559 #define BNXT_RX_PAGE_SHIFT 15
560 #else
561 #define BNXT_RX_PAGE_SHIFT PAGE_SHIFT
562 #endif
563 
564 #define BNXT_RX_PAGE_SIZE (1 << BNXT_RX_PAGE_SHIFT)
565 
566 #define BNXT_MAX_MTU		9500
567 #define BNXT_MAX_PAGE_MODE_MTU	\
568 	((unsigned int)PAGE_SIZE - VLAN_ETH_HLEN - NET_IP_ALIGN -	\
569 	 XDP_PACKET_HEADROOM)
570 
571 #define BNXT_MIN_PKT_SIZE	52
572 
573 #define BNXT_DEFAULT_RX_RING_SIZE	511
574 #define BNXT_DEFAULT_TX_RING_SIZE	511
575 
576 #define MAX_TPA		64
577 #define MAX_TPA_P5	256
578 #define MAX_TPA_P5_MASK	(MAX_TPA_P5 - 1)
579 #define MAX_TPA_SEGS_P5	0x3f
580 
581 #if (BNXT_PAGE_SHIFT == 16)
582 #define MAX_RX_PAGES	1
583 #define MAX_RX_AGG_PAGES	4
584 #define MAX_TX_PAGES	1
585 #define MAX_CP_PAGES	8
586 #else
587 #define MAX_RX_PAGES	8
588 #define MAX_RX_AGG_PAGES	32
589 #define MAX_TX_PAGES	8
590 #define MAX_CP_PAGES	64
591 #endif
592 
593 #define RX_DESC_CNT (BNXT_PAGE_SIZE / sizeof(struct rx_bd))
594 #define TX_DESC_CNT (BNXT_PAGE_SIZE / sizeof(struct tx_bd))
595 #define CP_DESC_CNT (BNXT_PAGE_SIZE / sizeof(struct tx_cmp))
596 
597 #define SW_RXBD_RING_SIZE (sizeof(struct bnxt_sw_rx_bd) * RX_DESC_CNT)
598 #define HW_RXBD_RING_SIZE (sizeof(struct rx_bd) * RX_DESC_CNT)
599 
600 #define SW_RXBD_AGG_RING_SIZE (sizeof(struct bnxt_sw_rx_agg_bd) * RX_DESC_CNT)
601 
602 #define SW_TXBD_RING_SIZE (sizeof(struct bnxt_sw_tx_bd) * TX_DESC_CNT)
603 #define HW_TXBD_RING_SIZE (sizeof(struct tx_bd) * TX_DESC_CNT)
604 
605 #define HW_CMPD_RING_SIZE (sizeof(struct tx_cmp) * CP_DESC_CNT)
606 
607 #define BNXT_MAX_RX_DESC_CNT		(RX_DESC_CNT * MAX_RX_PAGES - 1)
608 #define BNXT_MAX_RX_JUM_DESC_CNT	(RX_DESC_CNT * MAX_RX_AGG_PAGES - 1)
609 #define BNXT_MAX_TX_DESC_CNT		(TX_DESC_CNT * MAX_TX_PAGES - 1)
610 
611 #define RX_RING(x)	(((x) & ~(RX_DESC_CNT - 1)) >> (BNXT_PAGE_SHIFT - 4))
612 #define RX_IDX(x)	((x) & (RX_DESC_CNT - 1))
613 
614 #define TX_RING(x)	(((x) & ~(TX_DESC_CNT - 1)) >> (BNXT_PAGE_SHIFT - 4))
615 #define TX_IDX(x)	((x) & (TX_DESC_CNT - 1))
616 
617 #define CP_RING(x)	(((x) & ~(CP_DESC_CNT - 1)) >> (BNXT_PAGE_SHIFT - 4))
618 #define CP_IDX(x)	((x) & (CP_DESC_CNT - 1))
619 
620 #define TX_CMP_VALID(txcmp, raw_cons)					\
621 	(!!((txcmp)->tx_cmp_errors_v & cpu_to_le32(TX_CMP_V)) ==	\
622 	 !((raw_cons) & bp->cp_bit))
623 
624 #define RX_CMP_VALID(rxcmp1, raw_cons)					\
625 	(!!((rxcmp1)->rx_cmp_cfa_code_errors_v2 & cpu_to_le32(RX_CMP_V)) ==\
626 	 !((raw_cons) & bp->cp_bit))
627 
628 #define RX_AGG_CMP_VALID(agg, raw_cons)				\
629 	(!!((agg)->rx_agg_cmp_v & cpu_to_le32(RX_AGG_CMP_V)) ==	\
630 	 !((raw_cons) & bp->cp_bit))
631 
632 #define NQ_CMP_VALID(nqcmp, raw_cons)				\
633 	(!!((nqcmp)->v & cpu_to_le32(NQ_CN_V)) == !((raw_cons) & bp->cp_bit))
634 
635 #define TX_CMP_TYPE(txcmp)					\
636 	(le32_to_cpu((txcmp)->tx_cmp_flags_type) & CMP_TYPE)
637 
638 #define RX_CMP_TYPE(rxcmp)					\
639 	(le32_to_cpu((rxcmp)->rx_cmp_len_flags_type) & RX_CMP_CMP_TYPE)
640 
641 #define NEXT_RX(idx)		(((idx) + 1) & bp->rx_ring_mask)
642 
643 #define NEXT_RX_AGG(idx)	(((idx) + 1) & bp->rx_agg_ring_mask)
644 
645 #define NEXT_TX(idx)		(((idx) + 1) & bp->tx_ring_mask)
646 
647 #define ADV_RAW_CMP(idx, n)	((idx) + (n))
648 #define NEXT_RAW_CMP(idx)	ADV_RAW_CMP(idx, 1)
649 #define RING_CMP(idx)		((idx) & bp->cp_ring_mask)
650 #define NEXT_CMP(idx)		RING_CMP(ADV_RAW_CMP(idx, 1))
651 
652 #define BNXT_HWRM_MAX_REQ_LEN		(bp->hwrm_max_req_len)
653 #define BNXT_HWRM_SHORT_REQ_LEN		sizeof(struct hwrm_short_input)
654 #define DFLT_HWRM_CMD_TIMEOUT		500
655 #define SHORT_HWRM_CMD_TIMEOUT		20
656 #define HWRM_CMD_TIMEOUT		(bp->hwrm_cmd_timeout)
657 #define HWRM_RESET_TIMEOUT		((HWRM_CMD_TIMEOUT) * 4)
658 #define HWRM_COREDUMP_TIMEOUT		((HWRM_CMD_TIMEOUT) * 12)
659 #define BNXT_HWRM_REQ_MAX_SIZE		128
660 #define BNXT_HWRM_REQS_PER_PAGE		(BNXT_PAGE_SIZE /	\
661 					 BNXT_HWRM_REQ_MAX_SIZE)
662 #define HWRM_SHORT_MIN_TIMEOUT		3
663 #define HWRM_SHORT_MAX_TIMEOUT		10
664 #define HWRM_SHORT_TIMEOUT_COUNTER	5
665 
666 #define HWRM_MIN_TIMEOUT		25
667 #define HWRM_MAX_TIMEOUT		40
668 
669 #define HWRM_TOTAL_TIMEOUT(n)	(((n) <= HWRM_SHORT_TIMEOUT_COUNTER) ?	\
670 	((n) * HWRM_SHORT_MIN_TIMEOUT) :				\
671 	(HWRM_SHORT_TIMEOUT_COUNTER * HWRM_SHORT_MIN_TIMEOUT +		\
672 	 ((n) - HWRM_SHORT_TIMEOUT_COUNTER) * HWRM_MIN_TIMEOUT))
673 
674 #define HWRM_VALID_BIT_DELAY_USEC	150
675 
676 #define BNXT_HWRM_CHNL_CHIMP	0
677 #define BNXT_HWRM_CHNL_KONG	1
678 
679 #define BNXT_RX_EVENT		1
680 #define BNXT_AGG_EVENT		2
681 #define BNXT_TX_EVENT		4
682 #define BNXT_REDIRECT_EVENT	8
683 
684 struct bnxt_sw_tx_bd {
685 	union {
686 		struct sk_buff		*skb;
687 		struct xdp_frame	*xdpf;
688 	};
689 	DEFINE_DMA_UNMAP_ADDR(mapping);
690 	DEFINE_DMA_UNMAP_LEN(len);
691 	u8			is_gso;
692 	u8			is_push;
693 	u8			action;
694 	union {
695 		unsigned short		nr_frags;
696 		u16			rx_prod;
697 	};
698 };
699 
700 struct bnxt_sw_rx_bd {
701 	void			*data;
702 	u8			*data_ptr;
703 	dma_addr_t		mapping;
704 };
705 
706 struct bnxt_sw_rx_agg_bd {
707 	struct page		*page;
708 	unsigned int		offset;
709 	dma_addr_t		mapping;
710 };
711 
712 struct bnxt_ring_mem_info {
713 	int			nr_pages;
714 	int			page_size;
715 	u16			flags;
716 #define BNXT_RMEM_VALID_PTE_FLAG	1
717 #define BNXT_RMEM_RING_PTE_FLAG		2
718 #define BNXT_RMEM_USE_FULL_PAGE_FLAG	4
719 
720 	u16			depth;
721 	u8			init_val;
722 
723 	void			**pg_arr;
724 	dma_addr_t		*dma_arr;
725 
726 	__le64			*pg_tbl;
727 	dma_addr_t		pg_tbl_map;
728 
729 	int			vmem_size;
730 	void			**vmem;
731 };
732 
733 struct bnxt_ring_struct {
734 	struct bnxt_ring_mem_info	ring_mem;
735 
736 	u16			fw_ring_id; /* Ring id filled by Chimp FW */
737 	union {
738 		u16		grp_idx;
739 		u16		map_idx; /* Used by cmpl rings */
740 	};
741 	u32			handle;
742 	u8			queue_id;
743 };
744 
745 struct tx_push_bd {
746 	__le32			doorbell;
747 	__le32			tx_bd_len_flags_type;
748 	u32			tx_bd_opaque;
749 	struct tx_bd_ext	txbd2;
750 };
751 
752 struct tx_push_buffer {
753 	struct tx_push_bd	push_bd;
754 	u32			data[25];
755 };
756 
757 struct bnxt_db_info {
758 	void __iomem		*doorbell;
759 	union {
760 		u64		db_key64;
761 		u32		db_key32;
762 	};
763 };
764 
765 struct bnxt_tx_ring_info {
766 	struct bnxt_napi	*bnapi;
767 	u16			tx_prod;
768 	u16			tx_cons;
769 	u16			txq_index;
770 	struct bnxt_db_info	tx_db;
771 
772 	struct tx_bd		*tx_desc_ring[MAX_TX_PAGES];
773 	struct bnxt_sw_tx_bd	*tx_buf_ring;
774 
775 	dma_addr_t		tx_desc_mapping[MAX_TX_PAGES];
776 
777 	struct tx_push_buffer	*tx_push;
778 	dma_addr_t		tx_push_mapping;
779 	__le64			data_mapping;
780 
781 #define BNXT_DEV_STATE_CLOSING	0x1
782 	u32			dev_state;
783 
784 	struct bnxt_ring_struct	tx_ring_struct;
785 };
786 
787 #define BNXT_LEGACY_COAL_CMPL_PARAMS					\
788 	(RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_INT_LAT_TMR_MIN |		\
789 	 RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_INT_LAT_TMR_MAX |		\
790 	 RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_TIMER_RESET |		\
791 	 RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_RING_IDLE |			\
792 	 RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_NUM_CMPL_DMA_AGGR |		\
793 	 RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_NUM_CMPL_DMA_AGGR_DURING_INT | \
794 	 RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_CMPL_AGGR_DMA_TMR |		\
795 	 RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_CMPL_AGGR_DMA_TMR_DURING_INT | \
796 	 RING_AGGINT_QCAPS_RESP_CMPL_PARAMS_NUM_CMPL_AGGR_INT)
797 
798 #define BNXT_COAL_CMPL_ENABLES						\
799 	(RING_CMPL_RING_CFG_AGGINT_PARAMS_REQ_ENABLES_NUM_CMPL_DMA_AGGR | \
800 	 RING_CMPL_RING_CFG_AGGINT_PARAMS_REQ_ENABLES_CMPL_AGGR_DMA_TMR | \
801 	 RING_CMPL_RING_CFG_AGGINT_PARAMS_REQ_ENABLES_INT_LAT_TMR_MAX | \
802 	 RING_CMPL_RING_CFG_AGGINT_PARAMS_REQ_ENABLES_NUM_CMPL_AGGR_INT)
803 
804 #define BNXT_COAL_CMPL_MIN_TMR_ENABLE					\
805 	RING_CMPL_RING_CFG_AGGINT_PARAMS_REQ_ENABLES_INT_LAT_TMR_MIN
806 
807 #define BNXT_COAL_CMPL_AGGR_TMR_DURING_INT_ENABLE			\
808 	RING_CMPL_RING_CFG_AGGINT_PARAMS_REQ_ENABLES_NUM_CMPL_DMA_AGGR_DURING_INT
809 
810 struct bnxt_coal_cap {
811 	u32			cmpl_params;
812 	u32			nq_params;
813 	u16			num_cmpl_dma_aggr_max;
814 	u16			num_cmpl_dma_aggr_during_int_max;
815 	u16			cmpl_aggr_dma_tmr_max;
816 	u16			cmpl_aggr_dma_tmr_during_int_max;
817 	u16			int_lat_tmr_min_max;
818 	u16			int_lat_tmr_max_max;
819 	u16			num_cmpl_aggr_int_max;
820 	u16			timer_units;
821 };
822 
823 struct bnxt_coal {
824 	u16			coal_ticks;
825 	u16			coal_ticks_irq;
826 	u16			coal_bufs;
827 	u16			coal_bufs_irq;
828 			/* RING_IDLE enabled when coal ticks < idle_thresh  */
829 	u16			idle_thresh;
830 	u8			bufs_per_record;
831 	u8			budget;
832 };
833 
834 struct bnxt_tpa_info {
835 	void			*data;
836 	u8			*data_ptr;
837 	dma_addr_t		mapping;
838 	u16			len;
839 	unsigned short		gso_type;
840 	u32			flags2;
841 	u32			metadata;
842 	enum pkt_hash_types	hash_type;
843 	u32			rss_hash;
844 	u32			hdr_info;
845 
846 #define BNXT_TPA_L4_SIZE(hdr_info)	\
847 	(((hdr_info) & 0xf8000000) ? ((hdr_info) >> 27) : 32)
848 
849 #define BNXT_TPA_INNER_L3_OFF(hdr_info)	\
850 	(((hdr_info) >> 18) & 0x1ff)
851 
852 #define BNXT_TPA_INNER_L2_OFF(hdr_info)	\
853 	(((hdr_info) >> 9) & 0x1ff)
854 
855 #define BNXT_TPA_OUTER_L3_OFF(hdr_info)	\
856 	((hdr_info) & 0x1ff)
857 
858 	u16			cfa_code; /* cfa_code in TPA start compl */
859 	u8			agg_count;
860 	struct rx_agg_cmp	*agg_arr;
861 };
862 
863 #define BNXT_AGG_IDX_BMAP_SIZE	(MAX_TPA_P5 / BITS_PER_LONG)
864 
865 struct bnxt_tpa_idx_map {
866 	u16		agg_id_tbl[1024];
867 	unsigned long	agg_idx_bmap[BNXT_AGG_IDX_BMAP_SIZE];
868 };
869 
870 struct bnxt_rx_ring_info {
871 	struct bnxt_napi	*bnapi;
872 	u16			rx_prod;
873 	u16			rx_agg_prod;
874 	u16			rx_sw_agg_prod;
875 	u16			rx_next_cons;
876 	struct bnxt_db_info	rx_db;
877 	struct bnxt_db_info	rx_agg_db;
878 
879 	struct bpf_prog		*xdp_prog;
880 
881 	struct rx_bd		*rx_desc_ring[MAX_RX_PAGES];
882 	struct bnxt_sw_rx_bd	*rx_buf_ring;
883 
884 	struct rx_bd		*rx_agg_desc_ring[MAX_RX_AGG_PAGES];
885 	struct bnxt_sw_rx_agg_bd	*rx_agg_ring;
886 
887 	unsigned long		*rx_agg_bmap;
888 	u16			rx_agg_bmap_size;
889 
890 	struct page		*rx_page;
891 	unsigned int		rx_page_offset;
892 
893 	dma_addr_t		rx_desc_mapping[MAX_RX_PAGES];
894 	dma_addr_t		rx_agg_desc_mapping[MAX_RX_AGG_PAGES];
895 
896 	struct bnxt_tpa_info	*rx_tpa;
897 	struct bnxt_tpa_idx_map *rx_tpa_idx_map;
898 
899 	struct bnxt_ring_struct	rx_ring_struct;
900 	struct bnxt_ring_struct	rx_agg_ring_struct;
901 	struct xdp_rxq_info	xdp_rxq;
902 	struct page_pool	*page_pool;
903 };
904 
905 struct bnxt_cp_ring_info {
906 	struct bnxt_napi	*bnapi;
907 	u32			cp_raw_cons;
908 	struct bnxt_db_info	cp_db;
909 
910 	u8			had_work_done:1;
911 	u8			has_more_work:1;
912 
913 	u32			last_cp_raw_cons;
914 
915 	struct bnxt_coal	rx_ring_coal;
916 	u64			rx_packets;
917 	u64			rx_bytes;
918 	u64			event_ctr;
919 
920 	struct dim		dim;
921 
922 	union {
923 		struct tx_cmp	*cp_desc_ring[MAX_CP_PAGES];
924 		struct nqe_cn	*nq_desc_ring[MAX_CP_PAGES];
925 	};
926 
927 	dma_addr_t		cp_desc_mapping[MAX_CP_PAGES];
928 
929 	struct ctx_hw_stats	*hw_stats;
930 	dma_addr_t		hw_stats_map;
931 	u32			hw_stats_ctx_id;
932 	u64			rx_l4_csum_errors;
933 	u64			rx_buf_errors;
934 	u64			missed_irqs;
935 
936 	struct bnxt_ring_struct	cp_ring_struct;
937 
938 	struct bnxt_cp_ring_info *cp_ring_arr[2];
939 #define BNXT_RX_HDL	0
940 #define BNXT_TX_HDL	1
941 };
942 
943 struct bnxt_napi {
944 	struct napi_struct	napi;
945 	struct bnxt		*bp;
946 
947 	int			index;
948 	struct bnxt_cp_ring_info	cp_ring;
949 	struct bnxt_rx_ring_info	*rx_ring;
950 	struct bnxt_tx_ring_info	*tx_ring;
951 
952 	void			(*tx_int)(struct bnxt *, struct bnxt_napi *,
953 					  int);
954 	int			tx_pkts;
955 	u8			events;
956 
957 	u32			flags;
958 #define BNXT_NAPI_FLAG_XDP	0x1
959 
960 	bool			in_reset;
961 };
962 
963 struct bnxt_irq {
964 	irq_handler_t	handler;
965 	unsigned int	vector;
966 	u8		requested:1;
967 	u8		have_cpumask:1;
968 	char		name[IFNAMSIZ + 2];
969 	cpumask_var_t	cpu_mask;
970 };
971 
972 #define HWRM_RING_ALLOC_TX	0x1
973 #define HWRM_RING_ALLOC_RX	0x2
974 #define HWRM_RING_ALLOC_AGG	0x4
975 #define HWRM_RING_ALLOC_CMPL	0x8
976 #define HWRM_RING_ALLOC_NQ	0x10
977 
978 #define INVALID_STATS_CTX_ID	-1
979 
980 struct bnxt_ring_grp_info {
981 	u16	fw_stats_ctx;
982 	u16	fw_grp_id;
983 	u16	rx_fw_ring_id;
984 	u16	agg_fw_ring_id;
985 	u16	cp_fw_ring_id;
986 };
987 
988 struct bnxt_vnic_info {
989 	u16		fw_vnic_id; /* returned by Chimp during alloc */
990 #define BNXT_MAX_CTX_PER_VNIC	8
991 	u16		fw_rss_cos_lb_ctx[BNXT_MAX_CTX_PER_VNIC];
992 	u16		fw_l2_ctx_id;
993 #define BNXT_MAX_UC_ADDRS	4
994 	__le64		fw_l2_filter_id[BNXT_MAX_UC_ADDRS];
995 				/* index 0 always dev_addr */
996 	u16		uc_filter_count;
997 	u8		*uc_list;
998 
999 	u16		*fw_grp_ids;
1000 	dma_addr_t	rss_table_dma_addr;
1001 	__le16		*rss_table;
1002 	dma_addr_t	rss_hash_key_dma_addr;
1003 	u64		*rss_hash_key;
1004 	u32		rx_mask;
1005 
1006 	u8		*mc_list;
1007 	int		mc_list_size;
1008 	int		mc_list_count;
1009 	dma_addr_t	mc_list_mapping;
1010 #define BNXT_MAX_MC_ADDRS	16
1011 
1012 	u32		flags;
1013 #define BNXT_VNIC_RSS_FLAG	1
1014 #define BNXT_VNIC_RFS_FLAG	2
1015 #define BNXT_VNIC_MCAST_FLAG	4
1016 #define BNXT_VNIC_UCAST_FLAG	8
1017 #define BNXT_VNIC_RFS_NEW_RSS_FLAG	0x10
1018 };
1019 
1020 struct bnxt_hw_resc {
1021 	u16	min_rsscos_ctxs;
1022 	u16	max_rsscos_ctxs;
1023 	u16	min_cp_rings;
1024 	u16	max_cp_rings;
1025 	u16	resv_cp_rings;
1026 	u16	min_tx_rings;
1027 	u16	max_tx_rings;
1028 	u16	resv_tx_rings;
1029 	u16	max_tx_sch_inputs;
1030 	u16	min_rx_rings;
1031 	u16	max_rx_rings;
1032 	u16	resv_rx_rings;
1033 	u16	min_hw_ring_grps;
1034 	u16	max_hw_ring_grps;
1035 	u16	resv_hw_ring_grps;
1036 	u16	min_l2_ctxs;
1037 	u16	max_l2_ctxs;
1038 	u16	min_vnics;
1039 	u16	max_vnics;
1040 	u16	resv_vnics;
1041 	u16	min_stat_ctxs;
1042 	u16	max_stat_ctxs;
1043 	u16	resv_stat_ctxs;
1044 	u16	max_nqs;
1045 	u16	max_irqs;
1046 	u16	resv_irqs;
1047 };
1048 
1049 #if defined(CONFIG_BNXT_SRIOV)
1050 struct bnxt_vf_info {
1051 	u16	fw_fid;
1052 	u8	mac_addr[ETH_ALEN];	/* PF assigned MAC Address */
1053 	u8	vf_mac_addr[ETH_ALEN];	/* VF assigned MAC address, only
1054 					 * stored by PF.
1055 					 */
1056 	u16	vlan;
1057 	u16	func_qcfg_flags;
1058 	u32	flags;
1059 #define BNXT_VF_QOS		0x1
1060 #define BNXT_VF_SPOOFCHK	0x2
1061 #define BNXT_VF_LINK_FORCED	0x4
1062 #define BNXT_VF_LINK_UP		0x8
1063 #define BNXT_VF_TRUST		0x10
1064 	u32	min_tx_rate;
1065 	u32	max_tx_rate;
1066 	void	*hwrm_cmd_req_addr;
1067 	dma_addr_t	hwrm_cmd_req_dma_addr;
1068 };
1069 #endif
1070 
1071 struct bnxt_pf_info {
1072 #define BNXT_FIRST_PF_FID	1
1073 #define BNXT_FIRST_VF_FID	128
1074 	u16	fw_fid;
1075 	u16	port_id;
1076 	u8	mac_addr[ETH_ALEN];
1077 	u32	first_vf_id;
1078 	u16	active_vfs;
1079 	u16	registered_vfs;
1080 	u16	max_vfs;
1081 	u32	max_encap_records;
1082 	u32	max_decap_records;
1083 	u32	max_tx_em_flows;
1084 	u32	max_tx_wm_flows;
1085 	u32	max_rx_em_flows;
1086 	u32	max_rx_wm_flows;
1087 	unsigned long	*vf_event_bmap;
1088 	u16	hwrm_cmd_req_pages;
1089 	u8	vf_resv_strategy;
1090 #define BNXT_VF_RESV_STRATEGY_MAXIMAL	0
1091 #define BNXT_VF_RESV_STRATEGY_MINIMAL	1
1092 #define BNXT_VF_RESV_STRATEGY_MINIMAL_STATIC	2
1093 	void			*hwrm_cmd_req_addr[4];
1094 	dma_addr_t		hwrm_cmd_req_dma_addr[4];
1095 	struct bnxt_vf_info	*vf;
1096 };
1097 
1098 struct bnxt_ntuple_filter {
1099 	struct hlist_node	hash;
1100 	u8			dst_mac_addr[ETH_ALEN];
1101 	u8			src_mac_addr[ETH_ALEN];
1102 	struct flow_keys	fkeys;
1103 	__le64			filter_id;
1104 	u16			sw_id;
1105 	u8			l2_fltr_idx;
1106 	u16			rxq;
1107 	u32			flow_id;
1108 	unsigned long		state;
1109 #define BNXT_FLTR_VALID		0
1110 #define BNXT_FLTR_UPDATE	1
1111 };
1112 
1113 struct bnxt_link_info {
1114 	u8			phy_type;
1115 	u8			media_type;
1116 	u8			transceiver;
1117 	u8			phy_addr;
1118 	u8			phy_link_status;
1119 #define BNXT_LINK_NO_LINK	PORT_PHY_QCFG_RESP_LINK_NO_LINK
1120 #define BNXT_LINK_SIGNAL	PORT_PHY_QCFG_RESP_LINK_SIGNAL
1121 #define BNXT_LINK_LINK		PORT_PHY_QCFG_RESP_LINK_LINK
1122 	u8			wire_speed;
1123 	u8			loop_back;
1124 	u8			link_up;
1125 	u8			duplex;
1126 #define BNXT_LINK_DUPLEX_HALF	PORT_PHY_QCFG_RESP_DUPLEX_STATE_HALF
1127 #define BNXT_LINK_DUPLEX_FULL	PORT_PHY_QCFG_RESP_DUPLEX_STATE_FULL
1128 	u8			pause;
1129 #define BNXT_LINK_PAUSE_TX	PORT_PHY_QCFG_RESP_PAUSE_TX
1130 #define BNXT_LINK_PAUSE_RX	PORT_PHY_QCFG_RESP_PAUSE_RX
1131 #define BNXT_LINK_PAUSE_BOTH	(PORT_PHY_QCFG_RESP_PAUSE_RX | \
1132 				 PORT_PHY_QCFG_RESP_PAUSE_TX)
1133 	u8			lp_pause;
1134 	u8			auto_pause_setting;
1135 	u8			force_pause_setting;
1136 	u8			duplex_setting;
1137 	u8			auto_mode;
1138 #define BNXT_AUTO_MODE(mode)	((mode) > BNXT_LINK_AUTO_NONE && \
1139 				 (mode) <= BNXT_LINK_AUTO_MSK)
1140 #define BNXT_LINK_AUTO_NONE     PORT_PHY_QCFG_RESP_AUTO_MODE_NONE
1141 #define BNXT_LINK_AUTO_ALLSPDS	PORT_PHY_QCFG_RESP_AUTO_MODE_ALL_SPEEDS
1142 #define BNXT_LINK_AUTO_ONESPD	PORT_PHY_QCFG_RESP_AUTO_MODE_ONE_SPEED
1143 #define BNXT_LINK_AUTO_ONEORBELOW PORT_PHY_QCFG_RESP_AUTO_MODE_ONE_OR_BELOW
1144 #define BNXT_LINK_AUTO_MSK	PORT_PHY_QCFG_RESP_AUTO_MODE_SPEED_MASK
1145 #define PHY_VER_LEN		3
1146 	u8			phy_ver[PHY_VER_LEN];
1147 	u16			link_speed;
1148 #define BNXT_LINK_SPEED_100MB	PORT_PHY_QCFG_RESP_LINK_SPEED_100MB
1149 #define BNXT_LINK_SPEED_1GB	PORT_PHY_QCFG_RESP_LINK_SPEED_1GB
1150 #define BNXT_LINK_SPEED_2GB	PORT_PHY_QCFG_RESP_LINK_SPEED_2GB
1151 #define BNXT_LINK_SPEED_2_5GB	PORT_PHY_QCFG_RESP_LINK_SPEED_2_5GB
1152 #define BNXT_LINK_SPEED_10GB	PORT_PHY_QCFG_RESP_LINK_SPEED_10GB
1153 #define BNXT_LINK_SPEED_20GB	PORT_PHY_QCFG_RESP_LINK_SPEED_20GB
1154 #define BNXT_LINK_SPEED_25GB	PORT_PHY_QCFG_RESP_LINK_SPEED_25GB
1155 #define BNXT_LINK_SPEED_40GB	PORT_PHY_QCFG_RESP_LINK_SPEED_40GB
1156 #define BNXT_LINK_SPEED_50GB	PORT_PHY_QCFG_RESP_LINK_SPEED_50GB
1157 #define BNXT_LINK_SPEED_100GB	PORT_PHY_QCFG_RESP_LINK_SPEED_100GB
1158 	u16			support_speeds;
1159 	u16			auto_link_speeds;	/* fw adv setting */
1160 #define BNXT_LINK_SPEED_MSK_100MB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_100MB
1161 #define BNXT_LINK_SPEED_MSK_1GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_1GB
1162 #define BNXT_LINK_SPEED_MSK_2GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_2GB
1163 #define BNXT_LINK_SPEED_MSK_10GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_10GB
1164 #define BNXT_LINK_SPEED_MSK_2_5GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_2_5GB
1165 #define BNXT_LINK_SPEED_MSK_20GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_20GB
1166 #define BNXT_LINK_SPEED_MSK_25GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_25GB
1167 #define BNXT_LINK_SPEED_MSK_40GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_40GB
1168 #define BNXT_LINK_SPEED_MSK_50GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_50GB
1169 #define BNXT_LINK_SPEED_MSK_100GB PORT_PHY_QCFG_RESP_SUPPORT_SPEEDS_100GB
1170 	u16			support_auto_speeds;
1171 	u16			lp_auto_link_speeds;
1172 	u16			force_link_speed;
1173 	u32			preemphasis;
1174 	u8			module_status;
1175 	u16			fec_cfg;
1176 #define BNXT_FEC_AUTONEG	PORT_PHY_QCFG_RESP_FEC_CFG_FEC_AUTONEG_ENABLED
1177 #define BNXT_FEC_ENC_BASE_R	PORT_PHY_QCFG_RESP_FEC_CFG_FEC_CLAUSE74_ENABLED
1178 #define BNXT_FEC_ENC_RS		PORT_PHY_QCFG_RESP_FEC_CFG_FEC_CLAUSE91_ENABLED
1179 
1180 	/* copy of requested setting from ethtool cmd */
1181 	u8			autoneg;
1182 #define BNXT_AUTONEG_SPEED		1
1183 #define BNXT_AUTONEG_FLOW_CTRL		2
1184 	u8			req_duplex;
1185 	u8			req_flow_ctrl;
1186 	u16			req_link_speed;
1187 	u16			advertising;	/* user adv setting */
1188 	bool			force_link_chng;
1189 
1190 	bool			phy_retry;
1191 	unsigned long		phy_retry_expires;
1192 
1193 	/* a copy of phy_qcfg output used to report link
1194 	 * info to VF
1195 	 */
1196 	struct hwrm_port_phy_qcfg_output phy_qcfg_resp;
1197 };
1198 
1199 #define BNXT_MAX_QUEUE	8
1200 
1201 struct bnxt_queue_info {
1202 	u8	queue_id;
1203 	u8	queue_profile;
1204 };
1205 
1206 #define BNXT_MAX_LED			4
1207 
1208 struct bnxt_led_info {
1209 	u8	led_id;
1210 	u8	led_type;
1211 	u8	led_group_id;
1212 	u8	unused;
1213 	__le16	led_state_caps;
1214 #define BNXT_LED_ALT_BLINK_CAP(x)	((x) &	\
1215 	cpu_to_le16(PORT_LED_QCAPS_RESP_LED0_STATE_CAPS_BLINK_ALT_SUPPORTED))
1216 
1217 	__le16	led_color_caps;
1218 };
1219 
1220 #define BNXT_MAX_TEST	8
1221 
1222 struct bnxt_test_info {
1223 	u8 offline_mask;
1224 	u8 flags;
1225 #define BNXT_TEST_FL_EXT_LPBK		0x1
1226 #define BNXT_TEST_FL_AN_PHY_LPBK	0x2
1227 	u16 timeout;
1228 	char string[BNXT_MAX_TEST][ETH_GSTRING_LEN];
1229 };
1230 
1231 #define BNXT_GRCPF_REG_CHIMP_COMM		0x0
1232 #define BNXT_GRCPF_REG_CHIMP_COMM_TRIGGER	0x100
1233 #define BNXT_GRCPF_REG_WINDOW_BASE_OUT		0x400
1234 #define BNXT_CAG_REG_LEGACY_INT_STATUS		0x4014
1235 #define BNXT_CAG_REG_BASE			0x300000
1236 
1237 #define BNXT_GRCPF_REG_KONG_COMM		0xA00
1238 #define BNXT_GRCPF_REG_KONG_COMM_TRIGGER	0xB00
1239 
1240 #define BNXT_GRC_BASE_MASK			0xfffff000
1241 #define BNXT_GRC_OFFSET_MASK			0x00000ffc
1242 
1243 struct bnxt_tc_flow_stats {
1244 	u64		packets;
1245 	u64		bytes;
1246 };
1247 
1248 #ifdef CONFIG_BNXT_FLOWER_OFFLOAD
1249 struct bnxt_flower_indr_block_cb_priv {
1250 	struct net_device *tunnel_netdev;
1251 	struct bnxt *bp;
1252 	struct list_head list;
1253 };
1254 #endif
1255 
1256 struct bnxt_tc_info {
1257 	bool				enabled;
1258 
1259 	/* hash table to store TC offloaded flows */
1260 	struct rhashtable		flow_table;
1261 	struct rhashtable_params	flow_ht_params;
1262 
1263 	/* hash table to store L2 keys of TC flows */
1264 	struct rhashtable		l2_table;
1265 	struct rhashtable_params	l2_ht_params;
1266 	/* hash table to store L2 keys for TC tunnel decap */
1267 	struct rhashtable		decap_l2_table;
1268 	struct rhashtable_params	decap_l2_ht_params;
1269 	/* hash table to store tunnel decap entries */
1270 	struct rhashtable		decap_table;
1271 	struct rhashtable_params	decap_ht_params;
1272 	/* hash table to store tunnel encap entries */
1273 	struct rhashtable		encap_table;
1274 	struct rhashtable_params	encap_ht_params;
1275 
1276 	/* lock to atomically add/del an l2 node when a flow is
1277 	 * added or deleted.
1278 	 */
1279 	struct mutex			lock;
1280 
1281 	/* Fields used for batching stats query */
1282 	struct rhashtable_iter		iter;
1283 #define BNXT_FLOW_STATS_BATCH_MAX	10
1284 	struct bnxt_tc_stats_batch {
1285 		void			  *flow_node;
1286 		struct bnxt_tc_flow_stats hw_stats;
1287 	} stats_batch[BNXT_FLOW_STATS_BATCH_MAX];
1288 
1289 	/* Stat counter mask (width) */
1290 	u64				bytes_mask;
1291 	u64				packets_mask;
1292 };
1293 
1294 struct bnxt_vf_rep_stats {
1295 	u64			packets;
1296 	u64			bytes;
1297 	u64			dropped;
1298 };
1299 
1300 struct bnxt_vf_rep {
1301 	struct bnxt			*bp;
1302 	struct net_device		*dev;
1303 	struct metadata_dst		*dst;
1304 	u16				vf_idx;
1305 	u16				tx_cfa_action;
1306 	u16				rx_cfa_code;
1307 
1308 	struct bnxt_vf_rep_stats	rx_stats;
1309 	struct bnxt_vf_rep_stats	tx_stats;
1310 };
1311 
1312 #define PTU_PTE_VALID             0x1UL
1313 #define PTU_PTE_LAST              0x2UL
1314 #define PTU_PTE_NEXT_TO_LAST      0x4UL
1315 
1316 #define MAX_CTX_PAGES	(BNXT_PAGE_SIZE / 8)
1317 #define MAX_CTX_TOTAL_PAGES	(MAX_CTX_PAGES * MAX_CTX_PAGES)
1318 
1319 struct bnxt_ctx_pg_info {
1320 	u32		entries;
1321 	u32		nr_pages;
1322 	void		*ctx_pg_arr[MAX_CTX_PAGES];
1323 	dma_addr_t	ctx_dma_arr[MAX_CTX_PAGES];
1324 	struct bnxt_ring_mem_info ring_mem;
1325 	struct bnxt_ctx_pg_info **ctx_pg_tbl;
1326 };
1327 
1328 struct bnxt_ctx_mem_info {
1329 	u32	qp_max_entries;
1330 	u16	qp_min_qp1_entries;
1331 	u16	qp_max_l2_entries;
1332 	u16	qp_entry_size;
1333 	u16	srq_max_l2_entries;
1334 	u32	srq_max_entries;
1335 	u16	srq_entry_size;
1336 	u16	cq_max_l2_entries;
1337 	u32	cq_max_entries;
1338 	u16	cq_entry_size;
1339 	u16	vnic_max_vnic_entries;
1340 	u16	vnic_max_ring_table_entries;
1341 	u16	vnic_entry_size;
1342 	u32	stat_max_entries;
1343 	u16	stat_entry_size;
1344 	u16	tqm_entry_size;
1345 	u32	tqm_min_entries_per_ring;
1346 	u32	tqm_max_entries_per_ring;
1347 	u32	mrav_max_entries;
1348 	u16	mrav_entry_size;
1349 	u16	tim_entry_size;
1350 	u32	tim_max_entries;
1351 	u16	mrav_num_entries_units;
1352 	u8	tqm_entries_multiple;
1353 	u8	ctx_kind_initializer;
1354 
1355 	u32	flags;
1356 	#define BNXT_CTX_FLAG_INITED	0x01
1357 
1358 	struct bnxt_ctx_pg_info qp_mem;
1359 	struct bnxt_ctx_pg_info srq_mem;
1360 	struct bnxt_ctx_pg_info cq_mem;
1361 	struct bnxt_ctx_pg_info vnic_mem;
1362 	struct bnxt_ctx_pg_info stat_mem;
1363 	struct bnxt_ctx_pg_info mrav_mem;
1364 	struct bnxt_ctx_pg_info tim_mem;
1365 	struct bnxt_ctx_pg_info *tqm_mem[9];
1366 };
1367 
1368 struct bnxt_fw_health {
1369 	u32 flags;
1370 	u32 polling_dsecs;
1371 	u32 master_func_wait_dsecs;
1372 	u32 normal_func_wait_dsecs;
1373 	u32 post_reset_wait_dsecs;
1374 	u32 post_reset_max_wait_dsecs;
1375 	u32 regs[4];
1376 	u32 mapped_regs[4];
1377 #define BNXT_FW_HEALTH_REG		0
1378 #define BNXT_FW_HEARTBEAT_REG		1
1379 #define BNXT_FW_RESET_CNT_REG		2
1380 #define BNXT_FW_RESET_INPROG_REG	3
1381 	u32 fw_reset_inprog_reg_mask;
1382 	u32 last_fw_heartbeat;
1383 	u32 last_fw_reset_cnt;
1384 	u8 enabled:1;
1385 	u8 master:1;
1386 	u8 fatal:1;
1387 	u8 tmr_multiplier;
1388 	u8 tmr_counter;
1389 	u8 fw_reset_seq_cnt;
1390 	u32 fw_reset_seq_regs[16];
1391 	u32 fw_reset_seq_vals[16];
1392 	u32 fw_reset_seq_delay_msec[16];
1393 	struct devlink_health_reporter	*fw_reporter;
1394 	struct devlink_health_reporter *fw_reset_reporter;
1395 	struct devlink_health_reporter *fw_fatal_reporter;
1396 };
1397 
1398 struct bnxt_fw_reporter_ctx {
1399 	unsigned long sp_event;
1400 };
1401 
1402 #define BNXT_FW_HEALTH_REG_TYPE_MASK	3
1403 #define BNXT_FW_HEALTH_REG_TYPE_CFG	0
1404 #define BNXT_FW_HEALTH_REG_TYPE_GRC	1
1405 #define BNXT_FW_HEALTH_REG_TYPE_BAR0	2
1406 #define BNXT_FW_HEALTH_REG_TYPE_BAR1	3
1407 
1408 #define BNXT_FW_HEALTH_REG_TYPE(reg)	((reg) & BNXT_FW_HEALTH_REG_TYPE_MASK)
1409 #define BNXT_FW_HEALTH_REG_OFF(reg)	((reg) & ~BNXT_FW_HEALTH_REG_TYPE_MASK)
1410 
1411 #define BNXT_FW_HEALTH_WIN_BASE		0x3000
1412 #define BNXT_FW_HEALTH_WIN_MAP_OFF	8
1413 
1414 #define BNXT_FW_STATUS_HEALTHY		0x8000
1415 #define BNXT_FW_STATUS_SHUTDOWN		0x100000
1416 
1417 struct bnxt {
1418 	void __iomem		*bar0;
1419 	void __iomem		*bar1;
1420 	void __iomem		*bar2;
1421 
1422 	u32			reg_base;
1423 	u16			chip_num;
1424 #define CHIP_NUM_57301		0x16c8
1425 #define CHIP_NUM_57302		0x16c9
1426 #define CHIP_NUM_57304		0x16ca
1427 #define CHIP_NUM_58700		0x16cd
1428 #define CHIP_NUM_57402		0x16d0
1429 #define CHIP_NUM_57404		0x16d1
1430 #define CHIP_NUM_57406		0x16d2
1431 #define CHIP_NUM_57407		0x16d5
1432 
1433 #define CHIP_NUM_57311		0x16ce
1434 #define CHIP_NUM_57312		0x16cf
1435 #define CHIP_NUM_57314		0x16df
1436 #define CHIP_NUM_57317		0x16e0
1437 #define CHIP_NUM_57412		0x16d6
1438 #define CHIP_NUM_57414		0x16d7
1439 #define CHIP_NUM_57416		0x16d8
1440 #define CHIP_NUM_57417		0x16d9
1441 #define CHIP_NUM_57412L		0x16da
1442 #define CHIP_NUM_57414L		0x16db
1443 
1444 #define CHIP_NUM_5745X		0xd730
1445 #define CHIP_NUM_57452		0xc452
1446 #define CHIP_NUM_57454		0xc454
1447 
1448 #define CHIP_NUM_57508		0x1750
1449 #define CHIP_NUM_57504		0x1751
1450 #define CHIP_NUM_57502		0x1752
1451 
1452 #define CHIP_NUM_58802		0xd802
1453 #define CHIP_NUM_58804		0xd804
1454 #define CHIP_NUM_58808		0xd808
1455 
1456 	u8			chip_rev;
1457 
1458 #define BNXT_CHIP_NUM_5730X(chip_num)		\
1459 	((chip_num) >= CHIP_NUM_57301 &&	\
1460 	 (chip_num) <= CHIP_NUM_57304)
1461 
1462 #define BNXT_CHIP_NUM_5740X(chip_num)		\
1463 	(((chip_num) >= CHIP_NUM_57402 &&	\
1464 	  (chip_num) <= CHIP_NUM_57406) ||	\
1465 	 (chip_num) == CHIP_NUM_57407)
1466 
1467 #define BNXT_CHIP_NUM_5731X(chip_num)		\
1468 	((chip_num) == CHIP_NUM_57311 ||	\
1469 	 (chip_num) == CHIP_NUM_57312 ||	\
1470 	 (chip_num) == CHIP_NUM_57314 ||	\
1471 	 (chip_num) == CHIP_NUM_57317)
1472 
1473 #define BNXT_CHIP_NUM_5741X(chip_num)		\
1474 	((chip_num) >= CHIP_NUM_57412 &&	\
1475 	 (chip_num) <= CHIP_NUM_57414L)
1476 
1477 #define BNXT_CHIP_NUM_58700(chip_num)		\
1478 	 ((chip_num) == CHIP_NUM_58700)
1479 
1480 #define BNXT_CHIP_NUM_5745X(chip_num)		\
1481 	((chip_num) == CHIP_NUM_5745X ||	\
1482 	 (chip_num) == CHIP_NUM_57452 ||	\
1483 	 (chip_num) == CHIP_NUM_57454)
1484 
1485 
1486 #define BNXT_CHIP_NUM_57X0X(chip_num)		\
1487 	(BNXT_CHIP_NUM_5730X(chip_num) || BNXT_CHIP_NUM_5740X(chip_num))
1488 
1489 #define BNXT_CHIP_NUM_57X1X(chip_num)		\
1490 	(BNXT_CHIP_NUM_5731X(chip_num) || BNXT_CHIP_NUM_5741X(chip_num))
1491 
1492 #define BNXT_CHIP_NUM_588XX(chip_num)		\
1493 	((chip_num) == CHIP_NUM_58802 ||	\
1494 	 (chip_num) == CHIP_NUM_58804 ||        \
1495 	 (chip_num) == CHIP_NUM_58808)
1496 
1497 #define BNXT_VPD_FLD_LEN	32
1498 	char			board_partno[BNXT_VPD_FLD_LEN];
1499 	char			board_serialno[BNXT_VPD_FLD_LEN];
1500 
1501 	struct net_device	*dev;
1502 	struct pci_dev		*pdev;
1503 
1504 	atomic_t		intr_sem;
1505 
1506 	u32			flags;
1507 	#define BNXT_FLAG_CHIP_P5	0x1
1508 	#define BNXT_FLAG_VF		0x2
1509 	#define BNXT_FLAG_LRO		0x4
1510 #ifdef CONFIG_INET
1511 	#define BNXT_FLAG_GRO		0x8
1512 #else
1513 	/* Cannot support hardware GRO if CONFIG_INET is not set */
1514 	#define BNXT_FLAG_GRO		0x0
1515 #endif
1516 	#define BNXT_FLAG_TPA		(BNXT_FLAG_LRO | BNXT_FLAG_GRO)
1517 	#define BNXT_FLAG_JUMBO		0x10
1518 	#define BNXT_FLAG_STRIP_VLAN	0x20
1519 	#define BNXT_FLAG_AGG_RINGS	(BNXT_FLAG_JUMBO | BNXT_FLAG_GRO | \
1520 					 BNXT_FLAG_LRO)
1521 	#define BNXT_FLAG_USING_MSIX	0x40
1522 	#define BNXT_FLAG_MSIX_CAP	0x80
1523 	#define BNXT_FLAG_RFS		0x100
1524 	#define BNXT_FLAG_SHARED_RINGS	0x200
1525 	#define BNXT_FLAG_PORT_STATS	0x400
1526 	#define BNXT_FLAG_UDP_RSS_CAP	0x800
1527 	#define BNXT_FLAG_EEE_CAP	0x1000
1528 	#define BNXT_FLAG_NEW_RSS_CAP	0x2000
1529 	#define BNXT_FLAG_WOL_CAP	0x4000
1530 	#define BNXT_FLAG_ROCEV1_CAP	0x8000
1531 	#define BNXT_FLAG_ROCEV2_CAP	0x10000
1532 	#define BNXT_FLAG_ROCE_CAP	(BNXT_FLAG_ROCEV1_CAP |	\
1533 					 BNXT_FLAG_ROCEV2_CAP)
1534 	#define BNXT_FLAG_NO_AGG_RINGS	0x20000
1535 	#define BNXT_FLAG_RX_PAGE_MODE	0x40000
1536 	#define BNXT_FLAG_MULTI_HOST	0x100000
1537 	#define BNXT_FLAG_DSN_VALID	0x200000
1538 	#define BNXT_FLAG_DOUBLE_DB	0x400000
1539 	#define BNXT_FLAG_CHIP_NITRO_A0	0x1000000
1540 	#define BNXT_FLAG_DIM		0x2000000
1541 	#define BNXT_FLAG_ROCE_MIRROR_CAP	0x4000000
1542 	#define BNXT_FLAG_PORT_STATS_EXT	0x10000000
1543 	#define BNXT_FLAG_PCIE_STATS	0x40000000
1544 
1545 	#define BNXT_FLAG_ALL_CONFIG_FEATS (BNXT_FLAG_TPA |		\
1546 					    BNXT_FLAG_RFS |		\
1547 					    BNXT_FLAG_STRIP_VLAN)
1548 
1549 #define BNXT_PF(bp)		(!((bp)->flags & BNXT_FLAG_VF))
1550 #define BNXT_VF(bp)		((bp)->flags & BNXT_FLAG_VF)
1551 #define BNXT_NPAR(bp)		((bp)->port_partition_type)
1552 #define BNXT_MH(bp)		((bp)->flags & BNXT_FLAG_MULTI_HOST)
1553 #define BNXT_SINGLE_PF(bp)	(BNXT_PF(bp) && !BNXT_NPAR(bp) && !BNXT_MH(bp))
1554 #define BNXT_PHY_CFG_ABLE(bp)	(BNXT_SINGLE_PF(bp) ||			\
1555 				 ((bp)->fw_cap & BNXT_FW_CAP_SHARED_PORT_CFG))
1556 #define BNXT_CHIP_TYPE_NITRO_A0(bp) ((bp)->flags & BNXT_FLAG_CHIP_NITRO_A0)
1557 #define BNXT_RX_PAGE_MODE(bp)	((bp)->flags & BNXT_FLAG_RX_PAGE_MODE)
1558 #define BNXT_SUPPORTS_TPA(bp)	(!BNXT_CHIP_TYPE_NITRO_A0(bp) &&	\
1559 				 (!((bp)->flags & BNXT_FLAG_CHIP_P5) ||	\
1560 				  (bp)->max_tpa_v2) && !is_kdump_kernel())
1561 
1562 /* Chip class phase 5 */
1563 #define BNXT_CHIP_P5(bp)			\
1564 	((bp)->chip_num == CHIP_NUM_57508 ||	\
1565 	 (bp)->chip_num == CHIP_NUM_57504 ||	\
1566 	 (bp)->chip_num == CHIP_NUM_57502)
1567 
1568 /* Chip class phase 4.x */
1569 #define BNXT_CHIP_P4(bp)			\
1570 	(BNXT_CHIP_NUM_57X1X((bp)->chip_num) ||	\
1571 	 BNXT_CHIP_NUM_5745X((bp)->chip_num) ||	\
1572 	 BNXT_CHIP_NUM_588XX((bp)->chip_num) ||	\
1573 	 (BNXT_CHIP_NUM_58700((bp)->chip_num) &&	\
1574 	  !BNXT_CHIP_TYPE_NITRO_A0(bp)))
1575 
1576 #define BNXT_CHIP_P4_PLUS(bp)			\
1577 	(BNXT_CHIP_P4(bp) || BNXT_CHIP_P5(bp))
1578 
1579 	struct bnxt_en_dev	*edev;
1580 	struct bnxt_en_dev *	(*ulp_probe)(struct net_device *);
1581 
1582 	struct bnxt_napi	**bnapi;
1583 
1584 	struct bnxt_rx_ring_info	*rx_ring;
1585 	struct bnxt_tx_ring_info	*tx_ring;
1586 	u16			*tx_ring_map;
1587 
1588 	struct sk_buff *	(*gro_func)(struct bnxt_tpa_info *, int, int,
1589 					    struct sk_buff *);
1590 
1591 	struct sk_buff *	(*rx_skb_func)(struct bnxt *,
1592 					       struct bnxt_rx_ring_info *,
1593 					       u16, void *, u8 *, dma_addr_t,
1594 					       unsigned int);
1595 
1596 	u16			max_tpa_v2;
1597 	u16			max_tpa;
1598 	u32			rx_buf_size;
1599 	u32			rx_buf_use_size;	/* useable size */
1600 	u16			rx_offset;
1601 	u16			rx_dma_offset;
1602 	enum dma_data_direction	rx_dir;
1603 	u32			rx_ring_size;
1604 	u32			rx_agg_ring_size;
1605 	u32			rx_copy_thresh;
1606 	u32			rx_ring_mask;
1607 	u32			rx_agg_ring_mask;
1608 	int			rx_nr_pages;
1609 	int			rx_agg_nr_pages;
1610 	int			rx_nr_rings;
1611 	int			rsscos_nr_ctxs;
1612 
1613 	u32			tx_ring_size;
1614 	u32			tx_ring_mask;
1615 	int			tx_nr_pages;
1616 	int			tx_nr_rings;
1617 	int			tx_nr_rings_per_tc;
1618 	int			tx_nr_rings_xdp;
1619 
1620 	int			tx_wake_thresh;
1621 	int			tx_push_thresh;
1622 	int			tx_push_size;
1623 
1624 	u32			cp_ring_size;
1625 	u32			cp_ring_mask;
1626 	u32			cp_bit;
1627 	int			cp_nr_pages;
1628 	int			cp_nr_rings;
1629 
1630 	/* grp_info indexed by completion ring index */
1631 	struct bnxt_ring_grp_info	*grp_info;
1632 	struct bnxt_vnic_info	*vnic_info;
1633 	int			nr_vnics;
1634 	u32			rss_hash_cfg;
1635 
1636 	u16			max_mtu;
1637 	u8			max_tc;
1638 	u8			max_lltc;	/* lossless TCs */
1639 	struct bnxt_queue_info	q_info[BNXT_MAX_QUEUE];
1640 	u8			tc_to_qidx[BNXT_MAX_QUEUE];
1641 	u8			q_ids[BNXT_MAX_QUEUE];
1642 	u8			max_q;
1643 
1644 	unsigned int		current_interval;
1645 #define BNXT_TIMER_INTERVAL	HZ
1646 
1647 	struct timer_list	timer;
1648 
1649 	unsigned long		state;
1650 #define BNXT_STATE_OPEN		0
1651 #define BNXT_STATE_IN_SP_TASK	1
1652 #define BNXT_STATE_READ_STATS	2
1653 #define BNXT_STATE_FW_RESET_DET 3
1654 #define BNXT_STATE_IN_FW_RESET	4
1655 #define BNXT_STATE_ABORT_ERR	5
1656 #define BNXT_STATE_FW_FATAL_COND	6
1657 #define BNXT_STATE_DRV_REGISTERED	7
1658 
1659 	struct bnxt_irq	*irq_tbl;
1660 	int			total_irqs;
1661 	u8			mac_addr[ETH_ALEN];
1662 
1663 #ifdef CONFIG_BNXT_DCB
1664 	struct ieee_pfc		*ieee_pfc;
1665 	struct ieee_ets		*ieee_ets;
1666 	u8			dcbx_cap;
1667 	u8			default_pri;
1668 	u8			max_dscp_value;
1669 #endif /* CONFIG_BNXT_DCB */
1670 
1671 	u32			msg_enable;
1672 
1673 	u32			fw_cap;
1674 	#define BNXT_FW_CAP_SHORT_CMD			0x00000001
1675 	#define BNXT_FW_CAP_LLDP_AGENT			0x00000002
1676 	#define BNXT_FW_CAP_DCBX_AGENT			0x00000004
1677 	#define BNXT_FW_CAP_NEW_RM			0x00000008
1678 	#define BNXT_FW_CAP_IF_CHANGE			0x00000010
1679 	#define BNXT_FW_CAP_KONG_MB_CHNL		0x00000080
1680 	#define BNXT_FW_CAP_OVS_64BIT_HANDLE		0x00000400
1681 	#define BNXT_FW_CAP_TRUSTED_VF			0x00000800
1682 	#define BNXT_FW_CAP_ERROR_RECOVERY		0x00002000
1683 	#define BNXT_FW_CAP_PKG_VER			0x00004000
1684 	#define BNXT_FW_CAP_CFA_ADV_FLOW		0x00008000
1685 	#define BNXT_FW_CAP_CFA_RFS_RING_TBL_IDX_V2	0x00010000
1686 	#define BNXT_FW_CAP_PCIE_STATS_SUPPORTED	0x00020000
1687 	#define BNXT_FW_CAP_EXT_STATS_SUPPORTED		0x00040000
1688 	#define BNXT_FW_CAP_ERR_RECOVER_RELOAD		0x00100000
1689 	#define BNXT_FW_CAP_HOT_RESET			0x00200000
1690 	#define BNXT_FW_CAP_SHARED_PORT_CFG		0x00400000
1691 
1692 #define BNXT_NEW_RM(bp)		((bp)->fw_cap & BNXT_FW_CAP_NEW_RM)
1693 	u32			hwrm_spec_code;
1694 	u16			hwrm_cmd_seq;
1695 	u16                     hwrm_cmd_kong_seq;
1696 	u16			hwrm_intr_seq_id;
1697 	void			*hwrm_short_cmd_req_addr;
1698 	dma_addr_t		hwrm_short_cmd_req_dma_addr;
1699 	void			*hwrm_cmd_resp_addr;
1700 	dma_addr_t		hwrm_cmd_resp_dma_addr;
1701 	void			*hwrm_cmd_kong_resp_addr;
1702 	dma_addr_t		hwrm_cmd_kong_resp_dma_addr;
1703 
1704 	struct rtnl_link_stats64	net_stats_prev;
1705 	struct rx_port_stats	*hw_rx_port_stats;
1706 	struct tx_port_stats	*hw_tx_port_stats;
1707 	struct rx_port_stats_ext	*hw_rx_port_stats_ext;
1708 	struct tx_port_stats_ext	*hw_tx_port_stats_ext;
1709 	struct pcie_ctx_hw_stats	*hw_pcie_stats;
1710 	dma_addr_t		hw_rx_port_stats_map;
1711 	dma_addr_t		hw_tx_port_stats_map;
1712 	dma_addr_t		hw_rx_port_stats_ext_map;
1713 	dma_addr_t		hw_tx_port_stats_ext_map;
1714 	dma_addr_t		hw_pcie_stats_map;
1715 	int			hw_port_stats_size;
1716 	u16			fw_rx_stats_ext_size;
1717 	u16			fw_tx_stats_ext_size;
1718 	u16			hw_ring_stats_size;
1719 	u8			pri2cos_idx[8];
1720 	u8			pri2cos_valid;
1721 
1722 	u16			hwrm_max_req_len;
1723 	u16			hwrm_max_ext_req_len;
1724 	int			hwrm_cmd_timeout;
1725 	struct mutex		hwrm_cmd_lock;	/* serialize hwrm messages */
1726 	struct hwrm_ver_get_output	ver_resp;
1727 #define FW_VER_STR_LEN		32
1728 #define BC_HWRM_STR_LEN		21
1729 #define PHY_VER_STR_LEN         (FW_VER_STR_LEN - BC_HWRM_STR_LEN)
1730 	char			fw_ver_str[FW_VER_STR_LEN];
1731 	char			hwrm_ver_supp[FW_VER_STR_LEN];
1732 	__be16			vxlan_port;
1733 	u8			vxlan_port_cnt;
1734 	__le16			vxlan_fw_dst_port_id;
1735 	__be16			nge_port;
1736 	u8			nge_port_cnt;
1737 	__le16			nge_fw_dst_port_id;
1738 	u8			port_partition_type;
1739 	u8			port_count;
1740 	u16			br_mode;
1741 
1742 	struct bnxt_coal_cap	coal_cap;
1743 	struct bnxt_coal	rx_coal;
1744 	struct bnxt_coal	tx_coal;
1745 
1746 	u32			stats_coal_ticks;
1747 #define BNXT_DEF_STATS_COAL_TICKS	 1000000
1748 #define BNXT_MIN_STATS_COAL_TICKS	  250000
1749 #define BNXT_MAX_STATS_COAL_TICKS	 1000000
1750 
1751 	struct work_struct	sp_task;
1752 	unsigned long		sp_event;
1753 #define BNXT_RX_MASK_SP_EVENT		0
1754 #define BNXT_RX_NTP_FLTR_SP_EVENT	1
1755 #define BNXT_LINK_CHNG_SP_EVENT		2
1756 #define BNXT_HWRM_EXEC_FWD_REQ_SP_EVENT	3
1757 #define BNXT_VXLAN_ADD_PORT_SP_EVENT	4
1758 #define BNXT_VXLAN_DEL_PORT_SP_EVENT	5
1759 #define BNXT_RESET_TASK_SP_EVENT	6
1760 #define BNXT_RST_RING_SP_EVENT		7
1761 #define BNXT_HWRM_PF_UNLOAD_SP_EVENT	8
1762 #define BNXT_PERIODIC_STATS_SP_EVENT	9
1763 #define BNXT_HWRM_PORT_MODULE_SP_EVENT	10
1764 #define BNXT_RESET_TASK_SILENT_SP_EVENT	11
1765 #define BNXT_GENEVE_ADD_PORT_SP_EVENT	12
1766 #define BNXT_GENEVE_DEL_PORT_SP_EVENT	13
1767 #define BNXT_LINK_SPEED_CHNG_SP_EVENT	14
1768 #define BNXT_FLOW_STATS_SP_EVENT	15
1769 #define BNXT_UPDATE_PHY_SP_EVENT	16
1770 #define BNXT_RING_COAL_NOW_SP_EVENT	17
1771 #define BNXT_FW_RESET_NOTIFY_SP_EVENT	18
1772 #define BNXT_FW_EXCEPTION_SP_EVENT	19
1773 #define BNXT_LINK_CFG_CHANGE_SP_EVENT	21
1774 
1775 	struct delayed_work	fw_reset_task;
1776 	int			fw_reset_state;
1777 #define BNXT_FW_RESET_STATE_POLL_VF	1
1778 #define BNXT_FW_RESET_STATE_RESET_FW	2
1779 #define BNXT_FW_RESET_STATE_ENABLE_DEV	3
1780 #define BNXT_FW_RESET_STATE_POLL_FW	4
1781 #define BNXT_FW_RESET_STATE_OPENING	5
1782 #define BNXT_FW_RESET_STATE_POLL_FW_DOWN	6
1783 
1784 	u16			fw_reset_min_dsecs;
1785 #define BNXT_DFLT_FW_RST_MIN_DSECS	20
1786 	u16			fw_reset_max_dsecs;
1787 #define BNXT_DFLT_FW_RST_MAX_DSECS	60
1788 	unsigned long		fw_reset_timestamp;
1789 
1790 	struct bnxt_fw_health	*fw_health;
1791 
1792 	struct bnxt_hw_resc	hw_resc;
1793 	struct bnxt_pf_info	pf;
1794 	struct bnxt_ctx_mem_info	*ctx;
1795 #ifdef CONFIG_BNXT_SRIOV
1796 	int			nr_vfs;
1797 	struct bnxt_vf_info	vf;
1798 	wait_queue_head_t	sriov_cfg_wait;
1799 	bool			sriov_cfg;
1800 #define BNXT_SRIOV_CFG_WAIT_TMO	msecs_to_jiffies(10000)
1801 
1802 	/* lock to protect VF-rep creation/cleanup via
1803 	 * multiple paths such as ->sriov_configure() and
1804 	 * devlink ->eswitch_mode_set()
1805 	 */
1806 	struct mutex		sriov_lock;
1807 #endif
1808 
1809 #if BITS_PER_LONG == 32
1810 	/* ensure atomic 64-bit doorbell writes on 32-bit systems. */
1811 	spinlock_t		db_lock;
1812 #endif
1813 
1814 #define BNXT_NTP_FLTR_MAX_FLTR	4096
1815 #define BNXT_NTP_FLTR_HASH_SIZE	512
1816 #define BNXT_NTP_FLTR_HASH_MASK	(BNXT_NTP_FLTR_HASH_SIZE - 1)
1817 	struct hlist_head	ntp_fltr_hash_tbl[BNXT_NTP_FLTR_HASH_SIZE];
1818 	spinlock_t		ntp_fltr_lock;	/* for hash table add, del */
1819 
1820 	unsigned long		*ntp_fltr_bmap;
1821 	int			ntp_fltr_count;
1822 
1823 	/* To protect link related settings during link changes and
1824 	 * ethtool settings changes.
1825 	 */
1826 	struct mutex		link_lock;
1827 	struct bnxt_link_info	link_info;
1828 	struct ethtool_eee	eee;
1829 	u32			lpi_tmr_lo;
1830 	u32			lpi_tmr_hi;
1831 
1832 	u8			num_tests;
1833 	struct bnxt_test_info	*test_info;
1834 
1835 	u8			wol_filter_id;
1836 	u8			wol;
1837 
1838 	u8			num_leds;
1839 	struct bnxt_led_info	leds[BNXT_MAX_LED];
1840 	u16			dump_flag;
1841 #define BNXT_DUMP_LIVE		0
1842 #define BNXT_DUMP_CRASH		1
1843 
1844 	struct bpf_prog		*xdp_prog;
1845 
1846 	/* devlink interface and vf-rep structs */
1847 	struct devlink		*dl;
1848 	struct devlink_port	dl_port;
1849 	enum devlink_eswitch_mode eswitch_mode;
1850 	struct bnxt_vf_rep	**vf_reps; /* array of vf-rep ptrs */
1851 	u16			*cfa_code_map; /* cfa_code -> vf_idx map */
1852 	u8			dsn[8];
1853 	struct bnxt_tc_info	*tc_info;
1854 	struct list_head	tc_indr_block_list;
1855 	struct notifier_block	tc_netdev_nb;
1856 	struct dentry		*debugfs_pdev;
1857 	struct device		*hwmon_dev;
1858 };
1859 
1860 #define BNXT_RX_STATS_OFFSET(counter)			\
1861 	(offsetof(struct rx_port_stats, counter) / 8)
1862 
1863 #define BNXT_TX_STATS_OFFSET(counter)			\
1864 	((offsetof(struct tx_port_stats, counter) +	\
1865 	  sizeof(struct rx_port_stats) + 512) / 8)
1866 
1867 #define BNXT_RX_STATS_EXT_OFFSET(counter)		\
1868 	(offsetof(struct rx_port_stats_ext, counter) / 8)
1869 
1870 #define BNXT_TX_STATS_EXT_OFFSET(counter)		\
1871 	(offsetof(struct tx_port_stats_ext, counter) / 8)
1872 
1873 #define BNXT_PCIE_STATS_OFFSET(counter)			\
1874 	(offsetof(struct pcie_ctx_hw_stats, counter) / 8)
1875 
1876 #define I2C_DEV_ADDR_A0				0xa0
1877 #define I2C_DEV_ADDR_A2				0xa2
1878 #define SFF_DIAG_SUPPORT_OFFSET			0x5c
1879 #define SFF_MODULE_ID_SFP			0x3
1880 #define SFF_MODULE_ID_QSFP			0xc
1881 #define SFF_MODULE_ID_QSFP_PLUS			0xd
1882 #define SFF_MODULE_ID_QSFP28			0x11
1883 #define BNXT_MAX_PHY_I2C_RESP_SIZE		64
1884 
1885 static inline u32 bnxt_tx_avail(struct bnxt *bp, struct bnxt_tx_ring_info *txr)
1886 {
1887 	/* Tell compiler to fetch tx indices from memory. */
1888 	barrier();
1889 
1890 	return bp->tx_ring_size -
1891 		((txr->tx_prod - txr->tx_cons) & bp->tx_ring_mask);
1892 }
1893 
1894 #if BITS_PER_LONG == 32
1895 #define writeq(val64, db)			\
1896 do {						\
1897 	spin_lock(&bp->db_lock);		\
1898 	writel((val64) & 0xffffffff, db);	\
1899 	writel((val64) >> 32, (db) + 4);	\
1900 	spin_unlock(&bp->db_lock);		\
1901 } while (0)
1902 
1903 #define writeq_relaxed writeq
1904 #endif
1905 
1906 /* For TX and RX ring doorbells with no ordering guarantee*/
1907 static inline void bnxt_db_write_relaxed(struct bnxt *bp,
1908 					 struct bnxt_db_info *db, u32 idx)
1909 {
1910 	if (bp->flags & BNXT_FLAG_CHIP_P5) {
1911 		writeq_relaxed(db->db_key64 | idx, db->doorbell);
1912 	} else {
1913 		u32 db_val = db->db_key32 | idx;
1914 
1915 		writel_relaxed(db_val, db->doorbell);
1916 		if (bp->flags & BNXT_FLAG_DOUBLE_DB)
1917 			writel_relaxed(db_val, db->doorbell);
1918 	}
1919 }
1920 
1921 /* For TX and RX ring doorbells */
1922 static inline void bnxt_db_write(struct bnxt *bp, struct bnxt_db_info *db,
1923 				 u32 idx)
1924 {
1925 	if (bp->flags & BNXT_FLAG_CHIP_P5) {
1926 		writeq(db->db_key64 | idx, db->doorbell);
1927 	} else {
1928 		u32 db_val = db->db_key32 | idx;
1929 
1930 		writel(db_val, db->doorbell);
1931 		if (bp->flags & BNXT_FLAG_DOUBLE_DB)
1932 			writel(db_val, db->doorbell);
1933 	}
1934 }
1935 
1936 static inline bool bnxt_cfa_hwrm_message(u16 req_type)
1937 {
1938 	switch (req_type) {
1939 	case HWRM_CFA_ENCAP_RECORD_ALLOC:
1940 	case HWRM_CFA_ENCAP_RECORD_FREE:
1941 	case HWRM_CFA_DECAP_FILTER_ALLOC:
1942 	case HWRM_CFA_DECAP_FILTER_FREE:
1943 	case HWRM_CFA_EM_FLOW_ALLOC:
1944 	case HWRM_CFA_EM_FLOW_FREE:
1945 	case HWRM_CFA_EM_FLOW_CFG:
1946 	case HWRM_CFA_FLOW_ALLOC:
1947 	case HWRM_CFA_FLOW_FREE:
1948 	case HWRM_CFA_FLOW_INFO:
1949 	case HWRM_CFA_FLOW_FLUSH:
1950 	case HWRM_CFA_FLOW_STATS:
1951 	case HWRM_CFA_METER_PROFILE_ALLOC:
1952 	case HWRM_CFA_METER_PROFILE_FREE:
1953 	case HWRM_CFA_METER_PROFILE_CFG:
1954 	case HWRM_CFA_METER_INSTANCE_ALLOC:
1955 	case HWRM_CFA_METER_INSTANCE_FREE:
1956 		return true;
1957 	default:
1958 		return false;
1959 	}
1960 }
1961 
1962 static inline bool bnxt_kong_hwrm_message(struct bnxt *bp, struct input *req)
1963 {
1964 	return (bp->fw_cap & BNXT_FW_CAP_KONG_MB_CHNL &&
1965 		bnxt_cfa_hwrm_message(le16_to_cpu(req->req_type)));
1966 }
1967 
1968 static inline bool bnxt_hwrm_kong_chnl(struct bnxt *bp, struct input *req)
1969 {
1970 	return (bp->fw_cap & BNXT_FW_CAP_KONG_MB_CHNL &&
1971 		req->resp_addr == cpu_to_le64(bp->hwrm_cmd_kong_resp_dma_addr));
1972 }
1973 
1974 static inline void *bnxt_get_hwrm_resp_addr(struct bnxt *bp, void *req)
1975 {
1976 	if (bnxt_hwrm_kong_chnl(bp, (struct input *)req))
1977 		return bp->hwrm_cmd_kong_resp_addr;
1978 	else
1979 		return bp->hwrm_cmd_resp_addr;
1980 }
1981 
1982 static inline u16 bnxt_get_hwrm_seq_id(struct bnxt *bp, u16 dst)
1983 {
1984 	u16 seq_id;
1985 
1986 	if (dst == BNXT_HWRM_CHNL_CHIMP)
1987 		seq_id = bp->hwrm_cmd_seq++;
1988 	else
1989 		seq_id = bp->hwrm_cmd_kong_seq++;
1990 	return seq_id;
1991 }
1992 
1993 extern const u16 bnxt_lhint_arr[];
1994 
1995 int bnxt_alloc_rx_data(struct bnxt *bp, struct bnxt_rx_ring_info *rxr,
1996 		       u16 prod, gfp_t gfp);
1997 void bnxt_reuse_rx_data(struct bnxt_rx_ring_info *rxr, u16 cons, void *data);
1998 u32 bnxt_fw_health_readl(struct bnxt *bp, int reg_idx);
1999 void bnxt_set_tpa_flags(struct bnxt *bp);
2000 void bnxt_set_ring_params(struct bnxt *);
2001 int bnxt_set_rx_skb_mode(struct bnxt *bp, bool page_mode);
2002 void bnxt_hwrm_cmd_hdr_init(struct bnxt *, void *, u16, u16, u16);
2003 int _hwrm_send_message(struct bnxt *, void *, u32, int);
2004 int _hwrm_send_message_silent(struct bnxt *bp, void *msg, u32 len, int timeout);
2005 int hwrm_send_message(struct bnxt *, void *, u32, int);
2006 int hwrm_send_message_silent(struct bnxt *, void *, u32, int);
2007 int bnxt_hwrm_func_drv_rgtr(struct bnxt *bp, unsigned long *bmap,
2008 			    int bmap_size, bool async_only);
2009 int bnxt_hwrm_vnic_cfg(struct bnxt *bp, u16 vnic_id);
2010 int __bnxt_hwrm_get_tx_rings(struct bnxt *bp, u16 fid, int *tx_rings);
2011 int bnxt_nq_rings_in_use(struct bnxt *bp);
2012 int bnxt_hwrm_set_coal(struct bnxt *);
2013 unsigned int bnxt_get_max_func_stat_ctxs(struct bnxt *bp);
2014 unsigned int bnxt_get_avail_stat_ctxs_for_en(struct bnxt *bp);
2015 unsigned int bnxt_get_max_func_cp_rings(struct bnxt *bp);
2016 unsigned int bnxt_get_avail_cp_rings_for_en(struct bnxt *bp);
2017 int bnxt_get_avail_msix(struct bnxt *bp, int num);
2018 int bnxt_reserve_rings(struct bnxt *bp, bool irq_re_init);
2019 void bnxt_tx_disable(struct bnxt *bp);
2020 void bnxt_tx_enable(struct bnxt *bp);
2021 int bnxt_hwrm_set_pause(struct bnxt *);
2022 int bnxt_hwrm_set_link_setting(struct bnxt *, bool, bool);
2023 int bnxt_hwrm_alloc_wol_fltr(struct bnxt *bp);
2024 int bnxt_hwrm_free_wol_fltr(struct bnxt *bp);
2025 int bnxt_hwrm_func_resc_qcaps(struct bnxt *bp, bool all);
2026 int bnxt_hwrm_fw_set_time(struct bnxt *);
2027 int bnxt_open_nic(struct bnxt *, bool, bool);
2028 int bnxt_half_open_nic(struct bnxt *bp);
2029 void bnxt_half_close_nic(struct bnxt *bp);
2030 int bnxt_close_nic(struct bnxt *, bool, bool);
2031 void bnxt_fw_exception(struct bnxt *bp);
2032 void bnxt_fw_reset(struct bnxt *bp);
2033 int bnxt_check_rings(struct bnxt *bp, int tx, int rx, bool sh, int tcs,
2034 		     int tx_xdp);
2035 int bnxt_setup_mq_tc(struct net_device *dev, u8 tc);
2036 int bnxt_get_max_rings(struct bnxt *, int *, int *, bool);
2037 int bnxt_restore_pf_fw_resources(struct bnxt *bp);
2038 int bnxt_get_port_parent_id(struct net_device *dev,
2039 			    struct netdev_phys_item_id *ppid);
2040 void bnxt_dim_work(struct work_struct *work);
2041 int bnxt_hwrm_set_ring_coal(struct bnxt *bp, struct bnxt_napi *bnapi);
2042 
2043 #endif
2044