i40e/i40evf: Add support for writeback on ITR feature for X722
[deliverable/linux.git] / drivers / net / ethernet / intel / i40e / i40e_type.h
1 /*******************************************************************************
2 *
3 * Intel Ethernet Controller XL710 Family Linux Driver
4 * Copyright(c) 2013 - 2015 Intel Corporation.
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms and conditions of the GNU General Public License,
8 * version 2, as published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope it will be useful, but WITHOUT
11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * more details.
14 *
15 * You should have received a copy of the GNU General Public License along
16 * with this program. If not, see <http://www.gnu.org/licenses/>.
17 *
18 * The full GNU General Public License is included in this distribution in
19 * the file called "COPYING".
20 *
21 * Contact Information:
22 * e1000-devel Mailing List <e1000-devel@lists.sourceforge.net>
23 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
24 *
25 ******************************************************************************/
26
27 #ifndef _I40E_TYPE_H_
28 #define _I40E_TYPE_H_
29
30 #include "i40e_status.h"
31 #include "i40e_osdep.h"
32 #include "i40e_register.h"
33 #include "i40e_adminq.h"
34 #include "i40e_hmc.h"
35 #include "i40e_lan_hmc.h"
36
37 /* Device IDs */
38 #define I40E_DEV_ID_SFP_XL710 0x1572
39 #define I40E_DEV_ID_QEMU 0x1574
40 #define I40E_DEV_ID_KX_A 0x157F
41 #define I40E_DEV_ID_KX_B 0x1580
42 #define I40E_DEV_ID_KX_C 0x1581
43 #define I40E_DEV_ID_QSFP_A 0x1583
44 #define I40E_DEV_ID_QSFP_B 0x1584
45 #define I40E_DEV_ID_QSFP_C 0x1585
46 #define I40E_DEV_ID_10G_BASE_T 0x1586
47 #define I40E_DEV_ID_20G_KR2 0x1587
48 #define I40E_DEV_ID_VF 0x154C
49 #define I40E_DEV_ID_VF_HV 0x1571
50 #define I40E_DEV_ID_SFP_X722 0x37D0
51 #define I40E_DEV_ID_1G_BASE_T_X722 0x37D1
52 #define I40E_DEV_ID_10G_BASE_T_X722 0x37D2
53 #define I40E_DEV_ID_X722_VF 0x37CD
54 #define I40E_DEV_ID_X722_VF_HV 0x37D9
55
56 #define i40e_is_40G_device(d) ((d) == I40E_DEV_ID_QSFP_A || \
57 (d) == I40E_DEV_ID_QSFP_B || \
58 (d) == I40E_DEV_ID_QSFP_C)
59
60 /* I40E_MASK is a macro used on 32 bit registers */
61 #define I40E_MASK(mask, shift) (mask << shift)
62
63 #define I40E_MAX_VSI_QP 16
64 #define I40E_MAX_VF_VSI 3
65 #define I40E_MAX_CHAINED_RX_BUFFERS 5
66 #define I40E_MAX_PF_UDP_OFFLOAD_PORTS 16
67
68 /* Max default timeout in ms, */
69 #define I40E_MAX_NVM_TIMEOUT 18000
70
71 /* Switch from ms to the 1usec global time (this is the GTIME resolution) */
72 #define I40E_MS_TO_GTIME(time) ((time) * 1000)
73
74 /* forward declaration */
75 struct i40e_hw;
76 typedef void (*I40E_ADMINQ_CALLBACK)(struct i40e_hw *, struct i40e_aq_desc *);
77
78 /* Data type manipulation macros. */
79
80 #define I40E_DESC_UNUSED(R) \
81 ((((R)->next_to_clean > (R)->next_to_use) ? 0 : (R)->count) + \
82 (R)->next_to_clean - (R)->next_to_use - 1)
83
84 /* bitfields for Tx queue mapping in QTX_CTL */
85 #define I40E_QTX_CTL_VF_QUEUE 0x0
86 #define I40E_QTX_CTL_VM_QUEUE 0x1
87 #define I40E_QTX_CTL_PF_QUEUE 0x2
88
89 /* debug masks - set these bits in hw->debug_mask to control output */
90 enum i40e_debug_mask {
91 I40E_DEBUG_INIT = 0x00000001,
92 I40E_DEBUG_RELEASE = 0x00000002,
93
94 I40E_DEBUG_LINK = 0x00000010,
95 I40E_DEBUG_PHY = 0x00000020,
96 I40E_DEBUG_HMC = 0x00000040,
97 I40E_DEBUG_NVM = 0x00000080,
98 I40E_DEBUG_LAN = 0x00000100,
99 I40E_DEBUG_FLOW = 0x00000200,
100 I40E_DEBUG_DCB = 0x00000400,
101 I40E_DEBUG_DIAG = 0x00000800,
102 I40E_DEBUG_FD = 0x00001000,
103
104 I40E_DEBUG_AQ_MESSAGE = 0x01000000,
105 I40E_DEBUG_AQ_DESCRIPTOR = 0x02000000,
106 I40E_DEBUG_AQ_DESC_BUFFER = 0x04000000,
107 I40E_DEBUG_AQ_COMMAND = 0x06000000,
108 I40E_DEBUG_AQ = 0x0F000000,
109
110 I40E_DEBUG_USER = 0xF0000000,
111
112 I40E_DEBUG_ALL = 0xFFFFFFFF
113 };
114
115 /* These are structs for managing the hardware information and the operations.
116 * The structures of function pointers are filled out at init time when we
117 * know for sure exactly which hardware we're working with. This gives us the
118 * flexibility of using the same main driver code but adapting to slightly
119 * different hardware needs as new parts are developed. For this architecture,
120 * the Firmware and AdminQ are intended to insulate the driver from most of the
121 * future changes, but these structures will also do part of the job.
122 */
123 enum i40e_mac_type {
124 I40E_MAC_UNKNOWN = 0,
125 I40E_MAC_X710,
126 I40E_MAC_XL710,
127 I40E_MAC_VF,
128 I40E_MAC_X722,
129 I40E_MAC_X722_VF,
130 I40E_MAC_GENERIC,
131 };
132
133 enum i40e_media_type {
134 I40E_MEDIA_TYPE_UNKNOWN = 0,
135 I40E_MEDIA_TYPE_FIBER,
136 I40E_MEDIA_TYPE_BASET,
137 I40E_MEDIA_TYPE_BACKPLANE,
138 I40E_MEDIA_TYPE_CX4,
139 I40E_MEDIA_TYPE_DA,
140 I40E_MEDIA_TYPE_VIRTUAL
141 };
142
143 enum i40e_fc_mode {
144 I40E_FC_NONE = 0,
145 I40E_FC_RX_PAUSE,
146 I40E_FC_TX_PAUSE,
147 I40E_FC_FULL,
148 I40E_FC_PFC,
149 I40E_FC_DEFAULT
150 };
151
152 enum i40e_set_fc_aq_failures {
153 I40E_SET_FC_AQ_FAIL_NONE = 0,
154 I40E_SET_FC_AQ_FAIL_GET = 1,
155 I40E_SET_FC_AQ_FAIL_SET = 2,
156 I40E_SET_FC_AQ_FAIL_UPDATE = 4,
157 I40E_SET_FC_AQ_FAIL_SET_UPDATE = 6
158 };
159
160 enum i40e_vsi_type {
161 I40E_VSI_MAIN = 0,
162 I40E_VSI_VMDQ1,
163 I40E_VSI_VMDQ2,
164 I40E_VSI_CTRL,
165 I40E_VSI_FCOE,
166 I40E_VSI_MIRROR,
167 I40E_VSI_SRIOV,
168 I40E_VSI_FDIR,
169 I40E_VSI_TYPE_UNKNOWN
170 };
171
172 enum i40e_queue_type {
173 I40E_QUEUE_TYPE_RX = 0,
174 I40E_QUEUE_TYPE_TX,
175 I40E_QUEUE_TYPE_PE_CEQ,
176 I40E_QUEUE_TYPE_UNKNOWN
177 };
178
179 struct i40e_link_status {
180 enum i40e_aq_phy_type phy_type;
181 enum i40e_aq_link_speed link_speed;
182 u8 link_info;
183 u8 an_info;
184 u8 ext_info;
185 u8 loopback;
186 /* is Link Status Event notification to SW enabled */
187 bool lse_enable;
188 u16 max_frame_size;
189 bool crc_enable;
190 u8 pacing;
191 u8 requested_speeds;
192 };
193
194 struct i40e_phy_info {
195 struct i40e_link_status link_info;
196 struct i40e_link_status link_info_old;
197 u32 autoneg_advertised;
198 u32 phy_id;
199 u32 module_type;
200 bool get_link_info;
201 enum i40e_media_type media_type;
202 };
203
204 #define I40E_HW_CAP_MAX_GPIO 30
205 /* Capabilities of a PF or a VF or the whole device */
206 struct i40e_hw_capabilities {
207 u32 switch_mode;
208 #define I40E_NVM_IMAGE_TYPE_EVB 0x0
209 #define I40E_NVM_IMAGE_TYPE_CLOUD 0x2
210 #define I40E_NVM_IMAGE_TYPE_UDP_CLOUD 0x3
211
212 u32 management_mode;
213 u32 npar_enable;
214 u32 os2bmc;
215 u32 valid_functions;
216 bool sr_iov_1_1;
217 bool vmdq;
218 bool evb_802_1_qbg; /* Edge Virtual Bridging */
219 bool evb_802_1_qbh; /* Bridge Port Extension */
220 bool dcb;
221 bool fcoe;
222 bool iscsi; /* Indicates iSCSI enabled */
223 bool flex10_enable;
224 bool flex10_capable;
225 u32 flex10_mode;
226 #define I40E_FLEX10_MODE_UNKNOWN 0x0
227 #define I40E_FLEX10_MODE_DCC 0x1
228 #define I40E_FLEX10_MODE_DCI 0x2
229
230 u32 flex10_status;
231 #define I40E_FLEX10_STATUS_DCC_ERROR 0x1
232 #define I40E_FLEX10_STATUS_VC_MODE 0x2
233
234 bool mgmt_cem;
235 bool ieee_1588;
236 bool iwarp;
237 bool fd;
238 u32 fd_filters_guaranteed;
239 u32 fd_filters_best_effort;
240 bool rss;
241 u32 rss_table_size;
242 u32 rss_table_entry_width;
243 bool led[I40E_HW_CAP_MAX_GPIO];
244 bool sdp[I40E_HW_CAP_MAX_GPIO];
245 u32 nvm_image_type;
246 u32 num_flow_director_filters;
247 u32 num_vfs;
248 u32 vf_base_id;
249 u32 num_vsis;
250 u32 num_rx_qp;
251 u32 num_tx_qp;
252 u32 base_queue;
253 u32 num_msix_vectors;
254 u32 num_msix_vectors_vf;
255 u32 led_pin_num;
256 u32 sdp_pin_num;
257 u32 mdio_port_num;
258 u32 mdio_port_mode;
259 u8 rx_buf_chain_len;
260 u32 enabled_tcmap;
261 u32 maxtc;
262 u64 wr_csr_prot;
263 };
264
265 struct i40e_mac_info {
266 enum i40e_mac_type type;
267 u8 addr[ETH_ALEN];
268 u8 perm_addr[ETH_ALEN];
269 u8 san_addr[ETH_ALEN];
270 u8 port_addr[ETH_ALEN];
271 u16 max_fcoeq;
272 };
273
274 enum i40e_aq_resources_ids {
275 I40E_NVM_RESOURCE_ID = 1
276 };
277
278 enum i40e_aq_resource_access_type {
279 I40E_RESOURCE_READ = 1,
280 I40E_RESOURCE_WRITE
281 };
282
283 struct i40e_nvm_info {
284 u64 hw_semaphore_timeout; /* usec global time (GTIME resolution) */
285 u32 timeout; /* [ms] */
286 u16 sr_size; /* Shadow RAM size in words */
287 bool blank_nvm_mode; /* is NVM empty (no FW present)*/
288 u16 version; /* NVM package version */
289 u32 eetrack; /* NVM data version */
290 };
291
292 /* definitions used in NVM update support */
293
294 enum i40e_nvmupd_cmd {
295 I40E_NVMUPD_INVALID,
296 I40E_NVMUPD_READ_CON,
297 I40E_NVMUPD_READ_SNT,
298 I40E_NVMUPD_READ_LCB,
299 I40E_NVMUPD_READ_SA,
300 I40E_NVMUPD_WRITE_ERA,
301 I40E_NVMUPD_WRITE_CON,
302 I40E_NVMUPD_WRITE_SNT,
303 I40E_NVMUPD_WRITE_LCB,
304 I40E_NVMUPD_WRITE_SA,
305 I40E_NVMUPD_CSUM_CON,
306 I40E_NVMUPD_CSUM_SA,
307 I40E_NVMUPD_CSUM_LCB,
308 };
309
310 enum i40e_nvmupd_state {
311 I40E_NVMUPD_STATE_INIT,
312 I40E_NVMUPD_STATE_READING,
313 I40E_NVMUPD_STATE_WRITING
314 };
315
316 /* nvm_access definition and its masks/shifts need to be accessible to
317 * application, core driver, and shared code. Where is the right file?
318 */
319 #define I40E_NVM_READ 0xB
320 #define I40E_NVM_WRITE 0xC
321
322 #define I40E_NVM_MOD_PNT_MASK 0xFF
323
324 #define I40E_NVM_TRANS_SHIFT 8
325 #define I40E_NVM_TRANS_MASK (0xf << I40E_NVM_TRANS_SHIFT)
326 #define I40E_NVM_CON 0x0
327 #define I40E_NVM_SNT 0x1
328 #define I40E_NVM_LCB 0x2
329 #define I40E_NVM_SA (I40E_NVM_SNT | I40E_NVM_LCB)
330 #define I40E_NVM_ERA 0x4
331 #define I40E_NVM_CSUM 0x8
332
333 #define I40E_NVM_ADAPT_SHIFT 16
334 #define I40E_NVM_ADAPT_MASK (0xffff << I40E_NVM_ADAPT_SHIFT)
335
336 #define I40E_NVMUPD_MAX_DATA 4096
337 #define I40E_NVMUPD_IFACE_TIMEOUT 2 /* seconds */
338
339 struct i40e_nvm_access {
340 u32 command;
341 u32 config;
342 u32 offset; /* in bytes */
343 u32 data_size; /* in bytes */
344 u8 data[1];
345 };
346
347 /* PCI bus types */
348 enum i40e_bus_type {
349 i40e_bus_type_unknown = 0,
350 i40e_bus_type_pci,
351 i40e_bus_type_pcix,
352 i40e_bus_type_pci_express,
353 i40e_bus_type_reserved
354 };
355
356 /* PCI bus speeds */
357 enum i40e_bus_speed {
358 i40e_bus_speed_unknown = 0,
359 i40e_bus_speed_33 = 33,
360 i40e_bus_speed_66 = 66,
361 i40e_bus_speed_100 = 100,
362 i40e_bus_speed_120 = 120,
363 i40e_bus_speed_133 = 133,
364 i40e_bus_speed_2500 = 2500,
365 i40e_bus_speed_5000 = 5000,
366 i40e_bus_speed_8000 = 8000,
367 i40e_bus_speed_reserved
368 };
369
370 /* PCI bus widths */
371 enum i40e_bus_width {
372 i40e_bus_width_unknown = 0,
373 i40e_bus_width_pcie_x1 = 1,
374 i40e_bus_width_pcie_x2 = 2,
375 i40e_bus_width_pcie_x4 = 4,
376 i40e_bus_width_pcie_x8 = 8,
377 i40e_bus_width_32 = 32,
378 i40e_bus_width_64 = 64,
379 i40e_bus_width_reserved
380 };
381
382 /* Bus parameters */
383 struct i40e_bus_info {
384 enum i40e_bus_speed speed;
385 enum i40e_bus_width width;
386 enum i40e_bus_type type;
387
388 u16 func;
389 u16 device;
390 u16 lan_id;
391 };
392
393 /* Flow control (FC) parameters */
394 struct i40e_fc_info {
395 enum i40e_fc_mode current_mode; /* FC mode in effect */
396 enum i40e_fc_mode requested_mode; /* FC mode requested by caller */
397 };
398
399 #define I40E_MAX_TRAFFIC_CLASS 8
400 #define I40E_MAX_USER_PRIORITY 8
401 #define I40E_DCBX_MAX_APPS 32
402 #define I40E_LLDPDU_SIZE 1500
403 #define I40E_TLV_STATUS_OPER 0x1
404 #define I40E_TLV_STATUS_SYNC 0x2
405 #define I40E_TLV_STATUS_ERR 0x4
406 #define I40E_CEE_OPER_MAX_APPS 3
407 #define I40E_APP_PROTOID_FCOE 0x8906
408 #define I40E_APP_PROTOID_ISCSI 0x0cbc
409 #define I40E_APP_PROTOID_FIP 0x8914
410 #define I40E_APP_SEL_ETHTYPE 0x1
411 #define I40E_APP_SEL_TCPIP 0x2
412
413 /* CEE or IEEE 802.1Qaz ETS Configuration data */
414 struct i40e_dcb_ets_config {
415 u8 willing;
416 u8 cbs;
417 u8 maxtcs;
418 u8 prioritytable[I40E_MAX_TRAFFIC_CLASS];
419 u8 tcbwtable[I40E_MAX_TRAFFIC_CLASS];
420 u8 tsatable[I40E_MAX_TRAFFIC_CLASS];
421 };
422
423 /* CEE or IEEE 802.1Qaz PFC Configuration data */
424 struct i40e_dcb_pfc_config {
425 u8 willing;
426 u8 mbc;
427 u8 pfccap;
428 u8 pfcenable;
429 };
430
431 /* CEE or IEEE 802.1Qaz Application Priority data */
432 struct i40e_dcb_app_priority_table {
433 u8 priority;
434 u8 selector;
435 u16 protocolid;
436 };
437
438 struct i40e_dcbx_config {
439 u8 dcbx_mode;
440 #define I40E_DCBX_MODE_CEE 0x1
441 #define I40E_DCBX_MODE_IEEE 0x2
442 u32 numapps;
443 struct i40e_dcb_ets_config etscfg;
444 struct i40e_dcb_ets_config etsrec;
445 struct i40e_dcb_pfc_config pfc;
446 struct i40e_dcb_app_priority_table app[I40E_DCBX_MAX_APPS];
447 };
448
449 /* Port hardware description */
450 struct i40e_hw {
451 u8 __iomem *hw_addr;
452 void *back;
453
454 /* subsystem structs */
455 struct i40e_phy_info phy;
456 struct i40e_mac_info mac;
457 struct i40e_bus_info bus;
458 struct i40e_nvm_info nvm;
459 struct i40e_fc_info fc;
460
461 /* pci info */
462 u16 device_id;
463 u16 vendor_id;
464 u16 subsystem_device_id;
465 u16 subsystem_vendor_id;
466 u8 revision_id;
467 u8 port;
468 bool adapter_stopped;
469
470 /* capabilities for entire device and PCI func */
471 struct i40e_hw_capabilities dev_caps;
472 struct i40e_hw_capabilities func_caps;
473
474 /* Flow Director shared filter space */
475 u16 fdir_shared_filter_count;
476
477 /* device profile info */
478 u8 pf_id;
479 u16 main_vsi_seid;
480
481 /* for multi-function MACs */
482 u16 partition_id;
483 u16 num_partitions;
484 u16 num_ports;
485
486 /* Closest numa node to the device */
487 u16 numa_node;
488
489 /* Admin Queue info */
490 struct i40e_adminq_info aq;
491
492 /* state of nvm update process */
493 enum i40e_nvmupd_state nvmupd_state;
494
495 /* HMC info */
496 struct i40e_hmc_info hmc; /* HMC info struct */
497
498 /* LLDP/DCBX Status */
499 u16 dcbx_status;
500
501 /* DCBX info */
502 struct i40e_dcbx_config local_dcbx_config;
503 struct i40e_dcbx_config remote_dcbx_config;
504
505 /* debug mask */
506 u32 debug_mask;
507 char err_str[16];
508 };
509
510 static inline bool i40e_is_vf(struct i40e_hw *hw)
511 {
512 return (hw->mac.type == I40E_MAC_VF ||
513 hw->mac.type == I40E_MAC_X722_VF);
514 }
515
516 struct i40e_driver_version {
517 u8 major_version;
518 u8 minor_version;
519 u8 build_version;
520 u8 subbuild_version;
521 u8 driver_string[32];
522 };
523
524 /* RX Descriptors */
525 union i40e_16byte_rx_desc {
526 struct {
527 __le64 pkt_addr; /* Packet buffer address */
528 __le64 hdr_addr; /* Header buffer address */
529 } read;
530 struct {
531 struct {
532 struct {
533 union {
534 __le16 mirroring_status;
535 __le16 fcoe_ctx_id;
536 } mirr_fcoe;
537 __le16 l2tag1;
538 } lo_dword;
539 union {
540 __le32 rss; /* RSS Hash */
541 __le32 fd_id; /* Flow director filter id */
542 __le32 fcoe_param; /* FCoE DDP Context id */
543 } hi_dword;
544 } qword0;
545 struct {
546 /* ext status/error/pktype/length */
547 __le64 status_error_len;
548 } qword1;
549 } wb; /* writeback */
550 };
551
552 union i40e_32byte_rx_desc {
553 struct {
554 __le64 pkt_addr; /* Packet buffer address */
555 __le64 hdr_addr; /* Header buffer address */
556 /* bit 0 of hdr_buffer_addr is DD bit */
557 __le64 rsvd1;
558 __le64 rsvd2;
559 } read;
560 struct {
561 struct {
562 struct {
563 union {
564 __le16 mirroring_status;
565 __le16 fcoe_ctx_id;
566 } mirr_fcoe;
567 __le16 l2tag1;
568 } lo_dword;
569 union {
570 __le32 rss; /* RSS Hash */
571 __le32 fcoe_param; /* FCoE DDP Context id */
572 /* Flow director filter id in case of
573 * Programming status desc WB
574 */
575 __le32 fd_id;
576 } hi_dword;
577 } qword0;
578 struct {
579 /* status/error/pktype/length */
580 __le64 status_error_len;
581 } qword1;
582 struct {
583 __le16 ext_status; /* extended status */
584 __le16 rsvd;
585 __le16 l2tag2_1;
586 __le16 l2tag2_2;
587 } qword2;
588 struct {
589 union {
590 __le32 flex_bytes_lo;
591 __le32 pe_status;
592 } lo_dword;
593 union {
594 __le32 flex_bytes_hi;
595 __le32 fd_id;
596 } hi_dword;
597 } qword3;
598 } wb; /* writeback */
599 };
600
601 enum i40e_rx_desc_status_bits {
602 /* Note: These are predefined bit offsets */
603 I40E_RX_DESC_STATUS_DD_SHIFT = 0,
604 I40E_RX_DESC_STATUS_EOF_SHIFT = 1,
605 I40E_RX_DESC_STATUS_L2TAG1P_SHIFT = 2,
606 I40E_RX_DESC_STATUS_L3L4P_SHIFT = 3,
607 I40E_RX_DESC_STATUS_CRCP_SHIFT = 4,
608 I40E_RX_DESC_STATUS_TSYNINDX_SHIFT = 5, /* 2 BITS */
609 I40E_RX_DESC_STATUS_TSYNVALID_SHIFT = 7,
610 I40E_RX_DESC_STATUS_PIF_SHIFT = 8,
611 I40E_RX_DESC_STATUS_UMBCAST_SHIFT = 9, /* 2 BITS */
612 I40E_RX_DESC_STATUS_FLM_SHIFT = 11,
613 I40E_RX_DESC_STATUS_FLTSTAT_SHIFT = 12, /* 2 BITS */
614 I40E_RX_DESC_STATUS_LPBK_SHIFT = 14,
615 I40E_RX_DESC_STATUS_IPV6EXADD_SHIFT = 15,
616 I40E_RX_DESC_STATUS_RESERVED_SHIFT = 16, /* 2 BITS */
617 I40E_RX_DESC_STATUS_UDP_0_SHIFT = 18,
618 I40E_RX_DESC_STATUS_LAST /* this entry must be last!!! */
619 };
620
621 #define I40E_RXD_QW1_STATUS_SHIFT 0
622 #define I40E_RXD_QW1_STATUS_MASK ((BIT(I40E_RX_DESC_STATUS_LAST) - 1) \
623 << I40E_RXD_QW1_STATUS_SHIFT)
624
625 #define I40E_RXD_QW1_STATUS_TSYNINDX_SHIFT I40E_RX_DESC_STATUS_TSYNINDX_SHIFT
626 #define I40E_RXD_QW1_STATUS_TSYNINDX_MASK (0x3UL << \
627 I40E_RXD_QW1_STATUS_TSYNINDX_SHIFT)
628
629 #define I40E_RXD_QW1_STATUS_TSYNVALID_SHIFT I40E_RX_DESC_STATUS_TSYNVALID_SHIFT
630 #define I40E_RXD_QW1_STATUS_TSYNVALID_MASK \
631 BIT_ULL(I40E_RXD_QW1_STATUS_TSYNVALID_SHIFT)
632
633 enum i40e_rx_desc_fltstat_values {
634 I40E_RX_DESC_FLTSTAT_NO_DATA = 0,
635 I40E_RX_DESC_FLTSTAT_RSV_FD_ID = 1, /* 16byte desc? FD_ID : RSV */
636 I40E_RX_DESC_FLTSTAT_RSV = 2,
637 I40E_RX_DESC_FLTSTAT_RSS_HASH = 3,
638 };
639
640 #define I40E_RXD_QW1_ERROR_SHIFT 19
641 #define I40E_RXD_QW1_ERROR_MASK (0xFFUL << I40E_RXD_QW1_ERROR_SHIFT)
642
643 enum i40e_rx_desc_error_bits {
644 /* Note: These are predefined bit offsets */
645 I40E_RX_DESC_ERROR_RXE_SHIFT = 0,
646 I40E_RX_DESC_ERROR_RECIPE_SHIFT = 1,
647 I40E_RX_DESC_ERROR_HBO_SHIFT = 2,
648 I40E_RX_DESC_ERROR_L3L4E_SHIFT = 3, /* 3 BITS */
649 I40E_RX_DESC_ERROR_IPE_SHIFT = 3,
650 I40E_RX_DESC_ERROR_L4E_SHIFT = 4,
651 I40E_RX_DESC_ERROR_EIPE_SHIFT = 5,
652 I40E_RX_DESC_ERROR_OVERSIZE_SHIFT = 6,
653 I40E_RX_DESC_ERROR_PPRS_SHIFT = 7
654 };
655
656 enum i40e_rx_desc_error_l3l4e_fcoe_masks {
657 I40E_RX_DESC_ERROR_L3L4E_NONE = 0,
658 I40E_RX_DESC_ERROR_L3L4E_PROT = 1,
659 I40E_RX_DESC_ERROR_L3L4E_FC = 2,
660 I40E_RX_DESC_ERROR_L3L4E_DMAC_ERR = 3,
661 I40E_RX_DESC_ERROR_L3L4E_DMAC_WARN = 4
662 };
663
664 #define I40E_RXD_QW1_PTYPE_SHIFT 30
665 #define I40E_RXD_QW1_PTYPE_MASK (0xFFULL << I40E_RXD_QW1_PTYPE_SHIFT)
666
667 /* Packet type non-ip values */
668 enum i40e_rx_l2_ptype {
669 I40E_RX_PTYPE_L2_RESERVED = 0,
670 I40E_RX_PTYPE_L2_MAC_PAY2 = 1,
671 I40E_RX_PTYPE_L2_TIMESYNC_PAY2 = 2,
672 I40E_RX_PTYPE_L2_FIP_PAY2 = 3,
673 I40E_RX_PTYPE_L2_OUI_PAY2 = 4,
674 I40E_RX_PTYPE_L2_MACCNTRL_PAY2 = 5,
675 I40E_RX_PTYPE_L2_LLDP_PAY2 = 6,
676 I40E_RX_PTYPE_L2_ECP_PAY2 = 7,
677 I40E_RX_PTYPE_L2_EVB_PAY2 = 8,
678 I40E_RX_PTYPE_L2_QCN_PAY2 = 9,
679 I40E_RX_PTYPE_L2_EAPOL_PAY2 = 10,
680 I40E_RX_PTYPE_L2_ARP = 11,
681 I40E_RX_PTYPE_L2_FCOE_PAY3 = 12,
682 I40E_RX_PTYPE_L2_FCOE_FCDATA_PAY3 = 13,
683 I40E_RX_PTYPE_L2_FCOE_FCRDY_PAY3 = 14,
684 I40E_RX_PTYPE_L2_FCOE_FCRSP_PAY3 = 15,
685 I40E_RX_PTYPE_L2_FCOE_FCOTHER_PA = 16,
686 I40E_RX_PTYPE_L2_FCOE_VFT_PAY3 = 17,
687 I40E_RX_PTYPE_L2_FCOE_VFT_FCDATA = 18,
688 I40E_RX_PTYPE_L2_FCOE_VFT_FCRDY = 19,
689 I40E_RX_PTYPE_L2_FCOE_VFT_FCRSP = 20,
690 I40E_RX_PTYPE_L2_FCOE_VFT_FCOTHER = 21,
691 I40E_RX_PTYPE_GRENAT4_MAC_PAY3 = 58,
692 I40E_RX_PTYPE_GRENAT4_MACVLAN_IPV6_ICMP_PAY4 = 87,
693 I40E_RX_PTYPE_GRENAT6_MAC_PAY3 = 124,
694 I40E_RX_PTYPE_GRENAT6_MACVLAN_IPV6_ICMP_PAY4 = 153
695 };
696
697 struct i40e_rx_ptype_decoded {
698 u32 ptype:8;
699 u32 known:1;
700 u32 outer_ip:1;
701 u32 outer_ip_ver:1;
702 u32 outer_frag:1;
703 u32 tunnel_type:3;
704 u32 tunnel_end_prot:2;
705 u32 tunnel_end_frag:1;
706 u32 inner_prot:4;
707 u32 payload_layer:3;
708 };
709
710 enum i40e_rx_ptype_outer_ip {
711 I40E_RX_PTYPE_OUTER_L2 = 0,
712 I40E_RX_PTYPE_OUTER_IP = 1
713 };
714
715 enum i40e_rx_ptype_outer_ip_ver {
716 I40E_RX_PTYPE_OUTER_NONE = 0,
717 I40E_RX_PTYPE_OUTER_IPV4 = 0,
718 I40E_RX_PTYPE_OUTER_IPV6 = 1
719 };
720
721 enum i40e_rx_ptype_outer_fragmented {
722 I40E_RX_PTYPE_NOT_FRAG = 0,
723 I40E_RX_PTYPE_FRAG = 1
724 };
725
726 enum i40e_rx_ptype_tunnel_type {
727 I40E_RX_PTYPE_TUNNEL_NONE = 0,
728 I40E_RX_PTYPE_TUNNEL_IP_IP = 1,
729 I40E_RX_PTYPE_TUNNEL_IP_GRENAT = 2,
730 I40E_RX_PTYPE_TUNNEL_IP_GRENAT_MAC = 3,
731 I40E_RX_PTYPE_TUNNEL_IP_GRENAT_MAC_VLAN = 4,
732 };
733
734 enum i40e_rx_ptype_tunnel_end_prot {
735 I40E_RX_PTYPE_TUNNEL_END_NONE = 0,
736 I40E_RX_PTYPE_TUNNEL_END_IPV4 = 1,
737 I40E_RX_PTYPE_TUNNEL_END_IPV6 = 2,
738 };
739
740 enum i40e_rx_ptype_inner_prot {
741 I40E_RX_PTYPE_INNER_PROT_NONE = 0,
742 I40E_RX_PTYPE_INNER_PROT_UDP = 1,
743 I40E_RX_PTYPE_INNER_PROT_TCP = 2,
744 I40E_RX_PTYPE_INNER_PROT_SCTP = 3,
745 I40E_RX_PTYPE_INNER_PROT_ICMP = 4,
746 I40E_RX_PTYPE_INNER_PROT_TIMESYNC = 5
747 };
748
749 enum i40e_rx_ptype_payload_layer {
750 I40E_RX_PTYPE_PAYLOAD_LAYER_NONE = 0,
751 I40E_RX_PTYPE_PAYLOAD_LAYER_PAY2 = 1,
752 I40E_RX_PTYPE_PAYLOAD_LAYER_PAY3 = 2,
753 I40E_RX_PTYPE_PAYLOAD_LAYER_PAY4 = 3,
754 };
755
756 #define I40E_RXD_QW1_LENGTH_PBUF_SHIFT 38
757 #define I40E_RXD_QW1_LENGTH_PBUF_MASK (0x3FFFULL << \
758 I40E_RXD_QW1_LENGTH_PBUF_SHIFT)
759
760 #define I40E_RXD_QW1_LENGTH_HBUF_SHIFT 52
761 #define I40E_RXD_QW1_LENGTH_HBUF_MASK (0x7FFULL << \
762 I40E_RXD_QW1_LENGTH_HBUF_SHIFT)
763
764 #define I40E_RXD_QW1_LENGTH_SPH_SHIFT 63
765 #define I40E_RXD_QW1_LENGTH_SPH_MASK BIT_ULL(I40E_RXD_QW1_LENGTH_SPH_SHIFT)
766
767 enum i40e_rx_desc_ext_status_bits {
768 /* Note: These are predefined bit offsets */
769 I40E_RX_DESC_EXT_STATUS_L2TAG2P_SHIFT = 0,
770 I40E_RX_DESC_EXT_STATUS_L2TAG3P_SHIFT = 1,
771 I40E_RX_DESC_EXT_STATUS_FLEXBL_SHIFT = 2, /* 2 BITS */
772 I40E_RX_DESC_EXT_STATUS_FLEXBH_SHIFT = 4, /* 2 BITS */
773 I40E_RX_DESC_EXT_STATUS_FDLONGB_SHIFT = 9,
774 I40E_RX_DESC_EXT_STATUS_FCOELONGB_SHIFT = 10,
775 I40E_RX_DESC_EXT_STATUS_PELONGB_SHIFT = 11,
776 };
777
778 enum i40e_rx_desc_pe_status_bits {
779 /* Note: These are predefined bit offsets */
780 I40E_RX_DESC_PE_STATUS_QPID_SHIFT = 0, /* 18 BITS */
781 I40E_RX_DESC_PE_STATUS_L4PORT_SHIFT = 0, /* 16 BITS */
782 I40E_RX_DESC_PE_STATUS_IPINDEX_SHIFT = 16, /* 8 BITS */
783 I40E_RX_DESC_PE_STATUS_QPIDHIT_SHIFT = 24,
784 I40E_RX_DESC_PE_STATUS_APBVTHIT_SHIFT = 25,
785 I40E_RX_DESC_PE_STATUS_PORTV_SHIFT = 26,
786 I40E_RX_DESC_PE_STATUS_URG_SHIFT = 27,
787 I40E_RX_DESC_PE_STATUS_IPFRAG_SHIFT = 28,
788 I40E_RX_DESC_PE_STATUS_IPOPT_SHIFT = 29
789 };
790
791 #define I40E_RX_PROG_STATUS_DESC_LENGTH_SHIFT 38
792 #define I40E_RX_PROG_STATUS_DESC_LENGTH 0x2000000
793
794 #define I40E_RX_PROG_STATUS_DESC_QW1_PROGID_SHIFT 2
795 #define I40E_RX_PROG_STATUS_DESC_QW1_PROGID_MASK (0x7UL << \
796 I40E_RX_PROG_STATUS_DESC_QW1_PROGID_SHIFT)
797
798 #define I40E_RX_PROG_STATUS_DESC_QW1_ERROR_SHIFT 19
799 #define I40E_RX_PROG_STATUS_DESC_QW1_ERROR_MASK (0x3FUL << \
800 I40E_RX_PROG_STATUS_DESC_QW1_ERROR_SHIFT)
801
802 enum i40e_rx_prog_status_desc_status_bits {
803 /* Note: These are predefined bit offsets */
804 I40E_RX_PROG_STATUS_DESC_DD_SHIFT = 0,
805 I40E_RX_PROG_STATUS_DESC_PROG_ID_SHIFT = 2 /* 3 BITS */
806 };
807
808 enum i40e_rx_prog_status_desc_prog_id_masks {
809 I40E_RX_PROG_STATUS_DESC_FD_FILTER_STATUS = 1,
810 I40E_RX_PROG_STATUS_DESC_FCOE_CTXT_PROG_STATUS = 2,
811 I40E_RX_PROG_STATUS_DESC_FCOE_CTXT_INVL_STATUS = 4,
812 };
813
814 enum i40e_rx_prog_status_desc_error_bits {
815 /* Note: These are predefined bit offsets */
816 I40E_RX_PROG_STATUS_DESC_FD_TBL_FULL_SHIFT = 0,
817 I40E_RX_PROG_STATUS_DESC_NO_FD_ENTRY_SHIFT = 1,
818 I40E_RX_PROG_STATUS_DESC_FCOE_TBL_FULL_SHIFT = 2,
819 I40E_RX_PROG_STATUS_DESC_FCOE_CONFLICT_SHIFT = 3
820 };
821
822 /* TX Descriptor */
823 struct i40e_tx_desc {
824 __le64 buffer_addr; /* Address of descriptor's data buf */
825 __le64 cmd_type_offset_bsz;
826 };
827
828 #define I40E_TXD_QW1_DTYPE_SHIFT 0
829 #define I40E_TXD_QW1_DTYPE_MASK (0xFUL << I40E_TXD_QW1_DTYPE_SHIFT)
830
831 enum i40e_tx_desc_dtype_value {
832 I40E_TX_DESC_DTYPE_DATA = 0x0,
833 I40E_TX_DESC_DTYPE_NOP = 0x1, /* same as Context desc */
834 I40E_TX_DESC_DTYPE_CONTEXT = 0x1,
835 I40E_TX_DESC_DTYPE_FCOE_CTX = 0x2,
836 I40E_TX_DESC_DTYPE_FILTER_PROG = 0x8,
837 I40E_TX_DESC_DTYPE_DDP_CTX = 0x9,
838 I40E_TX_DESC_DTYPE_FLEX_DATA = 0xB,
839 I40E_TX_DESC_DTYPE_FLEX_CTX_1 = 0xC,
840 I40E_TX_DESC_DTYPE_FLEX_CTX_2 = 0xD,
841 I40E_TX_DESC_DTYPE_DESC_DONE = 0xF
842 };
843
844 #define I40E_TXD_QW1_CMD_SHIFT 4
845 #define I40E_TXD_QW1_CMD_MASK (0x3FFUL << I40E_TXD_QW1_CMD_SHIFT)
846
847 enum i40e_tx_desc_cmd_bits {
848 I40E_TX_DESC_CMD_EOP = 0x0001,
849 I40E_TX_DESC_CMD_RS = 0x0002,
850 I40E_TX_DESC_CMD_ICRC = 0x0004,
851 I40E_TX_DESC_CMD_IL2TAG1 = 0x0008,
852 I40E_TX_DESC_CMD_DUMMY = 0x0010,
853 I40E_TX_DESC_CMD_IIPT_NONIP = 0x0000, /* 2 BITS */
854 I40E_TX_DESC_CMD_IIPT_IPV6 = 0x0020, /* 2 BITS */
855 I40E_TX_DESC_CMD_IIPT_IPV4 = 0x0040, /* 2 BITS */
856 I40E_TX_DESC_CMD_IIPT_IPV4_CSUM = 0x0060, /* 2 BITS */
857 I40E_TX_DESC_CMD_FCOET = 0x0080,
858 I40E_TX_DESC_CMD_L4T_EOFT_UNK = 0x0000, /* 2 BITS */
859 I40E_TX_DESC_CMD_L4T_EOFT_TCP = 0x0100, /* 2 BITS */
860 I40E_TX_DESC_CMD_L4T_EOFT_SCTP = 0x0200, /* 2 BITS */
861 I40E_TX_DESC_CMD_L4T_EOFT_UDP = 0x0300, /* 2 BITS */
862 I40E_TX_DESC_CMD_L4T_EOFT_EOF_N = 0x0000, /* 2 BITS */
863 I40E_TX_DESC_CMD_L4T_EOFT_EOF_T = 0x0100, /* 2 BITS */
864 I40E_TX_DESC_CMD_L4T_EOFT_EOF_NI = 0x0200, /* 2 BITS */
865 I40E_TX_DESC_CMD_L4T_EOFT_EOF_A = 0x0300, /* 2 BITS */
866 };
867
868 #define I40E_TXD_QW1_OFFSET_SHIFT 16
869 #define I40E_TXD_QW1_OFFSET_MASK (0x3FFFFULL << \
870 I40E_TXD_QW1_OFFSET_SHIFT)
871
872 enum i40e_tx_desc_length_fields {
873 /* Note: These are predefined bit offsets */
874 I40E_TX_DESC_LENGTH_MACLEN_SHIFT = 0, /* 7 BITS */
875 I40E_TX_DESC_LENGTH_IPLEN_SHIFT = 7, /* 7 BITS */
876 I40E_TX_DESC_LENGTH_L4_FC_LEN_SHIFT = 14 /* 4 BITS */
877 };
878
879 #define I40E_TXD_QW1_TX_BUF_SZ_SHIFT 34
880 #define I40E_TXD_QW1_TX_BUF_SZ_MASK (0x3FFFULL << \
881 I40E_TXD_QW1_TX_BUF_SZ_SHIFT)
882
883 #define I40E_TXD_QW1_L2TAG1_SHIFT 48
884 #define I40E_TXD_QW1_L2TAG1_MASK (0xFFFFULL << I40E_TXD_QW1_L2TAG1_SHIFT)
885
886 /* Context descriptors */
887 struct i40e_tx_context_desc {
888 __le32 tunneling_params;
889 __le16 l2tag2;
890 __le16 rsvd;
891 __le64 type_cmd_tso_mss;
892 };
893
894 #define I40E_TXD_CTX_QW1_DTYPE_SHIFT 0
895 #define I40E_TXD_CTX_QW1_DTYPE_MASK (0xFUL << I40E_TXD_CTX_QW1_DTYPE_SHIFT)
896
897 #define I40E_TXD_CTX_QW1_CMD_SHIFT 4
898 #define I40E_TXD_CTX_QW1_CMD_MASK (0xFFFFUL << I40E_TXD_CTX_QW1_CMD_SHIFT)
899
900 enum i40e_tx_ctx_desc_cmd_bits {
901 I40E_TX_CTX_DESC_TSO = 0x01,
902 I40E_TX_CTX_DESC_TSYN = 0x02,
903 I40E_TX_CTX_DESC_IL2TAG2 = 0x04,
904 I40E_TX_CTX_DESC_IL2TAG2_IL2H = 0x08,
905 I40E_TX_CTX_DESC_SWTCH_NOTAG = 0x00,
906 I40E_TX_CTX_DESC_SWTCH_UPLINK = 0x10,
907 I40E_TX_CTX_DESC_SWTCH_LOCAL = 0x20,
908 I40E_TX_CTX_DESC_SWTCH_VSI = 0x30,
909 I40E_TX_CTX_DESC_SWPE = 0x40
910 };
911
912 #define I40E_TXD_CTX_QW1_TSO_LEN_SHIFT 30
913 #define I40E_TXD_CTX_QW1_TSO_LEN_MASK (0x3FFFFULL << \
914 I40E_TXD_CTX_QW1_TSO_LEN_SHIFT)
915
916 #define I40E_TXD_CTX_QW1_MSS_SHIFT 50
917 #define I40E_TXD_CTX_QW1_MSS_MASK (0x3FFFULL << \
918 I40E_TXD_CTX_QW1_MSS_SHIFT)
919
920 #define I40E_TXD_CTX_QW1_VSI_SHIFT 50
921 #define I40E_TXD_CTX_QW1_VSI_MASK (0x1FFULL << I40E_TXD_CTX_QW1_VSI_SHIFT)
922
923 #define I40E_TXD_CTX_QW0_EXT_IP_SHIFT 0
924 #define I40E_TXD_CTX_QW0_EXT_IP_MASK (0x3ULL << \
925 I40E_TXD_CTX_QW0_EXT_IP_SHIFT)
926
927 enum i40e_tx_ctx_desc_eipt_offload {
928 I40E_TX_CTX_EXT_IP_NONE = 0x0,
929 I40E_TX_CTX_EXT_IP_IPV6 = 0x1,
930 I40E_TX_CTX_EXT_IP_IPV4_NO_CSUM = 0x2,
931 I40E_TX_CTX_EXT_IP_IPV4 = 0x3
932 };
933
934 #define I40E_TXD_CTX_QW0_EXT_IPLEN_SHIFT 2
935 #define I40E_TXD_CTX_QW0_EXT_IPLEN_MASK (0x3FULL << \
936 I40E_TXD_CTX_QW0_EXT_IPLEN_SHIFT)
937
938 #define I40E_TXD_CTX_QW0_NATT_SHIFT 9
939 #define I40E_TXD_CTX_QW0_NATT_MASK (0x3ULL << I40E_TXD_CTX_QW0_NATT_SHIFT)
940
941 #define I40E_TXD_CTX_UDP_TUNNELING BIT_ULL(I40E_TXD_CTX_QW0_NATT_SHIFT)
942 #define I40E_TXD_CTX_GRE_TUNNELING (0x2ULL << I40E_TXD_CTX_QW0_NATT_SHIFT)
943
944 #define I40E_TXD_CTX_QW0_EIP_NOINC_SHIFT 11
945 #define I40E_TXD_CTX_QW0_EIP_NOINC_MASK \
946 BIT_ULL(I40E_TXD_CTX_QW0_EIP_NOINC_SHIFT)
947
948 #define I40E_TXD_CTX_EIP_NOINC_IPID_CONST I40E_TXD_CTX_QW0_EIP_NOINC_MASK
949
950 #define I40E_TXD_CTX_QW0_NATLEN_SHIFT 12
951 #define I40E_TXD_CTX_QW0_NATLEN_MASK (0X7FULL << \
952 I40E_TXD_CTX_QW0_NATLEN_SHIFT)
953
954 #define I40E_TXD_CTX_QW0_DECTTL_SHIFT 19
955 #define I40E_TXD_CTX_QW0_DECTTL_MASK (0xFULL << \
956 I40E_TXD_CTX_QW0_DECTTL_SHIFT)
957
958 struct i40e_filter_program_desc {
959 __le32 qindex_flex_ptype_vsi;
960 __le32 rsvd;
961 __le32 dtype_cmd_cntindex;
962 __le32 fd_id;
963 };
964 #define I40E_TXD_FLTR_QW0_QINDEX_SHIFT 0
965 #define I40E_TXD_FLTR_QW0_QINDEX_MASK (0x7FFUL << \
966 I40E_TXD_FLTR_QW0_QINDEX_SHIFT)
967 #define I40E_TXD_FLTR_QW0_FLEXOFF_SHIFT 11
968 #define I40E_TXD_FLTR_QW0_FLEXOFF_MASK (0x7UL << \
969 I40E_TXD_FLTR_QW0_FLEXOFF_SHIFT)
970 #define I40E_TXD_FLTR_QW0_PCTYPE_SHIFT 17
971 #define I40E_TXD_FLTR_QW0_PCTYPE_MASK (0x3FUL << \
972 I40E_TXD_FLTR_QW0_PCTYPE_SHIFT)
973
974 /* Packet Classifier Types for filters */
975 enum i40e_filter_pctype {
976 /* Note: Values 0-28 are reserved for future use.
977 * Value 29, 30, 32 are not supported on XL710 and X710.
978 */
979 I40E_FILTER_PCTYPE_NONF_UNICAST_IPV4_UDP = 29,
980 I40E_FILTER_PCTYPE_NONF_MULTICAST_IPV4_UDP = 30,
981 I40E_FILTER_PCTYPE_NONF_IPV4_UDP = 31,
982 I40E_FILTER_PCTYPE_NONF_IPV4_TCP_SYN_NO_ACK = 32,
983 I40E_FILTER_PCTYPE_NONF_IPV4_TCP = 33,
984 I40E_FILTER_PCTYPE_NONF_IPV4_SCTP = 34,
985 I40E_FILTER_PCTYPE_NONF_IPV4_OTHER = 35,
986 I40E_FILTER_PCTYPE_FRAG_IPV4 = 36,
987 /* Note: Values 37-38 are reserved for future use.
988 * Value 39, 40, 42 are not supported on XL710 and X710.
989 */
990 I40E_FILTER_PCTYPE_NONF_UNICAST_IPV6_UDP = 39,
991 I40E_FILTER_PCTYPE_NONF_MULTICAST_IPV6_UDP = 40,
992 I40E_FILTER_PCTYPE_NONF_IPV6_UDP = 41,
993 I40E_FILTER_PCTYPE_NONF_IPV6_TCP_SYN_NO_ACK = 42,
994 I40E_FILTER_PCTYPE_NONF_IPV6_TCP = 43,
995 I40E_FILTER_PCTYPE_NONF_IPV6_SCTP = 44,
996 I40E_FILTER_PCTYPE_NONF_IPV6_OTHER = 45,
997 I40E_FILTER_PCTYPE_FRAG_IPV6 = 46,
998 /* Note: Value 47 is reserved for future use */
999 I40E_FILTER_PCTYPE_FCOE_OX = 48,
1000 I40E_FILTER_PCTYPE_FCOE_RX = 49,
1001 I40E_FILTER_PCTYPE_FCOE_OTHER = 50,
1002 /* Note: Values 51-62 are reserved for future use */
1003 I40E_FILTER_PCTYPE_L2_PAYLOAD = 63,
1004 };
1005
1006 enum i40e_filter_program_desc_dest {
1007 I40E_FILTER_PROGRAM_DESC_DEST_DROP_PACKET = 0x0,
1008 I40E_FILTER_PROGRAM_DESC_DEST_DIRECT_PACKET_QINDEX = 0x1,
1009 I40E_FILTER_PROGRAM_DESC_DEST_DIRECT_PACKET_OTHER = 0x2,
1010 };
1011
1012 enum i40e_filter_program_desc_fd_status {
1013 I40E_FILTER_PROGRAM_DESC_FD_STATUS_NONE = 0x0,
1014 I40E_FILTER_PROGRAM_DESC_FD_STATUS_FD_ID = 0x1,
1015 I40E_FILTER_PROGRAM_DESC_FD_STATUS_FD_ID_4FLEX_BYTES = 0x2,
1016 I40E_FILTER_PROGRAM_DESC_FD_STATUS_8FLEX_BYTES = 0x3,
1017 };
1018
1019 #define I40E_TXD_FLTR_QW0_DEST_VSI_SHIFT 23
1020 #define I40E_TXD_FLTR_QW0_DEST_VSI_MASK \
1021 BIT_ULL(I40E_TXD_FLTR_QW0_DEST_VSI_SHIFT)
1022
1023 #define I40E_TXD_FLTR_QW1_CMD_SHIFT 4
1024 #define I40E_TXD_FLTR_QW1_CMD_MASK (0xFFFFULL << \
1025 I40E_TXD_FLTR_QW1_CMD_SHIFT)
1026
1027 #define I40E_TXD_FLTR_QW1_PCMD_SHIFT (0x0ULL + I40E_TXD_FLTR_QW1_CMD_SHIFT)
1028 #define I40E_TXD_FLTR_QW1_PCMD_MASK (0x7ULL << I40E_TXD_FLTR_QW1_PCMD_SHIFT)
1029
1030 enum i40e_filter_program_desc_pcmd {
1031 I40E_FILTER_PROGRAM_DESC_PCMD_ADD_UPDATE = 0x1,
1032 I40E_FILTER_PROGRAM_DESC_PCMD_REMOVE = 0x2,
1033 };
1034
1035 #define I40E_TXD_FLTR_QW1_DEST_SHIFT (0x3ULL + I40E_TXD_FLTR_QW1_CMD_SHIFT)
1036 #define I40E_TXD_FLTR_QW1_DEST_MASK (0x3ULL << I40E_TXD_FLTR_QW1_DEST_SHIFT)
1037
1038 #define I40E_TXD_FLTR_QW1_CNT_ENA_SHIFT (0x7ULL + I40E_TXD_FLTR_QW1_CMD_SHIFT)
1039 #define I40E_TXD_FLTR_QW1_CNT_ENA_MASK BIT_ULL(I40E_TXD_FLTR_QW1_CNT_ENA_SHIFT)
1040
1041 #define I40E_TXD_FLTR_QW1_FD_STATUS_SHIFT (0x9ULL + \
1042 I40E_TXD_FLTR_QW1_CMD_SHIFT)
1043 #define I40E_TXD_FLTR_QW1_FD_STATUS_MASK (0x3ULL << \
1044 I40E_TXD_FLTR_QW1_FD_STATUS_SHIFT)
1045
1046 #define I40E_TXD_FLTR_QW1_CNTINDEX_SHIFT 20
1047 #define I40E_TXD_FLTR_QW1_CNTINDEX_MASK (0x1FFUL << \
1048 I40E_TXD_FLTR_QW1_CNTINDEX_SHIFT)
1049
1050 enum i40e_filter_type {
1051 I40E_FLOW_DIRECTOR_FLTR = 0,
1052 I40E_PE_QUAD_HASH_FLTR = 1,
1053 I40E_ETHERTYPE_FLTR,
1054 I40E_FCOE_CTX_FLTR,
1055 I40E_MAC_VLAN_FLTR,
1056 I40E_HASH_FLTR
1057 };
1058
1059 struct i40e_vsi_context {
1060 u16 seid;
1061 u16 uplink_seid;
1062 u16 vsi_number;
1063 u16 vsis_allocated;
1064 u16 vsis_unallocated;
1065 u16 flags;
1066 u8 pf_num;
1067 u8 vf_num;
1068 u8 connection_type;
1069 struct i40e_aqc_vsi_properties_data info;
1070 };
1071
1072 struct i40e_veb_context {
1073 u16 seid;
1074 u16 uplink_seid;
1075 u16 veb_number;
1076 u16 vebs_allocated;
1077 u16 vebs_unallocated;
1078 u16 flags;
1079 struct i40e_aqc_get_veb_parameters_completion info;
1080 };
1081
1082 /* Statistics collected by each port, VSI, VEB, and S-channel */
1083 struct i40e_eth_stats {
1084 u64 rx_bytes; /* gorc */
1085 u64 rx_unicast; /* uprc */
1086 u64 rx_multicast; /* mprc */
1087 u64 rx_broadcast; /* bprc */
1088 u64 rx_discards; /* rdpc */
1089 u64 rx_unknown_protocol; /* rupp */
1090 u64 tx_bytes; /* gotc */
1091 u64 tx_unicast; /* uptc */
1092 u64 tx_multicast; /* mptc */
1093 u64 tx_broadcast; /* bptc */
1094 u64 tx_discards; /* tdpc */
1095 u64 tx_errors; /* tepc */
1096 };
1097
1098 #ifdef I40E_FCOE
1099 /* Statistics collected per function for FCoE */
1100 struct i40e_fcoe_stats {
1101 u64 rx_fcoe_packets; /* fcoeprc */
1102 u64 rx_fcoe_dwords; /* focedwrc */
1103 u64 rx_fcoe_dropped; /* fcoerpdc */
1104 u64 tx_fcoe_packets; /* fcoeptc */
1105 u64 tx_fcoe_dwords; /* focedwtc */
1106 u64 fcoe_bad_fccrc; /* fcoecrc */
1107 u64 fcoe_last_error; /* fcoelast */
1108 u64 fcoe_ddp_count; /* fcoeddpc */
1109 };
1110
1111 /* offset to per function FCoE statistics block */
1112 #define I40E_FCOE_VF_STAT_OFFSET 0
1113 #define I40E_FCOE_PF_STAT_OFFSET 128
1114 #define I40E_FCOE_STAT_MAX (I40E_FCOE_PF_STAT_OFFSET + I40E_MAX_PF)
1115
1116 #endif
1117 /* Statistics collected by the MAC */
1118 struct i40e_hw_port_stats {
1119 /* eth stats collected by the port */
1120 struct i40e_eth_stats eth;
1121
1122 /* additional port specific stats */
1123 u64 tx_dropped_link_down; /* tdold */
1124 u64 crc_errors; /* crcerrs */
1125 u64 illegal_bytes; /* illerrc */
1126 u64 error_bytes; /* errbc */
1127 u64 mac_local_faults; /* mlfc */
1128 u64 mac_remote_faults; /* mrfc */
1129 u64 rx_length_errors; /* rlec */
1130 u64 link_xon_rx; /* lxonrxc */
1131 u64 link_xoff_rx; /* lxoffrxc */
1132 u64 priority_xon_rx[8]; /* pxonrxc[8] */
1133 u64 priority_xoff_rx[8]; /* pxoffrxc[8] */
1134 u64 link_xon_tx; /* lxontxc */
1135 u64 link_xoff_tx; /* lxofftxc */
1136 u64 priority_xon_tx[8]; /* pxontxc[8] */
1137 u64 priority_xoff_tx[8]; /* pxofftxc[8] */
1138 u64 priority_xon_2_xoff[8]; /* pxon2offc[8] */
1139 u64 rx_size_64; /* prc64 */
1140 u64 rx_size_127; /* prc127 */
1141 u64 rx_size_255; /* prc255 */
1142 u64 rx_size_511; /* prc511 */
1143 u64 rx_size_1023; /* prc1023 */
1144 u64 rx_size_1522; /* prc1522 */
1145 u64 rx_size_big; /* prc9522 */
1146 u64 rx_undersize; /* ruc */
1147 u64 rx_fragments; /* rfc */
1148 u64 rx_oversize; /* roc */
1149 u64 rx_jabber; /* rjc */
1150 u64 tx_size_64; /* ptc64 */
1151 u64 tx_size_127; /* ptc127 */
1152 u64 tx_size_255; /* ptc255 */
1153 u64 tx_size_511; /* ptc511 */
1154 u64 tx_size_1023; /* ptc1023 */
1155 u64 tx_size_1522; /* ptc1522 */
1156 u64 tx_size_big; /* ptc9522 */
1157 u64 mac_short_packet_dropped; /* mspdc */
1158 u64 checksum_error; /* xec */
1159 /* flow director stats */
1160 u64 fd_atr_match;
1161 u64 fd_sb_match;
1162 u64 fd_atr_tunnel_match;
1163 u32 fd_atr_status;
1164 u32 fd_sb_status;
1165 /* EEE LPI */
1166 u32 tx_lpi_status;
1167 u32 rx_lpi_status;
1168 u64 tx_lpi_count; /* etlpic */
1169 u64 rx_lpi_count; /* erlpic */
1170 };
1171
1172 /* Checksum and Shadow RAM pointers */
1173 #define I40E_SR_NVM_CONTROL_WORD 0x00
1174 #define I40E_SR_EMP_MODULE_PTR 0x0F
1175 #define I40E_SR_PBA_FLAGS 0x15
1176 #define I40E_SR_PBA_BLOCK_PTR 0x16
1177 #define I40E_SR_NVM_DEV_STARTER_VERSION 0x18
1178 #define I40E_SR_NVM_WAKE_ON_LAN 0x19
1179 #define I40E_SR_ALTERNATE_SAN_MAC_ADDRESS_PTR 0x27
1180 #define I40E_SR_NVM_EETRACK_LO 0x2D
1181 #define I40E_SR_NVM_EETRACK_HI 0x2E
1182 #define I40E_SR_VPD_PTR 0x2F
1183 #define I40E_SR_PCIE_ALT_AUTO_LOAD_PTR 0x3E
1184 #define I40E_SR_SW_CHECKSUM_WORD 0x3F
1185
1186 /* Auxiliary field, mask and shift definition for Shadow RAM and NVM Flash */
1187 #define I40E_SR_VPD_MODULE_MAX_SIZE 1024
1188 #define I40E_SR_PCIE_ALT_MODULE_MAX_SIZE 1024
1189 #define I40E_SR_CONTROL_WORD_1_SHIFT 0x06
1190 #define I40E_SR_CONTROL_WORD_1_MASK (0x03 << I40E_SR_CONTROL_WORD_1_SHIFT)
1191
1192 /* Shadow RAM related */
1193 #define I40E_SR_SECTOR_SIZE_IN_WORDS 0x800
1194 #define I40E_SR_WORDS_IN_1KB 512
1195 /* Checksum should be calculated such that after adding all the words,
1196 * including the checksum word itself, the sum should be 0xBABA.
1197 */
1198 #define I40E_SR_SW_CHECKSUM_BASE 0xBABA
1199
1200 #define I40E_SRRD_SRCTL_ATTEMPTS 100000
1201
1202 #ifdef I40E_FCOE
1203 /* FCoE Tx context descriptor - Use the i40e_tx_context_desc struct */
1204
1205 enum i40E_fcoe_tx_ctx_desc_cmd_bits {
1206 I40E_FCOE_TX_CTX_DESC_OPCODE_SINGLE_SEND = 0x00, /* 4 BITS */
1207 I40E_FCOE_TX_CTX_DESC_OPCODE_TSO_FC_CLASS2 = 0x01, /* 4 BITS */
1208 I40E_FCOE_TX_CTX_DESC_OPCODE_TSO_FC_CLASS3 = 0x05, /* 4 BITS */
1209 I40E_FCOE_TX_CTX_DESC_OPCODE_ETSO_FC_CLASS2 = 0x02, /* 4 BITS */
1210 I40E_FCOE_TX_CTX_DESC_OPCODE_ETSO_FC_CLASS3 = 0x06, /* 4 BITS */
1211 I40E_FCOE_TX_CTX_DESC_OPCODE_DWO_FC_CLASS2 = 0x03, /* 4 BITS */
1212 I40E_FCOE_TX_CTX_DESC_OPCODE_DWO_FC_CLASS3 = 0x07, /* 4 BITS */
1213 I40E_FCOE_TX_CTX_DESC_OPCODE_DDP_CTX_INVL = 0x08, /* 4 BITS */
1214 I40E_FCOE_TX_CTX_DESC_OPCODE_DWO_CTX_INVL = 0x09, /* 4 BITS */
1215 I40E_FCOE_TX_CTX_DESC_RELOFF = 0x10,
1216 I40E_FCOE_TX_CTX_DESC_CLRSEQ = 0x20,
1217 I40E_FCOE_TX_CTX_DESC_DIFENA = 0x40,
1218 I40E_FCOE_TX_CTX_DESC_IL2TAG2 = 0x80
1219 };
1220
1221 /* FCoE DDP Context descriptor */
1222 struct i40e_fcoe_ddp_context_desc {
1223 __le64 rsvd;
1224 __le64 type_cmd_foff_lsize;
1225 };
1226
1227 #define I40E_FCOE_DDP_CTX_QW1_DTYPE_SHIFT 0
1228 #define I40E_FCOE_DDP_CTX_QW1_DTYPE_MASK (0xFULL << \
1229 I40E_FCOE_DDP_CTX_QW1_DTYPE_SHIFT)
1230
1231 #define I40E_FCOE_DDP_CTX_QW1_CMD_SHIFT 4
1232 #define I40E_FCOE_DDP_CTX_QW1_CMD_MASK (0xFULL << \
1233 I40E_FCOE_DDP_CTX_QW1_CMD_SHIFT)
1234
1235 enum i40e_fcoe_ddp_ctx_desc_cmd_bits {
1236 I40E_FCOE_DDP_CTX_DESC_BSIZE_512B = 0x00, /* 2 BITS */
1237 I40E_FCOE_DDP_CTX_DESC_BSIZE_4K = 0x01, /* 2 BITS */
1238 I40E_FCOE_DDP_CTX_DESC_BSIZE_8K = 0x02, /* 2 BITS */
1239 I40E_FCOE_DDP_CTX_DESC_BSIZE_16K = 0x03, /* 2 BITS */
1240 I40E_FCOE_DDP_CTX_DESC_DIFENA = 0x04, /* 1 BIT */
1241 I40E_FCOE_DDP_CTX_DESC_LASTSEQH = 0x08, /* 1 BIT */
1242 };
1243
1244 #define I40E_FCOE_DDP_CTX_QW1_FOFF_SHIFT 16
1245 #define I40E_FCOE_DDP_CTX_QW1_FOFF_MASK (0x3FFFULL << \
1246 I40E_FCOE_DDP_CTX_QW1_FOFF_SHIFT)
1247
1248 #define I40E_FCOE_DDP_CTX_QW1_LSIZE_SHIFT 32
1249 #define I40E_FCOE_DDP_CTX_QW1_LSIZE_MASK (0x3FFFULL << \
1250 I40E_FCOE_DDP_CTX_QW1_LSIZE_SHIFT)
1251
1252 /* FCoE DDP/DWO Queue Context descriptor */
1253 struct i40e_fcoe_queue_context_desc {
1254 __le64 dmaindx_fbase; /* 0:11 DMAINDX, 12:63 FBASE */
1255 __le64 flen_tph; /* 0:12 FLEN, 13:15 TPH */
1256 };
1257
1258 #define I40E_FCOE_QUEUE_CTX_QW0_DMAINDX_SHIFT 0
1259 #define I40E_FCOE_QUEUE_CTX_QW0_DMAINDX_MASK (0xFFFULL << \
1260 I40E_FCOE_QUEUE_CTX_QW0_DMAINDX_SHIFT)
1261
1262 #define I40E_FCOE_QUEUE_CTX_QW0_FBASE_SHIFT 12
1263 #define I40E_FCOE_QUEUE_CTX_QW0_FBASE_MASK (0xFFFFFFFFFFFFFULL << \
1264 I40E_FCOE_QUEUE_CTX_QW0_FBASE_SHIFT)
1265
1266 #define I40E_FCOE_QUEUE_CTX_QW1_FLEN_SHIFT 0
1267 #define I40E_FCOE_QUEUE_CTX_QW1_FLEN_MASK (0x1FFFULL << \
1268 I40E_FCOE_QUEUE_CTX_QW1_FLEN_SHIFT)
1269
1270 #define I40E_FCOE_QUEUE_CTX_QW1_TPH_SHIFT 13
1271 #define I40E_FCOE_QUEUE_CTX_QW1_TPH_MASK (0x7ULL << \
1272 I40E_FCOE_QUEUE_CTX_QW1_FLEN_SHIFT)
1273
1274 enum i40e_fcoe_queue_ctx_desc_tph_bits {
1275 I40E_FCOE_QUEUE_CTX_DESC_TPHRDESC = 0x1,
1276 I40E_FCOE_QUEUE_CTX_DESC_TPHDATA = 0x2
1277 };
1278
1279 #define I40E_FCOE_QUEUE_CTX_QW1_RECIPE_SHIFT 30
1280 #define I40E_FCOE_QUEUE_CTX_QW1_RECIPE_MASK (0x3ULL << \
1281 I40E_FCOE_QUEUE_CTX_QW1_RECIPE_SHIFT)
1282
1283 /* FCoE DDP/DWO Filter Context descriptor */
1284 struct i40e_fcoe_filter_context_desc {
1285 __le32 param;
1286 __le16 seqn;
1287
1288 /* 48:51(0:3) RSVD, 52:63(4:15) DMAINDX */
1289 __le16 rsvd_dmaindx;
1290
1291 /* 0:7 FLAGS, 8:52 RSVD, 53:63 LANQ */
1292 __le64 flags_rsvd_lanq;
1293 };
1294
1295 #define I40E_FCOE_FILTER_CTX_QW0_DMAINDX_SHIFT 4
1296 #define I40E_FCOE_FILTER_CTX_QW0_DMAINDX_MASK (0xFFF << \
1297 I40E_FCOE_FILTER_CTX_QW0_DMAINDX_SHIFT)
1298
1299 enum i40e_fcoe_filter_ctx_desc_flags_bits {
1300 I40E_FCOE_FILTER_CTX_DESC_CTYP_DDP = 0x00,
1301 I40E_FCOE_FILTER_CTX_DESC_CTYP_DWO = 0x01,
1302 I40E_FCOE_FILTER_CTX_DESC_ENODE_INIT = 0x00,
1303 I40E_FCOE_FILTER_CTX_DESC_ENODE_RSP = 0x02,
1304 I40E_FCOE_FILTER_CTX_DESC_FC_CLASS2 = 0x00,
1305 I40E_FCOE_FILTER_CTX_DESC_FC_CLASS3 = 0x04
1306 };
1307
1308 #define I40E_FCOE_FILTER_CTX_QW1_FLAGS_SHIFT 0
1309 #define I40E_FCOE_FILTER_CTX_QW1_FLAGS_MASK (0xFFULL << \
1310 I40E_FCOE_FILTER_CTX_QW1_FLAGS_SHIFT)
1311
1312 #define I40E_FCOE_FILTER_CTX_QW1_PCTYPE_SHIFT 8
1313 #define I40E_FCOE_FILTER_CTX_QW1_PCTYPE_MASK (0x3FULL << \
1314 I40E_FCOE_FILTER_CTX_QW1_PCTYPE_SHIFT)
1315
1316 #define I40E_FCOE_FILTER_CTX_QW1_LANQINDX_SHIFT 53
1317 #define I40E_FCOE_FILTER_CTX_QW1_LANQINDX_MASK (0x7FFULL << \
1318 I40E_FCOE_FILTER_CTX_QW1_LANQINDX_SHIFT)
1319
1320 #endif /* I40E_FCOE */
1321 enum i40e_switch_element_types {
1322 I40E_SWITCH_ELEMENT_TYPE_MAC = 1,
1323 I40E_SWITCH_ELEMENT_TYPE_PF = 2,
1324 I40E_SWITCH_ELEMENT_TYPE_VF = 3,
1325 I40E_SWITCH_ELEMENT_TYPE_EMP = 4,
1326 I40E_SWITCH_ELEMENT_TYPE_BMC = 6,
1327 I40E_SWITCH_ELEMENT_TYPE_PE = 16,
1328 I40E_SWITCH_ELEMENT_TYPE_VEB = 17,
1329 I40E_SWITCH_ELEMENT_TYPE_PA = 18,
1330 I40E_SWITCH_ELEMENT_TYPE_VSI = 19,
1331 };
1332
1333 /* Supported EtherType filters */
1334 enum i40e_ether_type_index {
1335 I40E_ETHER_TYPE_1588 = 0,
1336 I40E_ETHER_TYPE_FIP = 1,
1337 I40E_ETHER_TYPE_OUI_EXTENDED = 2,
1338 I40E_ETHER_TYPE_MAC_CONTROL = 3,
1339 I40E_ETHER_TYPE_LLDP = 4,
1340 I40E_ETHER_TYPE_EVB_PROTOCOL1 = 5,
1341 I40E_ETHER_TYPE_EVB_PROTOCOL2 = 6,
1342 I40E_ETHER_TYPE_QCN_CNM = 7,
1343 I40E_ETHER_TYPE_8021X = 8,
1344 I40E_ETHER_TYPE_ARP = 9,
1345 I40E_ETHER_TYPE_RSV1 = 10,
1346 I40E_ETHER_TYPE_RSV2 = 11,
1347 };
1348
1349 /* Filter context base size is 1K */
1350 #define I40E_HASH_FILTER_BASE_SIZE 1024
1351 /* Supported Hash filter values */
1352 enum i40e_hash_filter_size {
1353 I40E_HASH_FILTER_SIZE_1K = 0,
1354 I40E_HASH_FILTER_SIZE_2K = 1,
1355 I40E_HASH_FILTER_SIZE_4K = 2,
1356 I40E_HASH_FILTER_SIZE_8K = 3,
1357 I40E_HASH_FILTER_SIZE_16K = 4,
1358 I40E_HASH_FILTER_SIZE_32K = 5,
1359 I40E_HASH_FILTER_SIZE_64K = 6,
1360 I40E_HASH_FILTER_SIZE_128K = 7,
1361 I40E_HASH_FILTER_SIZE_256K = 8,
1362 I40E_HASH_FILTER_SIZE_512K = 9,
1363 I40E_HASH_FILTER_SIZE_1M = 10,
1364 };
1365
1366 /* DMA context base size is 0.5K */
1367 #define I40E_DMA_CNTX_BASE_SIZE 512
1368 /* Supported DMA context values */
1369 enum i40e_dma_cntx_size {
1370 I40E_DMA_CNTX_SIZE_512 = 0,
1371 I40E_DMA_CNTX_SIZE_1K = 1,
1372 I40E_DMA_CNTX_SIZE_2K = 2,
1373 I40E_DMA_CNTX_SIZE_4K = 3,
1374 I40E_DMA_CNTX_SIZE_8K = 4,
1375 I40E_DMA_CNTX_SIZE_16K = 5,
1376 I40E_DMA_CNTX_SIZE_32K = 6,
1377 I40E_DMA_CNTX_SIZE_64K = 7,
1378 I40E_DMA_CNTX_SIZE_128K = 8,
1379 I40E_DMA_CNTX_SIZE_256K = 9,
1380 };
1381
1382 /* Supported Hash look up table (LUT) sizes */
1383 enum i40e_hash_lut_size {
1384 I40E_HASH_LUT_SIZE_128 = 0,
1385 I40E_HASH_LUT_SIZE_512 = 1,
1386 };
1387
1388 /* Structure to hold a per PF filter control settings */
1389 struct i40e_filter_control_settings {
1390 /* number of PE Quad Hash filter buckets */
1391 enum i40e_hash_filter_size pe_filt_num;
1392 /* number of PE Quad Hash contexts */
1393 enum i40e_dma_cntx_size pe_cntx_num;
1394 /* number of FCoE filter buckets */
1395 enum i40e_hash_filter_size fcoe_filt_num;
1396 /* number of FCoE DDP contexts */
1397 enum i40e_dma_cntx_size fcoe_cntx_num;
1398 /* size of the Hash LUT */
1399 enum i40e_hash_lut_size hash_lut_size;
1400 /* enable FDIR filters for PF and its VFs */
1401 bool enable_fdir;
1402 /* enable Ethertype filters for PF and its VFs */
1403 bool enable_ethtype;
1404 /* enable MAC/VLAN filters for PF and its VFs */
1405 bool enable_macvlan;
1406 };
1407
1408 /* Structure to hold device level control filter counts */
1409 struct i40e_control_filter_stats {
1410 u16 mac_etype_used; /* Used perfect match MAC/EtherType filters */
1411 u16 etype_used; /* Used perfect EtherType filters */
1412 u16 mac_etype_free; /* Un-used perfect match MAC/EtherType filters */
1413 u16 etype_free; /* Un-used perfect EtherType filters */
1414 };
1415
1416 enum i40e_reset_type {
1417 I40E_RESET_POR = 0,
1418 I40E_RESET_CORER = 1,
1419 I40E_RESET_GLOBR = 2,
1420 I40E_RESET_EMPR = 3,
1421 };
1422
1423 /* IEEE 802.1AB LLDP Agent Variables from NVM */
1424 #define I40E_NVM_LLDP_CFG_PTR 0xD
1425 struct i40e_lldp_variables {
1426 u16 length;
1427 u16 adminstatus;
1428 u16 msgfasttx;
1429 u16 msgtxinterval;
1430 u16 txparams;
1431 u16 timers;
1432 u16 crc8;
1433 };
1434
1435 /* Offsets into Alternate Ram */
1436 #define I40E_ALT_STRUCT_FIRST_PF_OFFSET 0 /* in dwords */
1437 #define I40E_ALT_STRUCT_DWORDS_PER_PF 64 /* in dwords */
1438 #define I40E_ALT_STRUCT_OUTER_VLAN_TAG_OFFSET 0xD /* in dwords */
1439 #define I40E_ALT_STRUCT_USER_PRIORITY_OFFSET 0xC /* in dwords */
1440 #define I40E_ALT_STRUCT_MIN_BW_OFFSET 0xE /* in dwords */
1441 #define I40E_ALT_STRUCT_MAX_BW_OFFSET 0xF /* in dwords */
1442
1443 /* Alternate Ram Bandwidth Masks */
1444 #define I40E_ALT_BW_VALUE_MASK 0xFF
1445 #define I40E_ALT_BW_RELATIVE_MASK 0x40000000
1446 #define I40E_ALT_BW_VALID_MASK 0x80000000
1447
1448 /* RSS Hash Table Size */
1449 #define I40E_PFQF_CTL_0_HASHLUTSIZE_512 0x00010000
1450 #endif /* _I40E_TYPE_H_ */
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