ba4cc4b7240d38609af7375d9b9963ea22beff60
[dpdk.git] / drivers / net / ionic / ionic_if.h
1 /* SPDX-License-Identifier: GPL-2.0 OR Linux-OpenIB OR BSD-3-Clause */
2 /* Copyright (c) 2017-2020 Pensando Systems, Inc.  All rights reserved. */
3
4 #ifndef _IONIC_IF_H_
5 #define _IONIC_IF_H_
6
7 #define IONIC_DEV_INFO_SIGNATURE                0x44455649      /* 'DEVI' */
8 #define IONIC_DEV_INFO_VERSION                  1
9 #define IONIC_IFNAMSIZ                          16
10
11 /**
12  * enum ionic_cmd_opcode - Device commands
13  */
14 enum ionic_cmd_opcode {
15         IONIC_CMD_NOP                           = 0,
16
17         /* Device commands */
18         IONIC_CMD_IDENTIFY                      = 1,
19         IONIC_CMD_INIT                          = 2,
20         IONIC_CMD_RESET                         = 3,
21         IONIC_CMD_GETATTR                       = 4,
22         IONIC_CMD_SETATTR                       = 5,
23
24         /* Port commands */
25         IONIC_CMD_PORT_IDENTIFY                 = 10,
26         IONIC_CMD_PORT_INIT                     = 11,
27         IONIC_CMD_PORT_RESET                    = 12,
28         IONIC_CMD_PORT_GETATTR                  = 13,
29         IONIC_CMD_PORT_SETATTR                  = 14,
30
31         /* LIF commands */
32         IONIC_CMD_LIF_IDENTIFY                  = 20,
33         IONIC_CMD_LIF_INIT                      = 21,
34         IONIC_CMD_LIF_RESET                     = 22,
35         IONIC_CMD_LIF_GETATTR                   = 23,
36         IONIC_CMD_LIF_SETATTR                   = 24,
37
38         IONIC_CMD_RX_MODE_SET                   = 30,
39         IONIC_CMD_RX_FILTER_ADD                 = 31,
40         IONIC_CMD_RX_FILTER_DEL                 = 32,
41
42         /* Queue commands */
43         IONIC_CMD_Q_IDENTIFY                    = 39,
44         IONIC_CMD_Q_INIT                        = 40,
45         IONIC_CMD_Q_CONTROL                     = 41,
46
47         /* RDMA commands */
48         IONIC_CMD_RDMA_RESET_LIF                = 50,
49         IONIC_CMD_RDMA_CREATE_EQ                = 51,
50         IONIC_CMD_RDMA_CREATE_CQ                = 52,
51         IONIC_CMD_RDMA_CREATE_ADMINQ            = 53,
52
53         /* SR/IOV commands */
54         IONIC_CMD_VF_GETATTR                    = 60,
55         IONIC_CMD_VF_SETATTR                    = 61,
56
57         /* QoS commands */
58         IONIC_CMD_QOS_CLASS_IDENTIFY            = 240,
59         IONIC_CMD_QOS_CLASS_INIT                = 241,
60         IONIC_CMD_QOS_CLASS_RESET               = 242,
61         IONIC_CMD_QOS_CLASS_UPDATE              = 243,
62         IONIC_CMD_QOS_CLEAR_STATS               = 244,
63         IONIC_CMD_QOS_RESET                     = 245,
64
65         /* Firmware commands */
66         IONIC_CMD_FW_DOWNLOAD                   = 254,
67         IONIC_CMD_FW_CONTROL                    = 255,
68 };
69
70 /**
71  * enum ionic_status_code - Device command return codes
72  */
73 enum ionic_status_code {
74         IONIC_RC_SUCCESS        = 0,    /* Success */
75         IONIC_RC_EVERSION       = 1,    /* Incorrect version for request */
76         IONIC_RC_EOPCODE        = 2,    /* Invalid cmd opcode */
77         IONIC_RC_EIO            = 3,    /* I/O error */
78         IONIC_RC_EPERM          = 4,    /* Permission denied */
79         IONIC_RC_EQID           = 5,    /* Bad qid */
80         IONIC_RC_EQTYPE         = 6,    /* Bad qtype */
81         IONIC_RC_ENOENT         = 7,    /* No such element */
82         IONIC_RC_EINTR          = 8,    /* operation interrupted */
83         IONIC_RC_EAGAIN         = 9,    /* Try again */
84         IONIC_RC_ENOMEM         = 10,   /* Out of memory */
85         IONIC_RC_EFAULT         = 11,   /* Bad address */
86         IONIC_RC_EBUSY          = 12,   /* Device or resource busy */
87         IONIC_RC_EEXIST         = 13,   /* object already exists */
88         IONIC_RC_EINVAL         = 14,   /* Invalid argument */
89         IONIC_RC_ENOSPC         = 15,   /* No space left or alloc failure */
90         IONIC_RC_ERANGE         = 16,   /* Parameter out of range */
91         IONIC_RC_BAD_ADDR       = 17,   /* Descriptor contains a bad ptr */
92         IONIC_RC_DEV_CMD        = 18,   /* Device cmd attempted on AdminQ */
93         IONIC_RC_ENOSUPP        = 19,   /* Operation not supported */
94         IONIC_RC_ERROR          = 29,   /* Generic error */
95         IONIC_RC_ERDMA          = 30,   /* Generic RDMA error */
96         IONIC_RC_EVFID          = 31,   /* VF ID does not exist */
97 };
98
99 enum ionic_notifyq_opcode {
100         IONIC_EVENT_LINK_CHANGE         = 1,
101         IONIC_EVENT_RESET               = 2,
102         IONIC_EVENT_HEARTBEAT           = 3,
103         IONIC_EVENT_LOG                 = 4,
104         IONIC_EVENT_XCVR                = 5,
105 };
106
107 /**
108  * struct ionic_admin_cmd - General admin command format
109  * @opcode:     Opcode for the command
110  * @lif_index:  LIF index
111  * @cmd_data:   Opcode-specific command bytes
112  */
113 struct ionic_admin_cmd {
114         u8     opcode;
115         u8     rsvd;
116         __le16 lif_index;
117         u8     cmd_data[60];
118 };
119
120 /**
121  * struct ionic_admin_comp - General admin command completion format
122  * @status:     Status of the command (enum ionic_status_code)
123  * @comp_index: Index in the descriptor ring for which this is the completion
124  * @cmd_data:   Command-specific bytes
125  * @color:      Color bit (Always 0 for commands issued to the
126  *              Device Cmd Registers)
127  */
128 struct ionic_admin_comp {
129         u8     status;
130         u8     rsvd;
131         __le16 comp_index;
132         u8     cmd_data[11];
133         u8     color;
134 #define IONIC_COMP_COLOR_MASK  0x80
135 };
136
137 static inline u8 color_match(u8 color, u8 done_color)
138 {
139         return (!!(color & IONIC_COMP_COLOR_MASK)) == done_color;
140 }
141
142 /**
143  * struct ionic_nop_cmd - NOP command
144  * @opcode: opcode
145  */
146 struct ionic_nop_cmd {
147         u8 opcode;
148         u8 rsvd[63];
149 };
150
151 /**
152  * struct ionic_nop_comp - NOP command completion
153  * @status: Status of the command (enum ionic_status_code)
154  */
155 struct ionic_nop_comp {
156         u8 status;
157         u8 rsvd[15];
158 };
159
160 /**
161  * struct ionic_dev_init_cmd - Device init command
162  * @opcode:    opcode
163  * @type:      Device type
164  */
165 struct ionic_dev_init_cmd {
166         u8     opcode;
167         u8     type;
168         u8     rsvd[62];
169 };
170
171 /**
172  * struct ionic_dev_init_comp - Device init command completion
173  * @status: Status of the command (enum ionic_status_code)
174  */
175 struct ionic_dev_init_comp {
176         u8 status;
177         u8 rsvd[15];
178 };
179
180 /**
181  * struct ionic_dev_reset_cmd - Device reset command
182  * @opcode: opcode
183  */
184 struct ionic_dev_reset_cmd {
185         u8 opcode;
186         u8 rsvd[63];
187 };
188
189 /**
190  * struct ionic_dev_reset_comp - Reset command completion
191  * @status: Status of the command (enum ionic_status_code)
192  */
193 struct ionic_dev_reset_comp {
194         u8 status;
195         u8 rsvd[15];
196 };
197
198 #define IONIC_IDENTITY_VERSION_1        1
199
200 /**
201  * struct ionic_dev_identify_cmd - Driver/device identify command
202  * @opcode:  opcode
203  * @ver:     Highest version of identify supported by driver
204  */
205 struct ionic_dev_identify_cmd {
206         u8 opcode;
207         u8 ver;
208         u8 rsvd[62];
209 };
210
211 /**
212  * struct ionic_dev_identify_comp - Driver/device identify command completion
213  * @status: Status of the command (enum ionic_status_code)
214  * @ver:    Version of identify returned by device
215  */
216 struct ionic_dev_identify_comp {
217         u8 status;
218         u8 ver;
219         u8 rsvd[14];
220 };
221
222 enum ionic_os_type {
223         IONIC_OS_TYPE_LINUX   = 1,
224         IONIC_OS_TYPE_WIN     = 2,
225         IONIC_OS_TYPE_DPDK    = 3,
226         IONIC_OS_TYPE_FREEBSD = 4,
227         IONIC_OS_TYPE_IPXE    = 5,
228         IONIC_OS_TYPE_ESXI    = 6,
229 };
230
231 /**
232  * union ionic_drv_identity - driver identity information
233  * @os_type:          OS type (see enum ionic_os_type)
234  * @os_dist:          OS distribution, numeric format
235  * @os_dist_str:      OS distribution, string format
236  * @kernel_ver:       Kernel version, numeric format
237  * @kernel_ver_str:   Kernel version, string format
238  * @driver_ver_str:   Driver version, string format
239  */
240 union ionic_drv_identity {
241         struct {
242                 __le32 os_type;
243                 __le32 os_dist;
244                 char   os_dist_str[128];
245                 __le32 kernel_ver;
246                 char   kernel_ver_str[32];
247                 char   driver_ver_str[32];
248         };
249         __le32 words[478];
250 };
251
252 /**
253  * union ionic_dev_identity - device identity information
254  * @version:          Version of device identify
255  * @type:             Identify type (0 for now)
256  * @nports:           Number of ports provisioned
257  * @nlifs:            Number of LIFs provisioned
258  * @nintrs:           Number of interrupts provisioned
259  * @ndbpgs_per_lif:   Number of doorbell pages per LIF
260  * @intr_coal_mult:   Interrupt coalescing multiplication factor
261  *                    Scale user-supplied interrupt coalescing
262  *                    value in usecs to device units using:
263  *                    device units = usecs * mult / div
264  * @intr_coal_div:    Interrupt coalescing division factor
265  *                    Scale user-supplied interrupt coalescing
266  *                    value in usecs to device units using:
267  *                    device units = usecs * mult / div
268  * @eq_count:         Number of shared event queues
269  */
270 union ionic_dev_identity {
271         struct {
272                 u8     version;
273                 u8     type;
274                 u8     rsvd[2];
275                 u8     nports;
276                 u8     rsvd2[3];
277                 __le32 nlifs;
278                 __le32 nintrs;
279                 __le32 ndbpgs_per_lif;
280                 __le32 intr_coal_mult;
281                 __le32 intr_coal_div;
282                 __le32 eq_count;
283         };
284         __le32 words[478];
285 };
286
287 enum ionic_lif_type {
288         IONIC_LIF_TYPE_CLASSIC = 0,
289         IONIC_LIF_TYPE_MACVLAN = 1,
290         IONIC_LIF_TYPE_NETQUEUE = 2,
291 };
292
293 /**
294  * struct ionic_lif_identify_cmd - LIF identify command
295  * @opcode:  opcode
296  * @type:    LIF type (enum ionic_lif_type)
297  * @ver:     Version of identify returned by device
298  */
299 struct ionic_lif_identify_cmd {
300         u8 opcode;
301         u8 type;
302         u8 ver;
303         u8 rsvd[61];
304 };
305
306 /**
307  * struct ionic_lif_identify_comp - LIF identify command completion
308  * @status:  Status of the command (enum ionic_status_code)
309  * @ver:     Version of identify returned by device
310  */
311 struct ionic_lif_identify_comp {
312         u8 status;
313         u8 ver;
314         u8 rsvd2[14];
315 };
316
317 /**
318  * enum ionic_lif_capability - LIF capabilities
319  * @IONIC_LIF_CAP_ETH:     LIF supports Ethernet
320  * @IONIC_LIF_CAP_RDMA:    LIF support RDMA
321  */
322 enum ionic_lif_capability {
323         IONIC_LIF_CAP_ETH        = BIT(0),
324         IONIC_LIF_CAP_RDMA       = BIT(1),
325 };
326
327 /**
328  * enum ionic_logical_qtype - Logical Queue Types
329  * @IONIC_QTYPE_ADMINQ:    Administrative Queue
330  * @IONIC_QTYPE_NOTIFYQ:   Notify Queue
331  * @IONIC_QTYPE_RXQ:       Receive Queue
332  * @IONIC_QTYPE_TXQ:       Transmit Queue
333  * @IONIC_QTYPE_EQ:        Event Queue
334  * @IONIC_QTYPE_MAX:       Max queue type supported
335  */
336 enum ionic_logical_qtype {
337         IONIC_QTYPE_ADMINQ  = 0,
338         IONIC_QTYPE_NOTIFYQ = 1,
339         IONIC_QTYPE_RXQ     = 2,
340         IONIC_QTYPE_TXQ     = 3,
341         IONIC_QTYPE_EQ      = 4,
342         IONIC_QTYPE_MAX     = 16,
343 };
344
345 /**
346  * struct ionic_lif_logical_qtype - Descriptor of logical to HW queue type
347  * @qtype:          Hardware Queue Type
348  * @qid_count:      Number of Queue IDs of the logical type
349  * @qid_base:       Minimum Queue ID of the logical type
350  */
351 struct ionic_lif_logical_qtype {
352         u8     qtype;
353         u8     rsvd[3];
354         __le32 qid_count;
355         __le32 qid_base;
356 };
357
358 /**
359  * enum ionic_lif_state - LIF state
360  * @IONIC_LIF_DISABLE:     LIF disabled
361  * @IONIC_LIF_ENABLE:      LIF enabled
362  * @IONIC_LIF_QUIESCE:     LIF Quiesced
363  */
364 enum ionic_lif_state {
365         IONIC_LIF_QUIESCE       = 0,
366         IONIC_LIF_ENABLE        = 1,
367         IONIC_LIF_DISABLE       = 2,
368 };
369
370 /**
371  * union ionic_lif_config - LIF configuration
372  * @state:          LIF state (enum ionic_lif_state)
373  * @name:           LIF name
374  * @mtu:            MTU
375  * @mac:            Station MAC address
376  * @vlan:           Default Vlan ID
377  * @features:       Features (enum ionic_eth_hw_features)
378  * @queue_count:    Queue counts per queue-type
379  */
380 union ionic_lif_config {
381         struct {
382                 u8     state;
383                 u8     rsvd[3];
384                 char   name[IONIC_IFNAMSIZ];
385                 __le32 mtu;
386                 u8     mac[6];
387                 __le16 vlan;
388                 __le64 features;
389                 __le32 queue_count[IONIC_QTYPE_MAX];
390         } __rte_packed;
391         __le32 words[64];
392 };
393
394 /**
395  * struct ionic_lif_identity - LIF identity information (type-specific)
396  *
397  * @capabilities:        LIF capabilities
398  *
399  * @eth:                    Ethernet identify structure
400  *     @version:            Ethernet identify structure version
401  *     @max_ucast_filters:  Number of perfect unicast addresses supported
402  *     @max_mcast_filters:  Number of perfect multicast addresses supported
403  *     @min_frame_size:     Minimum size of frames to be sent
404  *     @max_frame_size:     Maximum size of frames to be sent
405  *     @config:             LIF config struct with features, mtu, mac, q counts
406  *
407  * @rdma:                RDMA identify structure
408  *     @version:         RDMA version of opcodes and queue descriptors
409  *     @qp_opcodes:      Number of RDMA queue pair opcodes supported
410  *     @admin_opcodes:   Number of RDMA admin opcodes supported
411  *     @npts_per_lif:    Page table size per LIF
412  *     @nmrs_per_lif:    Number of memory regions per LIF
413  *     @nahs_per_lif:    Number of address handles per LIF
414  *     @max_stride:      Max work request stride
415  *     @cl_stride:       Cache line stride
416  *     @pte_stride:      Page table entry stride
417  *     @rrq_stride:      Remote RQ work request stride
418  *     @rsq_stride:      Remote SQ work request stride
419  *     @dcqcn_profiles:  Number of DCQCN profiles
420  *     @aq_qtype:        RDMA Admin Qtype
421  *     @sq_qtype:        RDMA Send Qtype
422  *     @rq_qtype:        RDMA Receive Qtype
423  *     @cq_qtype:        RDMA Completion Qtype
424  *     @eq_qtype:        RDMA Event Qtype
425  */
426 union ionic_lif_identity {
427         struct {
428                 __le64 capabilities;
429
430                 struct {
431                         u8 version;
432                         u8 rsvd[3];
433                         __le32 max_ucast_filters;
434                         __le32 max_mcast_filters;
435                         __le16 rss_ind_tbl_sz;
436                         __le32 min_frame_size;
437                         __le32 max_frame_size;
438                         u8 rsvd2[106];
439                         union ionic_lif_config config;
440                 } __rte_packed eth;
441
442                 struct {
443                         u8 version;
444                         u8 qp_opcodes;
445                         u8 admin_opcodes;
446                         u8 rsvd;
447                         __le32 npts_per_lif;
448                         __le32 nmrs_per_lif;
449                         __le32 nahs_per_lif;
450                         u8 max_stride;
451                         u8 cl_stride;
452                         u8 pte_stride;
453                         u8 rrq_stride;
454                         u8 rsq_stride;
455                         u8 dcqcn_profiles;
456                         u8 rsvd_dimensions[10];
457                         struct ionic_lif_logical_qtype aq_qtype;
458                         struct ionic_lif_logical_qtype sq_qtype;
459                         struct ionic_lif_logical_qtype rq_qtype;
460                         struct ionic_lif_logical_qtype cq_qtype;
461                         struct ionic_lif_logical_qtype eq_qtype;
462                 } __rte_packed rdma;
463         } __rte_packed;
464         __le32 words[478];
465 };
466
467 /**
468  * struct ionic_lif_init_cmd - LIF init command
469  * @opcode:       Opcode
470  * @type:         LIF type (enum ionic_lif_type)
471  * @index:        LIF index
472  * @info_pa:      Destination address for LIF info (struct ionic_lif_info)
473  */
474 struct ionic_lif_init_cmd {
475         u8     opcode;
476         u8     type;
477         __le16 index;
478         __le32 rsvd;
479         __le64 info_pa;
480         u8     rsvd2[48];
481 };
482
483 /**
484  * struct ionic_lif_init_comp - LIF init command completion
485  * @status:     Status of the command (enum ionic_status_code)
486  * @hw_index:   Hardware index of the initialized LIF
487  */
488 struct ionic_lif_init_comp {
489         u8 status;
490         u8 rsvd;
491         __le16 hw_index;
492         u8 rsvd2[12];
493 };
494
495 /**
496  * struct ionic_q_identify_cmd - queue identify command
497  * @opcode:     opcode
498  * @lif_type:   LIF type (enum ionic_lif_type)
499  * @type:       Logical queue type (enum ionic_logical_qtype)
500  * @ver:        Highest queue type version that the driver supports
501  */
502 struct ionic_q_identify_cmd {
503         u8     opcode;
504         u8     rsvd;
505         __le16 lif_type;
506         u8     type;
507         u8     ver;
508         u8     rsvd2[58];
509 };
510
511 /**
512  * struct ionic_q_identify_comp - queue identify command completion
513  * @status:     Status of the command (enum ionic_status_code)
514  * @comp_index: Index in the descriptor ring for which this is the completion
515  * @ver:        Queue type version that can be used with FW
516  */
517 struct ionic_q_identify_comp {
518         u8     status;
519         u8     rsvd;
520         __le16 comp_index;
521         u8     ver;
522         u8     rsvd2[11];
523 };
524
525 /**
526  * union ionic_q_identity - queue identity information
527  *     @version:        Queue type version that can be used with FW
528  *     @supported:      Bitfield of queue versions, first bit = ver 0
529  *     @features:       Queue features
530  *     @desc_sz:        Descriptor size
531  *     @comp_sz:        Completion descriptor size
532  *     @sg_desc_sz:     Scatter/Gather descriptor size
533  *     @max_sg_elems:   Maximum number of Scatter/Gather elements
534  *     @sg_desc_stride: Number of Scatter/Gather elements per descriptor
535  */
536 union ionic_q_identity {
537         struct {
538                 u8      version;
539                 u8      supported;
540                 u8      rsvd[6];
541 #define IONIC_QIDENT_F_CQ       0x01    /* queue has completion ring */
542 #define IONIC_QIDENT_F_SG       0x02    /* queue has scatter/gather ring */
543 #define IONIC_QIDENT_F_EQ       0x04    /* queue can use event queue */
544 #define IONIC_QIDENT_F_CMB      0x08    /* queue is in cmb bar */
545                 __le64  features;
546                 __le16  desc_sz;
547                 __le16  comp_sz;
548                 __le16  sg_desc_sz;
549                 __le16  max_sg_elems;
550                 __le16  sg_desc_stride;
551         };
552         __le32 words[478];
553 };
554
555 /**
556  * struct ionic_q_init_cmd - Queue init command
557  * @opcode:       opcode
558  * @type:         Logical queue type
559  * @ver:          Queue type version
560  * @lif_index:    LIF index
561  * @index:        (LIF, qtype) relative admin queue index
562  * @intr_index:   Interrupt control register index, or Event queue index
563  * @pid:          Process ID
564  * @flags:
565  *    IRQ:        Interrupt requested on completion
566  *    ENA:        Enable the queue.  If ENA=0 the queue is initialized
567  *                but remains disabled, to be later enabled with the
568  *                Queue Enable command.  If ENA=1, then queue is
569  *                initialized and then enabled.
570  *    SG:         Enable Scatter-Gather on the queue.
571  *                in number of descs.  The actual ring size is
572  *                (1 << ring_size).  For example, to
573  *                select a ring size of 64 descriptors write
574  *                ring_size = 6.  The minimum ring_size value is 2
575  *                for a ring size of 4 descriptors.  The maximum
576  *                ring_size value is 16 for a ring size of 64k
577  *                descriptors.  Values of ring_size <2 and >16 are
578  *                reserved.
579  *    EQ:         Enable the Event Queue
580  * @cos:          Class of service for this queue
581  * @ring_size:    Queue ring size, encoded as a log2(size)
582  * @ring_base:    Queue ring base address
583  * @cq_ring_base: Completion queue ring base address
584  * @sg_ring_base: Scatter/Gather ring base address
585  */
586 struct ionic_q_init_cmd {
587         u8     opcode;
588         u8     rsvd;
589         __le16 lif_index;
590         u8     type;
591         u8     ver;
592         u8     rsvd1[2];
593         __le32 index;
594         __le16 pid;
595         __le16 intr_index;
596         __le16 flags;
597 #define IONIC_QINIT_F_IRQ       0x01    /* Request interrupt on completion */
598 #define IONIC_QINIT_F_ENA       0x02    /* Enable the queue */
599 #define IONIC_QINIT_F_SG        0x04    /* Enable scatter/gather on the queue */
600 #define IONIC_QINIT_F_EQ        0x08    /* Enable event queue */
601 #define IONIC_QINIT_F_CMB       0x10    /* Enable cmb-based queue */
602 #define IONIC_QINIT_F_DEBUG     0x80    /* Enable queue debugging */
603         u8     cos;
604         u8     ring_size;
605         __le64 ring_base;
606         __le64 cq_ring_base;
607         __le64 sg_ring_base;
608         u8     rsvd2[20];
609 } __rte_packed;
610
611 /**
612  * struct ionic_q_init_comp - Queue init command completion
613  * @status:     Status of the command (enum ionic_status_code)
614  * @comp_index: Index in the descriptor ring for which this is the completion
615  * @hw_index:   Hardware Queue ID
616  * @hw_type:    Hardware Queue type
617  * @color:      Color
618  */
619 struct ionic_q_init_comp {
620         u8     status;
621         u8     rsvd;
622         __le16 comp_index;
623         __le32 hw_index;
624         u8     hw_type;
625         u8     rsvd2[6];
626         u8     color;
627 };
628
629 /* the device's internal addressing uses up to 52 bits */
630 #define IONIC_ADDR_LEN          52
631 #define IONIC_ADDR_MASK         (BIT_ULL(IONIC_ADDR_LEN) - 1)
632
633 enum ionic_txq_desc_opcode {
634         IONIC_TXQ_DESC_OPCODE_CSUM_NONE = 0,
635         IONIC_TXQ_DESC_OPCODE_CSUM_PARTIAL = 1,
636         IONIC_TXQ_DESC_OPCODE_CSUM_HW = 2,
637         IONIC_TXQ_DESC_OPCODE_TSO = 3,
638 };
639
640 /**
641  * struct ionic_txq_desc - Ethernet Tx queue descriptor format
642  * @cmd:          Tx operation, see IONIC_TXQ_DESC_OPCODE_*:
643  *
644  *                   IONIC_TXQ_DESC_OPCODE_CSUM_NONE:
645  *                      Non-offload send.  No segmentation,
646  *                      fragmentation or checksum calc/insertion is
647  *                      performed by device; packet is prepared
648  *                      to send by software stack and requires
649  *                      no further manipulation from device.
650  *
651  *                   IONIC_TXQ_DESC_OPCODE_CSUM_PARTIAL:
652  *                      Offload 16-bit L4 checksum
653  *                      calculation/insertion.  The device will
654  *                      calculate the L4 checksum value and
655  *                      insert the result in the packet's L4
656  *                      header checksum field.  The L4 checksum
657  *                      is calculated starting at @csum_start bytes
658  *                      into the packet to the end of the packet.
659  *                      The checksum insertion position is given
660  *                      in @csum_offset, which is the offset from
661  *                      @csum_start to the checksum field in the L4
662  *                      header.  This feature is only applicable to
663  *                      protocols such as TCP, UDP and ICMP where a
664  *                      standard (i.e. the 'IP-style' checksum)
665  *                      one's complement 16-bit checksum is used,
666  *                      using an IP pseudo-header to seed the
667  *                      calculation.  Software will preload the L4
668  *                      checksum field with the IP pseudo-header
669  *                      checksum.
670  *
671  *                      For tunnel encapsulation, @csum_start and
672  *                      @csum_offset refer to the inner L4
673  *                      header.  Supported tunnels encapsulations
674  *                      are: IPIP, GRE, and UDP.  If the @encap
675  *                      is clear, no further processing by the
676  *                      device is required; software will
677  *                      calculate the outer header checksums.  If
678  *                      the @encap is set, the device will
679  *                      offload the outer header checksums using
680  *                      LCO (local checksum offload) (see
681  *                      Documentation/networking/checksum-offloads.rst
682  *                      for more info).
683  *
684  *                   IONIC_TXQ_DESC_OPCODE_CSUM_HW:
685  *                      Offload 16-bit checksum computation to hardware.
686  *                      If @csum_l3 is set then the packet's L3 checksum is
687  *                      updated. Similarly, if @csum_l4 is set the the L4
688  *                      checksum is updated. If @encap is set then encap header
689  *                      checksums are also updated.
690  *
691  *                   IONIC_TXQ_DESC_OPCODE_TSO:
692  *                      Device performs TCP segmentation offload
693  *                      (TSO).  @hdr_len is the number of bytes
694  *                      to the end of TCP header (the offset to
695  *                      the TCP payload).  @mss is the desired
696  *                      MSS, the TCP payload length for each
697  *                      segment.  The device will calculate/
698  *                      insert IP (IPv4 only) and TCP checksums
699  *                      for each segment.  In the first data
700  *                      buffer containing the header template,
701  *                      the driver will set IPv4 checksum to 0
702  *                      and preload TCP checksum with the IP
703  *                      pseudo header calculated with IP length = 0.
704  *
705  *                      Supported tunnel encapsulations are IPIP,
706  *                      layer-3 GRE, and UDP. @hdr_len includes
707  *                      both outer and inner headers.  The driver
708  *                      will set IPv4 checksum to zero and
709  *                      preload TCP checksum with IP pseudo
710  *                      header on the inner header.
711  *
712  *                      TCP ECN offload is supported.  The device
713  *                      will set CWR flag in the first segment if
714  *                      CWR is set in the template header, and
715  *                      clear CWR in remaining segments.
716  * @flags:
717  *                vlan:
718  *                    Insert an L2 VLAN header using @vlan_tci
719  *                encap:
720  *                    Calculate encap header checksum
721  *                csum_l3:
722  *                    Compute L3 header checksum
723  *                csum_l4:
724  *                    Compute L4 header checksum
725  *                tso_sot:
726  *                    TSO start
727  *                tso_eot:
728  *                    TSO end
729  * @num_sg_elems: Number of scatter-gather elements in SG
730  *                descriptor
731  * @addr:         First data buffer's DMA address
732  *                (Subsequent data buffers are on txq_sg_desc)
733  * @len:          First data buffer's length, in bytes
734  * @vlan_tci:     VLAN tag to insert in the packet (if requested
735  *                by @V-bit).  Includes .1p and .1q tags
736  * @hdr_len:      Length of packet headers, including
737  *                encapsulating outer header, if applicable
738  *                Valid for opcodes IONIC_TXQ_DESC_OPCODE_CALC_CSUM and
739  *                IONIC_TXQ_DESC_OPCODE_TSO.  Should be set to zero for
740  *                all other modes.  For
741  *                IONIC_TXQ_DESC_OPCODE_CALC_CSUM, @hdr_len is length
742  *                of headers up to inner-most L4 header.  For
743  *                IONIC_TXQ_DESC_OPCODE_TSO, @hdr_len is up to
744  *                inner-most L4 payload, so inclusive of
745  *                inner-most L4 header.
746  * @mss:          Desired MSS value for TSO; only applicable for
747  *                IONIC_TXQ_DESC_OPCODE_TSO
748  * @csum_start:   Offset from packet to first byte checked in L4 checksum
749  * @csum_offset:  Offset from csum_start to L4 checksum field
750  */
751 struct ionic_txq_desc {
752         __le64  cmd;
753 #define IONIC_TXQ_DESC_OPCODE_MASK              0xf
754 #define IONIC_TXQ_DESC_OPCODE_SHIFT             4
755 #define IONIC_TXQ_DESC_FLAGS_MASK               0xf
756 #define IONIC_TXQ_DESC_FLAGS_SHIFT              0
757 #define IONIC_TXQ_DESC_NSGE_MASK                0xf
758 #define IONIC_TXQ_DESC_NSGE_SHIFT               8
759 #define IONIC_TXQ_DESC_ADDR_MASK                (BIT_ULL(IONIC_ADDR_LEN) - 1)
760 #define IONIC_TXQ_DESC_ADDR_SHIFT               12
761
762 /* common flags */
763 #define IONIC_TXQ_DESC_FLAG_VLAN                0x1
764 #define IONIC_TXQ_DESC_FLAG_ENCAP               0x2
765
766 /* flags for csum_hw opcode */
767 #define IONIC_TXQ_DESC_FLAG_CSUM_L3             0x4
768 #define IONIC_TXQ_DESC_FLAG_CSUM_L4             0x8
769
770 /* flags for tso opcode */
771 #define IONIC_TXQ_DESC_FLAG_TSO_SOT             0x4
772 #define IONIC_TXQ_DESC_FLAG_TSO_EOT             0x8
773
774         __le16  len;
775         union {
776                 __le16  vlan_tci;
777                 __le16  hword0;
778         };
779         union {
780                 __le16  csum_start;
781                 __le16  hdr_len;
782                 __le16  hword1;
783         };
784         union {
785                 __le16  csum_offset;
786                 __le16  mss;
787                 __le16  hword2;
788         };
789 };
790
791 static inline u64 encode_txq_desc_cmd(u8 opcode, u8 flags,
792                                       u8 nsge, u64 addr)
793 {
794         u64 cmd;
795
796         cmd = (opcode & IONIC_TXQ_DESC_OPCODE_MASK) <<
797                 IONIC_TXQ_DESC_OPCODE_SHIFT;
798         cmd |= (flags & IONIC_TXQ_DESC_FLAGS_MASK) <<
799                 IONIC_TXQ_DESC_FLAGS_SHIFT;
800         cmd |= (nsge & IONIC_TXQ_DESC_NSGE_MASK) <<
801                 IONIC_TXQ_DESC_NSGE_SHIFT;
802         cmd |= (addr & IONIC_TXQ_DESC_ADDR_MASK) <<
803                 IONIC_TXQ_DESC_ADDR_SHIFT;
804
805         return cmd;
806 };
807
808 static inline void
809 decode_txq_desc_cmd(u64 cmd, u8 *opcode, u8 *flags,
810                                        u8 *nsge, u64 *addr)
811 {
812         *opcode = (cmd >> IONIC_TXQ_DESC_OPCODE_SHIFT) &
813                 IONIC_TXQ_DESC_OPCODE_MASK;
814         *flags = (cmd >> IONIC_TXQ_DESC_FLAGS_SHIFT) &
815                 IONIC_TXQ_DESC_FLAGS_MASK;
816         *nsge = (cmd >> IONIC_TXQ_DESC_NSGE_SHIFT) &
817                 IONIC_TXQ_DESC_NSGE_MASK;
818         *addr = (cmd >> IONIC_TXQ_DESC_ADDR_SHIFT) &
819                 IONIC_TXQ_DESC_ADDR_MASK;
820 };
821
822 /**
823  * struct ionic_txq_sg_elem - Transmit scatter-gather (SG) descriptor element
824  * @addr:      DMA address of SG element data buffer
825  * @len:       Length of SG element data buffer, in bytes
826  */
827 struct ionic_txq_sg_elem {
828         __le64 addr;
829         __le16 len;
830         __le16 rsvd[3];
831 };
832
833 /**
834  * struct ionic_txq_sg_desc - Transmit scatter-gather (SG) list
835  * @elems:     Scatter-gather elements
836  */
837 struct ionic_txq_sg_desc {
838 #define IONIC_TX_MAX_SG_ELEMS           8
839 #define IONIC_TX_SG_DESC_STRIDE         8
840         struct ionic_txq_sg_elem elems[IONIC_TX_MAX_SG_ELEMS];
841 };
842
843 struct ionic_txq_sg_desc_v1 {
844 #define IONIC_TX_MAX_SG_ELEMS_V1                15
845 #define IONIC_TX_SG_DESC_STRIDE_V1              16
846         struct ionic_txq_sg_elem elems[IONIC_TX_SG_DESC_STRIDE_V1];
847 };
848
849 /**
850  * struct ionic_txq_comp - Ethernet transmit queue completion descriptor
851  * @status:     Status of the command (enum ionic_status_code)
852  * @comp_index: Index in the descriptor ring for which this is the completion
853  * @color:      Color bit
854  */
855 struct ionic_txq_comp {
856         u8     status;
857         u8     rsvd;
858         __le16 comp_index;
859         u8     rsvd2[11];
860         u8     color;
861 };
862
863 enum ionic_rxq_desc_opcode {
864         IONIC_RXQ_DESC_OPCODE_SIMPLE = 0,
865         IONIC_RXQ_DESC_OPCODE_SG = 1,
866 };
867
868 /**
869  * struct ionic_rxq_desc - Ethernet Rx queue descriptor format
870  * @opcode:       Rx operation, see IONIC_RXQ_DESC_OPCODE_*:
871  *
872  *                   IONIC_RXQ_DESC_OPCODE_SIMPLE:
873  *                      Receive full packet into data buffer
874  *                      starting at @addr.  Results of
875  *                      receive, including actual bytes received,
876  *                      are recorded in Rx completion descriptor.
877  *
878  * @len:          Data buffer's length, in bytes
879  * @addr:         Data buffer's DMA address
880  */
881 struct ionic_rxq_desc {
882         u8     opcode;
883         u8     rsvd[5];
884         __le16 len;
885         __le64 addr;
886 };
887
888 /**
889  * struct ionic_rxq_sg_elem - Receive scatter-gather (SG) descriptor element
890  * @addr:      DMA address of SG element data buffer
891  * @len:       Length of SG element data buffer, in bytes
892  */
893 struct ionic_rxq_sg_elem {
894         __le64 addr;
895         __le16 len;
896         __le16 rsvd[3];
897 };
898
899 /**
900  * struct ionic_rxq_sg_desc - Receive scatter-gather (SG) list
901  * @elems:     Scatter-gather elements
902  */
903 struct ionic_rxq_sg_desc {
904 #define IONIC_RX_MAX_SG_ELEMS           8
905 #define IONIC_RX_SG_DESC_STRIDE         8
906         struct ionic_rxq_sg_elem elems[IONIC_RX_SG_DESC_STRIDE];
907 };
908
909 /**
910  * struct ionic_rxq_comp - Ethernet receive queue completion descriptor
911  * @status:       Status of the command (enum ionic_status_code)
912  * @num_sg_elems: Number of SG elements used by this descriptor
913  * @comp_index:   Index in the descriptor ring for which this is the completion
914  * @rss_hash:     32-bit RSS hash
915  * @csum:         16-bit sum of the packet's L2 payload
916  *                If the packet's L2 payload is odd length, an extra
917  *                zero-value byte is included in the @csum calculation but
918  *                not included in @len.
919  * @vlan_tci:     VLAN tag stripped from the packet.  Valid if @VLAN is
920  *                set.  Includes .1p and .1q tags.
921  * @len:          Received packet length, in bytes.  Excludes FCS.
922  * @csum_calc     L2 payload checksum is computed or not
923  * @csum_flags:   See IONIC_RXQ_COMP_CSUM_F_*:
924  *
925  *                  IONIC_RXQ_COMP_CSUM_F_TCP_OK:
926  *                    The TCP checksum calculated by the device
927  *                    matched the checksum in the receive packet's
928  *                    TCP header.
929  *
930  *                  IONIC_RXQ_COMP_CSUM_F_TCP_BAD:
931  *                    The TCP checksum calculated by the device did
932  *                    not match the checksum in the receive packet's
933  *                    TCP header.
934  *
935  *                  IONIC_RXQ_COMP_CSUM_F_UDP_OK:
936  *                    The UDP checksum calculated by the device
937  *                    matched the checksum in the receive packet's
938  *                    UDP header
939  *
940  *                  IONIC_RXQ_COMP_CSUM_F_UDP_BAD:
941  *                    The UDP checksum calculated by the device did
942  *                    not match the checksum in the receive packet's
943  *                    UDP header.
944  *
945  *                  IONIC_RXQ_COMP_CSUM_F_IP_OK:
946  *                    The IPv4 checksum calculated by the device
947  *                    matched the checksum in the receive packet's
948  *                    first IPv4 header.  If the receive packet
949  *                    contains both a tunnel IPv4 header and a
950  *                    transport IPv4 header, the device validates the
951  *                    checksum for the both IPv4 headers.
952  *
953  *                  IONIC_RXQ_COMP_CSUM_F_IP_BAD:
954  *                    The IPv4 checksum calculated by the device did
955  *                    not match the checksum in the receive packet's
956  *                    first IPv4 header. If the receive packet
957  *                    contains both a tunnel IPv4 header and a
958  *                    transport IPv4 header, the device validates the
959  *                    checksum for both IP headers.
960  *
961  *                  IONIC_RXQ_COMP_CSUM_F_VLAN:
962  *                    The VLAN header was stripped and placed in @vlan_tci.
963  *
964  *                  IONIC_RXQ_COMP_CSUM_F_CALC:
965  *                    The checksum was calculated by the device.
966  *
967  * @pkt_type_color: Packet type and color bit; see IONIC_RXQ_COMP_PKT_TYPE_MASK
968  */
969 struct ionic_rxq_comp {
970         u8     status;
971         u8     num_sg_elems;
972         __le16 comp_index;
973         __le32 rss_hash;
974         __le16 csum;
975         __le16 vlan_tci;
976         __le16 len;
977         u8     csum_flags;
978 #define IONIC_RXQ_COMP_CSUM_F_TCP_OK    0x01
979 #define IONIC_RXQ_COMP_CSUM_F_TCP_BAD   0x02
980 #define IONIC_RXQ_COMP_CSUM_F_UDP_OK    0x04
981 #define IONIC_RXQ_COMP_CSUM_F_UDP_BAD   0x08
982 #define IONIC_RXQ_COMP_CSUM_F_IP_OK     0x10
983 #define IONIC_RXQ_COMP_CSUM_F_IP_BAD    0x20
984 #define IONIC_RXQ_COMP_CSUM_F_VLAN      0x40
985 #define IONIC_RXQ_COMP_CSUM_F_CALC      0x80
986         u8     pkt_type_color;
987 #define IONIC_RXQ_COMP_PKT_TYPE_MASK    0x7f
988 };
989
990 enum ionic_pkt_type {
991         IONIC_PKT_TYPE_NON_IP           = 0x00,
992         IONIC_PKT_TYPE_IPV4             = 0x01,
993         IONIC_PKT_TYPE_IPV4_TCP         = 0x03,
994         IONIC_PKT_TYPE_IPV4_UDP         = 0x05,
995         IONIC_PKT_TYPE_IPV6             = 0x08,
996         IONIC_PKT_TYPE_IPV6_TCP         = 0x18,
997         IONIC_PKT_TYPE_IPV6_UDP         = 0x28,
998         /* below types are only used if encap offloads are enabled on lif */
999         IONIC_PKT_TYPE_ENCAP_NON_IP     = 0x40,
1000         IONIC_PKT_TYPE_ENCAP_IPV4       = 0x41,
1001         IONIC_PKT_TYPE_ENCAP_IPV4_TCP   = 0x43,
1002         IONIC_PKT_TYPE_ENCAP_IPV4_UDP   = 0x45,
1003         IONIC_PKT_TYPE_ENCAP_IPV6       = 0x48,
1004         IONIC_PKT_TYPE_ENCAP_IPV6_TCP   = 0x58,
1005         IONIC_PKT_TYPE_ENCAP_IPV6_UDP   = 0x68,
1006 };
1007
1008 enum ionic_eth_hw_features {
1009         IONIC_ETH_HW_VLAN_TX_TAG        = BIT(0),
1010         IONIC_ETH_HW_VLAN_RX_STRIP      = BIT(1),
1011         IONIC_ETH_HW_VLAN_RX_FILTER     = BIT(2),
1012         IONIC_ETH_HW_RX_HASH            = BIT(3),
1013         IONIC_ETH_HW_RX_CSUM            = BIT(4),
1014         IONIC_ETH_HW_TX_SG              = BIT(5),
1015         IONIC_ETH_HW_RX_SG              = BIT(6),
1016         IONIC_ETH_HW_TX_CSUM            = BIT(7),
1017         IONIC_ETH_HW_TSO                = BIT(8),
1018         IONIC_ETH_HW_TSO_IPV6           = BIT(9),
1019         IONIC_ETH_HW_TSO_ECN            = BIT(10),
1020         IONIC_ETH_HW_TSO_GRE            = BIT(11),
1021         IONIC_ETH_HW_TSO_GRE_CSUM       = BIT(12),
1022         IONIC_ETH_HW_TSO_IPXIP4         = BIT(13),
1023         IONIC_ETH_HW_TSO_IPXIP6         = BIT(14),
1024         IONIC_ETH_HW_TSO_UDP            = BIT(15),
1025         IONIC_ETH_HW_TSO_UDP_CSUM       = BIT(16),
1026         IONIC_ETH_HW_RX_CSUM_GENEVE     = BIT(17),
1027         IONIC_ETH_HW_TX_CSUM_GENEVE     = BIT(18),
1028         IONIC_ETH_HW_TSO_GENEVE         = BIT(19)
1029 };
1030
1031 /**
1032  * struct ionic_q_control_cmd - Queue control command
1033  * @opcode:     opcode
1034  * @type:       Queue type
1035  * @lif_index:  LIF index
1036  * @index:      Queue index
1037  * @oper:       Operation (enum ionic_q_control_oper)
1038  */
1039 struct ionic_q_control_cmd {
1040         u8     opcode;
1041         u8     type;
1042         __le16 lif_index;
1043         __le32 index;
1044         u8     oper;
1045         u8     rsvd[55];
1046 };
1047
1048 typedef struct ionic_admin_comp ionic_q_control_comp;
1049
1050 enum ionic_q_control_oper {
1051         IONIC_Q_DISABLE         = 0,
1052         IONIC_Q_ENABLE          = 1,
1053         IONIC_Q_HANG_RESET      = 2,
1054 };
1055
1056 /**
1057  * enum ionic_phy_type - Physical connection type
1058  * @IONIC_PHY_TYPE_NONE:    No PHY installed
1059  * @IONIC_PHY_TYPE_COPPER:  Copper PHY
1060  * @IONIC_PHY_TYPE_FIBER:   Fiber PHY
1061  */
1062 enum ionic_phy_type {
1063         IONIC_PHY_TYPE_NONE     = 0,
1064         IONIC_PHY_TYPE_COPPER   = 1,
1065         IONIC_PHY_TYPE_FIBER    = 2,
1066 };
1067
1068 /**
1069  * enum ionic_xcvr_state - Transceiver status
1070  * @IONIC_XCVR_STATE_REMOVED:        Transceiver removed
1071  * @IONIC_XCVR_STATE_INSERTED:       Transceiver inserted
1072  * @IONIC_XCVR_STATE_PENDING:        Transceiver pending
1073  * @IONIC_XCVR_STATE_SPROM_READ:     Transceiver data read
1074  * @IONIC_XCVR_STATE_SPROM_READ_ERR: Transceiver data read error
1075  */
1076 enum ionic_xcvr_state {
1077         IONIC_XCVR_STATE_REMOVED         = 0,
1078         IONIC_XCVR_STATE_INSERTED        = 1,
1079         IONIC_XCVR_STATE_PENDING         = 2,
1080         IONIC_XCVR_STATE_SPROM_READ      = 3,
1081         IONIC_XCVR_STATE_SPROM_READ_ERR  = 4,
1082 };
1083
1084 /**
1085  * enum ionic_xcvr_pid - Supported link modes
1086  */
1087 enum ionic_xcvr_pid {
1088         IONIC_XCVR_PID_UNKNOWN           = 0,
1089
1090         /* CU */
1091         IONIC_XCVR_PID_QSFP_100G_CR4     = 1,
1092         IONIC_XCVR_PID_QSFP_40GBASE_CR4  = 2,
1093         IONIC_XCVR_PID_SFP_25GBASE_CR_S  = 3,
1094         IONIC_XCVR_PID_SFP_25GBASE_CR_L  = 4,
1095         IONIC_XCVR_PID_SFP_25GBASE_CR_N  = 5,
1096
1097         /* Fiber */
1098         IONIC_XCVR_PID_QSFP_100G_AOC    = 50,
1099         IONIC_XCVR_PID_QSFP_100G_ACC    = 51,
1100         IONIC_XCVR_PID_QSFP_100G_SR4    = 52,
1101         IONIC_XCVR_PID_QSFP_100G_LR4    = 53,
1102         IONIC_XCVR_PID_QSFP_100G_ER4    = 54,
1103         IONIC_XCVR_PID_QSFP_40GBASE_ER4 = 55,
1104         IONIC_XCVR_PID_QSFP_40GBASE_SR4 = 56,
1105         IONIC_XCVR_PID_QSFP_40GBASE_LR4 = 57,
1106         IONIC_XCVR_PID_QSFP_40GBASE_AOC = 58,
1107         IONIC_XCVR_PID_SFP_25GBASE_SR   = 59,
1108         IONIC_XCVR_PID_SFP_25GBASE_LR   = 60,
1109         IONIC_XCVR_PID_SFP_25GBASE_ER   = 61,
1110         IONIC_XCVR_PID_SFP_25GBASE_AOC  = 62,
1111         IONIC_XCVR_PID_SFP_10GBASE_SR   = 63,
1112         IONIC_XCVR_PID_SFP_10GBASE_LR   = 64,
1113         IONIC_XCVR_PID_SFP_10GBASE_LRM  = 65,
1114         IONIC_XCVR_PID_SFP_10GBASE_ER   = 66,
1115         IONIC_XCVR_PID_SFP_10GBASE_AOC  = 67,
1116         IONIC_XCVR_PID_SFP_10GBASE_CU   = 68,
1117         IONIC_XCVR_PID_QSFP_100G_CWDM4  = 69,
1118         IONIC_XCVR_PID_QSFP_100G_PSM4   = 70,
1119         IONIC_XCVR_PID_SFP_25GBASE_ACC  = 71,
1120 };
1121
1122 /**
1123  * enum ionic_port_admin_state - Port config state
1124  * @IONIC_PORT_ADMIN_STATE_NONE:    Port admin state not configured
1125  * @IONIC_PORT_ADMIN_STATE_DOWN:    Port admin disabled
1126  * @IONIC_PORT_ADMIN_STATE_UP:      Port admin enabled
1127  */
1128 enum ionic_port_admin_state {
1129         IONIC_PORT_ADMIN_STATE_NONE = 0,
1130         IONIC_PORT_ADMIN_STATE_DOWN = 1,
1131         IONIC_PORT_ADMIN_STATE_UP   = 2,
1132 };
1133
1134 /**
1135  * enum ionic_port_oper_status - Port operational status
1136  * @IONIC_PORT_OPER_STATUS_NONE:    Port disabled
1137  * @IONIC_PORT_OPER_STATUS_UP:      Port link status up
1138  * @IONIC_PORT_OPER_STATUS_DOWN:    Port link status down
1139  */
1140 enum ionic_port_oper_status {
1141         IONIC_PORT_OPER_STATUS_NONE  = 0,
1142         IONIC_PORT_OPER_STATUS_UP    = 1,
1143         IONIC_PORT_OPER_STATUS_DOWN  = 2,
1144 };
1145
1146 /**
1147  * enum ionic_port_fec_type - Ethernet Forward error correction (FEC) modes
1148  * @IONIC_PORT_FEC_TYPE_NONE:       FEC Disabled
1149  * @IONIC_PORT_FEC_TYPE_FC:         FireCode FEC
1150  * @IONIC_PORT_FEC_TYPE_RS:         ReedSolomon FEC
1151  */
1152 enum ionic_port_fec_type {
1153         IONIC_PORT_FEC_TYPE_NONE = 0,
1154         IONIC_PORT_FEC_TYPE_FC   = 1,
1155         IONIC_PORT_FEC_TYPE_RS   = 2,
1156 };
1157
1158 /**
1159  * enum ionic_port_pause_type - Ethernet pause (flow control) modes
1160  * @IONIC_PORT_PAUSE_TYPE_NONE:     Disable Pause
1161  * @IONIC_PORT_PAUSE_TYPE_LINK:     Link level pause
1162  * @IONIC_PORT_PAUSE_TYPE_PFC:      Priority-Flow Control
1163  */
1164 enum ionic_port_pause_type {
1165         IONIC_PORT_PAUSE_TYPE_NONE = 0,
1166         IONIC_PORT_PAUSE_TYPE_LINK = 1,
1167         IONIC_PORT_PAUSE_TYPE_PFC  = 2,
1168 };
1169
1170 /**
1171  * enum ionic_port_loopback_mode - Loopback modes
1172  * @IONIC_PORT_LOOPBACK_MODE_NONE:  Disable loopback
1173  * @IONIC_PORT_LOOPBACK_MODE_MAC:   MAC loopback
1174  * @IONIC_PORT_LOOPBACK_MODE_PHY:   PHY/SerDes loopback
1175  */
1176 enum ionic_port_loopback_mode {
1177         IONIC_PORT_LOOPBACK_MODE_NONE = 0,
1178         IONIC_PORT_LOOPBACK_MODE_MAC  = 1,
1179         IONIC_PORT_LOOPBACK_MODE_PHY  = 2,
1180 };
1181
1182 /**
1183  * struct ionic_xcvr_status - Transceiver Status information
1184  * @state:    Transceiver status (enum ionic_xcvr_state)
1185  * @phy:      Physical connection type (enum ionic_phy_type)
1186  * @pid:      Transceiver link mode (enum ionic_xcvr_pid)
1187  * @sprom:    Transceiver sprom contents
1188  */
1189 struct ionic_xcvr_status {
1190         u8     state;
1191         u8     phy;
1192         __le16 pid;
1193         u8     sprom[256];
1194 };
1195
1196 /**
1197  * union ionic_port_config - Port configuration
1198  * @speed:              port speed (in Mbps)
1199  * @mtu:                mtu
1200  * @state:              port admin state (enum ionic_port_admin_state)
1201  * @an_enable:          autoneg enable
1202  * @fec_type:           fec type (enum ionic_port_fec_type)
1203  * @pause_type:         pause type (enum ionic_port_pause_type)
1204  * @loopback_mode:      loopback mode (enum ionic_port_loopback_mode)
1205  */
1206 union ionic_port_config {
1207         struct {
1208 #define IONIC_SPEED_100G        100000  /* 100G in Mbps */
1209 #define IONIC_SPEED_50G         50000   /* 50G in Mbps */
1210 #define IONIC_SPEED_40G         40000   /* 40G in Mbps */
1211 #define IONIC_SPEED_25G         25000   /* 25G in Mbps */
1212 #define IONIC_SPEED_10G         10000   /* 10G in Mbps */
1213 #define IONIC_SPEED_1G          1000    /* 1G in Mbps */
1214                 __le32 speed;
1215                 __le32 mtu;
1216                 u8     state;
1217                 u8     an_enable;
1218                 u8     fec_type;
1219 #define IONIC_PAUSE_TYPE_MASK           0x0f
1220 #define IONIC_PAUSE_FLAGS_MASK          0xf0
1221 #define IONIC_PAUSE_F_TX                0x10
1222 #define IONIC_PAUSE_F_RX                0x20
1223                 u8     pause_type;
1224                 u8     loopback_mode;
1225         };
1226         __le32 words[64];
1227 };
1228
1229 /**
1230  * struct ionic_port_status - Port Status information
1231  * @status:             link status (enum ionic_port_oper_status)
1232  * @id:                 port id
1233  * @speed:              link speed (in Mbps)
1234  * @link_down_count:    number of times link went from up to down
1235  * @fec_type:           fec type (enum ionic_port_fec_type)
1236  * @xcvr:               transceiver status
1237  */
1238 struct ionic_port_status {
1239         __le32 id;
1240         __le32 speed;
1241         u8     status;
1242         __le16 link_down_count;
1243         u8     fec_type;
1244         u8     rsvd[48];
1245         struct ionic_xcvr_status  xcvr;
1246 } __rte_packed;
1247
1248 /**
1249  * struct ionic_port_identify_cmd - Port identify command
1250  * @opcode:     opcode
1251  * @index:      port index
1252  * @ver:        Highest version of identify supported by driver
1253  */
1254 struct ionic_port_identify_cmd {
1255         u8 opcode;
1256         u8 index;
1257         u8 ver;
1258         u8 rsvd[61];
1259 };
1260
1261 /**
1262  * struct ionic_port_identify_comp - Port identify command completion
1263  * @status: Status of the command (enum ionic_status_code)
1264  * @ver:    Version of identify returned by device
1265  */
1266 struct ionic_port_identify_comp {
1267         u8 status;
1268         u8 ver;
1269         u8 rsvd[14];
1270 };
1271
1272 /**
1273  * struct ionic_port_init_cmd - Port initialization command
1274  * @opcode:     opcode
1275  * @index:      port index
1276  * @info_pa:    destination address for port info (struct ionic_port_info)
1277  */
1278 struct ionic_port_init_cmd {
1279         u8     opcode;
1280         u8     index;
1281         u8     rsvd[6];
1282         __le64 info_pa;
1283         u8     rsvd2[48];
1284 };
1285
1286 /**
1287  * struct ionic_port_init_comp - Port initialization command completion
1288  * @status: Status of the command (enum ionic_status_code)
1289  */
1290 struct ionic_port_init_comp {
1291         u8 status;
1292         u8 rsvd[15];
1293 };
1294
1295 /**
1296  * struct ionic_port_reset_cmd - Port reset command
1297  * @opcode:     opcode
1298  * @index:      port index
1299  */
1300 struct ionic_port_reset_cmd {
1301         u8 opcode;
1302         u8 index;
1303         u8 rsvd[62];
1304 };
1305
1306 /**
1307  * struct ionic_port_reset_comp - Port reset command completion
1308  * @status: Status of the command (enum ionic_status_code)
1309  */
1310 struct ionic_port_reset_comp {
1311         u8 status;
1312         u8 rsvd[15];
1313 };
1314
1315 /**
1316  * enum ionic_stats_ctl_cmd - List of commands for stats control
1317  * @IONIC_STATS_CTL_RESET:      Reset statistics
1318  */
1319 enum ionic_stats_ctl_cmd {
1320         IONIC_STATS_CTL_RESET           = 0,
1321 };
1322
1323 /**
1324  * enum ionic_port_attr - List of device attributes
1325  * @IONIC_PORT_ATTR_STATE:      Port state attribute
1326  * @IONIC_PORT_ATTR_SPEED:      Port speed attribute
1327  * @IONIC_PORT_ATTR_MTU:        Port MTU attribute
1328  * @IONIC_PORT_ATTR_AUTONEG:    Port autonegotiation attribute
1329  * @IONIC_PORT_ATTR_FEC:        Port FEC attribute
1330  * @IONIC_PORT_ATTR_PAUSE:      Port pause attribute
1331  * @IONIC_PORT_ATTR_LOOPBACK:   Port loopback attribute
1332  * @IONIC_PORT_ATTR_STATS_CTRL: Port statistics control attribute
1333  */
1334 enum ionic_port_attr {
1335         IONIC_PORT_ATTR_STATE           = 0,
1336         IONIC_PORT_ATTR_SPEED           = 1,
1337         IONIC_PORT_ATTR_MTU             = 2,
1338         IONIC_PORT_ATTR_AUTONEG         = 3,
1339         IONIC_PORT_ATTR_FEC             = 4,
1340         IONIC_PORT_ATTR_PAUSE           = 5,
1341         IONIC_PORT_ATTR_LOOPBACK        = 6,
1342         IONIC_PORT_ATTR_STATS_CTRL      = 7,
1343 };
1344
1345 /**
1346  * struct ionic_port_setattr_cmd - Set port attributes on the NIC
1347  * @opcode:         Opcode
1348  * @index:          Port index
1349  * @attr:           Attribute type (enum ionic_port_attr)
1350  * @state:          Port state
1351  * @speed:          Port speed
1352  * @mtu:            Port MTU
1353  * @an_enable:      Port autonegotiation setting
1354  * @fec_type:       Port FEC type setting
1355  * @pause_type:     Port pause type setting
1356  * @loopback_mode:  Port loopback mode
1357  * @stats_ctl:      Port stats setting
1358  */
1359 struct ionic_port_setattr_cmd {
1360         u8     opcode;
1361         u8     index;
1362         u8     attr;
1363         u8     rsvd;
1364         union {
1365                 u8      state;
1366                 __le32  speed;
1367                 __le32  mtu;
1368                 u8      an_enable;
1369                 u8      fec_type;
1370                 u8      pause_type;
1371                 u8      loopback_mode;
1372                 u8      stats_ctl;
1373                 u8      rsvd2[60];
1374         };
1375 };
1376
1377 /**
1378  * struct ionic_port_setattr_comp - Port set attr command completion
1379  * @status:     Status of the command (enum ionic_status_code)
1380  * @color:      Color bit
1381  */
1382 struct ionic_port_setattr_comp {
1383         u8     status;
1384         u8     rsvd[14];
1385         u8     color;
1386 };
1387
1388 /**
1389  * struct ionic_port_getattr_cmd - Get port attributes from the NIC
1390  * @opcode:     Opcode
1391  * @index:      port index
1392  * @attr:       Attribute type (enum ionic_port_attr)
1393  */
1394 struct ionic_port_getattr_cmd {
1395         u8     opcode;
1396         u8     index;
1397         u8     attr;
1398         u8     rsvd[61];
1399 };
1400
1401 /**
1402  * struct ionic_port_getattr_comp - Port get attr command completion
1403  * @status:         Status of the command (enum ionic_status_code)
1404  * @state:          Port state
1405  * @speed:          Port speed
1406  * @mtu:            Port MTU
1407  * @an_enable:      Port autonegotiation setting
1408  * @fec_type:       Port FEC type setting
1409  * @pause_type:     Port pause type setting
1410  * @loopback_mode:  Port loopback mode
1411  * @color:          Color bit
1412  */
1413 struct ionic_port_getattr_comp {
1414         u8     status;
1415         u8     rsvd[3];
1416         union {
1417                 u8      state;
1418                 __le32  speed;
1419                 __le32  mtu;
1420                 u8      an_enable;
1421                 u8      fec_type;
1422                 u8      pause_type;
1423                 u8      loopback_mode;
1424                 u8      rsvd2[11];
1425         } __rte_packed;
1426         u8     color;
1427 };
1428
1429 /**
1430  * struct ionic_lif_status - LIF status register
1431  * @eid:             most recent NotifyQ event id
1432  * @port_num:        port the LIF is connected to
1433  * @link_status:     port status (enum ionic_port_oper_status)
1434  * @link_speed:      speed of link in Mbps
1435  * @link_down_count: number of times link went from up to down
1436  */
1437 struct ionic_lif_status {
1438         __le64 eid;
1439         u8     port_num;
1440         u8     rsvd;
1441         __le16 link_status;
1442         __le32 link_speed;              /* units of 1Mbps: eg 10000 = 10Gbps */
1443         __le16 link_down_count;
1444         u8      rsvd2[46];
1445 };
1446
1447 /**
1448  * struct ionic_lif_reset_cmd - LIF reset command
1449  * @opcode:    opcode
1450  * @index:     LIF index
1451  */
1452 struct ionic_lif_reset_cmd {
1453         u8     opcode;
1454         u8     rsvd;
1455         __le16 index;
1456         __le32 rsvd2[15];
1457 };
1458
1459 typedef struct ionic_admin_comp ionic_lif_reset_comp;
1460
1461 enum ionic_dev_state {
1462         IONIC_DEV_DISABLE       = 0,
1463         IONIC_DEV_ENABLE        = 1,
1464         IONIC_DEV_HANG_RESET    = 2,
1465 };
1466
1467 /**
1468  * enum ionic_dev_attr - List of device attributes
1469  * @IONIC_DEV_ATTR_STATE:     Device state attribute
1470  * @IONIC_DEV_ATTR_NAME:      Device name attribute
1471  * @IONIC_DEV_ATTR_FEATURES:  Device feature attributes
1472  */
1473 enum ionic_dev_attr {
1474         IONIC_DEV_ATTR_STATE    = 0,
1475         IONIC_DEV_ATTR_NAME     = 1,
1476         IONIC_DEV_ATTR_FEATURES = 2,
1477 };
1478
1479 /**
1480  * struct ionic_dev_setattr_cmd - Set Device attributes on the NIC
1481  * @opcode:     Opcode
1482  * @attr:       Attribute type (enum ionic_dev_attr)
1483  * @state:      Device state (enum ionic_dev_state)
1484  * @name:       The bus info, e.g. PCI slot-device-function, 0 terminated
1485  * @features:   Device features
1486  */
1487 struct ionic_dev_setattr_cmd {
1488         u8     opcode;
1489         u8     attr;
1490         __le16 rsvd;
1491         union {
1492                 u8      state;
1493                 char    name[IONIC_IFNAMSIZ];
1494                 __le64  features;
1495                 u8      rsvd2[60];
1496         } __rte_packed;
1497 };
1498
1499 /**
1500  * struct ionic_dev_setattr_comp - Device set attr command completion
1501  * @status:     Status of the command (enum ionic_status_code)
1502  * @features:   Device features
1503  * @color:      Color bit
1504  */
1505 struct ionic_dev_setattr_comp {
1506         u8     status;
1507         u8     rsvd[3];
1508         union {
1509                 __le64  features;
1510                 u8      rsvd2[11];
1511         } __rte_packed;
1512         u8     color;
1513 };
1514
1515 /**
1516  * struct ionic_dev_getattr_cmd - Get Device attributes from the NIC
1517  * @opcode:     opcode
1518  * @attr:       Attribute type (enum ionic_dev_attr)
1519  */
1520 struct ionic_dev_getattr_cmd {
1521         u8     opcode;
1522         u8     attr;
1523         u8     rsvd[62];
1524 };
1525
1526 /**
1527  * struct ionic_dev_setattr_comp - Device set attr command completion
1528  * @status:     Status of the command (enum ionic_status_code)
1529  * @features:   Device features
1530  * @color:      Color bit
1531  */
1532 struct ionic_dev_getattr_comp {
1533         u8     status;
1534         u8     rsvd[3];
1535         union {
1536                 __le64  features;
1537                 u8      rsvd2[11];
1538         } __rte_packed;
1539         u8     color;
1540 };
1541
1542 /**
1543  * RSS parameters
1544  */
1545 #define IONIC_RSS_HASH_KEY_SIZE         40
1546
1547 enum ionic_rss_hash_types {
1548         IONIC_RSS_TYPE_IPV4     = BIT(0),
1549         IONIC_RSS_TYPE_IPV4_TCP = BIT(1),
1550         IONIC_RSS_TYPE_IPV4_UDP = BIT(2),
1551         IONIC_RSS_TYPE_IPV6     = BIT(3),
1552         IONIC_RSS_TYPE_IPV6_TCP = BIT(4),
1553         IONIC_RSS_TYPE_IPV6_UDP = BIT(5),
1554 };
1555
1556 /**
1557  * enum ionic_lif_attr - List of LIF attributes
1558  * @IONIC_LIF_ATTR_STATE:       LIF state attribute
1559  * @IONIC_LIF_ATTR_NAME:        LIF name attribute
1560  * @IONIC_LIF_ATTR_MTU:         LIF MTU attribute
1561  * @IONIC_LIF_ATTR_MAC:         LIF MAC attribute
1562  * @IONIC_LIF_ATTR_FEATURES:    LIF features attribute
1563  * @IONIC_LIF_ATTR_RSS:         LIF RSS attribute
1564  * @IONIC_LIF_ATTR_STATS_CTRL:  LIF statistics control attribute
1565  */
1566 enum ionic_lif_attr {
1567         IONIC_LIF_ATTR_STATE        = 0,
1568         IONIC_LIF_ATTR_NAME         = 1,
1569         IONIC_LIF_ATTR_MTU          = 2,
1570         IONIC_LIF_ATTR_MAC          = 3,
1571         IONIC_LIF_ATTR_FEATURES     = 4,
1572         IONIC_LIF_ATTR_RSS          = 5,
1573         IONIC_LIF_ATTR_STATS_CTRL   = 6,
1574 };
1575
1576 /**
1577  * struct ionic_lif_setattr_cmd - Set LIF attributes on the NIC
1578  * @opcode:     Opcode
1579  * @attr:       Attribute type (enum ionic_lif_attr)
1580  * @index:      LIF index
1581  * @state:      LIF state (enum ionic_lif_state)
1582  * @name:       The netdev name string, 0 terminated
1583  * @mtu:        Mtu
1584  * @mac:        Station mac
1585  * @features:   Features (enum ionic_eth_hw_features)
1586  * @rss:        RSS properties
1587  *              @types:     The hash types to enable (see rss_hash_types)
1588  *              @key:       The hash secret key
1589  *              @addr:      Address for the indirection table shared memory
1590  * @stats_ctl:  stats control commands (enum ionic_stats_ctl_cmd)
1591  */
1592 struct ionic_lif_setattr_cmd {
1593         u8     opcode;
1594         u8     attr;
1595         __le16 index;
1596         union {
1597                 u8      state;
1598                 char    name[IONIC_IFNAMSIZ];
1599                 __le32  mtu;
1600                 u8      mac[6];
1601                 __le64  features;
1602                 struct {
1603                         __le16 types;
1604                         u8     key[IONIC_RSS_HASH_KEY_SIZE];
1605                         u8     rsvd[6];
1606                         __le64 addr;
1607                 } rss;
1608                 u8      stats_ctl;
1609                 u8      rsvd[60];
1610         } __rte_packed;
1611 };
1612
1613 /**
1614  * struct ionic_lif_setattr_comp - LIF set attr command completion
1615  * @status:     Status of the command (enum ionic_status_code)
1616  * @comp_index: Index in the descriptor ring for which this is the completion
1617  * @features:   features (enum ionic_eth_hw_features)
1618  * @color:      Color bit
1619  */
1620 struct ionic_lif_setattr_comp {
1621         u8     status;
1622         u8     rsvd;
1623         __le16 comp_index;
1624         union {
1625                 __le64  features;
1626                 u8      rsvd2[11];
1627         } __rte_packed;
1628         u8     color;
1629 };
1630
1631 /**
1632  * struct ionic_lif_getattr_cmd - Get LIF attributes from the NIC
1633  * @opcode:     Opcode
1634  * @attr:       Attribute type (enum ionic_lif_attr)
1635  * @index:      LIF index
1636  */
1637 struct ionic_lif_getattr_cmd {
1638         u8     opcode;
1639         u8     attr;
1640         __le16 index;
1641         u8     rsvd[60];
1642 };
1643
1644 /**
1645  * struct ionic_lif_getattr_comp - LIF get attr command completion
1646  * @status:     Status of the command (enum ionic_status_code)
1647  * @comp_index: Index in the descriptor ring for which this is the completion
1648  * @state:      LIF state (enum ionic_lif_state)
1649  * @name:       The netdev name string, 0 terminated
1650  * @mtu:        Mtu
1651  * @mac:        Station mac
1652  * @features:   Features (enum ionic_eth_hw_features)
1653  * @color:      Color bit
1654  */
1655 struct ionic_lif_getattr_comp {
1656         u8     status;
1657         u8     rsvd;
1658         __le16 comp_index;
1659         union {
1660                 u8      state;
1661                 __le32  mtu;
1662                 u8      mac[6];
1663                 __le64  features;
1664                 u8      rsvd2[11];
1665         } __rte_packed;
1666         u8     color;
1667 };
1668
1669 enum ionic_rx_mode {
1670         IONIC_RX_MODE_F_UNICAST         = BIT(0),
1671         IONIC_RX_MODE_F_MULTICAST       = BIT(1),
1672         IONIC_RX_MODE_F_BROADCAST       = BIT(2),
1673         IONIC_RX_MODE_F_PROMISC         = BIT(3),
1674         IONIC_RX_MODE_F_ALLMULTI        = BIT(4),
1675         IONIC_RX_MODE_F_RDMA_SNIFFER    = BIT(5),
1676 };
1677
1678 /**
1679  * struct ionic_rx_mode_set_cmd - Set LIF's Rx mode command
1680  * @opcode:     opcode
1681  * @lif_index:  LIF index
1682  * @rx_mode:    Rx mode flags:
1683  *                  IONIC_RX_MODE_F_UNICAST: Accept known unicast packets
1684  *                  IONIC_RX_MODE_F_MULTICAST: Accept known multicast packets
1685  *                  IONIC_RX_MODE_F_BROADCAST: Accept broadcast packets
1686  *                  IONIC_RX_MODE_F_PROMISC: Accept any packets
1687  *                  IONIC_RX_MODE_F_ALLMULTI: Accept any multicast packets
1688  *                  IONIC_RX_MODE_F_RDMA_SNIFFER: Sniff RDMA packets
1689  */
1690 struct ionic_rx_mode_set_cmd {
1691         u8     opcode;
1692         u8     rsvd;
1693         __le16 lif_index;
1694         __le16 rx_mode;
1695         __le16 rsvd2[29];
1696 };
1697
1698 typedef struct ionic_admin_comp ionic_rx_mode_set_comp;
1699
1700 enum ionic_rx_filter_match_type {
1701         IONIC_RX_FILTER_MATCH_VLAN = 0,
1702         IONIC_RX_FILTER_MATCH_MAC,
1703         IONIC_RX_FILTER_MATCH_MAC_VLAN,
1704 };
1705
1706 /**
1707  * struct ionic_rx_filter_add_cmd - Add LIF Rx filter command
1708  * @opcode:     opcode
1709  * @qtype:      Queue type
1710  * @lif_index:  LIF index
1711  * @qid:        Queue ID
1712  * @match:      Rx filter match type (see IONIC_RX_FILTER_MATCH_xxx)
1713  * @vlan:       VLAN filter
1714  *              @vlan:  VLAN ID
1715  * @mac:        MAC filter
1716  *              @addr:  MAC address (network-byte order)
1717  * @mac_vlan:   MACVLAN filter
1718  *              @vlan:  VLAN ID
1719  *              @addr:  MAC address (network-byte order)
1720  */
1721 struct ionic_rx_filter_add_cmd {
1722         u8     opcode;
1723         u8     qtype;
1724         __le16 lif_index;
1725         __le32 qid;
1726         __le16 match;
1727         union {
1728                 struct {
1729                         __le16 vlan;
1730                 } vlan;
1731                 struct {
1732                         u8     addr[6];
1733                 } mac;
1734                 struct {
1735                         __le16 vlan;
1736                         u8     addr[6];
1737                 } mac_vlan;
1738                 u8 rsvd[54];
1739         };
1740 };
1741
1742 /**
1743  * struct ionic_rx_filter_add_comp - Add LIF Rx filter command completion
1744  * @status:     Status of the command (enum ionic_status_code)
1745  * @comp_index: Index in the descriptor ring for which this is the completion
1746  * @filter_id:  Filter ID
1747  * @color:      Color bit
1748  */
1749 struct ionic_rx_filter_add_comp {
1750         u8     status;
1751         u8     rsvd;
1752         __le16 comp_index;
1753         __le32 filter_id;
1754         u8     rsvd2[7];
1755         u8     color;
1756 };
1757
1758 /**
1759  * struct ionic_rx_filter_del_cmd - Delete LIF Rx filter command
1760  * @opcode:     opcode
1761  * @lif_index:  LIF index
1762  * @filter_id:  Filter ID
1763  */
1764 struct ionic_rx_filter_del_cmd {
1765         u8     opcode;
1766         u8     rsvd;
1767         __le16 lif_index;
1768         __le32 filter_id;
1769         u8     rsvd2[56];
1770 };
1771
1772 typedef struct ionic_admin_comp ionic_rx_filter_del_comp;
1773
1774 enum ionic_vf_attr {
1775         IONIC_VF_ATTR_SPOOFCHK  = 1,
1776         IONIC_VF_ATTR_TRUST     = 2,
1777         IONIC_VF_ATTR_MAC       = 3,
1778         IONIC_VF_ATTR_LINKSTATE = 4,
1779         IONIC_VF_ATTR_VLAN      = 5,
1780         IONIC_VF_ATTR_RATE      = 6,
1781         IONIC_VF_ATTR_STATSADDR = 7,
1782 };
1783
1784 /**
1785  * enum ionic_vf_link_status - Virtual Function link status
1786  * @IONIC_VF_LINK_STATUS_AUTO:   Use link state of the uplink
1787  * @IONIC_VF_LINK_STATUS_UP:     Link always up
1788  * @IONIC_VF_LINK_STATUS_DOWN:   Link always down
1789  */
1790 enum ionic_vf_link_status {
1791         IONIC_VF_LINK_STATUS_AUTO = 0,
1792         IONIC_VF_LINK_STATUS_UP   = 1,
1793         IONIC_VF_LINK_STATUS_DOWN = 2,
1794 };
1795
1796 /**
1797  * struct ionic_vf_setattr_cmd - Set VF attributes on the NIC
1798  * @opcode:     Opcode
1799  * @attr:       Attribute type (enum ionic_vf_attr)
1800  * @vf_index:   VF index
1801  *      @macaddr:       mac address
1802  *      @vlanid:        vlan ID
1803  *      @maxrate:       max Tx rate in Mbps
1804  *      @spoofchk:      enable address spoof checking
1805  *      @trust:         enable VF trust
1806  *      @linkstate:     set link up or down
1807  *      @stats_pa:      set DMA address for VF stats
1808  */
1809 struct ionic_vf_setattr_cmd {
1810         u8     opcode;
1811         u8     attr;
1812         __le16 vf_index;
1813         union {
1814                 u8     macaddr[6];
1815                 __le16 vlanid;
1816                 __le32 maxrate;
1817                 u8     spoofchk;
1818                 u8     trust;
1819                 u8     linkstate;
1820                 __le64 stats_pa;
1821                 u8     pad[60];
1822         } __rte_packed;
1823 };
1824
1825 struct ionic_vf_setattr_comp {
1826         u8     status;
1827         u8     attr;
1828         __le16 vf_index;
1829         __le16 comp_index;
1830         u8     rsvd[9];
1831         u8     color;
1832 };
1833
1834 /**
1835  * struct ionic_vf_getattr_cmd - Get VF attributes from the NIC
1836  * @opcode:     Opcode
1837  * @attr:       Attribute type (enum ionic_vf_attr)
1838  * @vf_index:   VF index
1839  */
1840 struct ionic_vf_getattr_cmd {
1841         u8     opcode;
1842         u8     attr;
1843         __le16 vf_index;
1844         u8     rsvd[60];
1845 };
1846
1847 struct ionic_vf_getattr_comp {
1848         u8     status;
1849         u8     attr;
1850         __le16 vf_index;
1851         union {
1852                 u8     macaddr[6];
1853                 __le16 vlanid;
1854                 __le32 maxrate;
1855                 u8     spoofchk;
1856                 u8     trust;
1857                 u8     linkstate;
1858                 __le64 stats_pa;
1859                 u8     pad[11];
1860         } __rte_packed;
1861         u8     color;
1862 };
1863
1864 /**
1865  * struct ionic_qos_identify_cmd - QoS identify command
1866  * @opcode:  opcode
1867  * @ver:     Highest version of identify supported by driver
1868  *
1869  */
1870 struct ionic_qos_identify_cmd {
1871         u8 opcode;
1872         u8 ver;
1873         u8 rsvd[62];
1874 };
1875
1876 /**
1877  * struct ionic_qos_identify_comp - QoS identify command completion
1878  * @status: Status of the command (enum ionic_status_code)
1879  * @ver:    Version of identify returned by device
1880  */
1881 struct ionic_qos_identify_comp {
1882         u8 status;
1883         u8 ver;
1884         u8 rsvd[14];
1885 };
1886
1887 #define IONIC_QOS_TC_MAX                8
1888 #define IONIC_QOS_ALL_TC                0xFF
1889 /* Capri max supported, should be renamed. */
1890 #define IONIC_QOS_CLASS_MAX             7
1891 #define IONIC_QOS_PCP_MAX               8
1892 #define IONIC_QOS_CLASS_NAME_SZ 32
1893 #define IONIC_QOS_DSCP_MAX              64
1894 #define IONIC_QOS_ALL_PCP               0xFF
1895 #define IONIC_DSCP_BLOCK_SIZE           8
1896
1897 /**
1898  * enum ionic_qos_class
1899  */
1900 enum ionic_qos_class {
1901         IONIC_QOS_CLASS_DEFAULT         = 0,
1902         IONIC_QOS_CLASS_USER_DEFINED_1  = 1,
1903         IONIC_QOS_CLASS_USER_DEFINED_2  = 2,
1904         IONIC_QOS_CLASS_USER_DEFINED_3  = 3,
1905         IONIC_QOS_CLASS_USER_DEFINED_4  = 4,
1906         IONIC_QOS_CLASS_USER_DEFINED_5  = 5,
1907         IONIC_QOS_CLASS_USER_DEFINED_6  = 6,
1908 };
1909
1910 /**
1911  * enum ionic_qos_class_type - Traffic classification criteria
1912  * @IONIC_QOS_CLASS_TYPE_NONE:    No QoS
1913  * @IONIC_QOS_CLASS_TYPE_PCP:     Dot1Q PCP
1914  * @IONIC_QOS_CLASS_TYPE_DSCP:    IP DSCP
1915  */
1916 enum ionic_qos_class_type {
1917         IONIC_QOS_CLASS_TYPE_NONE       = 0,
1918         IONIC_QOS_CLASS_TYPE_PCP        = 1,
1919         IONIC_QOS_CLASS_TYPE_DSCP       = 2,
1920 };
1921
1922 /**
1923  * enum ionic_qos_sched_type - QoS class scheduling type
1924  * @IONIC_QOS_SCHED_TYPE_STRICT:  Strict priority
1925  * @IONIC_QOS_SCHED_TYPE_DWRR:    Deficit weighted round-robin
1926  */
1927 enum ionic_qos_sched_type {
1928         IONIC_QOS_SCHED_TYPE_STRICT     = 0,
1929         IONIC_QOS_SCHED_TYPE_DWRR       = 1,
1930 };
1931
1932 /**
1933  * union ionic_qos_config - QoS configuration structure
1934  * @flags:              Configuration flags
1935  *      IONIC_QOS_CONFIG_F_ENABLE               enable
1936  *      IONIC_QOS_CONFIG_F_NO_DROP              drop/nodrop
1937  *      IONIC_QOS_CONFIG_F_RW_DOT1Q_PCP         enable dot1q pcp rewrite
1938  *      IONIC_QOS_CONFIG_F_RW_IP_DSCP           enable ip dscp rewrite
1939  *      IONIC_QOS_CONFIG_F_NON_DISRUPTIVE       Non-disruptive TC update
1940  * @sched_type:         QoS class scheduling type (enum ionic_qos_sched_type)
1941  * @class_type:         QoS class type (enum ionic_qos_class_type)
1942  * @pause_type:         QoS pause type (enum ionic_qos_pause_type)
1943  * @name:               QoS class name
1944  * @mtu:                MTU of the class
1945  * @pfc_cos:            Priority-Flow Control class of service
1946  * @dwrr_weight:        QoS class scheduling weight
1947  * @strict_rlmt:        Rate limit for strict priority scheduling
1948  * @rw_dot1q_pcp:       Rewrite dot1q pcp to value (valid iff F_RW_DOT1Q_PCP)
1949  * @rw_ip_dscp:         Rewrite ip dscp to value (valid iff F_RW_IP_DSCP)
1950  * @dot1q_pcp:          Dot1q pcp value
1951  * @ndscp:              Number of valid dscp values in the ip_dscp field
1952  * @ip_dscp:            IP dscp values
1953  */
1954 union ionic_qos_config {
1955         struct {
1956 #define IONIC_QOS_CONFIG_F_ENABLE               BIT(0)
1957 #define IONIC_QOS_CONFIG_F_NO_DROP              BIT(1)
1958 /* Used to rewrite PCP or DSCP value. */
1959 #define IONIC_QOS_CONFIG_F_RW_DOT1Q_PCP         BIT(2)
1960 #define IONIC_QOS_CONFIG_F_RW_IP_DSCP           BIT(3)
1961 /* Non-disruptive TC update */
1962 #define IONIC_QOS_CONFIG_F_NON_DISRUPTIVE       BIT(4)
1963                 u8      flags;
1964                 u8      sched_type;
1965                 u8      class_type;
1966                 u8      pause_type;
1967                 char    name[IONIC_QOS_CLASS_NAME_SZ];
1968                 __le32  mtu;
1969                 /* flow control */
1970                 u8      pfc_cos;
1971                 /* scheduler */
1972                 union {
1973                         u8      dwrr_weight;
1974                         __le64  strict_rlmt;
1975                 };
1976                 /* marking */
1977                 /* Used to rewrite PCP or DSCP value. */
1978                 union {
1979                         u8      rw_dot1q_pcp;
1980                         u8      rw_ip_dscp;
1981                 };
1982                 /* classification */
1983                 union {
1984                         u8      dot1q_pcp;
1985                         struct {
1986                                 u8      ndscp;
1987                                 u8      ip_dscp[IONIC_QOS_DSCP_MAX];
1988                         };
1989                 };
1990         } __rte_packed;
1991         __le32  words[64];
1992 };
1993
1994 /**
1995  * union ionic_qos_identity - QoS identity structure
1996  * @version:    Version of the identify structure
1997  * @type:       QoS system type
1998  * @nclasses:   Number of usable QoS classes
1999  * @config:     Current configuration of classes
2000  */
2001 union ionic_qos_identity {
2002         struct {
2003                 u8     version;
2004                 u8     type;
2005                 u8     rsvd[62];
2006                 union ionic_qos_config config[IONIC_QOS_CLASS_MAX];
2007         };
2008         __le32 words[478];
2009 };
2010
2011 /**
2012  * struct ionic_qos_init_cmd - QoS config init command
2013  * @opcode:     Opcode
2014  * @group:      QoS class id
2015  * @info_pa:    destination address for qos info
2016  */
2017 struct ionic_qos_init_cmd {
2018         u8     opcode;
2019         u8     group;
2020         u8     rsvd[6];
2021         __le64 info_pa;
2022         u8     rsvd1[48];
2023 };
2024
2025 typedef struct ionic_admin_comp ionic_qos_init_comp;
2026
2027 /**
2028  * struct ionic_qos_reset_cmd - QoS config reset command
2029  * @opcode:     Opcode
2030  * @group:      QoS class id
2031  */
2032 struct ionic_qos_reset_cmd {
2033         u8    opcode;
2034         u8    group;
2035         u8    rsvd[62];
2036 };
2037
2038 /**
2039  * struct ionic_qos_clear_port_stats_cmd - Qos config reset command
2040  * @opcode:     Opcode
2041  */
2042 struct ionic_qos_clear_stats_cmd {
2043         u8    opcode;
2044         u8    group_bitmap;
2045         u8    rsvd[62];
2046 };
2047
2048 typedef struct ionic_admin_comp ionic_qos_reset_comp;
2049
2050 /**
2051  * struct ionic_fw_download_cmd - Firmware download command
2052  * @opcode:     opcode
2053  * @addr:       dma address of the firmware buffer
2054  * @offset:     offset of the firmware buffer within the full image
2055  * @length:     number of valid bytes in the firmware buffer
2056  */
2057 struct ionic_fw_download_cmd {
2058         u8     opcode;
2059         u8     rsvd[3];
2060         __le32 offset;
2061         __le64 addr;
2062         __le32 length;
2063 };
2064
2065 typedef struct ionic_admin_comp ionic_fw_download_comp;
2066
2067 /**
2068  * enum ionic_fw_control_oper - FW control operations
2069  * @IONIC_FW_RESET:     Reset firmware
2070  * @IONIC_FW_INSTALL:   Install firmware
2071  * @IONIC_FW_ACTIVATE:  Acticate firmware
2072  */
2073 enum ionic_fw_control_oper {
2074         IONIC_FW_RESET          = 0,
2075         IONIC_FW_INSTALL        = 1,
2076         IONIC_FW_ACTIVATE       = 2,
2077 };
2078
2079 /**
2080  * struct ionic_fw_control_cmd - Firmware control command
2081  * @opcode:    opcode
2082  * @oper:      firmware control operation (enum ionic_fw_control_oper)
2083  * @slot:      slot to activate
2084  */
2085 struct ionic_fw_control_cmd {
2086         u8  opcode;
2087         u8  rsvd[3];
2088         u8  oper;
2089         u8  slot;
2090         u8  rsvd1[58];
2091 };
2092
2093 /**
2094  * struct ionic_fw_control_comp - Firmware control copletion
2095  * @status:     Status of the command (enum ionic_status_code)
2096  * @comp_index: Index in the descriptor ring for which this is the completion
2097  * @slot:       Slot where the firmware was installed
2098  * @color:      Color bit
2099  */
2100 struct ionic_fw_control_comp {
2101         u8     status;
2102         u8     rsvd;
2103         __le16 comp_index;
2104         u8     slot;
2105         u8     rsvd1[10];
2106         u8     color;
2107 };
2108
2109 /******************************************************************
2110  ******************* RDMA Commands ********************************
2111  ******************************************************************/
2112
2113 /**
2114  * struct ionic_rdma_reset_cmd - Reset RDMA LIF cmd
2115  * @opcode:        opcode
2116  * @lif_index:     LIF index
2117  *
2118  * There is no RDMA specific dev command completion struct.  Completion uses
2119  * the common struct ionic_admin_comp.  Only the status is indicated.
2120  * Nonzero status means the LIF does not support RDMA.
2121  **/
2122 struct ionic_rdma_reset_cmd {
2123         u8     opcode;
2124         u8     rsvd;
2125         __le16 lif_index;
2126         u8     rsvd2[60];
2127 };
2128
2129 /**
2130  * struct ionic_rdma_queue_cmd - Create RDMA Queue command
2131  * @opcode:        opcode, 52, 53
2132  * @lif_index:     LIF index
2133  * @qid_ver:       (qid | (RDMA version << 24))
2134  * @cid:           intr, eq_id, or cq_id
2135  * @dbid:          doorbell page id
2136  * @depth_log2:    log base two of queue depth
2137  * @stride_log2:   log base two of queue stride
2138  * @dma_addr:      address of the queue memory
2139  *
2140  * The same command struct is used to create an RDMA event queue, completion
2141  * queue, or RDMA admin queue.  The cid is an interrupt number for an event
2142  * queue, an event queue id for a completion queue, or a completion queue id
2143  * for an RDMA admin queue.
2144  *
2145  * The queue created via a dev command must be contiguous in dma space.
2146  *
2147  * The dev commands are intended only to be used during driver initialization,
2148  * to create queues supporting the RDMA admin queue.  Other queues, and other
2149  * types of RDMA resources like memory regions, will be created and registered
2150  * via the RDMA admin queue, and will support a more complete interface
2151  * providing scatter gather lists for larger, scattered queue buffers and
2152  * memory registration.
2153  *
2154  * There is no RDMA specific dev command completion struct.  Completion uses
2155  * the common struct ionic_admin_comp.  Only the status is indicated.
2156  **/
2157 struct ionic_rdma_queue_cmd {
2158         u8     opcode;
2159         u8     rsvd;
2160         __le16 lif_index;
2161         __le32 qid_ver;
2162         __le32 cid;
2163         __le16 dbid;
2164         u8     depth_log2;
2165         u8     stride_log2;
2166         __le64 dma_addr;
2167         u8     rsvd2[40];
2168 };
2169
2170 /******************************************************************
2171  ******************* Notify Events ********************************
2172  ******************************************************************/
2173
2174 /**
2175  * struct ionic_notifyq_event - Generic event reporting structure
2176  * @eid:   event number
2177  * @ecode: event code
2178  * @data:  unspecified data about the event
2179  *
2180  * This is the generic event report struct from which the other
2181  * actual events will be formed.
2182  */
2183 struct ionic_notifyq_event {
2184         __le64 eid;
2185         __le16 ecode;
2186         u8     data[54];
2187 };
2188
2189 /**
2190  * struct ionic_link_change_event - Link change event notification
2191  * @eid:                event number
2192  * @ecode:              event code = IONIC_EVENT_LINK_CHANGE
2193  * @link_status:        link up/down, with error bits (enum ionic_port_status)
2194  * @link_speed:         speed of the network link
2195  *
2196  * Sent when the network link state changes between UP and DOWN
2197  */
2198 struct ionic_link_change_event {
2199         __le64 eid;
2200         __le16 ecode;
2201         __le16 link_status;
2202         __le32 link_speed;      /* units of 1Mbps: e.g. 10000 = 10Gbps */
2203         u8     rsvd[48];
2204 };
2205
2206 /**
2207  * struct ionic_reset_event - Reset event notification
2208  * @eid:                event number
2209  * @ecode:              event code = IONIC_EVENT_RESET
2210  * @reset_code:         reset type
2211  * @state:              0=pending, 1=complete, 2=error
2212  *
2213  * Sent when the NIC or some subsystem is going to be or
2214  * has been reset.
2215  */
2216 struct ionic_reset_event {
2217         __le64 eid;
2218         __le16 ecode;
2219         u8     reset_code;
2220         u8     state;
2221         u8     rsvd[52];
2222 };
2223
2224 /**
2225  * struct ionic_heartbeat_event - Sent periodically by NIC to indicate health
2226  * @eid:        event number
2227  * @ecode:      event code = IONIC_EVENT_HEARTBEAT
2228  */
2229 struct ionic_heartbeat_event {
2230         __le64 eid;
2231         __le16 ecode;
2232         u8     rsvd[54];
2233 };
2234
2235 /**
2236  * struct ionic_log_event - Sent to notify the driver of an internal error
2237  * @eid:        event number
2238  * @ecode:      event code = IONIC_EVENT_LOG
2239  * @data:       log data
2240  */
2241 struct ionic_log_event {
2242         __le64 eid;
2243         __le16 ecode;
2244         u8     data[54];
2245 };
2246
2247 /**
2248  * struct ionic_xcvr_event - Transceiver change event
2249  * @eid:        event number
2250  * @ecode:      event code = IONIC_EVENT_XCVR
2251  */
2252 struct ionic_xcvr_event {
2253         __le64 eid;
2254         __le16 ecode;
2255         u8     rsvd[54];
2256 };
2257
2258 /**
2259  * struct ionic_port_stats - Port statistics structure
2260  */
2261 struct ionic_port_stats {
2262         __le64 frames_rx_ok;
2263         __le64 frames_rx_all;
2264         __le64 frames_rx_bad_fcs;
2265         __le64 frames_rx_bad_all;
2266         __le64 octets_rx_ok;
2267         __le64 octets_rx_all;
2268         __le64 frames_rx_unicast;
2269         __le64 frames_rx_multicast;
2270         __le64 frames_rx_broadcast;
2271         __le64 frames_rx_pause;
2272         __le64 frames_rx_bad_length;
2273         __le64 frames_rx_undersized;
2274         __le64 frames_rx_oversized;
2275         __le64 frames_rx_fragments;
2276         __le64 frames_rx_jabber;
2277         __le64 frames_rx_pripause;
2278         __le64 frames_rx_stomped_crc;
2279         __le64 frames_rx_too_long;
2280         __le64 frames_rx_vlan_good;
2281         __le64 frames_rx_dropped;
2282         __le64 frames_rx_less_than_64b;
2283         __le64 frames_rx_64b;
2284         __le64 frames_rx_65b_127b;
2285         __le64 frames_rx_128b_255b;
2286         __le64 frames_rx_256b_511b;
2287         __le64 frames_rx_512b_1023b;
2288         __le64 frames_rx_1024b_1518b;
2289         __le64 frames_rx_1519b_2047b;
2290         __le64 frames_rx_2048b_4095b;
2291         __le64 frames_rx_4096b_8191b;
2292         __le64 frames_rx_8192b_9215b;
2293         __le64 frames_rx_other;
2294         __le64 frames_tx_ok;
2295         __le64 frames_tx_all;
2296         __le64 frames_tx_bad;
2297         __le64 octets_tx_ok;
2298         __le64 octets_tx_total;
2299         __le64 frames_tx_unicast;
2300         __le64 frames_tx_multicast;
2301         __le64 frames_tx_broadcast;
2302         __le64 frames_tx_pause;
2303         __le64 frames_tx_pripause;
2304         __le64 frames_tx_vlan;
2305         __le64 frames_tx_less_than_64b;
2306         __le64 frames_tx_64b;
2307         __le64 frames_tx_65b_127b;
2308         __le64 frames_tx_128b_255b;
2309         __le64 frames_tx_256b_511b;
2310         __le64 frames_tx_512b_1023b;
2311         __le64 frames_tx_1024b_1518b;
2312         __le64 frames_tx_1519b_2047b;
2313         __le64 frames_tx_2048b_4095b;
2314         __le64 frames_tx_4096b_8191b;
2315         __le64 frames_tx_8192b_9215b;
2316         __le64 frames_tx_other;
2317         __le64 frames_tx_pri_0;
2318         __le64 frames_tx_pri_1;
2319         __le64 frames_tx_pri_2;
2320         __le64 frames_tx_pri_3;
2321         __le64 frames_tx_pri_4;
2322         __le64 frames_tx_pri_5;
2323         __le64 frames_tx_pri_6;
2324         __le64 frames_tx_pri_7;
2325         __le64 frames_rx_pri_0;
2326         __le64 frames_rx_pri_1;
2327         __le64 frames_rx_pri_2;
2328         __le64 frames_rx_pri_3;
2329         __le64 frames_rx_pri_4;
2330         __le64 frames_rx_pri_5;
2331         __le64 frames_rx_pri_6;
2332         __le64 frames_rx_pri_7;
2333         __le64 tx_pripause_0_1us_count;
2334         __le64 tx_pripause_1_1us_count;
2335         __le64 tx_pripause_2_1us_count;
2336         __le64 tx_pripause_3_1us_count;
2337         __le64 tx_pripause_4_1us_count;
2338         __le64 tx_pripause_5_1us_count;
2339         __le64 tx_pripause_6_1us_count;
2340         __le64 tx_pripause_7_1us_count;
2341         __le64 rx_pripause_0_1us_count;
2342         __le64 rx_pripause_1_1us_count;
2343         __le64 rx_pripause_2_1us_count;
2344         __le64 rx_pripause_3_1us_count;
2345         __le64 rx_pripause_4_1us_count;
2346         __le64 rx_pripause_5_1us_count;
2347         __le64 rx_pripause_6_1us_count;
2348         __le64 rx_pripause_7_1us_count;
2349         __le64 rx_pause_1us_count;
2350         __le64 frames_tx_truncated;
2351 };
2352
2353 struct ionic_mgmt_port_stats {
2354         __le64 frames_rx_ok;
2355         __le64 frames_rx_all;
2356         __le64 frames_rx_bad_fcs;
2357         __le64 frames_rx_bad_all;
2358         __le64 octets_rx_ok;
2359         __le64 octets_rx_all;
2360         __le64 frames_rx_unicast;
2361         __le64 frames_rx_multicast;
2362         __le64 frames_rx_broadcast;
2363         __le64 frames_rx_pause;
2364         __le64 frames_rx_bad_length;
2365         __le64 frames_rx_undersized;
2366         __le64 frames_rx_oversized;
2367         __le64 frames_rx_fragments;
2368         __le64 frames_rx_jabber;
2369         __le64 frames_rx_64b;
2370         __le64 frames_rx_65b_127b;
2371         __le64 frames_rx_128b_255b;
2372         __le64 frames_rx_256b_511b;
2373         __le64 frames_rx_512b_1023b;
2374         __le64 frames_rx_1024b_1518b;
2375         __le64 frames_rx_gt_1518b;
2376         __le64 frames_rx_fifo_full;
2377         __le64 frames_tx_ok;
2378         __le64 frames_tx_all;
2379         __le64 frames_tx_bad;
2380         __le64 octets_tx_ok;
2381         __le64 octets_tx_total;
2382         __le64 frames_tx_unicast;
2383         __le64 frames_tx_multicast;
2384         __le64 frames_tx_broadcast;
2385         __le64 frames_tx_pause;
2386 };
2387
2388 enum ionic_pb_buffer_drop_stats {
2389         IONIC_BUFFER_INTRINSIC_DROP = 0,
2390         IONIC_BUFFER_DISCARDED,
2391         IONIC_BUFFER_ADMITTED,
2392         IONIC_BUFFER_OUT_OF_CELLS_DROP,
2393         IONIC_BUFFER_OUT_OF_CELLS_DROP_2,
2394         IONIC_BUFFER_OUT_OF_CREDIT_DROP,
2395         IONIC_BUFFER_TRUNCATION_DROP,
2396         IONIC_BUFFER_PORT_DISABLED_DROP,
2397         IONIC_BUFFER_COPY_TO_CPU_TAIL_DROP,
2398         IONIC_BUFFER_SPAN_TAIL_DROP,
2399         IONIC_BUFFER_MIN_SIZE_VIOLATION_DROP,
2400         IONIC_BUFFER_ENQUEUE_ERROR_DROP,
2401         IONIC_BUFFER_INVALID_PORT_DROP,
2402         IONIC_BUFFER_INVALID_OUTPUT_QUEUE_DROP,
2403         IONIC_BUFFER_DROP_MAX,
2404 };
2405
2406 enum ionic_oflow_drop_stats {
2407         IONIC_OFLOW_OCCUPANCY_DROP,
2408         IONIC_OFLOW_EMERGENCY_STOP_DROP,
2409         IONIC_OFLOW_WRITE_BUFFER_ACK_FILL_UP_DROP,
2410         IONIC_OFLOW_WRITE_BUFFER_ACK_FULL_DROP,
2411         IONIC_OFLOW_WRITE_BUFFER_FULL_DROP,
2412         IONIC_OFLOW_CONTROL_FIFO_FULL_DROP,
2413         IONIC_OFLOW_DROP_MAX,
2414 };
2415
2416 /**
2417  * struct port_pb_stats - packet buffers system stats
2418  * uses ionic_pb_buffer_drop_stats for drop_counts[]
2419  */
2420 struct ionic_port_pb_stats {
2421         __le64 sop_count_in;
2422         __le64 eop_count_in;
2423         __le64 sop_count_out;
2424         __le64 eop_count_out;
2425         __le64 drop_counts[IONIC_BUFFER_DROP_MAX];
2426         __le64 input_queue_buffer_occupancy[IONIC_QOS_TC_MAX];
2427         __le64 input_queue_port_monitor[IONIC_QOS_TC_MAX];
2428         __le64 output_queue_port_monitor[IONIC_QOS_TC_MAX];
2429         __le64 oflow_drop_counts[IONIC_OFLOW_DROP_MAX];
2430         __le64 input_queue_good_pkts_in[IONIC_QOS_TC_MAX];
2431         __le64 input_queue_good_pkts_out[IONIC_QOS_TC_MAX];
2432         __le64 input_queue_err_pkts_in[IONIC_QOS_TC_MAX];
2433         __le64 input_queue_fifo_depth[IONIC_QOS_TC_MAX];
2434         __le64 input_queue_max_fifo_depth[IONIC_QOS_TC_MAX];
2435         __le64 input_queue_peak_occupancy[IONIC_QOS_TC_MAX];
2436         __le64 output_queue_buffer_occupancy[IONIC_QOS_TC_MAX];
2437 };
2438
2439 /**
2440  * enum ionic_port_type - Port types
2441  * @IONIC_ETH_UNKNOWN:             Port type not configured
2442  * @IONIC_ETH_HOST:                Port carries ethernet traffic (inband)
2443  * @IONIC_ETH_HOST_MGMT:           Port carries mgmt traffic (out-of-band)
2444  * @IONIC_ETH_MNIC_OOB_MGMT:
2445  * @IONIC_ETH_MNIC_INTERNAL_MGMT:
2446  * @IONIC_ETH_MNIC_INBAND_MGMT:
2447  * @IONIC_ETH_MNIC_CPU:
2448  * @IONIC_ETH_MNIC_LEARN:
2449  * @IONIC_ETH_MNIC_CONTROL:
2450  */
2451 enum ionic_port_type {
2452         IONIC_ETH_UNKNOWN,
2453         IONIC_ETH_HOST,
2454         IONIC_ETH_HOST_MGMT,
2455         IONIC_ETH_MNIC_OOB_MGMT,
2456         IONIC_ETH_MNIC_INTERNAL_MGMT,
2457         IONIC_ETH_MNIC_INBAND_MGMT,
2458         IONIC_ETH_MNIC_CPU,
2459         IONIC_ETH_MNIC_LEARN,
2460         IONIC_ETH_MNIC_CONTROL,
2461 };
2462
2463 /**
2464  * struct ionic_port_identity - port identity structure
2465  * @version:        identity structure version
2466  * @type:           type of port (enum ionic_port_type)
2467  * @num_lanes:      number of lanes for the port
2468  * @autoneg:        autoneg supported
2469  * @min_frame_size: minimum frame size supported
2470  * @max_frame_size: maximum frame size supported
2471  * @fec_type:       supported fec types
2472  * @pause_type:     supported pause types
2473  * @loopback_mode:  supported loopback mode
2474  * @speeds:         supported speeds
2475  * @config:         current port configuration
2476  */
2477 union ionic_port_identity {
2478         struct {
2479                 u8     version;
2480                 u8     type;
2481                 u8     num_lanes;
2482                 u8     autoneg;
2483                 __le32 min_frame_size;
2484                 __le32 max_frame_size;
2485                 u8     fec_type[4];
2486                 u8     pause_type[2];
2487                 u8     loopback_mode[2];
2488                 __le32 speeds[16];
2489                 u8     rsvd2[44];
2490                 union ionic_port_config config;
2491         };
2492         __le32 words[478];
2493 };
2494
2495 /**
2496  * struct ionic_port_info - port info structure
2497  * @config:          Port configuration data
2498  * @status:          Port status data
2499  * @stats:           Port statistics data
2500  * @mgmt_stats:      Port management statistics data
2501  * @port_pb_drop_stats:   uplink pb drop stats
2502  */
2503 struct ionic_port_info {
2504         union ionic_port_config config;
2505         struct ionic_port_status status;
2506         union {
2507                 struct ionic_port_stats      stats;
2508                 struct ionic_mgmt_port_stats mgmt_stats;
2509         };
2510         /* room for pb_stats to start at 2k offset */
2511         u8                          rsvd[760];
2512         struct ionic_port_pb_stats  pb_stats;
2513 };
2514
2515 /**
2516  * struct ionic_lif_stats - LIF statistics structure
2517  */
2518 struct ionic_lif_stats {
2519         /* RX */
2520         __le64 rx_ucast_bytes;
2521         __le64 rx_ucast_packets;
2522         __le64 rx_mcast_bytes;
2523         __le64 rx_mcast_packets;
2524         __le64 rx_bcast_bytes;
2525         __le64 rx_bcast_packets;
2526         __le64 rsvd0;
2527         __le64 rsvd1;
2528         /* RX drops */
2529         __le64 rx_ucast_drop_bytes;
2530         __le64 rx_ucast_drop_packets;
2531         __le64 rx_mcast_drop_bytes;
2532         __le64 rx_mcast_drop_packets;
2533         __le64 rx_bcast_drop_bytes;
2534         __le64 rx_bcast_drop_packets;
2535         __le64 rx_dma_error;
2536         __le64 rsvd2;
2537         /* TX */
2538         __le64 tx_ucast_bytes;
2539         __le64 tx_ucast_packets;
2540         __le64 tx_mcast_bytes;
2541         __le64 tx_mcast_packets;
2542         __le64 tx_bcast_bytes;
2543         __le64 tx_bcast_packets;
2544         __le64 rsvd3;
2545         __le64 rsvd4;
2546         /* TX drops */
2547         __le64 tx_ucast_drop_bytes;
2548         __le64 tx_ucast_drop_packets;
2549         __le64 tx_mcast_drop_bytes;
2550         __le64 tx_mcast_drop_packets;
2551         __le64 tx_bcast_drop_bytes;
2552         __le64 tx_bcast_drop_packets;
2553         __le64 tx_dma_error;
2554         __le64 rsvd5;
2555         /* Rx Queue/Ring drops */
2556         __le64 rx_queue_disabled;
2557         __le64 rx_queue_empty;
2558         __le64 rx_queue_error;
2559         __le64 rx_desc_fetch_error;
2560         __le64 rx_desc_data_error;
2561         __le64 rsvd6;
2562         __le64 rsvd7;
2563         __le64 rsvd8;
2564         /* Tx Queue/Ring drops */
2565         __le64 tx_queue_disabled;
2566         __le64 tx_queue_error;
2567         __le64 tx_desc_fetch_error;
2568         __le64 tx_desc_data_error;
2569         __le64 tx_queue_empty;
2570         __le64 rsvd10;
2571         __le64 rsvd11;
2572         __le64 rsvd12;
2573
2574         /* RDMA/ROCE TX */
2575         __le64 tx_rdma_ucast_bytes;
2576         __le64 tx_rdma_ucast_packets;
2577         __le64 tx_rdma_mcast_bytes;
2578         __le64 tx_rdma_mcast_packets;
2579         __le64 tx_rdma_cnp_packets;
2580         __le64 rsvd13;
2581         __le64 rsvd14;
2582         __le64 rsvd15;
2583
2584         /* RDMA/ROCE RX */
2585         __le64 rx_rdma_ucast_bytes;
2586         __le64 rx_rdma_ucast_packets;
2587         __le64 rx_rdma_mcast_bytes;
2588         __le64 rx_rdma_mcast_packets;
2589         __le64 rx_rdma_cnp_packets;
2590         __le64 rx_rdma_ecn_packets;
2591         __le64 rsvd16;
2592         __le64 rsvd17;
2593
2594         __le64 rsvd18;
2595         __le64 rsvd19;
2596         __le64 rsvd20;
2597         __le64 rsvd21;
2598         __le64 rsvd22;
2599         __le64 rsvd23;
2600         __le64 rsvd24;
2601         __le64 rsvd25;
2602
2603         __le64 rsvd26;
2604         __le64 rsvd27;
2605         __le64 rsvd28;
2606         __le64 rsvd29;
2607         __le64 rsvd30;
2608         __le64 rsvd31;
2609         __le64 rsvd32;
2610         __le64 rsvd33;
2611
2612         __le64 rsvd34;
2613         __le64 rsvd35;
2614         __le64 rsvd36;
2615         __le64 rsvd37;
2616         __le64 rsvd38;
2617         __le64 rsvd39;
2618         __le64 rsvd40;
2619         __le64 rsvd41;
2620
2621         __le64 rsvd42;
2622         __le64 rsvd43;
2623         __le64 rsvd44;
2624         __le64 rsvd45;
2625         __le64 rsvd46;
2626         __le64 rsvd47;
2627         __le64 rsvd48;
2628         __le64 rsvd49;
2629
2630         /* RDMA/ROCE REQ Error/Debugs (768 - 895) */
2631         __le64 rdma_req_rx_pkt_seq_err;
2632         __le64 rdma_req_rx_rnr_retry_err;
2633         __le64 rdma_req_rx_remote_access_err;
2634         __le64 rdma_req_rx_remote_inv_req_err;
2635         __le64 rdma_req_rx_remote_oper_err;
2636         __le64 rdma_req_rx_implied_nak_seq_err;
2637         __le64 rdma_req_rx_cqe_err;
2638         __le64 rdma_req_rx_cqe_flush_err;
2639
2640         __le64 rdma_req_rx_dup_responses;
2641         __le64 rdma_req_rx_invalid_packets;
2642         __le64 rdma_req_tx_local_access_err;
2643         __le64 rdma_req_tx_local_oper_err;
2644         __le64 rdma_req_tx_memory_mgmt_err;
2645         __le64 rsvd52;
2646         __le64 rsvd53;
2647         __le64 rsvd54;
2648
2649         /* RDMA/ROCE RESP Error/Debugs (896 - 1023) */
2650         __le64 rdma_resp_rx_dup_requests;
2651         __le64 rdma_resp_rx_out_of_buffer;
2652         __le64 rdma_resp_rx_out_of_seq_pkts;
2653         __le64 rdma_resp_rx_cqe_err;
2654         __le64 rdma_resp_rx_cqe_flush_err;
2655         __le64 rdma_resp_rx_local_len_err;
2656         __le64 rdma_resp_rx_inv_request_err;
2657         __le64 rdma_resp_rx_local_qp_oper_err;
2658
2659         __le64 rdma_resp_rx_out_of_atomic_resource;
2660         __le64 rdma_resp_tx_pkt_seq_err;
2661         __le64 rdma_resp_tx_remote_inv_req_err;
2662         __le64 rdma_resp_tx_remote_access_err;
2663         __le64 rdma_resp_tx_remote_oper_err;
2664         __le64 rdma_resp_tx_rnr_retry_err;
2665         __le64 rsvd57;
2666         __le64 rsvd58;
2667 };
2668
2669 /**
2670  * struct ionic_lif_info - LIF info structure
2671  * @config:     LIF configuration structure
2672  * @status:     LIF status structure
2673  * @stats:      LIF statistics structure
2674  */
2675 struct ionic_lif_info {
2676         union ionic_lif_config config;
2677         struct ionic_lif_status status;
2678         struct ionic_lif_stats stats;
2679 };
2680
2681 union ionic_dev_cmd {
2682         u32 words[16];
2683         struct ionic_admin_cmd cmd;
2684         struct ionic_nop_cmd nop;
2685
2686         struct ionic_dev_identify_cmd identify;
2687         struct ionic_dev_init_cmd init;
2688         struct ionic_dev_reset_cmd reset;
2689         struct ionic_dev_getattr_cmd getattr;
2690         struct ionic_dev_setattr_cmd setattr;
2691
2692         struct ionic_port_identify_cmd port_identify;
2693         struct ionic_port_init_cmd port_init;
2694         struct ionic_port_reset_cmd port_reset;
2695         struct ionic_port_getattr_cmd port_getattr;
2696         struct ionic_port_setattr_cmd port_setattr;
2697
2698         struct ionic_vf_setattr_cmd vf_setattr;
2699         struct ionic_vf_getattr_cmd vf_getattr;
2700
2701         struct ionic_lif_identify_cmd lif_identify;
2702         struct ionic_lif_init_cmd lif_init;
2703         struct ionic_lif_reset_cmd lif_reset;
2704
2705         struct ionic_qos_identify_cmd qos_identify;
2706         struct ionic_qos_init_cmd qos_init;
2707         struct ionic_qos_reset_cmd qos_reset;
2708         struct ionic_qos_clear_stats_cmd qos_clear_stats;
2709
2710         struct ionic_q_identify_cmd q_identify;
2711         struct ionic_q_init_cmd q_init;
2712         struct ionic_q_control_cmd q_control;
2713 };
2714
2715 union ionic_dev_cmd_comp {
2716         u32 words[4];
2717         u8 status;
2718         struct ionic_admin_comp comp;
2719         struct ionic_nop_comp nop;
2720
2721         struct ionic_dev_identify_comp identify;
2722         struct ionic_dev_init_comp init;
2723         struct ionic_dev_reset_comp reset;
2724         struct ionic_dev_getattr_comp getattr;
2725         struct ionic_dev_setattr_comp setattr;
2726
2727         struct ionic_port_identify_comp port_identify;
2728         struct ionic_port_init_comp port_init;
2729         struct ionic_port_reset_comp port_reset;
2730         struct ionic_port_getattr_comp port_getattr;
2731         struct ionic_port_setattr_comp port_setattr;
2732
2733         struct ionic_vf_setattr_comp vf_setattr;
2734         struct ionic_vf_getattr_comp vf_getattr;
2735
2736         struct ionic_lif_identify_comp lif_identify;
2737         struct ionic_lif_init_comp lif_init;
2738         ionic_lif_reset_comp lif_reset;
2739
2740         struct ionic_qos_identify_comp qos_identify;
2741         ionic_qos_init_comp qos_init;
2742         ionic_qos_reset_comp qos_reset;
2743
2744         struct ionic_q_identify_comp q_identify;
2745         struct ionic_q_init_comp q_init;
2746 };
2747
2748 /**
2749  * union ionic_dev_info_regs - Device info register format (read-only)
2750  * @signature:       Signature value of 0x44455649 ('DEVI')
2751  * @version:         Current version of info
2752  * @asic_type:       Asic type
2753  * @asic_rev:        Asic revision
2754  * @fw_status:       Firmware status
2755  * @fw_heartbeat:    Firmware heartbeat counter
2756  * @serial_num:      Serial number
2757  * @fw_version:      Firmware version
2758  */
2759 union ionic_dev_info_regs {
2760 #define IONIC_DEVINFO_FWVERS_BUFLEN 32
2761 #define IONIC_DEVINFO_SERIAL_BUFLEN 32
2762         struct {
2763                 u32    signature;
2764                 u8     version;
2765                 u8     asic_type;
2766                 u8     asic_rev;
2767 #define IONIC_FW_STS_F_RUNNING  0x1
2768                 u8     fw_status;
2769                 u32    fw_heartbeat;
2770                 char   fw_version[IONIC_DEVINFO_FWVERS_BUFLEN];
2771                 char   serial_num[IONIC_DEVINFO_SERIAL_BUFLEN];
2772         };
2773         u32 words[512];
2774 };
2775
2776 /**
2777  * union ionic_dev_cmd_regs - Device command register format (read-write)
2778  * @doorbell:        Device Cmd Doorbell, write-only
2779  *                   Write a 1 to signal device to process cmd,
2780  *                   poll done for completion.
2781  * @done:            Done indicator, bit 0 == 1 when command is complete
2782  * @cmd:             Opcode-specific command bytes
2783  * @comp:            Opcode-specific response bytes
2784  * @data:            Opcode-specific side-data
2785  */
2786 union ionic_dev_cmd_regs {
2787         struct {
2788                 u32                   doorbell;
2789                 u32                   done;
2790                 union ionic_dev_cmd         cmd;
2791                 union ionic_dev_cmd_comp    comp;
2792                 u8                    rsvd[48];
2793                 u32                   data[478];
2794         } __rte_packed;
2795         u32 words[512];
2796 };
2797
2798 /**
2799  * union ionic_dev_regs - Device register format for bar 0 page 0
2800  * @info:            Device info registers
2801  * @devcmd:          Device command registers
2802  */
2803 union ionic_dev_regs {
2804         struct {
2805                 union ionic_dev_info_regs info;
2806                 union ionic_dev_cmd_regs  devcmd;
2807         } __rte_packed;
2808         __le32 words[1024];
2809 };
2810
2811 union ionic_adminq_cmd {
2812         struct ionic_admin_cmd cmd;
2813         struct ionic_nop_cmd nop;
2814         struct ionic_q_identify_cmd q_identify;
2815         struct ionic_q_init_cmd q_init;
2816         struct ionic_q_control_cmd q_control;
2817         struct ionic_lif_setattr_cmd lif_setattr;
2818         struct ionic_lif_getattr_cmd lif_getattr;
2819         struct ionic_rx_mode_set_cmd rx_mode_set;
2820         struct ionic_rx_filter_add_cmd rx_filter_add;
2821         struct ionic_rx_filter_del_cmd rx_filter_del;
2822         struct ionic_rdma_reset_cmd rdma_reset;
2823         struct ionic_rdma_queue_cmd rdma_queue;
2824         struct ionic_fw_download_cmd fw_download;
2825         struct ionic_fw_control_cmd fw_control;
2826 };
2827
2828 union ionic_adminq_comp {
2829         struct ionic_admin_comp comp;
2830         struct ionic_nop_comp nop;
2831         struct ionic_q_identify_comp q_identify;
2832         struct ionic_q_init_comp q_init;
2833         struct ionic_lif_setattr_comp lif_setattr;
2834         struct ionic_lif_getattr_comp lif_getattr;
2835         struct ionic_rx_filter_add_comp rx_filter_add;
2836         struct ionic_fw_control_comp fw_control;
2837 };
2838
2839 #define IONIC_BARS_MAX                  6
2840 #define IONIC_PCI_BAR_DBELL             1
2841
2842 /* BAR0 */
2843 #define IONIC_BAR0_SIZE                         0x8000
2844
2845 #define IONIC_BAR0_DEV_INFO_REGS_OFFSET         0x0000
2846 #define IONIC_BAR0_DEV_CMD_REGS_OFFSET          0x0800
2847 #define IONIC_BAR0_DEV_CMD_DATA_REGS_OFFSET     0x0c00
2848 #define IONIC_BAR0_INTR_STATUS_OFFSET           0x1000
2849 #define IONIC_BAR0_INTR_CTRL_OFFSET             0x2000
2850 #define IONIC_DEV_CMD_DONE                      0x00000001
2851
2852 #define IONIC_ASIC_TYPE_CAPRI                   0
2853
2854 /**
2855  * struct ionic_doorbell - Doorbell register layout
2856  * @p_index: Producer index
2857  * @ring:    Selects the specific ring of the queue to update
2858  *           Type-specific meaning:
2859  *              ring=0: Default producer/consumer queue
2860  *              ring=1: (CQ, EQ) Re-Arm queue.  RDMA CQs
2861  *              send events to EQs when armed.  EQs send
2862  *              interrupts when armed.
2863  * @qid_lo:  Queue destination for the producer index and flags (low bits)
2864  * @qid_hi:  Queue destination for the producer index and flags (high bits)
2865  */
2866 struct ionic_doorbell {
2867         __le16 p_index;
2868         u8     ring;
2869         u8     qid_lo;
2870         __le16 qid_hi;
2871         u16    rsvd2;
2872 };
2873
2874 /**
2875  * struct ionic_intr_ctrl - Interrupt control register
2876  * @coalescing_init:  Coalescing timer initial value, in
2877  *                    device units.  Use @identity->intr_coal_mult
2878  *                    and @identity->intr_coal_div to convert from
2879  *                    usecs to device units:
2880  *
2881  *                      coal_init = coal_usecs * coal_mutl / coal_div
2882  *
2883  *                    When an interrupt is sent the interrupt
2884  *                    coalescing timer current value
2885  *                    (@coalescing_curr) is initialized with this
2886  *                    value and begins counting down.  No more
2887  *                    interrupts are sent until the coalescing
2888  *                    timer reaches 0.  When @coalescing_init=0
2889  *                    interrupt coalescing is effectively disabled
2890  *                    and every interrupt assert results in an
2891  *                    interrupt.  Reset value: 0
2892  * @mask:             Interrupt mask.  When @mask=1 the interrupt
2893  *                    resource will not send an interrupt.  When
2894  *                    @mask=0 the interrupt resource will send an
2895  *                    interrupt if an interrupt event is pending
2896  *                    or on the next interrupt assertion event.
2897  *                    Reset value: 1
2898  * @int_credits:      Interrupt credits.  This register indicates
2899  *                    how many interrupt events the hardware has
2900  *                    sent.  When written by software this
2901  *                    register atomically decrements @int_credits
2902  *                    by the value written.  When @int_credits
2903  *                    becomes 0 then the "pending interrupt" bit
2904  *                    in the Interrupt Status register is cleared
2905  *                    by the hardware and any pending but unsent
2906  *                    interrupts are cleared.
2907  *                    !!!IMPORTANT!!! This is a signed register.
2908  * @flags:            Interrupt control flags
2909  *                       @unmask -- When this bit is written with a 1
2910  *                       the interrupt resource will set mask=0.
2911  *                       @coal_timer_reset -- When this
2912  *                       bit is written with a 1 the
2913  *                       @coalescing_curr will be reloaded with
2914  *                       @coalescing_init to reset the coalescing
2915  *                       timer.
2916  * @mask_on_assert:   Automatically mask on assertion.  When
2917  *                    @mask_on_assert=1 the interrupt resource
2918  *                    will set @mask=1 whenever an interrupt is
2919  *                    sent.  When using interrupts in Legacy
2920  *                    Interrupt mode the driver must select
2921  *                    @mask_on_assert=0 for proper interrupt
2922  *                    operation.
2923  * @coalescing_curr:  Coalescing timer current value, in
2924  *                    microseconds.  When this value reaches 0
2925  *                    the interrupt resource is again eligible to
2926  *                    send an interrupt.  If an interrupt event
2927  *                    is already pending when @coalescing_curr
2928  *                    reaches 0 the pending interrupt will be
2929  *                    sent, otherwise an interrupt will be sent
2930  *                    on the next interrupt assertion event.
2931  */
2932 struct ionic_intr_ctrl {
2933         u8 coalescing_init;
2934         u8 rsvd[3];
2935         u8 mask;
2936         u8 rsvd2[3];
2937         u16 int_credits;
2938         u16 flags;
2939 #define INTR_F_UNMASK           0x0001
2940 #define INTR_F_TIMER_RESET      0x0002
2941         u8 mask_on_assert;
2942         u8 rsvd3[3];
2943         u8 coalescing_curr;
2944         u8 rsvd4[3];
2945         u32 rsvd6[3];
2946 };
2947
2948 #define IONIC_INTR_CTRL_REGS_MAX        2048
2949 #define IONIC_INTR_CTRL_COAL_MAX        0x3F
2950
2951 #define intr_to_coal(intr_ctrl)         \
2952                 ((void __iomem *)&(intr_ctrl)->coalescing_init)
2953 #define intr_to_mask(intr_ctrl)         \
2954                 ((void __iomem *)&(intr_ctrl)->mask)
2955 #define intr_to_credits(intr_ctrl)      \
2956                 ((void __iomem *)&(intr_ctrl)->int_credits)
2957 #define intr_to_mask_on_assert(intr_ctrl)\
2958                 ((void __iomem *)&(intr_ctrl)->mask_on_assert)
2959
2960 struct ionic_intr_status {
2961         u32 status[2];
2962 };
2963
2964 struct ionic_notifyq_cmd {
2965         __le32 data;    /* Not used but needed for qcq structure */
2966 };
2967
2968 union ionic_notifyq_comp {
2969         struct ionic_notifyq_event event;
2970         struct ionic_link_change_event link_change;
2971         struct ionic_reset_event reset;
2972         struct ionic_heartbeat_event heartbeat;
2973         struct ionic_log_event log;
2974 };
2975
2976 /**
2977  * struct ionic_eq_comp - Event queue completion descriptor
2978  *
2979  * @code:       Event code, see enum ionic_eq_comp_code
2980  * @lif_index:  To which LIF the event pertains
2981  * @qid:        To which queue id the event pertains
2982  * @gen_color:  Event queue wrap counter, init 1, incr each wrap
2983  */
2984 struct ionic_eq_comp {
2985         __le16 code;
2986         __le16 lif_index;
2987         __le32 qid;
2988         u8 rsvd[7];
2989         u8 gen_color;
2990 };
2991
2992 enum ionic_eq_comp_code {
2993         IONIC_EQ_COMP_CODE_NONE = 0,
2994         IONIC_EQ_COMP_CODE_RX_COMP = 1,
2995         IONIC_EQ_COMP_CODE_TX_COMP = 2,
2996 };
2997
2998 /* Deprecate */
2999 struct ionic_identity {
3000         union ionic_drv_identity drv;
3001         union ionic_dev_identity dev;
3002         union ionic_lif_identity lif;
3003         union ionic_port_identity port;
3004         union ionic_qos_identity qos;
3005         union ionic_q_identity txq;
3006 };
3007
3008 #endif /* _IONIC_IF_H_ */