1 /* SPDX-License-Identifier: GPL-2.0 */
2 /* Copyright (c) 2018, Intel Corporation. */
3 
4 #ifndef _ICE_ADMINQ_CMD_H_
5 #define _ICE_ADMINQ_CMD_H_
6 
7 /* This header file defines the Admin Queue commands, error codes and
8  * descriptor format. It is shared between Firmware and Software.
9  */
10 
11 #define ICE_MAX_VSI			768
12 #define ICE_AQC_TOPO_MAX_LEVEL_NUM	0x9
13 #define ICE_AQ_SET_MAC_FRAME_SIZE_MAX	9728
14 
15 struct ice_aqc_generic {
16 	__le32 param0;
17 	__le32 param1;
18 	__le32 addr_high;
19 	__le32 addr_low;
20 };
21 
22 /* Get version (direct 0x0001) */
23 struct ice_aqc_get_ver {
24 	__le32 rom_ver;
25 	__le32 fw_build;
26 	u8 fw_branch;
27 	u8 fw_major;
28 	u8 fw_minor;
29 	u8 fw_patch;
30 	u8 api_branch;
31 	u8 api_major;
32 	u8 api_minor;
33 	u8 api_patch;
34 };
35 
36 /* Send driver version (indirect 0x0002) */
37 struct ice_aqc_driver_ver {
38 	u8 major_ver;
39 	u8 minor_ver;
40 	u8 build_ver;
41 	u8 subbuild_ver;
42 	u8 reserved[4];
43 	__le32 addr_high;
44 	__le32 addr_low;
45 };
46 
47 /* Queue Shutdown (direct 0x0003) */
48 struct ice_aqc_q_shutdown {
49 	u8 driver_unloading;
50 #define ICE_AQC_DRIVER_UNLOADING	BIT(0)
51 	u8 reserved[15];
52 };
53 
54 /* Request resource ownership (direct 0x0008)
55  * Release resource ownership (direct 0x0009)
56  */
57 struct ice_aqc_req_res {
58 	__le16 res_id;
59 #define ICE_AQC_RES_ID_NVM		1
60 #define ICE_AQC_RES_ID_SDP		2
61 #define ICE_AQC_RES_ID_CHNG_LOCK	3
62 #define ICE_AQC_RES_ID_GLBL_LOCK	4
63 	__le16 access_type;
64 #define ICE_AQC_RES_ACCESS_READ		1
65 #define ICE_AQC_RES_ACCESS_WRITE	2
66 
67 	/* Upon successful completion, FW writes this value and driver is
68 	 * expected to release resource before timeout. This value is provided
69 	 * in milliseconds.
70 	 */
71 	__le32 timeout;
72 #define ICE_AQ_RES_NVM_READ_DFLT_TIMEOUT_MS	3000
73 #define ICE_AQ_RES_NVM_WRITE_DFLT_TIMEOUT_MS	180000
74 #define ICE_AQ_RES_CHNG_LOCK_DFLT_TIMEOUT_MS	1000
75 #define ICE_AQ_RES_GLBL_LOCK_DFLT_TIMEOUT_MS	3000
76 	/* For SDP: pin ID of the SDP */
77 	__le32 res_number;
78 	/* Status is only used for ICE_AQC_RES_ID_GLBL_LOCK */
79 	__le16 status;
80 #define ICE_AQ_RES_GLBL_SUCCESS		0
81 #define ICE_AQ_RES_GLBL_IN_PROG		1
82 #define ICE_AQ_RES_GLBL_DONE		2
83 	u8 reserved[2];
84 };
85 
86 /* Get function capabilities (indirect 0x000A)
87  * Get device capabilities (indirect 0x000B)
88  */
89 struct ice_aqc_list_caps {
90 	u8 cmd_flags;
91 	u8 pf_index;
92 	u8 reserved[2];
93 	__le32 count;
94 	__le32 addr_high;
95 	__le32 addr_low;
96 };
97 
98 /* Device/Function buffer entry, repeated per reported capability */
99 struct ice_aqc_list_caps_elem {
100 	__le16 cap;
101 #define ICE_AQC_CAPS_VALID_FUNCTIONS			0x0005
102 #define ICE_AQC_CAPS_SRIOV				0x0012
103 #define ICE_AQC_CAPS_VF					0x0013
104 #define ICE_AQC_CAPS_VSI				0x0017
105 #define ICE_AQC_CAPS_DCB				0x0018
106 #define ICE_AQC_CAPS_RSS				0x0040
107 #define ICE_AQC_CAPS_RXQS				0x0041
108 #define ICE_AQC_CAPS_TXQS				0x0042
109 #define ICE_AQC_CAPS_MSIX				0x0043
110 #define ICE_AQC_CAPS_FD					0x0045
111 #define ICE_AQC_CAPS_MAX_MTU				0x0047
112 
113 	u8 major_ver;
114 	u8 minor_ver;
115 	/* Number of resources described by this capability */
116 	__le32 number;
117 	/* Only meaningful for some types of resources */
118 	__le32 logical_id;
119 	/* Only meaningful for some types of resources */
120 	__le32 phys_id;
121 	__le64 rsvd1;
122 	__le64 rsvd2;
123 };
124 
125 /* Manage MAC address, read command - indirect (0x0107)
126  * This struct is also used for the response
127  */
128 struct ice_aqc_manage_mac_read {
129 	__le16 flags; /* Zeroed by device driver */
130 #define ICE_AQC_MAN_MAC_LAN_ADDR_VALID		BIT(4)
131 #define ICE_AQC_MAN_MAC_SAN_ADDR_VALID		BIT(5)
132 #define ICE_AQC_MAN_MAC_PORT_ADDR_VALID		BIT(6)
133 #define ICE_AQC_MAN_MAC_WOL_ADDR_VALID		BIT(7)
134 #define ICE_AQC_MAN_MAC_READ_S			4
135 #define ICE_AQC_MAN_MAC_READ_M			(0xF << ICE_AQC_MAN_MAC_READ_S)
136 	u8 rsvd[2];
137 	u8 num_addr; /* Used in response */
138 	u8 rsvd1[3];
139 	__le32 addr_high;
140 	__le32 addr_low;
141 };
142 
143 /* Response buffer format for manage MAC read command */
144 struct ice_aqc_manage_mac_read_resp {
145 	u8 lport_num;
146 	u8 addr_type;
147 #define ICE_AQC_MAN_MAC_ADDR_TYPE_LAN		0
148 #define ICE_AQC_MAN_MAC_ADDR_TYPE_WOL		1
149 	u8 mac_addr[ETH_ALEN];
150 };
151 
152 /* Manage MAC address, write command - direct (0x0108) */
153 struct ice_aqc_manage_mac_write {
154 	u8 rsvd;
155 	u8 flags;
156 #define ICE_AQC_MAN_MAC_WR_MC_MAG_EN		BIT(0)
157 #define ICE_AQC_MAN_MAC_WR_WOL_LAA_PFR_KEEP	BIT(1)
158 #define ICE_AQC_MAN_MAC_WR_S		6
159 #define ICE_AQC_MAN_MAC_WR_M		ICE_M(3, ICE_AQC_MAN_MAC_WR_S)
160 #define ICE_AQC_MAN_MAC_UPDATE_LAA	0
161 #define ICE_AQC_MAN_MAC_UPDATE_LAA_WOL	BIT(ICE_AQC_MAN_MAC_WR_S)
162 	/* byte stream in network order */
163 	u8 mac_addr[ETH_ALEN];
164 	__le32 addr_high;
165 	__le32 addr_low;
166 };
167 
168 /* Clear PXE Command and response (direct 0x0110) */
169 struct ice_aqc_clear_pxe {
170 	u8 rx_cnt;
171 #define ICE_AQC_CLEAR_PXE_RX_CNT		0x2
172 	u8 reserved[15];
173 };
174 
175 /* Get switch configuration (0x0200) */
176 struct ice_aqc_get_sw_cfg {
177 	/* Reserved for command and copy of request flags for response */
178 	__le16 flags;
179 	/* First desc in case of command and next_elem in case of response
180 	 * In case of response, if it is not zero, means all the configuration
181 	 * was not returned and new command shall be sent with this value in
182 	 * the 'first desc' field
183 	 */
184 	__le16 element;
185 	/* Reserved for command, only used for response */
186 	__le16 num_elems;
187 	__le16 rsvd;
188 	__le32 addr_high;
189 	__le32 addr_low;
190 };
191 
192 /* Each entry in the response buffer is of the following type: */
193 struct ice_aqc_get_sw_cfg_resp_elem {
194 	/* VSI/Port Number */
195 	__le16 vsi_port_num;
196 #define ICE_AQC_GET_SW_CONF_RESP_VSI_PORT_NUM_S	0
197 #define ICE_AQC_GET_SW_CONF_RESP_VSI_PORT_NUM_M	\
198 			(0x3FF << ICE_AQC_GET_SW_CONF_RESP_VSI_PORT_NUM_S)
199 #define ICE_AQC_GET_SW_CONF_RESP_TYPE_S	14
200 #define ICE_AQC_GET_SW_CONF_RESP_TYPE_M	(0x3 << ICE_AQC_GET_SW_CONF_RESP_TYPE_S)
201 #define ICE_AQC_GET_SW_CONF_RESP_PHYS_PORT	0
202 #define ICE_AQC_GET_SW_CONF_RESP_VIRT_PORT	1
203 #define ICE_AQC_GET_SW_CONF_RESP_VSI		2
204 
205 	/* SWID VSI/Port belongs to */
206 	__le16 swid;
207 
208 	/* Bit 14..0 : PF/VF number VSI belongs to
209 	 * Bit 15 : VF indication bit
210 	 */
211 	__le16 pf_vf_num;
212 #define ICE_AQC_GET_SW_CONF_RESP_FUNC_NUM_S	0
213 #define ICE_AQC_GET_SW_CONF_RESP_FUNC_NUM_M	\
214 				(0x7FFF << ICE_AQC_GET_SW_CONF_RESP_FUNC_NUM_S)
215 #define ICE_AQC_GET_SW_CONF_RESP_IS_VF		BIT(15)
216 };
217 
218 /* The response buffer is as follows. Note that the length of the
219  * elements array varies with the length of the command response.
220  */
221 struct ice_aqc_get_sw_cfg_resp {
222 	struct ice_aqc_get_sw_cfg_resp_elem elements[1];
223 };
224 
225 /* These resource type defines are used for all switch resource
226  * commands where a resource type is required, such as:
227  * Get Resource Allocation command (indirect 0x0204)
228  * Allocate Resources command (indirect 0x0208)
229  * Free Resources command (indirect 0x0209)
230  * Get Allocated Resource Descriptors Command (indirect 0x020A)
231  */
232 #define ICE_AQC_RES_TYPE_VSI_LIST_REP			0x03
233 #define ICE_AQC_RES_TYPE_VSI_LIST_PRUNE			0x04
234 #define ICE_AQC_RES_TYPE_FDIR_COUNTER_BLOCK		0x21
235 #define ICE_AQC_RES_TYPE_FDIR_GUARANTEED_ENTRIES	0x22
236 #define ICE_AQC_RES_TYPE_FDIR_SHARED_ENTRIES		0x23
237 #define ICE_AQC_RES_TYPE_FD_PROF_BLDR_PROFID		0x58
238 #define ICE_AQC_RES_TYPE_FD_PROF_BLDR_TCAM		0x59
239 #define ICE_AQC_RES_TYPE_HASH_PROF_BLDR_PROFID		0x60
240 #define ICE_AQC_RES_TYPE_HASH_PROF_BLDR_TCAM		0x61
241 
242 #define ICE_AQC_RES_TYPE_FLAG_SCAN_BOTTOM		BIT(12)
243 #define ICE_AQC_RES_TYPE_FLAG_IGNORE_INDEX		BIT(13)
244 
245 #define ICE_AQC_RES_TYPE_FLAG_DEDICATED			0x00
246 
247 #define ICE_AQC_RES_TYPE_S	0
248 #define ICE_AQC_RES_TYPE_M	(0x07F << ICE_AQC_RES_TYPE_S)
249 
250 /* Allocate Resources command (indirect 0x0208)
251  * Free Resources command (indirect 0x0209)
252  */
253 struct ice_aqc_alloc_free_res_cmd {
254 	__le16 num_entries; /* Number of Resource entries */
255 	u8 reserved[6];
256 	__le32 addr_high;
257 	__le32 addr_low;
258 };
259 
260 /* Resource descriptor */
261 struct ice_aqc_res_elem {
262 	union {
263 		__le16 sw_resp;
264 		__le16 flu_resp;
265 	} e;
266 };
267 
268 /* Buffer for Allocate/Free Resources commands */
269 struct ice_aqc_alloc_free_res_elem {
270 	__le16 res_type; /* Types defined above cmd 0x0204 */
271 #define ICE_AQC_RES_TYPE_SHARED_S	7
272 #define ICE_AQC_RES_TYPE_SHARED_M	(0x1 << ICE_AQC_RES_TYPE_SHARED_S)
273 #define ICE_AQC_RES_TYPE_VSI_PRUNE_LIST_S	8
274 #define ICE_AQC_RES_TYPE_VSI_PRUNE_LIST_M	\
275 				(0xF << ICE_AQC_RES_TYPE_VSI_PRUNE_LIST_S)
276 	__le16 num_elems;
277 	struct ice_aqc_res_elem elem[1];
278 };
279 
280 /* Add VSI (indirect 0x0210)
281  * Update VSI (indirect 0x0211)
282  * Get VSI (indirect 0x0212)
283  * Free VSI (indirect 0x0213)
284  */
285 struct ice_aqc_add_get_update_free_vsi {
286 	__le16 vsi_num;
287 #define ICE_AQ_VSI_NUM_S	0
288 #define ICE_AQ_VSI_NUM_M	(0x03FF << ICE_AQ_VSI_NUM_S)
289 #define ICE_AQ_VSI_IS_VALID	BIT(15)
290 	__le16 cmd_flags;
291 #define ICE_AQ_VSI_KEEP_ALLOC	0x1
292 	u8 vf_id;
293 	u8 reserved;
294 	__le16 vsi_flags;
295 #define ICE_AQ_VSI_TYPE_S	0
296 #define ICE_AQ_VSI_TYPE_M	(0x3 << ICE_AQ_VSI_TYPE_S)
297 #define ICE_AQ_VSI_TYPE_VF	0x0
298 #define ICE_AQ_VSI_TYPE_VMDQ2	0x1
299 #define ICE_AQ_VSI_TYPE_PF	0x2
300 #define ICE_AQ_VSI_TYPE_EMP_MNG	0x3
301 	__le32 addr_high;
302 	__le32 addr_low;
303 };
304 
305 /* Response descriptor for:
306  * Add VSI (indirect 0x0210)
307  * Update VSI (indirect 0x0211)
308  * Free VSI (indirect 0x0213)
309  */
310 struct ice_aqc_add_update_free_vsi_resp {
311 	__le16 vsi_num;
312 	__le16 ext_status;
313 	__le16 vsi_used;
314 	__le16 vsi_free;
315 	__le32 addr_high;
316 	__le32 addr_low;
317 };
318 
319 struct ice_aqc_vsi_props {
320 	__le16 valid_sections;
321 #define ICE_AQ_VSI_PROP_SW_VALID		BIT(0)
322 #define ICE_AQ_VSI_PROP_SECURITY_VALID		BIT(1)
323 #define ICE_AQ_VSI_PROP_VLAN_VALID		BIT(2)
324 #define ICE_AQ_VSI_PROP_OUTER_TAG_VALID		BIT(3)
325 #define ICE_AQ_VSI_PROP_INGRESS_UP_VALID	BIT(4)
326 #define ICE_AQ_VSI_PROP_EGRESS_UP_VALID		BIT(5)
327 #define ICE_AQ_VSI_PROP_RXQ_MAP_VALID		BIT(6)
328 #define ICE_AQ_VSI_PROP_Q_OPT_VALID		BIT(7)
329 #define ICE_AQ_VSI_PROP_OUTER_UP_VALID		BIT(8)
330 #define ICE_AQ_VSI_PROP_FLOW_DIR_VALID		BIT(11)
331 #define ICE_AQ_VSI_PROP_PASID_VALID		BIT(12)
332 	/* switch section */
333 	u8 sw_id;
334 	u8 sw_flags;
335 #define ICE_AQ_VSI_SW_FLAG_ALLOW_LB		BIT(5)
336 #define ICE_AQ_VSI_SW_FLAG_LOCAL_LB		BIT(6)
337 #define ICE_AQ_VSI_SW_FLAG_SRC_PRUNE		BIT(7)
338 	u8 sw_flags2;
339 #define ICE_AQ_VSI_SW_FLAG_RX_PRUNE_EN_S	0
340 #define ICE_AQ_VSI_SW_FLAG_RX_PRUNE_EN_M	\
341 				(0xF << ICE_AQ_VSI_SW_FLAG_RX_PRUNE_EN_S)
342 #define ICE_AQ_VSI_SW_FLAG_RX_VLAN_PRUNE_ENA	BIT(0)
343 #define ICE_AQ_VSI_SW_FLAG_LAN_ENA		BIT(4)
344 	u8 veb_stat_id;
345 #define ICE_AQ_VSI_SW_VEB_STAT_ID_S		0
346 #define ICE_AQ_VSI_SW_VEB_STAT_ID_M	(0x1F << ICE_AQ_VSI_SW_VEB_STAT_ID_S)
347 #define ICE_AQ_VSI_SW_VEB_STAT_ID_VALID		BIT(5)
348 	/* security section */
349 	u8 sec_flags;
350 #define ICE_AQ_VSI_SEC_FLAG_ALLOW_DEST_OVRD	BIT(0)
351 #define ICE_AQ_VSI_SEC_FLAG_ENA_MAC_ANTI_SPOOF	BIT(2)
352 #define ICE_AQ_VSI_SEC_TX_PRUNE_ENA_S	4
353 #define ICE_AQ_VSI_SEC_TX_PRUNE_ENA_M	(0xF << ICE_AQ_VSI_SEC_TX_PRUNE_ENA_S)
354 #define ICE_AQ_VSI_SEC_TX_VLAN_PRUNE_ENA	BIT(0)
355 	u8 sec_reserved;
356 	/* VLAN section */
357 	__le16 pvid; /* VLANS include priority bits */
358 	u8 pvlan_reserved[2];
359 	u8 vlan_flags;
360 #define ICE_AQ_VSI_VLAN_MODE_S	0
361 #define ICE_AQ_VSI_VLAN_MODE_M	(0x3 << ICE_AQ_VSI_VLAN_MODE_S)
362 #define ICE_AQ_VSI_VLAN_MODE_UNTAGGED	0x1
363 #define ICE_AQ_VSI_VLAN_MODE_TAGGED	0x2
364 #define ICE_AQ_VSI_VLAN_MODE_ALL	0x3
365 #define ICE_AQ_VSI_PVLAN_INSERT_PVID	BIT(2)
366 #define ICE_AQ_VSI_VLAN_EMOD_S		3
367 #define ICE_AQ_VSI_VLAN_EMOD_M		(0x3 << ICE_AQ_VSI_VLAN_EMOD_S)
368 #define ICE_AQ_VSI_VLAN_EMOD_STR_BOTH	(0x0 << ICE_AQ_VSI_VLAN_EMOD_S)
369 #define ICE_AQ_VSI_VLAN_EMOD_STR_UP	(0x1 << ICE_AQ_VSI_VLAN_EMOD_S)
370 #define ICE_AQ_VSI_VLAN_EMOD_STR	(0x2 << ICE_AQ_VSI_VLAN_EMOD_S)
371 #define ICE_AQ_VSI_VLAN_EMOD_NOTHING	(0x3 << ICE_AQ_VSI_VLAN_EMOD_S)
372 	u8 pvlan_reserved2[3];
373 	/* ingress egress up sections */
374 	__le32 ingress_table; /* bitmap, 3 bits per up */
375 #define ICE_AQ_VSI_UP_TABLE_UP0_S	0
376 #define ICE_AQ_VSI_UP_TABLE_UP0_M	(0x7 << ICE_AQ_VSI_UP_TABLE_UP0_S)
377 #define ICE_AQ_VSI_UP_TABLE_UP1_S	3
378 #define ICE_AQ_VSI_UP_TABLE_UP1_M	(0x7 << ICE_AQ_VSI_UP_TABLE_UP1_S)
379 #define ICE_AQ_VSI_UP_TABLE_UP2_S	6
380 #define ICE_AQ_VSI_UP_TABLE_UP2_M	(0x7 << ICE_AQ_VSI_UP_TABLE_UP2_S)
381 #define ICE_AQ_VSI_UP_TABLE_UP3_S	9
382 #define ICE_AQ_VSI_UP_TABLE_UP3_M	(0x7 << ICE_AQ_VSI_UP_TABLE_UP3_S)
383 #define ICE_AQ_VSI_UP_TABLE_UP4_S	12
384 #define ICE_AQ_VSI_UP_TABLE_UP4_M	(0x7 << ICE_AQ_VSI_UP_TABLE_UP4_S)
385 #define ICE_AQ_VSI_UP_TABLE_UP5_S	15
386 #define ICE_AQ_VSI_UP_TABLE_UP5_M	(0x7 << ICE_AQ_VSI_UP_TABLE_UP5_S)
387 #define ICE_AQ_VSI_UP_TABLE_UP6_S	18
388 #define ICE_AQ_VSI_UP_TABLE_UP6_M	(0x7 << ICE_AQ_VSI_UP_TABLE_UP6_S)
389 #define ICE_AQ_VSI_UP_TABLE_UP7_S	21
390 #define ICE_AQ_VSI_UP_TABLE_UP7_M	(0x7 << ICE_AQ_VSI_UP_TABLE_UP7_S)
391 	__le32 egress_table;   /* same defines as for ingress table */
392 	/* outer tags section */
393 	__le16 outer_tag;
394 	u8 outer_tag_flags;
395 #define ICE_AQ_VSI_OUTER_TAG_MODE_S	0
396 #define ICE_AQ_VSI_OUTER_TAG_MODE_M	(0x3 << ICE_AQ_VSI_OUTER_TAG_MODE_S)
397 #define ICE_AQ_VSI_OUTER_TAG_NOTHING	0x0
398 #define ICE_AQ_VSI_OUTER_TAG_REMOVE	0x1
399 #define ICE_AQ_VSI_OUTER_TAG_COPY	0x2
400 #define ICE_AQ_VSI_OUTER_TAG_TYPE_S	2
401 #define ICE_AQ_VSI_OUTER_TAG_TYPE_M	(0x3 << ICE_AQ_VSI_OUTER_TAG_TYPE_S)
402 #define ICE_AQ_VSI_OUTER_TAG_NONE	0x0
403 #define ICE_AQ_VSI_OUTER_TAG_STAG	0x1
404 #define ICE_AQ_VSI_OUTER_TAG_VLAN_8100	0x2
405 #define ICE_AQ_VSI_OUTER_TAG_VLAN_9100	0x3
406 #define ICE_AQ_VSI_OUTER_TAG_INSERT	BIT(4)
407 #define ICE_AQ_VSI_OUTER_TAG_ACCEPT_HOST BIT(6)
408 	u8 outer_tag_reserved;
409 	/* queue mapping section */
410 	__le16 mapping_flags;
411 #define ICE_AQ_VSI_Q_MAP_CONTIG	0x0
412 #define ICE_AQ_VSI_Q_MAP_NONCONTIG	BIT(0)
413 	__le16 q_mapping[16];
414 #define ICE_AQ_VSI_Q_S		0
415 #define ICE_AQ_VSI_Q_M		(0x7FF << ICE_AQ_VSI_Q_S)
416 	__le16 tc_mapping[8];
417 #define ICE_AQ_VSI_TC_Q_OFFSET_S	0
418 #define ICE_AQ_VSI_TC_Q_OFFSET_M	(0x7FF << ICE_AQ_VSI_TC_Q_OFFSET_S)
419 #define ICE_AQ_VSI_TC_Q_NUM_S		11
420 #define ICE_AQ_VSI_TC_Q_NUM_M		(0xF << ICE_AQ_VSI_TC_Q_NUM_S)
421 	/* queueing option section */
422 	u8 q_opt_rss;
423 #define ICE_AQ_VSI_Q_OPT_RSS_LUT_S	0
424 #define ICE_AQ_VSI_Q_OPT_RSS_LUT_M	(0x3 << ICE_AQ_VSI_Q_OPT_RSS_LUT_S)
425 #define ICE_AQ_VSI_Q_OPT_RSS_LUT_VSI	0x0
426 #define ICE_AQ_VSI_Q_OPT_RSS_LUT_PF	0x2
427 #define ICE_AQ_VSI_Q_OPT_RSS_LUT_GBL	0x3
428 #define ICE_AQ_VSI_Q_OPT_RSS_GBL_LUT_S	2
429 #define ICE_AQ_VSI_Q_OPT_RSS_GBL_LUT_M	(0xF << ICE_AQ_VSI_Q_OPT_RSS_GBL_LUT_S)
430 #define ICE_AQ_VSI_Q_OPT_RSS_HASH_S	6
431 #define ICE_AQ_VSI_Q_OPT_RSS_HASH_M	(0x3 << ICE_AQ_VSI_Q_OPT_RSS_HASH_S)
432 #define ICE_AQ_VSI_Q_OPT_RSS_TPLZ	(0x0 << ICE_AQ_VSI_Q_OPT_RSS_HASH_S)
433 #define ICE_AQ_VSI_Q_OPT_RSS_SYM_TPLZ	(0x1 << ICE_AQ_VSI_Q_OPT_RSS_HASH_S)
434 #define ICE_AQ_VSI_Q_OPT_RSS_XOR	(0x2 << ICE_AQ_VSI_Q_OPT_RSS_HASH_S)
435 #define ICE_AQ_VSI_Q_OPT_RSS_JHASH	(0x3 << ICE_AQ_VSI_Q_OPT_RSS_HASH_S)
436 	u8 q_opt_tc;
437 #define ICE_AQ_VSI_Q_OPT_TC_OVR_S	0
438 #define ICE_AQ_VSI_Q_OPT_TC_OVR_M	(0x1F << ICE_AQ_VSI_Q_OPT_TC_OVR_S)
439 #define ICE_AQ_VSI_Q_OPT_PROF_TC_OVR	BIT(7)
440 	u8 q_opt_flags;
441 #define ICE_AQ_VSI_Q_OPT_PE_FLTR_EN	BIT(0)
442 	u8 q_opt_reserved[3];
443 	/* outer up section */
444 	__le32 outer_up_table; /* same structure and defines as ingress tbl */
445 	/* section 10 */
446 	__le16 sect_10_reserved;
447 	/* flow director section */
448 	__le16 fd_options;
449 #define ICE_AQ_VSI_FD_ENABLE		BIT(0)
450 #define ICE_AQ_VSI_FD_TX_AUTO_ENABLE	BIT(1)
451 #define ICE_AQ_VSI_FD_PROG_ENABLE	BIT(3)
452 	__le16 max_fd_fltr_dedicated;
453 	__le16 max_fd_fltr_shared;
454 	__le16 fd_def_q;
455 #define ICE_AQ_VSI_FD_DEF_Q_S		0
456 #define ICE_AQ_VSI_FD_DEF_Q_M		(0x7FF << ICE_AQ_VSI_FD_DEF_Q_S)
457 #define ICE_AQ_VSI_FD_DEF_GRP_S	12
458 #define ICE_AQ_VSI_FD_DEF_GRP_M	(0x7 << ICE_AQ_VSI_FD_DEF_GRP_S)
459 	__le16 fd_report_opt;
460 #define ICE_AQ_VSI_FD_REPORT_Q_S	0
461 #define ICE_AQ_VSI_FD_REPORT_Q_M	(0x7FF << ICE_AQ_VSI_FD_REPORT_Q_S)
462 #define ICE_AQ_VSI_FD_DEF_PRIORITY_S	12
463 #define ICE_AQ_VSI_FD_DEF_PRIORITY_M	(0x7 << ICE_AQ_VSI_FD_DEF_PRIORITY_S)
464 #define ICE_AQ_VSI_FD_DEF_DROP		BIT(15)
465 	/* PASID section */
466 	__le32 pasid_id;
467 #define ICE_AQ_VSI_PASID_ID_S		0
468 #define ICE_AQ_VSI_PASID_ID_M		(0xFFFFF << ICE_AQ_VSI_PASID_ID_S)
469 #define ICE_AQ_VSI_PASID_ID_VALID	BIT(31)
470 	u8 reserved[24];
471 };
472 
473 #define ICE_MAX_NUM_RECIPES 64
474 
475 /* Add/Update/Remove/Get switch rules (indirect 0x02A0, 0x02A1, 0x02A2, 0x02A3)
476  */
477 struct ice_aqc_sw_rules {
478 	/* ops: add switch rules, referring the number of rules.
479 	 * ops: update switch rules, referring the number of filters
480 	 * ops: remove switch rules, referring the entry index.
481 	 * ops: get switch rules, referring to the number of filters.
482 	 */
483 	__le16 num_rules_fltr_entry_index;
484 	u8 reserved[6];
485 	__le32 addr_high;
486 	__le32 addr_low;
487 };
488 
489 /* Add/Update/Get/Remove lookup Rx/Tx command/response entry
490  * This structures describes the lookup rules and associated actions. "index"
491  * is returned as part of a response to a successful Add command, and can be
492  * used to identify the rule for Update/Get/Remove commands.
493  */
494 struct ice_sw_rule_lkup_rx_tx {
495 	__le16 recipe_id;
496 #define ICE_SW_RECIPE_LOGICAL_PORT_FWD		10
497 	/* Source port for LOOKUP_RX and source VSI in case of LOOKUP_TX */
498 	__le16 src;
499 	__le32 act;
500 
501 	/* Bit 0:1 - Action type */
502 #define ICE_SINGLE_ACT_TYPE_S	0x00
503 #define ICE_SINGLE_ACT_TYPE_M	(0x3 << ICE_SINGLE_ACT_TYPE_S)
504 
505 	/* Bit 2 - Loop back enable
506 	 * Bit 3 - LAN enable
507 	 */
508 #define ICE_SINGLE_ACT_LB_ENABLE	BIT(2)
509 #define ICE_SINGLE_ACT_LAN_ENABLE	BIT(3)
510 
511 	/* Action type = 0 - Forward to VSI or VSI list */
512 #define ICE_SINGLE_ACT_VSI_FORWARDING	0x0
513 
514 #define ICE_SINGLE_ACT_VSI_ID_S		4
515 #define ICE_SINGLE_ACT_VSI_ID_M		(0x3FF << ICE_SINGLE_ACT_VSI_ID_S)
516 #define ICE_SINGLE_ACT_VSI_LIST_ID_S	4
517 #define ICE_SINGLE_ACT_VSI_LIST_ID_M	(0x3FF << ICE_SINGLE_ACT_VSI_LIST_ID_S)
518 	/* This bit needs to be set if action is forward to VSI list */
519 #define ICE_SINGLE_ACT_VSI_LIST		BIT(14)
520 #define ICE_SINGLE_ACT_VALID_BIT	BIT(17)
521 #define ICE_SINGLE_ACT_DROP		BIT(18)
522 
523 	/* Action type = 1 - Forward to Queue of Queue group */
524 #define ICE_SINGLE_ACT_TO_Q		0x1
525 #define ICE_SINGLE_ACT_Q_INDEX_S	4
526 #define ICE_SINGLE_ACT_Q_INDEX_M	(0x7FF << ICE_SINGLE_ACT_Q_INDEX_S)
527 #define ICE_SINGLE_ACT_Q_REGION_S	15
528 #define ICE_SINGLE_ACT_Q_REGION_M	(0x7 << ICE_SINGLE_ACT_Q_REGION_S)
529 #define ICE_SINGLE_ACT_Q_PRIORITY	BIT(18)
530 
531 	/* Action type = 2 - Prune */
532 #define ICE_SINGLE_ACT_PRUNE		0x2
533 #define ICE_SINGLE_ACT_EGRESS		BIT(15)
534 #define ICE_SINGLE_ACT_INGRESS		BIT(16)
535 #define ICE_SINGLE_ACT_PRUNET		BIT(17)
536 	/* Bit 18 should be set to 0 for this action */
537 
538 	/* Action type = 2 - Pointer */
539 #define ICE_SINGLE_ACT_PTR		0x2
540 #define ICE_SINGLE_ACT_PTR_VAL_S	4
541 #define ICE_SINGLE_ACT_PTR_VAL_M	(0x1FFF << ICE_SINGLE_ACT_PTR_VAL_S)
542 	/* Bit 18 should be set to 1 */
543 #define ICE_SINGLE_ACT_PTR_BIT		BIT(18)
544 
545 	/* Action type = 3 - Other actions. Last two bits
546 	 * are other action identifier
547 	 */
548 #define ICE_SINGLE_ACT_OTHER_ACTS		0x3
549 #define ICE_SINGLE_OTHER_ACT_IDENTIFIER_S	17
550 #define ICE_SINGLE_OTHER_ACT_IDENTIFIER_M	\
551 				(0x3 << ICE_SINGLE_OTHER_ACT_IDENTIFIER_S)
552 
553 	/* Bit 17:18 - Defines other actions */
554 	/* Other action = 0 - Mirror VSI */
555 #define ICE_SINGLE_OTHER_ACT_MIRROR		0
556 #define ICE_SINGLE_ACT_MIRROR_VSI_ID_S	4
557 #define ICE_SINGLE_ACT_MIRROR_VSI_ID_M	\
558 				(0x3FF << ICE_SINGLE_ACT_MIRROR_VSI_ID_S)
559 
560 	/* Other action = 3 - Set Stat count */
561 #define ICE_SINGLE_OTHER_ACT_STAT_COUNT		3
562 #define ICE_SINGLE_ACT_STAT_COUNT_INDEX_S	4
563 #define ICE_SINGLE_ACT_STAT_COUNT_INDEX_M	\
564 				(0x7F << ICE_SINGLE_ACT_STAT_COUNT_INDEX_S)
565 
566 	__le16 index; /* The index of the rule in the lookup table */
567 	/* Length and values of the header to be matched per recipe or
568 	 * lookup-type
569 	 */
570 	__le16 hdr_len;
571 	u8 hdr[1];
572 } __packed;
573 
574 /* Add/Update/Remove large action command/response entry
575  * "index" is returned as part of a response to a successful Add command, and
576  * can be used to identify the action for Update/Get/Remove commands.
577  */
578 struct ice_sw_rule_lg_act {
579 	__le16 index; /* Index in large action table */
580 	__le16 size;
581 	__le32 act[1]; /* array of size for actions */
582 	/* Max number of large actions */
583 #define ICE_MAX_LG_ACT	4
584 	/* Bit 0:1 - Action type */
585 #define ICE_LG_ACT_TYPE_S	0
586 #define ICE_LG_ACT_TYPE_M	(0x7 << ICE_LG_ACT_TYPE_S)
587 
588 	/* Action type = 0 - Forward to VSI or VSI list */
589 #define ICE_LG_ACT_VSI_FORWARDING	0
590 #define ICE_LG_ACT_VSI_ID_S		3
591 #define ICE_LG_ACT_VSI_ID_M		(0x3FF << ICE_LG_ACT_VSI_ID_S)
592 #define ICE_LG_ACT_VSI_LIST_ID_S	3
593 #define ICE_LG_ACT_VSI_LIST_ID_M	(0x3FF << ICE_LG_ACT_VSI_LIST_ID_S)
594 	/* This bit needs to be set if action is forward to VSI list */
595 #define ICE_LG_ACT_VSI_LIST		BIT(13)
596 
597 #define ICE_LG_ACT_VALID_BIT		BIT(16)
598 
599 	/* Action type = 1 - Forward to Queue of Queue group */
600 #define ICE_LG_ACT_TO_Q			0x1
601 #define ICE_LG_ACT_Q_INDEX_S		3
602 #define ICE_LG_ACT_Q_INDEX_M		(0x7FF << ICE_LG_ACT_Q_INDEX_S)
603 #define ICE_LG_ACT_Q_REGION_S		14
604 #define ICE_LG_ACT_Q_REGION_M		(0x7 << ICE_LG_ACT_Q_REGION_S)
605 #define ICE_LG_ACT_Q_PRIORITY_SET	BIT(17)
606 
607 	/* Action type = 2 - Prune */
608 #define ICE_LG_ACT_PRUNE		0x2
609 #define ICE_LG_ACT_EGRESS		BIT(14)
610 #define ICE_LG_ACT_INGRESS		BIT(15)
611 #define ICE_LG_ACT_PRUNET		BIT(16)
612 
613 	/* Action type = 3 - Mirror VSI */
614 #define ICE_LG_OTHER_ACT_MIRROR		0x3
615 #define ICE_LG_ACT_MIRROR_VSI_ID_S	3
616 #define ICE_LG_ACT_MIRROR_VSI_ID_M	(0x3FF << ICE_LG_ACT_MIRROR_VSI_ID_S)
617 
618 	/* Action type = 5 - Generic Value */
619 #define ICE_LG_ACT_GENERIC		0x5
620 #define ICE_LG_ACT_GENERIC_VALUE_S	3
621 #define ICE_LG_ACT_GENERIC_VALUE_M	(0xFFFF << ICE_LG_ACT_GENERIC_VALUE_S)
622 #define ICE_LG_ACT_GENERIC_OFFSET_S	19
623 #define ICE_LG_ACT_GENERIC_OFFSET_M	(0x7 << ICE_LG_ACT_GENERIC_OFFSET_S)
624 #define ICE_LG_ACT_GENERIC_PRIORITY_S	22
625 #define ICE_LG_ACT_GENERIC_PRIORITY_M	(0x7 << ICE_LG_ACT_GENERIC_PRIORITY_S)
626 #define ICE_LG_ACT_GENERIC_OFF_RX_DESC_PROF_IDX	7
627 
628 	/* Action = 7 - Set Stat count */
629 #define ICE_LG_ACT_STAT_COUNT		0x7
630 #define ICE_LG_ACT_STAT_COUNT_S		3
631 #define ICE_LG_ACT_STAT_COUNT_M		(0x7F << ICE_LG_ACT_STAT_COUNT_S)
632 };
633 
634 /* Add/Update/Remove VSI list command/response entry
635  * "index" is returned as part of a response to a successful Add command, and
636  * can be used to identify the VSI list for Update/Get/Remove commands.
637  */
638 struct ice_sw_rule_vsi_list {
639 	__le16 index; /* Index of VSI/Prune list */
640 	__le16 number_vsi;
641 	__le16 vsi[1]; /* Array of number_vsi VSI numbers */
642 };
643 
644 /* Query VSI list command/response entry */
645 struct ice_sw_rule_vsi_list_query {
646 	__le16 index;
647 	DECLARE_BITMAP(vsi_list, ICE_MAX_VSI);
648 } __packed;
649 
650 /* Add switch rule response:
651  * Content of return buffer is same as the input buffer. The status field and
652  * LUT index are updated as part of the response
653  */
654 struct ice_aqc_sw_rules_elem {
655 	__le16 type; /* Switch rule type, one of T_... */
656 #define ICE_AQC_SW_RULES_T_LKUP_RX		0x0
657 #define ICE_AQC_SW_RULES_T_LKUP_TX		0x1
658 #define ICE_AQC_SW_RULES_T_LG_ACT		0x2
659 #define ICE_AQC_SW_RULES_T_VSI_LIST_SET		0x3
660 #define ICE_AQC_SW_RULES_T_VSI_LIST_CLEAR	0x4
661 #define ICE_AQC_SW_RULES_T_PRUNE_LIST_SET	0x5
662 #define ICE_AQC_SW_RULES_T_PRUNE_LIST_CLEAR	0x6
663 	__le16 status;
664 	union {
665 		struct ice_sw_rule_lkup_rx_tx lkup_tx_rx;
666 		struct ice_sw_rule_lg_act lg_act;
667 		struct ice_sw_rule_vsi_list vsi_list;
668 		struct ice_sw_rule_vsi_list_query vsi_list_query;
669 	} __packed pdata;
670 };
671 
672 /* Get Default Topology (indirect 0x0400) */
673 struct ice_aqc_get_topo {
674 	u8 port_num;
675 	u8 num_branches;
676 	__le16 reserved1;
677 	__le32 reserved2;
678 	__le32 addr_high;
679 	__le32 addr_low;
680 };
681 
682 /* Update TSE (indirect 0x0403)
683  * Get TSE (indirect 0x0404)
684  * Add TSE (indirect 0x0401)
685  * Delete TSE (indirect 0x040F)
686  * Move TSE (indirect 0x0408)
687  * Suspend Nodes (indirect 0x0409)
688  * Resume Nodes (indirect 0x040A)
689  */
690 struct ice_aqc_sched_elem_cmd {
691 	__le16 num_elem_req;	/* Used by commands */
692 	__le16 num_elem_resp;	/* Used by responses */
693 	__le32 reserved;
694 	__le32 addr_high;
695 	__le32 addr_low;
696 };
697 
698 /* This is the buffer for:
699  * Suspend Nodes (indirect 0x0409)
700  * Resume Nodes (indirect 0x040A)
701  */
702 struct ice_aqc_suspend_resume_elem {
703 	__le32 teid[1];
704 };
705 
706 struct ice_aqc_elem_info_bw {
707 	__le16 bw_profile_idx;
708 	__le16 bw_alloc;
709 };
710 
711 struct ice_aqc_txsched_elem {
712 	u8 elem_type; /* Special field, reserved for some aq calls */
713 #define ICE_AQC_ELEM_TYPE_UNDEFINED		0x0
714 #define ICE_AQC_ELEM_TYPE_ROOT_PORT		0x1
715 #define ICE_AQC_ELEM_TYPE_TC			0x2
716 #define ICE_AQC_ELEM_TYPE_SE_GENERIC		0x3
717 #define ICE_AQC_ELEM_TYPE_ENTRY_POINT		0x4
718 #define ICE_AQC_ELEM_TYPE_LEAF			0x5
719 #define ICE_AQC_ELEM_TYPE_SE_PADDED		0x6
720 	u8 valid_sections;
721 #define ICE_AQC_ELEM_VALID_GENERIC		BIT(0)
722 #define ICE_AQC_ELEM_VALID_CIR			BIT(1)
723 #define ICE_AQC_ELEM_VALID_EIR			BIT(2)
724 #define ICE_AQC_ELEM_VALID_SHARED		BIT(3)
725 	u8 generic;
726 #define ICE_AQC_ELEM_GENERIC_MODE_M		0x1
727 #define ICE_AQC_ELEM_GENERIC_PRIO_S		0x1
728 #define ICE_AQC_ELEM_GENERIC_PRIO_M	(0x7 << ICE_AQC_ELEM_GENERIC_PRIO_S)
729 #define ICE_AQC_ELEM_GENERIC_SP_S		0x4
730 #define ICE_AQC_ELEM_GENERIC_SP_M	(0x1 << ICE_AQC_ELEM_GENERIC_SP_S)
731 #define ICE_AQC_ELEM_GENERIC_ADJUST_VAL_S	0x5
732 #define ICE_AQC_ELEM_GENERIC_ADJUST_VAL_M	\
733 	(0x3 << ICE_AQC_ELEM_GENERIC_ADJUST_VAL_S)
734 	u8 flags; /* Special field, reserved for some aq calls */
735 #define ICE_AQC_ELEM_FLAG_SUSPEND_M		0x1
736 	struct ice_aqc_elem_info_bw cir_bw;
737 	struct ice_aqc_elem_info_bw eir_bw;
738 	__le16 srl_id;
739 	__le16 reserved2;
740 };
741 
742 struct ice_aqc_txsched_elem_data {
743 	__le32 parent_teid;
744 	__le32 node_teid;
745 	struct ice_aqc_txsched_elem data;
746 };
747 
748 struct ice_aqc_txsched_topo_grp_info_hdr {
749 	__le32 parent_teid;
750 	__le16 num_elems;
751 	__le16 reserved2;
752 };
753 
754 struct ice_aqc_add_elem {
755 	struct ice_aqc_txsched_topo_grp_info_hdr hdr;
756 	struct ice_aqc_txsched_elem_data generic[1];
757 };
758 
759 struct ice_aqc_conf_elem {
760 	struct ice_aqc_txsched_elem_data generic[1];
761 };
762 
763 struct ice_aqc_get_elem {
764 	struct ice_aqc_txsched_elem_data generic[1];
765 };
766 
767 struct ice_aqc_get_topo_elem {
768 	struct ice_aqc_txsched_topo_grp_info_hdr hdr;
769 	struct ice_aqc_txsched_elem_data
770 		generic[ICE_AQC_TOPO_MAX_LEVEL_NUM];
771 };
772 
773 struct ice_aqc_delete_elem {
774 	struct ice_aqc_txsched_topo_grp_info_hdr hdr;
775 	__le32 teid[1];
776 };
777 
778 /* Query Port ETS (indirect 0x040E)
779  *
780  * This indirect command is used to query port TC node configuration.
781  */
782 struct ice_aqc_query_port_ets {
783 	__le32 port_teid;
784 	__le32 reserved;
785 	__le32 addr_high;
786 	__le32 addr_low;
787 };
788 
789 struct ice_aqc_port_ets_elem {
790 	u8 tc_valid_bits;
791 	u8 reserved[3];
792 	/* 3 bits for UP per TC 0-7, 4th byte reserved */
793 	__le32 up2tc;
794 	u8 tc_bw_share[8];
795 	__le32 port_eir_prof_id;
796 	__le32 port_cir_prof_id;
797 	/* 3 bits per Node priority to TC 0-7, 4th byte reserved */
798 	__le32 tc_node_prio;
799 #define ICE_TC_NODE_PRIO_S	0x4
800 	u8 reserved1[4];
801 	__le32 tc_node_teid[8]; /* Used for response, reserved in command */
802 };
803 
804 /* Rate limiting profile for
805  * Add RL profile (indirect 0x0410)
806  * Query RL profile (indirect 0x0411)
807  * Remove RL profile (indirect 0x0415)
808  * These indirect commands acts on single or multiple
809  * RL profiles with specified data.
810  */
811 struct ice_aqc_rl_profile {
812 	__le16 num_profiles;
813 	__le16 num_processed; /* Only for response. Reserved in Command. */
814 	u8 reserved[4];
815 	__le32 addr_high;
816 	__le32 addr_low;
817 };
818 
819 struct ice_aqc_rl_profile_elem {
820 	u8 level;
821 	u8 flags;
822 #define ICE_AQC_RL_PROFILE_TYPE_S	0x0
823 #define ICE_AQC_RL_PROFILE_TYPE_M	(0x3 << ICE_AQC_RL_PROFILE_TYPE_S)
824 #define ICE_AQC_RL_PROFILE_TYPE_CIR	0
825 #define ICE_AQC_RL_PROFILE_TYPE_EIR	1
826 #define ICE_AQC_RL_PROFILE_TYPE_SRL	2
827 /* The following flag is used for Query RL Profile Data */
828 #define ICE_AQC_RL_PROFILE_INVAL_S	0x7
829 #define ICE_AQC_RL_PROFILE_INVAL_M	(0x1 << ICE_AQC_RL_PROFILE_INVAL_S)
830 
831 	__le16 profile_id;
832 	__le16 max_burst_size;
833 	__le16 rl_multiply;
834 	__le16 wake_up_calc;
835 	__le16 rl_encode;
836 };
837 
838 struct ice_aqc_rl_profile_generic_elem {
839 	struct ice_aqc_rl_profile_elem generic[1];
840 };
841 
842 /* Query Scheduler Resource Allocation (indirect 0x0412)
843  * This indirect command retrieves the scheduler resources allocated by
844  * EMP Firmware to the given PF.
845  */
846 struct ice_aqc_query_txsched_res {
847 	u8 reserved[8];
848 	__le32 addr_high;
849 	__le32 addr_low;
850 };
851 
852 struct ice_aqc_generic_sched_props {
853 	__le16 phys_levels;
854 	__le16 logical_levels;
855 	u8 flattening_bitmap;
856 	u8 max_device_cgds;
857 	u8 max_pf_cgds;
858 	u8 rsvd0;
859 	__le16 rdma_qsets;
860 	u8 rsvd1[22];
861 };
862 
863 struct ice_aqc_layer_props {
864 	u8 logical_layer;
865 	u8 chunk_size;
866 	__le16 max_device_nodes;
867 	__le16 max_pf_nodes;
868 	u8 rsvd0[4];
869 	__le16 max_sibl_grp_sz;
870 	__le16 max_cir_rl_profiles;
871 	__le16 max_eir_rl_profiles;
872 	__le16 max_srl_profiles;
873 	u8 rsvd1[14];
874 };
875 
876 struct ice_aqc_query_txsched_res_resp {
877 	struct ice_aqc_generic_sched_props sched_props;
878 	struct ice_aqc_layer_props layer_props[ICE_AQC_TOPO_MAX_LEVEL_NUM];
879 };
880 
881 /* Get PHY capabilities (indirect 0x0600) */
882 struct ice_aqc_get_phy_caps {
883 	u8 lport_num;
884 	u8 reserved;
885 	__le16 param0;
886 	/* 18.0 - Report qualified modules */
887 #define ICE_AQC_GET_PHY_RQM		BIT(0)
888 	/* 18.1 - 18.2 : Report mode
889 	 * 00b - Report NVM capabilities
890 	 * 01b - Report topology capabilities
891 	 * 10b - Report SW configured
892 	 */
893 #define ICE_AQC_REPORT_MODE_S		1
894 #define ICE_AQC_REPORT_MODE_M		(3 << ICE_AQC_REPORT_MODE_S)
895 #define ICE_AQC_REPORT_NVM_CAP		0
896 #define ICE_AQC_REPORT_TOPO_CAP		BIT(1)
897 #define ICE_AQC_REPORT_SW_CFG		BIT(2)
898 	__le32 reserved1;
899 	__le32 addr_high;
900 	__le32 addr_low;
901 };
902 
903 /* This is #define of PHY type (Extended):
904  * The first set of defines is for phy_type_low.
905  */
906 #define ICE_PHY_TYPE_LOW_100BASE_TX		BIT_ULL(0)
907 #define ICE_PHY_TYPE_LOW_100M_SGMII		BIT_ULL(1)
908 #define ICE_PHY_TYPE_LOW_1000BASE_T		BIT_ULL(2)
909 #define ICE_PHY_TYPE_LOW_1000BASE_SX		BIT_ULL(3)
910 #define ICE_PHY_TYPE_LOW_1000BASE_LX		BIT_ULL(4)
911 #define ICE_PHY_TYPE_LOW_1000BASE_KX		BIT_ULL(5)
912 #define ICE_PHY_TYPE_LOW_1G_SGMII		BIT_ULL(6)
913 #define ICE_PHY_TYPE_LOW_2500BASE_T		BIT_ULL(7)
914 #define ICE_PHY_TYPE_LOW_2500BASE_X		BIT_ULL(8)
915 #define ICE_PHY_TYPE_LOW_2500BASE_KX		BIT_ULL(9)
916 #define ICE_PHY_TYPE_LOW_5GBASE_T		BIT_ULL(10)
917 #define ICE_PHY_TYPE_LOW_5GBASE_KR		BIT_ULL(11)
918 #define ICE_PHY_TYPE_LOW_10GBASE_T		BIT_ULL(12)
919 #define ICE_PHY_TYPE_LOW_10G_SFI_DA		BIT_ULL(13)
920 #define ICE_PHY_TYPE_LOW_10GBASE_SR		BIT_ULL(14)
921 #define ICE_PHY_TYPE_LOW_10GBASE_LR		BIT_ULL(15)
922 #define ICE_PHY_TYPE_LOW_10GBASE_KR_CR1		BIT_ULL(16)
923 #define ICE_PHY_TYPE_LOW_10G_SFI_AOC_ACC	BIT_ULL(17)
924 #define ICE_PHY_TYPE_LOW_10G_SFI_C2C		BIT_ULL(18)
925 #define ICE_PHY_TYPE_LOW_25GBASE_T		BIT_ULL(19)
926 #define ICE_PHY_TYPE_LOW_25GBASE_CR		BIT_ULL(20)
927 #define ICE_PHY_TYPE_LOW_25GBASE_CR_S		BIT_ULL(21)
928 #define ICE_PHY_TYPE_LOW_25GBASE_CR1		BIT_ULL(22)
929 #define ICE_PHY_TYPE_LOW_25GBASE_SR		BIT_ULL(23)
930 #define ICE_PHY_TYPE_LOW_25GBASE_LR		BIT_ULL(24)
931 #define ICE_PHY_TYPE_LOW_25GBASE_KR		BIT_ULL(25)
932 #define ICE_PHY_TYPE_LOW_25GBASE_KR_S		BIT_ULL(26)
933 #define ICE_PHY_TYPE_LOW_25GBASE_KR1		BIT_ULL(27)
934 #define ICE_PHY_TYPE_LOW_25G_AUI_AOC_ACC	BIT_ULL(28)
935 #define ICE_PHY_TYPE_LOW_25G_AUI_C2C		BIT_ULL(29)
936 #define ICE_PHY_TYPE_LOW_40GBASE_CR4		BIT_ULL(30)
937 #define ICE_PHY_TYPE_LOW_40GBASE_SR4		BIT_ULL(31)
938 #define ICE_PHY_TYPE_LOW_40GBASE_LR4		BIT_ULL(32)
939 #define ICE_PHY_TYPE_LOW_40GBASE_KR4		BIT_ULL(33)
940 #define ICE_PHY_TYPE_LOW_40G_XLAUI_AOC_ACC	BIT_ULL(34)
941 #define ICE_PHY_TYPE_LOW_40G_XLAUI		BIT_ULL(35)
942 #define ICE_PHY_TYPE_LOW_50GBASE_CR2		BIT_ULL(36)
943 #define ICE_PHY_TYPE_LOW_50GBASE_SR2		BIT_ULL(37)
944 #define ICE_PHY_TYPE_LOW_50GBASE_LR2		BIT_ULL(38)
945 #define ICE_PHY_TYPE_LOW_50GBASE_KR2		BIT_ULL(39)
946 #define ICE_PHY_TYPE_LOW_50G_LAUI2_AOC_ACC	BIT_ULL(40)
947 #define ICE_PHY_TYPE_LOW_50G_LAUI2		BIT_ULL(41)
948 #define ICE_PHY_TYPE_LOW_50G_AUI2_AOC_ACC	BIT_ULL(42)
949 #define ICE_PHY_TYPE_LOW_50G_AUI2		BIT_ULL(43)
950 #define ICE_PHY_TYPE_LOW_50GBASE_CP		BIT_ULL(44)
951 #define ICE_PHY_TYPE_LOW_50GBASE_SR		BIT_ULL(45)
952 #define ICE_PHY_TYPE_LOW_50GBASE_FR		BIT_ULL(46)
953 #define ICE_PHY_TYPE_LOW_50GBASE_LR		BIT_ULL(47)
954 #define ICE_PHY_TYPE_LOW_50GBASE_KR_PAM4	BIT_ULL(48)
955 #define ICE_PHY_TYPE_LOW_50G_AUI1_AOC_ACC	BIT_ULL(49)
956 #define ICE_PHY_TYPE_LOW_50G_AUI1		BIT_ULL(50)
957 #define ICE_PHY_TYPE_LOW_100GBASE_CR4		BIT_ULL(51)
958 #define ICE_PHY_TYPE_LOW_100GBASE_SR4		BIT_ULL(52)
959 #define ICE_PHY_TYPE_LOW_100GBASE_LR4		BIT_ULL(53)
960 #define ICE_PHY_TYPE_LOW_100GBASE_KR4		BIT_ULL(54)
961 #define ICE_PHY_TYPE_LOW_100G_CAUI4_AOC_ACC	BIT_ULL(55)
962 #define ICE_PHY_TYPE_LOW_100G_CAUI4		BIT_ULL(56)
963 #define ICE_PHY_TYPE_LOW_100G_AUI4_AOC_ACC	BIT_ULL(57)
964 #define ICE_PHY_TYPE_LOW_100G_AUI4		BIT_ULL(58)
965 #define ICE_PHY_TYPE_LOW_100GBASE_CR_PAM4	BIT_ULL(59)
966 #define ICE_PHY_TYPE_LOW_100GBASE_KR_PAM4	BIT_ULL(60)
967 #define ICE_PHY_TYPE_LOW_100GBASE_CP2		BIT_ULL(61)
968 #define ICE_PHY_TYPE_LOW_100GBASE_SR2		BIT_ULL(62)
969 #define ICE_PHY_TYPE_LOW_100GBASE_DR		BIT_ULL(63)
970 #define ICE_PHY_TYPE_LOW_MAX_INDEX		63
971 /* The second set of defines is for phy_type_high. */
972 #define ICE_PHY_TYPE_HIGH_100GBASE_KR2_PAM4	BIT_ULL(0)
973 #define ICE_PHY_TYPE_HIGH_100G_CAUI2_AOC_ACC	BIT_ULL(1)
974 #define ICE_PHY_TYPE_HIGH_100G_CAUI2		BIT_ULL(2)
975 #define ICE_PHY_TYPE_HIGH_100G_AUI2_AOC_ACC	BIT_ULL(3)
976 #define ICE_PHY_TYPE_HIGH_100G_AUI2		BIT_ULL(4)
977 #define ICE_PHY_TYPE_HIGH_MAX_INDEX		5
978 
979 struct ice_aqc_get_phy_caps_data {
980 	__le64 phy_type_low; /* Use values from ICE_PHY_TYPE_LOW_* */
981 	__le64 phy_type_high; /* Use values from ICE_PHY_TYPE_HIGH_* */
982 	u8 caps;
983 #define ICE_AQC_PHY_EN_TX_LINK_PAUSE			BIT(0)
984 #define ICE_AQC_PHY_EN_RX_LINK_PAUSE			BIT(1)
985 #define ICE_AQC_PHY_LOW_POWER_MODE			BIT(2)
986 #define ICE_AQC_PHY_EN_LINK				BIT(3)
987 #define ICE_AQC_PHY_AN_MODE				BIT(4)
988 #define ICE_AQC_GET_PHY_EN_MOD_QUAL			BIT(5)
989 #define ICE_AQC_PHY_EN_AUTO_FEC				BIT(7)
990 #define ICE_AQC_PHY_CAPS_MASK				ICE_M(0xff, 0)
991 	u8 low_power_ctrl;
992 #define ICE_AQC_PHY_EN_D3COLD_LOW_POWER_AUTONEG		BIT(0)
993 	__le16 eee_cap;
994 #define ICE_AQC_PHY_EEE_EN_100BASE_TX			BIT(0)
995 #define ICE_AQC_PHY_EEE_EN_1000BASE_T			BIT(1)
996 #define ICE_AQC_PHY_EEE_EN_10GBASE_T			BIT(2)
997 #define ICE_AQC_PHY_EEE_EN_1000BASE_KX			BIT(3)
998 #define ICE_AQC_PHY_EEE_EN_10GBASE_KR			BIT(4)
999 #define ICE_AQC_PHY_EEE_EN_25GBASE_KR			BIT(5)
1000 #define ICE_AQC_PHY_EEE_EN_40GBASE_KR4			BIT(6)
1001 	__le16 eeer_value;
1002 	u8 phy_id_oui[4]; /* PHY/Module ID connected on the port */
1003 	u8 phy_fw_ver[8];
1004 	u8 link_fec_options;
1005 #define ICE_AQC_PHY_FEC_10G_KR_40G_KR4_EN		BIT(0)
1006 #define ICE_AQC_PHY_FEC_10G_KR_40G_KR4_REQ		BIT(1)
1007 #define ICE_AQC_PHY_FEC_25G_RS_528_REQ			BIT(2)
1008 #define ICE_AQC_PHY_FEC_25G_KR_REQ			BIT(3)
1009 #define ICE_AQC_PHY_FEC_25G_RS_544_REQ			BIT(4)
1010 #define ICE_AQC_PHY_FEC_25G_RS_CLAUSE91_EN		BIT(6)
1011 #define ICE_AQC_PHY_FEC_25G_KR_CLAUSE74_EN		BIT(7)
1012 #define ICE_AQC_PHY_FEC_MASK				ICE_M(0xdf, 0)
1013 	u8 rsvd1;	/* Byte 35 reserved */
1014 	u8 extended_compliance_code;
1015 #define ICE_MODULE_TYPE_TOTAL_BYTE			3
1016 	u8 module_type[ICE_MODULE_TYPE_TOTAL_BYTE];
1017 #define ICE_AQC_MOD_TYPE_BYTE0_SFP_PLUS			0xA0
1018 #define ICE_AQC_MOD_TYPE_BYTE0_QSFP_PLUS		0x80
1019 #define ICE_AQC_MOD_TYPE_BYTE1_SFP_PLUS_CU_PASSIVE	BIT(0)
1020 #define ICE_AQC_MOD_TYPE_BYTE1_SFP_PLUS_CU_ACTIVE	BIT(1)
1021 #define ICE_AQC_MOD_TYPE_BYTE1_10G_BASE_SR		BIT(4)
1022 #define ICE_AQC_MOD_TYPE_BYTE1_10G_BASE_LR		BIT(5)
1023 #define ICE_AQC_MOD_TYPE_BYTE1_10G_BASE_LRM		BIT(6)
1024 #define ICE_AQC_MOD_TYPE_BYTE1_10G_BASE_ER		BIT(7)
1025 #define ICE_AQC_MOD_TYPE_BYTE2_SFP_PLUS			0xA0
1026 #define ICE_AQC_MOD_TYPE_BYTE2_QSFP_PLUS		0x86
1027 	u8 qualified_module_count;
1028 	u8 rsvd2[7];	/* Bytes 47:41 reserved */
1029 #define ICE_AQC_QUAL_MOD_COUNT_MAX			16
1030 	struct {
1031 		u8 v_oui[3];
1032 		u8 rsvd3;
1033 		u8 v_part[16];
1034 		__le32 v_rev;
1035 		__le64 rsvd4;
1036 	} qual_modules[ICE_AQC_QUAL_MOD_COUNT_MAX];
1037 };
1038 
1039 /* Set PHY capabilities (direct 0x0601)
1040  * NOTE: This command must be followed by setup link and restart auto-neg
1041  */
1042 struct ice_aqc_set_phy_cfg {
1043 	u8 lport_num;
1044 	u8 reserved[7];
1045 	__le32 addr_high;
1046 	__le32 addr_low;
1047 };
1048 
1049 /* Set PHY config command data structure */
1050 struct ice_aqc_set_phy_cfg_data {
1051 	__le64 phy_type_low; /* Use values from ICE_PHY_TYPE_LOW_* */
1052 	__le64 phy_type_high; /* Use values from ICE_PHY_TYPE_HIGH_* */
1053 	u8 caps;
1054 #define ICE_AQ_PHY_ENA_VALID_MASK	ICE_M(0xef, 0)
1055 #define ICE_AQ_PHY_ENA_TX_PAUSE_ABILITY	BIT(0)
1056 #define ICE_AQ_PHY_ENA_RX_PAUSE_ABILITY	BIT(1)
1057 #define ICE_AQ_PHY_ENA_LOW_POWER	BIT(2)
1058 #define ICE_AQ_PHY_ENA_LINK		BIT(3)
1059 #define ICE_AQ_PHY_ENA_AUTO_LINK_UPDT	BIT(5)
1060 #define ICE_AQ_PHY_ENA_LESM		BIT(6)
1061 #define ICE_AQ_PHY_ENA_AUTO_FEC		BIT(7)
1062 	u8 low_power_ctrl;
1063 	__le16 eee_cap; /* Value from ice_aqc_get_phy_caps */
1064 	__le16 eeer_value;
1065 	u8 link_fec_opt; /* Use defines from ice_aqc_get_phy_caps */
1066 	u8 rsvd1;
1067 };
1068 
1069 /* Set MAC Config command data structure (direct 0x0603) */
1070 struct ice_aqc_set_mac_cfg {
1071 	__le16 max_frame_size;
1072 	u8 params;
1073 #define ICE_AQ_SET_MAC_PACE_S		3
1074 #define ICE_AQ_SET_MAC_PACE_M		(0xF << ICE_AQ_SET_MAC_PACE_S)
1075 #define ICE_AQ_SET_MAC_PACE_TYPE_M	BIT(7)
1076 #define ICE_AQ_SET_MAC_PACE_TYPE_RATE	0
1077 #define ICE_AQ_SET_MAC_PACE_TYPE_FIXED	ICE_AQ_SET_MAC_PACE_TYPE_M
1078 	u8 tx_tmr_priority;
1079 	__le16 tx_tmr_value;
1080 	__le16 fc_refresh_threshold;
1081 	u8 drop_opts;
1082 #define ICE_AQ_SET_MAC_AUTO_DROP_MASK		BIT(0)
1083 #define ICE_AQ_SET_MAC_AUTO_DROP_NONE		0
1084 #define ICE_AQ_SET_MAC_AUTO_DROP_BLOCKING_PKTS	BIT(0)
1085 	u8 reserved[7];
1086 };
1087 
1088 /* Restart AN command data structure (direct 0x0605)
1089  * Also used for response, with only the lport_num field present.
1090  */
1091 struct ice_aqc_restart_an {
1092 	u8 lport_num;
1093 	u8 reserved;
1094 	u8 cmd_flags;
1095 #define ICE_AQC_RESTART_AN_LINK_RESTART	BIT(1)
1096 #define ICE_AQC_RESTART_AN_LINK_ENABLE	BIT(2)
1097 	u8 reserved2[13];
1098 };
1099 
1100 /* Get link status (indirect 0x0607), also used for Link Status Event */
1101 struct ice_aqc_get_link_status {
1102 	u8 lport_num;
1103 	u8 reserved;
1104 	__le16 cmd_flags;
1105 #define ICE_AQ_LSE_M			0x3
1106 #define ICE_AQ_LSE_NOP			0x0
1107 #define ICE_AQ_LSE_DIS			0x2
1108 #define ICE_AQ_LSE_ENA			0x3
1109 	/* only response uses this flag */
1110 #define ICE_AQ_LSE_IS_ENABLED		0x1
1111 	__le32 reserved2;
1112 	__le32 addr_high;
1113 	__le32 addr_low;
1114 };
1115 
1116 /* Get link status response data structure, also used for Link Status Event */
1117 struct ice_aqc_get_link_status_data {
1118 	u8 topo_media_conflict;
1119 #define ICE_AQ_LINK_TOPO_CONFLICT	BIT(0)
1120 #define ICE_AQ_LINK_MEDIA_CONFLICT	BIT(1)
1121 #define ICE_AQ_LINK_TOPO_CORRUPT	BIT(2)
1122 #define ICE_AQ_LINK_TOPO_UNREACH_PRT	BIT(4)
1123 #define ICE_AQ_LINK_TOPO_UNDRUTIL_PRT	BIT(5)
1124 #define ICE_AQ_LINK_TOPO_UNDRUTIL_MEDIA	BIT(6)
1125 #define ICE_AQ_LINK_TOPO_UNSUPP_MEDIA	BIT(7)
1126 	u8 reserved1;
1127 	u8 link_info;
1128 #define ICE_AQ_LINK_UP			BIT(0)	/* Link Status */
1129 #define ICE_AQ_LINK_FAULT		BIT(1)
1130 #define ICE_AQ_LINK_FAULT_TX		BIT(2)
1131 #define ICE_AQ_LINK_FAULT_RX		BIT(3)
1132 #define ICE_AQ_LINK_FAULT_REMOTE	BIT(4)
1133 #define ICE_AQ_LINK_UP_PORT		BIT(5)	/* External Port Link Status */
1134 #define ICE_AQ_MEDIA_AVAILABLE		BIT(6)
1135 #define ICE_AQ_SIGNAL_DETECT		BIT(7)
1136 	u8 an_info;
1137 #define ICE_AQ_AN_COMPLETED		BIT(0)
1138 #define ICE_AQ_LP_AN_ABILITY		BIT(1)
1139 #define ICE_AQ_PD_FAULT			BIT(2)	/* Parallel Detection Fault */
1140 #define ICE_AQ_FEC_EN			BIT(3)
1141 #define ICE_AQ_PHY_LOW_POWER		BIT(4)	/* Low Power State */
1142 #define ICE_AQ_LINK_PAUSE_TX		BIT(5)
1143 #define ICE_AQ_LINK_PAUSE_RX		BIT(6)
1144 #define ICE_AQ_QUALIFIED_MODULE		BIT(7)
1145 	u8 ext_info;
1146 #define ICE_AQ_LINK_PHY_TEMP_ALARM	BIT(0)
1147 #define ICE_AQ_LINK_EXCESSIVE_ERRORS	BIT(1)	/* Excessive Link Errors */
1148 	/* Port Tx Suspended */
1149 #define ICE_AQ_LINK_TX_S		2
1150 #define ICE_AQ_LINK_TX_M		(0x03 << ICE_AQ_LINK_TX_S)
1151 #define ICE_AQ_LINK_TX_ACTIVE		0
1152 #define ICE_AQ_LINK_TX_DRAINED		1
1153 #define ICE_AQ_LINK_TX_FLUSHED		3
1154 	u8 reserved2;
1155 	__le16 max_frame_size;
1156 	u8 cfg;
1157 #define ICE_AQ_LINK_25G_KR_FEC_EN	BIT(0)
1158 #define ICE_AQ_LINK_25G_RS_528_FEC_EN	BIT(1)
1159 #define ICE_AQ_LINK_25G_RS_544_FEC_EN	BIT(2)
1160 #define ICE_AQ_FEC_MASK			ICE_M(0x7, 0)
1161 	/* Pacing Config */
1162 #define ICE_AQ_CFG_PACING_S		3
1163 #define ICE_AQ_CFG_PACING_M		(0xF << ICE_AQ_CFG_PACING_S)
1164 #define ICE_AQ_CFG_PACING_TYPE_M	BIT(7)
1165 #define ICE_AQ_CFG_PACING_TYPE_AVG	0
1166 #define ICE_AQ_CFG_PACING_TYPE_FIXED	ICE_AQ_CFG_PACING_TYPE_M
1167 	/* External Device Power Ability */
1168 	u8 power_desc;
1169 #define ICE_AQ_PWR_CLASS_M		0x3
1170 #define ICE_AQ_LINK_PWR_BASET_LOW_HIGH	0
1171 #define ICE_AQ_LINK_PWR_BASET_HIGH	1
1172 #define ICE_AQ_LINK_PWR_QSFP_CLASS_1	0
1173 #define ICE_AQ_LINK_PWR_QSFP_CLASS_2	1
1174 #define ICE_AQ_LINK_PWR_QSFP_CLASS_3	2
1175 #define ICE_AQ_LINK_PWR_QSFP_CLASS_4	3
1176 	__le16 link_speed;
1177 #define ICE_AQ_LINK_SPEED_10MB		BIT(0)
1178 #define ICE_AQ_LINK_SPEED_100MB		BIT(1)
1179 #define ICE_AQ_LINK_SPEED_1000MB	BIT(2)
1180 #define ICE_AQ_LINK_SPEED_2500MB	BIT(3)
1181 #define ICE_AQ_LINK_SPEED_5GB		BIT(4)
1182 #define ICE_AQ_LINK_SPEED_10GB		BIT(5)
1183 #define ICE_AQ_LINK_SPEED_20GB		BIT(6)
1184 #define ICE_AQ_LINK_SPEED_25GB		BIT(7)
1185 #define ICE_AQ_LINK_SPEED_40GB		BIT(8)
1186 #define ICE_AQ_LINK_SPEED_50GB		BIT(9)
1187 #define ICE_AQ_LINK_SPEED_100GB		BIT(10)
1188 #define ICE_AQ_LINK_SPEED_UNKNOWN	BIT(15)
1189 	__le32 reserved3; /* Aligns next field to 8-byte boundary */
1190 	__le64 phy_type_low; /* Use values from ICE_PHY_TYPE_LOW_* */
1191 	__le64 phy_type_high; /* Use values from ICE_PHY_TYPE_HIGH_* */
1192 };
1193 
1194 /* Set event mask command (direct 0x0613) */
1195 struct ice_aqc_set_event_mask {
1196 	u8	lport_num;
1197 	u8	reserved[7];
1198 	__le16	event_mask;
1199 #define ICE_AQ_LINK_EVENT_UPDOWN		BIT(1)
1200 #define ICE_AQ_LINK_EVENT_MEDIA_NA		BIT(2)
1201 #define ICE_AQ_LINK_EVENT_LINK_FAULT		BIT(3)
1202 #define ICE_AQ_LINK_EVENT_PHY_TEMP_ALARM	BIT(4)
1203 #define ICE_AQ_LINK_EVENT_EXCESSIVE_ERRORS	BIT(5)
1204 #define ICE_AQ_LINK_EVENT_SIGNAL_DETECT		BIT(6)
1205 #define ICE_AQ_LINK_EVENT_AN_COMPLETED		BIT(7)
1206 #define ICE_AQ_LINK_EVENT_MODULE_QUAL_FAIL	BIT(8)
1207 #define ICE_AQ_LINK_EVENT_PORT_TX_SUSPENDED	BIT(9)
1208 	u8	reserved1[6];
1209 };
1210 
1211 /* Set MAC Loopback command (direct 0x0620) */
1212 struct ice_aqc_set_mac_lb {
1213 	u8 lb_mode;
1214 #define ICE_AQ_MAC_LB_EN		BIT(0)
1215 #define ICE_AQ_MAC_LB_OSC_CLK		BIT(1)
1216 	u8 reserved[15];
1217 };
1218 
1219 /* Set Port Identification LED (direct, 0x06E9) */
1220 struct ice_aqc_set_port_id_led {
1221 	u8 lport_num;
1222 	u8 lport_num_valid;
1223 	u8 ident_mode;
1224 #define ICE_AQC_PORT_IDENT_LED_BLINK	BIT(0)
1225 #define ICE_AQC_PORT_IDENT_LED_ORIG	0
1226 	u8 rsvd[13];
1227 };
1228 
1229 /* Read/Write SFF EEPROM command (indirect 0x06EE) */
1230 struct ice_aqc_sff_eeprom {
1231 	u8 lport_num;
1232 	u8 lport_num_valid;
1233 #define ICE_AQC_SFF_PORT_NUM_VALID	BIT(0)
1234 	__le16 i2c_bus_addr;
1235 #define ICE_AQC_SFF_I2CBUS_7BIT_M	0x7F
1236 #define ICE_AQC_SFF_I2CBUS_10BIT_M	0x3FF
1237 #define ICE_AQC_SFF_I2CBUS_TYPE_M	BIT(10)
1238 #define ICE_AQC_SFF_I2CBUS_TYPE_7BIT	0
1239 #define ICE_AQC_SFF_I2CBUS_TYPE_10BIT	ICE_AQC_SFF_I2CBUS_TYPE_M
1240 #define ICE_AQC_SFF_SET_EEPROM_PAGE_S	11
1241 #define ICE_AQC_SFF_SET_EEPROM_PAGE_M	(0x3 << ICE_AQC_SFF_SET_EEPROM_PAGE_S)
1242 #define ICE_AQC_SFF_NO_PAGE_CHANGE	0
1243 #define ICE_AQC_SFF_SET_23_ON_MISMATCH	1
1244 #define ICE_AQC_SFF_SET_22_ON_MISMATCH	2
1245 #define ICE_AQC_SFF_IS_WRITE		BIT(15)
1246 	__le16 i2c_mem_addr;
1247 	__le16 eeprom_page;
1248 #define  ICE_AQC_SFF_EEPROM_BANK_S 0
1249 #define  ICE_AQC_SFF_EEPROM_BANK_M (0xFF << ICE_AQC_SFF_EEPROM_BANK_S)
1250 #define  ICE_AQC_SFF_EEPROM_PAGE_S 8
1251 #define  ICE_AQC_SFF_EEPROM_PAGE_M (0xFF << ICE_AQC_SFF_EEPROM_PAGE_S)
1252 	__le32 addr_high;
1253 	__le32 addr_low;
1254 };
1255 
1256 /* NVM Read command (indirect 0x0701)
1257  * NVM Erase commands (direct 0x0702)
1258  * NVM Update commands (indirect 0x0703)
1259  */
1260 struct ice_aqc_nvm {
1261 #define ICE_AQC_NVM_MAX_OFFSET		0xFFFFFF
1262 	__le16 offset_low;
1263 	u8 offset_high;
1264 	u8 cmd_flags;
1265 #define ICE_AQC_NVM_LAST_CMD		BIT(0)
1266 #define ICE_AQC_NVM_PCIR_REQ		BIT(0)	/* Used by NVM Update reply */
1267 #define ICE_AQC_NVM_PRESERVATION_S	1
1268 #define ICE_AQC_NVM_PRESERVATION_M	(3 << ICE_AQC_NVM_PRESERVATION_S)
1269 #define ICE_AQC_NVM_NO_PRESERVATION	(0 << ICE_AQC_NVM_PRESERVATION_S)
1270 #define ICE_AQC_NVM_PRESERVE_ALL	BIT(1)
1271 #define ICE_AQC_NVM_PRESERVE_SELECTED	(3 << ICE_AQC_NVM_PRESERVATION_S)
1272 #define ICE_AQC_NVM_FLASH_ONLY		BIT(7)
1273 	__le16 module_typeid;
1274 	__le16 length;
1275 #define ICE_AQC_NVM_ERASE_LEN	0xFFFF
1276 	__le32 addr_high;
1277 	__le32 addr_low;
1278 };
1279 
1280 #define ICE_AQC_NVM_START_POINT			0
1281 
1282 /* NVM Checksum Command (direct, 0x0706) */
1283 struct ice_aqc_nvm_checksum {
1284 	u8 flags;
1285 #define ICE_AQC_NVM_CHECKSUM_VERIFY	BIT(0)
1286 #define ICE_AQC_NVM_CHECKSUM_RECALC	BIT(1)
1287 	u8 rsvd;
1288 	__le16 checksum; /* Used only by response */
1289 #define ICE_AQC_NVM_CHECKSUM_CORRECT	0xBABA
1290 	u8 rsvd2[12];
1291 };
1292 
1293 /* The result of netlist NVM read comes in a TLV format. The actual data
1294  * (netlist header) starts from word offset 1 (byte 2). The FW strips
1295  * out the type field from the TLV header so all the netlist fields
1296  * should adjust their offset value by 1 word (2 bytes) in order to map
1297  * their correct location.
1298  */
1299 #define ICE_AQC_NVM_LINK_TOPO_NETLIST_MOD_ID		0x11B
1300 #define ICE_AQC_NVM_LINK_TOPO_NETLIST_LEN_OFFSET	1
1301 #define ICE_AQC_NVM_LINK_TOPO_NETLIST_LEN		2 /* In bytes */
1302 #define ICE_AQC_NVM_NETLIST_NODE_COUNT_OFFSET		2
1303 #define ICE_AQC_NVM_NETLIST_NODE_COUNT_LEN		2 /* In bytes */
1304 #define ICE_AQC_NVM_NETLIST_NODE_COUNT_M		ICE_M(0x3FF, 0)
1305 #define ICE_AQC_NVM_NETLIST_ID_BLK_START_OFFSET		5
1306 #define ICE_AQC_NVM_NETLIST_ID_BLK_LEN			0x30 /* In words */
1307 
1308 /* netlist ID block field offsets (word offsets) */
1309 #define ICE_AQC_NVM_NETLIST_ID_BLK_MAJOR_VER_LOW	2
1310 #define ICE_AQC_NVM_NETLIST_ID_BLK_MAJOR_VER_HIGH	3
1311 #define ICE_AQC_NVM_NETLIST_ID_BLK_MINOR_VER_LOW	4
1312 #define ICE_AQC_NVM_NETLIST_ID_BLK_MINOR_VER_HIGH	5
1313 #define ICE_AQC_NVM_NETLIST_ID_BLK_TYPE_LOW		6
1314 #define ICE_AQC_NVM_NETLIST_ID_BLK_TYPE_HIGH		7
1315 #define ICE_AQC_NVM_NETLIST_ID_BLK_REV_LOW		8
1316 #define ICE_AQC_NVM_NETLIST_ID_BLK_REV_HIGH		9
1317 #define ICE_AQC_NVM_NETLIST_ID_BLK_SHA_HASH		0xA
1318 #define ICE_AQC_NVM_NETLIST_ID_BLK_CUST_VER		0x2F
1319 
1320 /**
1321  * Send to PF command (indirect 0x0801) ID is only used by PF
1322  *
1323  * Send to VF command (indirect 0x0802) ID is only used by PF
1324  *
1325  */
1326 struct ice_aqc_pf_vf_msg {
1327 	__le32 id;
1328 	u32 reserved;
1329 	__le32 addr_high;
1330 	__le32 addr_low;
1331 };
1332 
1333 /* Get LLDP MIB (indirect 0x0A00)
1334  * Note: This is also used by the LLDP MIB Change Event (0x0A01)
1335  * as the format is the same.
1336  */
1337 struct ice_aqc_lldp_get_mib {
1338 	u8 type;
1339 #define ICE_AQ_LLDP_MIB_TYPE_S			0
1340 #define ICE_AQ_LLDP_MIB_TYPE_M			(0x3 << ICE_AQ_LLDP_MIB_TYPE_S)
1341 #define ICE_AQ_LLDP_MIB_LOCAL			0
1342 #define ICE_AQ_LLDP_MIB_REMOTE			1
1343 #define ICE_AQ_LLDP_MIB_LOCAL_AND_REMOTE	2
1344 #define ICE_AQ_LLDP_BRID_TYPE_S			2
1345 #define ICE_AQ_LLDP_BRID_TYPE_M			(0x3 << ICE_AQ_LLDP_BRID_TYPE_S)
1346 #define ICE_AQ_LLDP_BRID_TYPE_NEAREST_BRID	0
1347 #define ICE_AQ_LLDP_BRID_TYPE_NON_TPMR		1
1348 /* Tx pause flags in the 0xA01 event use ICE_AQ_LLDP_TX_* */
1349 #define ICE_AQ_LLDP_TX_S			0x4
1350 #define ICE_AQ_LLDP_TX_M			(0x03 << ICE_AQ_LLDP_TX_S)
1351 #define ICE_AQ_LLDP_TX_ACTIVE			0
1352 #define ICE_AQ_LLDP_TX_SUSPENDED		1
1353 #define ICE_AQ_LLDP_TX_FLUSHED			3
1354 /* The following bytes are reserved for the Get LLDP MIB command (0x0A00)
1355  * and in the LLDP MIB Change Event (0x0A01). They are valid for the
1356  * Get LLDP MIB (0x0A00) response only.
1357  */
1358 	u8 reserved1;
1359 	__le16 local_len;
1360 	__le16 remote_len;
1361 	u8 reserved2[2];
1362 	__le32 addr_high;
1363 	__le32 addr_low;
1364 };
1365 
1366 /* Configure LLDP MIB Change Event (direct 0x0A01) */
1367 /* For MIB Change Event use ice_aqc_lldp_get_mib structure above */
1368 struct ice_aqc_lldp_set_mib_change {
1369 	u8 command;
1370 #define ICE_AQ_LLDP_MIB_UPDATE_ENABLE		0x0
1371 #define ICE_AQ_LLDP_MIB_UPDATE_DIS		0x1
1372 	u8 reserved[15];
1373 };
1374 
1375 /* Stop LLDP (direct 0x0A05) */
1376 struct ice_aqc_lldp_stop {
1377 	u8 command;
1378 #define ICE_AQ_LLDP_AGENT_STATE_MASK	BIT(0)
1379 #define ICE_AQ_LLDP_AGENT_STOP		0x0
1380 #define ICE_AQ_LLDP_AGENT_SHUTDOWN	ICE_AQ_LLDP_AGENT_STATE_MASK
1381 #define ICE_AQ_LLDP_AGENT_PERSIST_DIS	BIT(1)
1382 	u8 reserved[15];
1383 };
1384 
1385 /* Start LLDP (direct 0x0A06) */
1386 struct ice_aqc_lldp_start {
1387 	u8 command;
1388 #define ICE_AQ_LLDP_AGENT_START		BIT(0)
1389 #define ICE_AQ_LLDP_AGENT_PERSIST_ENA	BIT(1)
1390 	u8 reserved[15];
1391 };
1392 
1393 /* Get CEE DCBX Oper Config (0x0A07)
1394  * The command uses the generic descriptor struct and
1395  * returns the struct below as an indirect response.
1396  */
1397 struct ice_aqc_get_cee_dcb_cfg_resp {
1398 	u8 oper_num_tc;
1399 	u8 oper_prio_tc[4];
1400 	u8 oper_tc_bw[8];
1401 	u8 oper_pfc_en;
1402 	__le16 oper_app_prio;
1403 #define ICE_AQC_CEE_APP_FCOE_S		0
1404 #define ICE_AQC_CEE_APP_FCOE_M		(0x7 << ICE_AQC_CEE_APP_FCOE_S)
1405 #define ICE_AQC_CEE_APP_ISCSI_S		3
1406 #define ICE_AQC_CEE_APP_ISCSI_M		(0x7 << ICE_AQC_CEE_APP_ISCSI_S)
1407 #define ICE_AQC_CEE_APP_FIP_S		8
1408 #define ICE_AQC_CEE_APP_FIP_M		(0x7 << ICE_AQC_CEE_APP_FIP_S)
1409 	__le32 tlv_status;
1410 #define ICE_AQC_CEE_PG_STATUS_S		0
1411 #define ICE_AQC_CEE_PG_STATUS_M		(0x7 << ICE_AQC_CEE_PG_STATUS_S)
1412 #define ICE_AQC_CEE_PFC_STATUS_S	3
1413 #define ICE_AQC_CEE_PFC_STATUS_M	(0x7 << ICE_AQC_CEE_PFC_STATUS_S)
1414 #define ICE_AQC_CEE_FCOE_STATUS_S	8
1415 #define ICE_AQC_CEE_FCOE_STATUS_M	(0x7 << ICE_AQC_CEE_FCOE_STATUS_S)
1416 #define ICE_AQC_CEE_ISCSI_STATUS_S	11
1417 #define ICE_AQC_CEE_ISCSI_STATUS_M	(0x7 << ICE_AQC_CEE_ISCSI_STATUS_S)
1418 #define ICE_AQC_CEE_FIP_STATUS_S	16
1419 #define ICE_AQC_CEE_FIP_STATUS_M	(0x7 << ICE_AQC_CEE_FIP_STATUS_S)
1420 	u8 reserved[12];
1421 };
1422 
1423 /* Set Local LLDP MIB (indirect 0x0A08)
1424  * Used to replace the local MIB of a given LLDP agent. e.g. DCBX
1425  */
1426 struct ice_aqc_lldp_set_local_mib {
1427 	u8 type;
1428 #define SET_LOCAL_MIB_TYPE_DCBX_M		BIT(0)
1429 #define SET_LOCAL_MIB_TYPE_LOCAL_MIB		0
1430 #define SET_LOCAL_MIB_TYPE_CEE_M		BIT(1)
1431 #define SET_LOCAL_MIB_TYPE_CEE_WILLING		0
1432 #define SET_LOCAL_MIB_TYPE_CEE_NON_WILLING	SET_LOCAL_MIB_TYPE_CEE_M
1433 	u8 reserved0;
1434 	__le16 length;
1435 	u8 reserved1[4];
1436 	__le32 addr_high;
1437 	__le32 addr_low;
1438 };
1439 
1440 /* Stop/Start LLDP Agent (direct 0x0A09)
1441  * Used for stopping/starting specific LLDP agent. e.g. DCBX.
1442  * The same structure is used for the response, with the command field
1443  * being used as the status field.
1444  */
1445 struct ice_aqc_lldp_stop_start_specific_agent {
1446 	u8 command;
1447 #define ICE_AQC_START_STOP_AGENT_M		BIT(0)
1448 #define ICE_AQC_START_STOP_AGENT_STOP_DCBX	0
1449 #define ICE_AQC_START_STOP_AGENT_START_DCBX	ICE_AQC_START_STOP_AGENT_M
1450 	u8 reserved[15];
1451 };
1452 
1453 /* Get/Set RSS key (indirect 0x0B04/0x0B02) */
1454 struct ice_aqc_get_set_rss_key {
1455 #define ICE_AQC_GSET_RSS_KEY_VSI_VALID	BIT(15)
1456 #define ICE_AQC_GSET_RSS_KEY_VSI_ID_S	0
1457 #define ICE_AQC_GSET_RSS_KEY_VSI_ID_M	(0x3FF << ICE_AQC_GSET_RSS_KEY_VSI_ID_S)
1458 	__le16 vsi_id;
1459 	u8 reserved[6];
1460 	__le32 addr_high;
1461 	__le32 addr_low;
1462 };
1463 
1464 #define ICE_AQC_GET_SET_RSS_KEY_DATA_RSS_KEY_SIZE	0x28
1465 #define ICE_AQC_GET_SET_RSS_KEY_DATA_HASH_KEY_SIZE	0xC
1466 #define ICE_GET_SET_RSS_KEY_EXTEND_KEY_SIZE \
1467 				(ICE_AQC_GET_SET_RSS_KEY_DATA_RSS_KEY_SIZE + \
1468 				 ICE_AQC_GET_SET_RSS_KEY_DATA_HASH_KEY_SIZE)
1469 
1470 struct ice_aqc_get_set_rss_keys {
1471 	u8 standard_rss_key[ICE_AQC_GET_SET_RSS_KEY_DATA_RSS_KEY_SIZE];
1472 	u8 extended_hash_key[ICE_AQC_GET_SET_RSS_KEY_DATA_HASH_KEY_SIZE];
1473 };
1474 
1475 /* Get/Set RSS LUT (indirect 0x0B05/0x0B03) */
1476 struct ice_aqc_get_set_rss_lut {
1477 #define ICE_AQC_GSET_RSS_LUT_VSI_VALID	BIT(15)
1478 #define ICE_AQC_GSET_RSS_LUT_VSI_ID_S	0
1479 #define ICE_AQC_GSET_RSS_LUT_VSI_ID_M	(0x1FF << ICE_AQC_GSET_RSS_LUT_VSI_ID_S)
1480 	__le16 vsi_id;
1481 #define ICE_AQC_GSET_RSS_LUT_TABLE_TYPE_S	0
1482 #define ICE_AQC_GSET_RSS_LUT_TABLE_TYPE_M	\
1483 				(0x3 << ICE_AQC_GSET_RSS_LUT_TABLE_TYPE_S)
1484 
1485 #define ICE_AQC_GSET_RSS_LUT_TABLE_TYPE_VSI	 0
1486 #define ICE_AQC_GSET_RSS_LUT_TABLE_TYPE_PF	 1
1487 #define ICE_AQC_GSET_RSS_LUT_TABLE_TYPE_GLOBAL	 2
1488 
1489 #define ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_S	 2
1490 #define ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_M	 \
1491 				(0x3 << ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_S)
1492 
1493 #define ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_128	 128
1494 #define ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_128_FLAG 0
1495 #define ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_512	 512
1496 #define ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_512_FLAG 1
1497 #define ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_2K	 2048
1498 #define ICE_AQC_GSET_RSS_LUT_TABLE_SIZE_2K_FLAG	 2
1499 
1500 #define ICE_AQC_GSET_RSS_LUT_GLOBAL_IDX_S	 4
1501 #define ICE_AQC_GSET_RSS_LUT_GLOBAL_IDX_M	 \
1502 				(0xF << ICE_AQC_GSET_RSS_LUT_GLOBAL_IDX_S)
1503 
1504 	__le16 flags;
1505 	__le32 reserved;
1506 	__le32 addr_high;
1507 	__le32 addr_low;
1508 };
1509 
1510 /* Add Tx LAN Queues (indirect 0x0C30) */
1511 struct ice_aqc_add_txqs {
1512 	u8 num_qgrps;
1513 	u8 reserved[3];
1514 	__le32 reserved1;
1515 	__le32 addr_high;
1516 	__le32 addr_low;
1517 };
1518 
1519 /* This is the descriptor of each queue entry for the Add Tx LAN Queues
1520  * command (0x0C30). Only used within struct ice_aqc_add_tx_qgrp.
1521  */
1522 struct ice_aqc_add_txqs_perq {
1523 	__le16 txq_id;
1524 	u8 rsvd[2];
1525 	__le32 q_teid;
1526 	u8 txq_ctx[22];
1527 	u8 rsvd2[2];
1528 	struct ice_aqc_txsched_elem info;
1529 };
1530 
1531 /* The format of the command buffer for Add Tx LAN Queues (0x0C30)
1532  * is an array of the following structs. Please note that the length of
1533  * each struct ice_aqc_add_tx_qgrp is variable due
1534  * to the variable number of queues in each group!
1535  */
1536 struct ice_aqc_add_tx_qgrp {
1537 	__le32 parent_teid;
1538 	u8 num_txqs;
1539 	u8 rsvd[3];
1540 	struct ice_aqc_add_txqs_perq txqs[1];
1541 };
1542 
1543 /* Disable Tx LAN Queues (indirect 0x0C31) */
1544 struct ice_aqc_dis_txqs {
1545 	u8 cmd_type;
1546 #define ICE_AQC_Q_DIS_CMD_S		0
1547 #define ICE_AQC_Q_DIS_CMD_M		(0x3 << ICE_AQC_Q_DIS_CMD_S)
1548 #define ICE_AQC_Q_DIS_CMD_NO_FUNC_RESET	(0 << ICE_AQC_Q_DIS_CMD_S)
1549 #define ICE_AQC_Q_DIS_CMD_VM_RESET	BIT(ICE_AQC_Q_DIS_CMD_S)
1550 #define ICE_AQC_Q_DIS_CMD_VF_RESET	(2 << ICE_AQC_Q_DIS_CMD_S)
1551 #define ICE_AQC_Q_DIS_CMD_PF_RESET	(3 << ICE_AQC_Q_DIS_CMD_S)
1552 #define ICE_AQC_Q_DIS_CMD_SUBSEQ_CALL	BIT(2)
1553 #define ICE_AQC_Q_DIS_CMD_FLUSH_PIPE	BIT(3)
1554 	u8 num_entries;
1555 	__le16 vmvf_and_timeout;
1556 #define ICE_AQC_Q_DIS_VMVF_NUM_S	0
1557 #define ICE_AQC_Q_DIS_VMVF_NUM_M	(0x3FF << ICE_AQC_Q_DIS_VMVF_NUM_S)
1558 #define ICE_AQC_Q_DIS_TIMEOUT_S		10
1559 #define ICE_AQC_Q_DIS_TIMEOUT_M		(0x3F << ICE_AQC_Q_DIS_TIMEOUT_S)
1560 	__le32 blocked_cgds;
1561 	__le32 addr_high;
1562 	__le32 addr_low;
1563 };
1564 
1565 /* The buffer for Disable Tx LAN Queues (indirect 0x0C31)
1566  * contains the following structures, arrayed one after the
1567  * other.
1568  * Note: Since the q_id is 16 bits wide, if the
1569  * number of queues is even, then 2 bytes of alignment MUST be
1570  * added before the start of the next group, to allow correct
1571  * alignment of the parent_teid field.
1572  */
1573 struct ice_aqc_dis_txq_item {
1574 	__le32 parent_teid;
1575 	u8 num_qs;
1576 	u8 rsvd;
1577 	/* The length of the q_id array varies according to num_qs */
1578 	__le16 q_id[1];
1579 	/* This only applies from F8 onward */
1580 #define ICE_AQC_Q_DIS_BUF_ELEM_TYPE_S		15
1581 #define ICE_AQC_Q_DIS_BUF_ELEM_TYPE_LAN_Q	\
1582 			(0 << ICE_AQC_Q_DIS_BUF_ELEM_TYPE_S)
1583 #define ICE_AQC_Q_DIS_BUF_ELEM_TYPE_RDMA_QSET	\
1584 			(1 << ICE_AQC_Q_DIS_BUF_ELEM_TYPE_S)
1585 };
1586 
1587 struct ice_aqc_dis_txq {
1588 	struct ice_aqc_dis_txq_item qgrps[1];
1589 };
1590 
1591 /* Configure Firmware Logging Command (indirect 0xFF09)
1592  * Logging Information Read Response (indirect 0xFF10)
1593  * Note: The 0xFF10 command has no input parameters.
1594  */
1595 struct ice_aqc_fw_logging {
1596 	u8 log_ctrl;
1597 #define ICE_AQC_FW_LOG_AQ_EN		BIT(0)
1598 #define ICE_AQC_FW_LOG_UART_EN		BIT(1)
1599 	u8 rsvd0;
1600 	u8 log_ctrl_valid; /* Not used by 0xFF10 Response */
1601 #define ICE_AQC_FW_LOG_AQ_VALID		BIT(0)
1602 #define ICE_AQC_FW_LOG_UART_VALID	BIT(1)
1603 	u8 rsvd1[5];
1604 	__le32 addr_high;
1605 	__le32 addr_low;
1606 };
1607 
1608 enum ice_aqc_fw_logging_mod {
1609 	ICE_AQC_FW_LOG_ID_GENERAL = 0,
1610 	ICE_AQC_FW_LOG_ID_CTRL,
1611 	ICE_AQC_FW_LOG_ID_LINK,
1612 	ICE_AQC_FW_LOG_ID_LINK_TOPO,
1613 	ICE_AQC_FW_LOG_ID_DNL,
1614 	ICE_AQC_FW_LOG_ID_I2C,
1615 	ICE_AQC_FW_LOG_ID_SDP,
1616 	ICE_AQC_FW_LOG_ID_MDIO,
1617 	ICE_AQC_FW_LOG_ID_ADMINQ,
1618 	ICE_AQC_FW_LOG_ID_HDMA,
1619 	ICE_AQC_FW_LOG_ID_LLDP,
1620 	ICE_AQC_FW_LOG_ID_DCBX,
1621 	ICE_AQC_FW_LOG_ID_DCB,
1622 	ICE_AQC_FW_LOG_ID_NETPROXY,
1623 	ICE_AQC_FW_LOG_ID_NVM,
1624 	ICE_AQC_FW_LOG_ID_AUTH,
1625 	ICE_AQC_FW_LOG_ID_VPD,
1626 	ICE_AQC_FW_LOG_ID_IOSF,
1627 	ICE_AQC_FW_LOG_ID_PARSER,
1628 	ICE_AQC_FW_LOG_ID_SW,
1629 	ICE_AQC_FW_LOG_ID_SCHEDULER,
1630 	ICE_AQC_FW_LOG_ID_TXQ,
1631 	ICE_AQC_FW_LOG_ID_RSVD,
1632 	ICE_AQC_FW_LOG_ID_POST,
1633 	ICE_AQC_FW_LOG_ID_WATCHDOG,
1634 	ICE_AQC_FW_LOG_ID_TASK_DISPATCH,
1635 	ICE_AQC_FW_LOG_ID_MNG,
1636 	ICE_AQC_FW_LOG_ID_MAX,
1637 };
1638 
1639 /* This is the buffer for both of the logging commands.
1640  * The entry array size depends on the datalen parameter in the descriptor.
1641  * There will be a total of datalen / 2 entries.
1642  */
1643 struct ice_aqc_fw_logging_data {
1644 	__le16 entry[1];
1645 #define ICE_AQC_FW_LOG_ID_S		0
1646 #define ICE_AQC_FW_LOG_ID_M		(0xFFF << ICE_AQC_FW_LOG_ID_S)
1647 
1648 #define ICE_AQC_FW_LOG_CONF_SUCCESS	0	/* Used by response */
1649 #define ICE_AQC_FW_LOG_CONF_BAD_INDX	BIT(12)	/* Used by response */
1650 
1651 #define ICE_AQC_FW_LOG_EN_S		12
1652 #define ICE_AQC_FW_LOG_EN_M		(0xF << ICE_AQC_FW_LOG_EN_S)
1653 #define ICE_AQC_FW_LOG_INFO_EN		BIT(12)	/* Used by command */
1654 #define ICE_AQC_FW_LOG_INIT_EN		BIT(13)	/* Used by command */
1655 #define ICE_AQC_FW_LOG_FLOW_EN		BIT(14)	/* Used by command */
1656 #define ICE_AQC_FW_LOG_ERR_EN		BIT(15)	/* Used by command */
1657 };
1658 
1659 /* Get/Clear FW Log (indirect 0xFF11) */
1660 struct ice_aqc_get_clear_fw_log {
1661 	u8 flags;
1662 #define ICE_AQC_FW_LOG_CLEAR		BIT(0)
1663 #define ICE_AQC_FW_LOG_MORE_DATA_AVAIL	BIT(1)
1664 	u8 rsvd1[7];
1665 	__le32 addr_high;
1666 	__le32 addr_low;
1667 };
1668 
1669 /* Download Package (indirect 0x0C40) */
1670 /* Also used for Update Package (indirect 0x0C42) */
1671 struct ice_aqc_download_pkg {
1672 	u8 flags;
1673 #define ICE_AQC_DOWNLOAD_PKG_LAST_BUF	0x01
1674 	u8 reserved[3];
1675 	__le32 reserved1;
1676 	__le32 addr_high;
1677 	__le32 addr_low;
1678 };
1679 
1680 struct ice_aqc_download_pkg_resp {
1681 	__le32 error_offset;
1682 	__le32 error_info;
1683 	__le32 addr_high;
1684 	__le32 addr_low;
1685 };
1686 
1687 /* Get Package Info List (indirect 0x0C43) */
1688 struct ice_aqc_get_pkg_info_list {
1689 	__le32 reserved1;
1690 	__le32 reserved2;
1691 	__le32 addr_high;
1692 	__le32 addr_low;
1693 };
1694 
1695 /* Version format for packages */
1696 struct ice_pkg_ver {
1697 	u8 major;
1698 	u8 minor;
1699 	u8 update;
1700 	u8 draft;
1701 };
1702 
1703 #define ICE_PKG_NAME_SIZE	32
1704 #define ICE_SEG_NAME_SIZE	28
1705 
1706 struct ice_aqc_get_pkg_info {
1707 	struct ice_pkg_ver ver;
1708 	char name[ICE_SEG_NAME_SIZE];
1709 	__le32 track_id;
1710 	u8 is_in_nvm;
1711 	u8 is_active;
1712 	u8 is_active_at_boot;
1713 	u8 is_modified;
1714 };
1715 
1716 /* Get Package Info List response buffer format (0x0C43) */
1717 struct ice_aqc_get_pkg_info_resp {
1718 	__le32 count;
1719 	struct ice_aqc_get_pkg_info pkg_info[1];
1720 };
1721 
1722 /* Lan Queue Overflow Event (direct, 0x1001) */
1723 struct ice_aqc_event_lan_overflow {
1724 	__le32 prtdcb_ruptq;
1725 	__le32 qtx_ctl;
1726 	u8 reserved[8];
1727 };
1728 
1729 /**
1730  * struct ice_aq_desc - Admin Queue (AQ) descriptor
1731  * @flags: ICE_AQ_FLAG_* flags
1732  * @opcode: AQ command opcode
1733  * @datalen: length in bytes of indirect/external data buffer
1734  * @retval: return value from firmware
1735  * @cookie_h: opaque data high-half
1736  * @cookie_l: opaque data low-half
1737  * @params: command-specific parameters
1738  *
1739  * Descriptor format for commands the driver posts on the Admin Transmit Queue
1740  * (ATQ). The firmware writes back onto the command descriptor and returns
1741  * the result of the command. Asynchronous events that are not an immediate
1742  * result of the command are written to the Admin Receive Queue (ARQ) using
1743  * the same descriptor format. Descriptors are in little-endian notation with
1744  * 32-bit words.
1745  */
1746 struct ice_aq_desc {
1747 	__le16 flags;
1748 	__le16 opcode;
1749 	__le16 datalen;
1750 	__le16 retval;
1751 	__le32 cookie_high;
1752 	__le32 cookie_low;
1753 	union {
1754 		u8 raw[16];
1755 		struct ice_aqc_generic generic;
1756 		struct ice_aqc_get_ver get_ver;
1757 		struct ice_aqc_driver_ver driver_ver;
1758 		struct ice_aqc_q_shutdown q_shutdown;
1759 		struct ice_aqc_req_res res_owner;
1760 		struct ice_aqc_manage_mac_read mac_read;
1761 		struct ice_aqc_manage_mac_write mac_write;
1762 		struct ice_aqc_clear_pxe clear_pxe;
1763 		struct ice_aqc_list_caps get_cap;
1764 		struct ice_aqc_get_phy_caps get_phy;
1765 		struct ice_aqc_set_phy_cfg set_phy;
1766 		struct ice_aqc_restart_an restart_an;
1767 		struct ice_aqc_sff_eeprom read_write_sff_param;
1768 		struct ice_aqc_set_port_id_led set_port_id_led;
1769 		struct ice_aqc_get_sw_cfg get_sw_conf;
1770 		struct ice_aqc_sw_rules sw_rules;
1771 		struct ice_aqc_get_topo get_topo;
1772 		struct ice_aqc_sched_elem_cmd sched_elem_cmd;
1773 		struct ice_aqc_query_txsched_res query_sched_res;
1774 		struct ice_aqc_query_port_ets port_ets;
1775 		struct ice_aqc_rl_profile rl_profile;
1776 		struct ice_aqc_nvm nvm;
1777 		struct ice_aqc_nvm_checksum nvm_checksum;
1778 		struct ice_aqc_pf_vf_msg virt;
1779 		struct ice_aqc_lldp_get_mib lldp_get_mib;
1780 		struct ice_aqc_lldp_set_mib_change lldp_set_event;
1781 		struct ice_aqc_lldp_stop lldp_stop;
1782 		struct ice_aqc_lldp_start lldp_start;
1783 		struct ice_aqc_lldp_set_local_mib lldp_set_mib;
1784 		struct ice_aqc_lldp_stop_start_specific_agent lldp_agent_ctrl;
1785 		struct ice_aqc_get_set_rss_lut get_set_rss_lut;
1786 		struct ice_aqc_get_set_rss_key get_set_rss_key;
1787 		struct ice_aqc_add_txqs add_txqs;
1788 		struct ice_aqc_dis_txqs dis_txqs;
1789 		struct ice_aqc_add_get_update_free_vsi vsi_cmd;
1790 		struct ice_aqc_add_update_free_vsi_resp add_update_free_vsi_res;
1791 		struct ice_aqc_fw_logging fw_logging;
1792 		struct ice_aqc_get_clear_fw_log get_clear_fw_log;
1793 		struct ice_aqc_download_pkg download_pkg;
1794 		struct ice_aqc_set_mac_lb set_mac_lb;
1795 		struct ice_aqc_alloc_free_res_cmd sw_res_ctrl;
1796 		struct ice_aqc_set_mac_cfg set_mac_cfg;
1797 		struct ice_aqc_set_event_mask set_event_mask;
1798 		struct ice_aqc_get_link_status get_link_status;
1799 		struct ice_aqc_event_lan_overflow lan_overflow;
1800 	} params;
1801 };
1802 
1803 /* FW defined boundary for a large buffer, 4k >= Large buffer > 512 bytes */
1804 #define ICE_AQ_LG_BUF	512
1805 
1806 #define ICE_AQ_FLAG_ERR_S	2
1807 #define ICE_AQ_FLAG_LB_S	9
1808 #define ICE_AQ_FLAG_RD_S	10
1809 #define ICE_AQ_FLAG_BUF_S	12
1810 #define ICE_AQ_FLAG_SI_S	13
1811 
1812 #define ICE_AQ_FLAG_ERR		BIT(ICE_AQ_FLAG_ERR_S) /* 0x4    */
1813 #define ICE_AQ_FLAG_LB		BIT(ICE_AQ_FLAG_LB_S)  /* 0x200  */
1814 #define ICE_AQ_FLAG_RD		BIT(ICE_AQ_FLAG_RD_S)  /* 0x400  */
1815 #define ICE_AQ_FLAG_BUF		BIT(ICE_AQ_FLAG_BUF_S) /* 0x1000 */
1816 #define ICE_AQ_FLAG_SI		BIT(ICE_AQ_FLAG_SI_S)  /* 0x2000 */
1817 
1818 /* error codes */
1819 enum ice_aq_err {
1820 	ICE_AQ_RC_OK		= 0,  /* Success */
1821 	ICE_AQ_RC_EPERM		= 1,  /* Operation not permitted */
1822 	ICE_AQ_RC_ENOENT	= 2,  /* No such element */
1823 	ICE_AQ_RC_ENOMEM	= 9,  /* Out of memory */
1824 	ICE_AQ_RC_EBUSY		= 12, /* Device or resource busy */
1825 	ICE_AQ_RC_EEXIST	= 13, /* Object already exists */
1826 	ICE_AQ_RC_EINVAL	= 14, /* Invalid argument */
1827 	ICE_AQ_RC_ENOSPC	= 16, /* No space left or allocation failure */
1828 	ICE_AQ_RC_ENOSYS	= 17, /* Function not implemented */
1829 	ICE_AQ_RC_EMODE		= 21, /* Op not allowed in current dev mode */
1830 	ICE_AQ_RC_ENOSEC	= 24, /* Missing security manifest */
1831 	ICE_AQ_RC_EBADSIG	= 25, /* Bad RSA signature */
1832 	ICE_AQ_RC_ESVN		= 26, /* SVN number prohibits this package */
1833 	ICE_AQ_RC_EBADMAN	= 27, /* Manifest hash mismatch */
1834 	ICE_AQ_RC_EBADBUF	= 28, /* Buffer hash mismatches manifest */
1835 };
1836 
1837 /* Admin Queue command opcodes */
1838 enum ice_adminq_opc {
1839 	/* AQ commands */
1840 	ice_aqc_opc_get_ver				= 0x0001,
1841 	ice_aqc_opc_driver_ver				= 0x0002,
1842 	ice_aqc_opc_q_shutdown				= 0x0003,
1843 
1844 	/* resource ownership */
1845 	ice_aqc_opc_req_res				= 0x0008,
1846 	ice_aqc_opc_release_res				= 0x0009,
1847 
1848 	/* device/function capabilities */
1849 	ice_aqc_opc_list_func_caps			= 0x000A,
1850 	ice_aqc_opc_list_dev_caps			= 0x000B,
1851 
1852 	/* manage MAC address */
1853 	ice_aqc_opc_manage_mac_read			= 0x0107,
1854 	ice_aqc_opc_manage_mac_write			= 0x0108,
1855 
1856 	/* PXE */
1857 	ice_aqc_opc_clear_pxe_mode			= 0x0110,
1858 
1859 	/* internal switch commands */
1860 	ice_aqc_opc_get_sw_cfg				= 0x0200,
1861 
1862 	/* Alloc/Free/Get Resources */
1863 	ice_aqc_opc_alloc_res				= 0x0208,
1864 	ice_aqc_opc_free_res				= 0x0209,
1865 
1866 	/* VSI commands */
1867 	ice_aqc_opc_add_vsi				= 0x0210,
1868 	ice_aqc_opc_update_vsi				= 0x0211,
1869 	ice_aqc_opc_free_vsi				= 0x0213,
1870 
1871 	/* switch rules population commands */
1872 	ice_aqc_opc_add_sw_rules			= 0x02A0,
1873 	ice_aqc_opc_update_sw_rules			= 0x02A1,
1874 	ice_aqc_opc_remove_sw_rules			= 0x02A2,
1875 
1876 	ice_aqc_opc_clear_pf_cfg			= 0x02A4,
1877 
1878 	/* transmit scheduler commands */
1879 	ice_aqc_opc_get_dflt_topo			= 0x0400,
1880 	ice_aqc_opc_add_sched_elems			= 0x0401,
1881 	ice_aqc_opc_cfg_sched_elems			= 0x0403,
1882 	ice_aqc_opc_get_sched_elems			= 0x0404,
1883 	ice_aqc_opc_suspend_sched_elems			= 0x0409,
1884 	ice_aqc_opc_resume_sched_elems			= 0x040A,
1885 	ice_aqc_opc_query_port_ets			= 0x040E,
1886 	ice_aqc_opc_delete_sched_elems			= 0x040F,
1887 	ice_aqc_opc_add_rl_profiles			= 0x0410,
1888 	ice_aqc_opc_query_sched_res			= 0x0412,
1889 	ice_aqc_opc_remove_rl_profiles			= 0x0415,
1890 
1891 	/* PHY commands */
1892 	ice_aqc_opc_get_phy_caps			= 0x0600,
1893 	ice_aqc_opc_set_phy_cfg				= 0x0601,
1894 	ice_aqc_opc_set_mac_cfg				= 0x0603,
1895 	ice_aqc_opc_restart_an				= 0x0605,
1896 	ice_aqc_opc_get_link_status			= 0x0607,
1897 	ice_aqc_opc_set_event_mask			= 0x0613,
1898 	ice_aqc_opc_set_mac_lb				= 0x0620,
1899 	ice_aqc_opc_set_port_id_led			= 0x06E9,
1900 	ice_aqc_opc_sff_eeprom				= 0x06EE,
1901 
1902 	/* NVM commands */
1903 	ice_aqc_opc_nvm_read				= 0x0701,
1904 	ice_aqc_opc_nvm_checksum			= 0x0706,
1905 
1906 	/* PF/VF mailbox commands */
1907 	ice_mbx_opc_send_msg_to_pf			= 0x0801,
1908 	ice_mbx_opc_send_msg_to_vf			= 0x0802,
1909 	/* LLDP commands */
1910 	ice_aqc_opc_lldp_get_mib			= 0x0A00,
1911 	ice_aqc_opc_lldp_set_mib_change			= 0x0A01,
1912 	ice_aqc_opc_lldp_stop				= 0x0A05,
1913 	ice_aqc_opc_lldp_start				= 0x0A06,
1914 	ice_aqc_opc_get_cee_dcb_cfg			= 0x0A07,
1915 	ice_aqc_opc_lldp_set_local_mib			= 0x0A08,
1916 	ice_aqc_opc_lldp_stop_start_specific_agent	= 0x0A09,
1917 
1918 	/* RSS commands */
1919 	ice_aqc_opc_set_rss_key				= 0x0B02,
1920 	ice_aqc_opc_set_rss_lut				= 0x0B03,
1921 	ice_aqc_opc_get_rss_key				= 0x0B04,
1922 	ice_aqc_opc_get_rss_lut				= 0x0B05,
1923 
1924 	/* Tx queue handling commands/events */
1925 	ice_aqc_opc_add_txqs				= 0x0C30,
1926 	ice_aqc_opc_dis_txqs				= 0x0C31,
1927 
1928 	/* package commands */
1929 	ice_aqc_opc_download_pkg			= 0x0C40,
1930 	ice_aqc_opc_update_pkg				= 0x0C42,
1931 	ice_aqc_opc_get_pkg_info_list			= 0x0C43,
1932 
1933 	/* Standalone Commands/Events */
1934 	ice_aqc_opc_event_lan_overflow			= 0x1001,
1935 
1936 	/* debug commands */
1937 	ice_aqc_opc_fw_logging				= 0xFF09,
1938 	ice_aqc_opc_fw_logging_info			= 0xFF10,
1939 };
1940 
1941 #endif /* _ICE_ADMINQ_CMD_H_ */
1942