Merge git://git.kernel.org/pub/scm/linux/kernel/git/davem/net
[cascardo/linux.git] / drivers / net / ethernet / qlogic / qed / qed_dcbx.c
1 /* QLogic qed NIC Driver
2  * Copyright (c) 2015 QLogic Corporation
3  *
4  * This software is available under the terms of the GNU General Public License
5  * (GPL) Version 2, available from the file COPYING in the main directory of
6  * this source tree.
7  */
8
9 #include <linux/types.h>
10 #include <asm/byteorder.h>
11 #include <linux/bitops.h>
12 #include <linux/dcbnl.h>
13 #include <linux/errno.h>
14 #include <linux/kernel.h>
15 #include <linux/slab.h>
16 #include <linux/string.h>
17 #include "qed.h"
18 #include "qed_cxt.h"
19 #include "qed_dcbx.h"
20 #include "qed_hsi.h"
21 #include "qed_sp.h"
22 #include "qed_sriov.h"
23 #ifdef CONFIG_DCB
24 #include <linux/qed/qed_eth_if.h>
25 #endif
26
27 #define QED_DCBX_MAX_MIB_READ_TRY       (100)
28 #define QED_ETH_TYPE_DEFAULT            (0)
29 #define QED_ETH_TYPE_ROCE               (0x8915)
30 #define QED_UDP_PORT_TYPE_ROCE_V2       (0x12B7)
31 #define QED_ETH_TYPE_FCOE               (0x8906)
32 #define QED_TCP_PORT_ISCSI              (0xCBC)
33
34 #define QED_DCBX_INVALID_PRIORITY       0xFF
35
36 /* Get Traffic Class from priority traffic class table, 4 bits represent
37  * the traffic class corresponding to the priority.
38  */
39 #define QED_DCBX_PRIO2TC(prio_tc_tbl, prio) \
40         ((u32)(prio_tc_tbl >> ((7 - prio) * 4)) & 0x7)
41
42 static const struct qed_dcbx_app_metadata qed_dcbx_app_update[] = {
43         {DCBX_PROTOCOL_ISCSI, "ISCSI", QED_PCI_DEFAULT},
44         {DCBX_PROTOCOL_FCOE, "FCOE", QED_PCI_DEFAULT},
45         {DCBX_PROTOCOL_ROCE, "ROCE", QED_PCI_DEFAULT},
46         {DCBX_PROTOCOL_ROCE_V2, "ROCE_V2", QED_PCI_DEFAULT},
47         {DCBX_PROTOCOL_ETH, "ETH", QED_PCI_ETH}
48 };
49
50 static bool qed_dcbx_app_ethtype(u32 app_info_bitmap)
51 {
52         return !!(QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF) ==
53                   DCBX_APP_SF_ETHTYPE);
54 }
55
56 static bool qed_dcbx_ieee_app_ethtype(u32 app_info_bitmap)
57 {
58         u8 mfw_val = QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF_IEEE);
59
60         /* Old MFW */
61         if (mfw_val == DCBX_APP_SF_IEEE_RESERVED)
62                 return qed_dcbx_app_ethtype(app_info_bitmap);
63
64         return !!(mfw_val == DCBX_APP_SF_IEEE_ETHTYPE);
65 }
66
67 static bool qed_dcbx_app_port(u32 app_info_bitmap)
68 {
69         return !!(QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF) ==
70                   DCBX_APP_SF_PORT);
71 }
72
73 static bool qed_dcbx_ieee_app_port(u32 app_info_bitmap, u8 type)
74 {
75         u8 mfw_val = QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF_IEEE);
76
77         /* Old MFW */
78         if (mfw_val == DCBX_APP_SF_IEEE_RESERVED)
79                 return qed_dcbx_app_port(app_info_bitmap);
80
81         return !!(mfw_val == type || mfw_val == DCBX_APP_SF_IEEE_TCP_UDP_PORT);
82 }
83
84 static bool qed_dcbx_default_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee)
85 {
86         bool ethtype;
87
88         if (ieee)
89                 ethtype = qed_dcbx_ieee_app_ethtype(app_info_bitmap);
90         else
91                 ethtype = qed_dcbx_app_ethtype(app_info_bitmap);
92
93         return !!(ethtype && (proto_id == QED_ETH_TYPE_DEFAULT));
94 }
95
96 static bool qed_dcbx_iscsi_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee)
97 {
98         bool port;
99
100         if (ieee)
101                 port = qed_dcbx_ieee_app_port(app_info_bitmap,
102                                               DCBX_APP_SF_IEEE_TCP_PORT);
103         else
104                 port = qed_dcbx_app_port(app_info_bitmap);
105
106         return !!(port && (proto_id == QED_TCP_PORT_ISCSI));
107 }
108
109 static bool qed_dcbx_fcoe_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee)
110 {
111         bool ethtype;
112
113         if (ieee)
114                 ethtype = qed_dcbx_ieee_app_ethtype(app_info_bitmap);
115         else
116                 ethtype = qed_dcbx_app_ethtype(app_info_bitmap);
117
118         return !!(ethtype && (proto_id == QED_ETH_TYPE_FCOE));
119 }
120
121 static bool qed_dcbx_roce_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee)
122 {
123         bool ethtype;
124
125         if (ieee)
126                 ethtype = qed_dcbx_ieee_app_ethtype(app_info_bitmap);
127         else
128                 ethtype = qed_dcbx_app_ethtype(app_info_bitmap);
129
130         return !!(ethtype && (proto_id == QED_ETH_TYPE_ROCE));
131 }
132
133 static bool qed_dcbx_roce_v2_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee)
134 {
135         bool port;
136
137         if (ieee)
138                 port = qed_dcbx_ieee_app_port(app_info_bitmap,
139                                               DCBX_APP_SF_IEEE_UDP_PORT);
140         else
141                 port = qed_dcbx_app_port(app_info_bitmap);
142
143         return !!(port && (proto_id == QED_UDP_PORT_TYPE_ROCE_V2));
144 }
145
146 static void
147 qed_dcbx_dp_protocol(struct qed_hwfn *p_hwfn, struct qed_dcbx_results *p_data)
148 {
149         enum dcbx_protocol_type id;
150         int i;
151
152         DP_VERBOSE(p_hwfn, QED_MSG_DCB, "DCBX negotiated: %d\n",
153                    p_data->dcbx_enabled);
154
155         for (i = 0; i < ARRAY_SIZE(qed_dcbx_app_update); i++) {
156                 id = qed_dcbx_app_update[i].id;
157
158                 DP_VERBOSE(p_hwfn, QED_MSG_DCB,
159                            "%s info: update %d, enable %d, prio %d, tc %d, num_tc %d\n",
160                            qed_dcbx_app_update[i].name, p_data->arr[id].update,
161                            p_data->arr[id].enable, p_data->arr[id].priority,
162                            p_data->arr[id].tc, p_hwfn->hw_info.num_tc);
163         }
164 }
165
166 static void
167 qed_dcbx_set_params(struct qed_dcbx_results *p_data,
168                     struct qed_hw_info *p_info,
169                     bool enable,
170                     bool update,
171                     u8 prio,
172                     u8 tc,
173                     enum dcbx_protocol_type type,
174                     enum qed_pci_personality personality)
175 {
176         /* PF update ramrod data */
177         p_data->arr[type].update = update;
178         p_data->arr[type].enable = enable;
179         p_data->arr[type].priority = prio;
180         p_data->arr[type].tc = tc;
181
182         /* QM reconf data */
183         if (p_info->personality == personality) {
184                 if (personality == QED_PCI_ETH)
185                         p_info->non_offload_tc = tc;
186                 else
187                         p_info->offload_tc = tc;
188         }
189 }
190
191 /* Update app protocol data and hw_info fields with the TLV info */
192 static void
193 qed_dcbx_update_app_info(struct qed_dcbx_results *p_data,
194                          struct qed_hwfn *p_hwfn,
195                          bool enable,
196                          bool update,
197                          u8 prio, u8 tc, enum dcbx_protocol_type type)
198 {
199         struct qed_hw_info *p_info = &p_hwfn->hw_info;
200         enum qed_pci_personality personality;
201         enum dcbx_protocol_type id;
202         char *name;
203         int i;
204
205         for (i = 0; i < ARRAY_SIZE(qed_dcbx_app_update); i++) {
206                 id = qed_dcbx_app_update[i].id;
207
208                 if (type != id)
209                         continue;
210
211                 personality = qed_dcbx_app_update[i].personality;
212                 name = qed_dcbx_app_update[i].name;
213
214                 qed_dcbx_set_params(p_data, p_info, enable, update,
215                                     prio, tc, type, personality);
216         }
217 }
218
219 static bool
220 qed_dcbx_get_app_protocol_type(struct qed_hwfn *p_hwfn,
221                                u32 app_prio_bitmap,
222                                u16 id, enum dcbx_protocol_type *type, bool ieee)
223 {
224         if (qed_dcbx_fcoe_tlv(app_prio_bitmap, id, ieee)) {
225                 *type = DCBX_PROTOCOL_FCOE;
226         } else if (qed_dcbx_roce_tlv(app_prio_bitmap, id, ieee)) {
227                 *type = DCBX_PROTOCOL_ROCE;
228         } else if (qed_dcbx_iscsi_tlv(app_prio_bitmap, id, ieee)) {
229                 *type = DCBX_PROTOCOL_ISCSI;
230         } else if (qed_dcbx_default_tlv(app_prio_bitmap, id, ieee)) {
231                 *type = DCBX_PROTOCOL_ETH;
232         } else if (qed_dcbx_roce_v2_tlv(app_prio_bitmap, id, ieee)) {
233                 *type = DCBX_PROTOCOL_ROCE_V2;
234         } else {
235                 *type = DCBX_MAX_PROTOCOL_TYPE;
236                 DP_ERR(p_hwfn,
237                        "No action required, App TLV id = 0x%x app_prio_bitmap = 0x%x\n",
238                        id, app_prio_bitmap);
239                 return false;
240         }
241
242         return true;
243 }
244
245 /* Parse app TLV's to update TC information in hw_info structure for
246  * reconfiguring QM. Get protocol specific data for PF update ramrod command.
247  */
248 static int
249 qed_dcbx_process_tlv(struct qed_hwfn *p_hwfn,
250                      struct qed_dcbx_results *p_data,
251                      struct dcbx_app_priority_entry *p_tbl,
252                      u32 pri_tc_tbl, int count, u8 dcbx_version)
253 {
254         u8 tc, priority_map;
255         enum dcbx_protocol_type type;
256         bool enable, ieee;
257         u16 protocol_id;
258         int priority;
259         int i;
260
261         DP_VERBOSE(p_hwfn, QED_MSG_DCB, "Num APP entries = %d\n", count);
262
263         ieee = (dcbx_version == DCBX_CONFIG_VERSION_IEEE);
264         /* Parse APP TLV */
265         for (i = 0; i < count; i++) {
266                 protocol_id = QED_MFW_GET_FIELD(p_tbl[i].entry,
267                                                 DCBX_APP_PROTOCOL_ID);
268                 priority_map = QED_MFW_GET_FIELD(p_tbl[i].entry,
269                                                  DCBX_APP_PRI_MAP);
270                 priority = ffs(priority_map) - 1;
271                 if (priority < 0) {
272                         DP_ERR(p_hwfn, "Invalid priority\n");
273                         return -EINVAL;
274                 }
275
276                 tc = QED_DCBX_PRIO2TC(pri_tc_tbl, priority);
277                 if (qed_dcbx_get_app_protocol_type(p_hwfn, p_tbl[i].entry,
278                                                    protocol_id, &type, ieee)) {
279                         /* ETH always have the enable bit reset, as it gets
280                          * vlan information per packet. For other protocols,
281                          * should be set according to the dcbx_enabled
282                          * indication, but we only got here if there was an
283                          * app tlv for the protocol, so dcbx must be enabled.
284                          */
285                         enable = !(type == DCBX_PROTOCOL_ETH);
286
287                         qed_dcbx_update_app_info(p_data, p_hwfn, enable, true,
288                                                  priority, tc, type);
289                 }
290         }
291
292         /* If RoCE-V2 TLV is not detected, driver need to use RoCE app
293          * data for RoCE-v2 not the default app data.
294          */
295         if (!p_data->arr[DCBX_PROTOCOL_ROCE_V2].update &&
296             p_data->arr[DCBX_PROTOCOL_ROCE].update) {
297                 tc = p_data->arr[DCBX_PROTOCOL_ROCE].tc;
298                 priority = p_data->arr[DCBX_PROTOCOL_ROCE].priority;
299                 qed_dcbx_update_app_info(p_data, p_hwfn, true, true,
300                                          priority, tc, DCBX_PROTOCOL_ROCE_V2);
301         }
302
303         /* Update ramrod protocol data and hw_info fields
304          * with default info when corresponding APP TLV's are not detected.
305          * The enabled field has a different logic for ethernet as only for
306          * ethernet dcb should disabled by default, as the information arrives
307          * from the OS (unless an explicit app tlv was present).
308          */
309         tc = p_data->arr[DCBX_PROTOCOL_ETH].tc;
310         priority = p_data->arr[DCBX_PROTOCOL_ETH].priority;
311         for (type = 0; type < DCBX_MAX_PROTOCOL_TYPE; type++) {
312                 if (p_data->arr[type].update)
313                         continue;
314
315                 enable = !(type == DCBX_PROTOCOL_ETH);
316                 qed_dcbx_update_app_info(p_data, p_hwfn, enable, true,
317                                          priority, tc, type);
318         }
319
320         return 0;
321 }
322
323 /* Parse app TLV's to update TC information in hw_info structure for
324  * reconfiguring QM. Get protocol specific data for PF update ramrod command.
325  */
326 static int qed_dcbx_process_mib_info(struct qed_hwfn *p_hwfn)
327 {
328         struct dcbx_app_priority_feature *p_app;
329         struct dcbx_app_priority_entry *p_tbl;
330         struct qed_dcbx_results data = { 0 };
331         struct dcbx_ets_feature *p_ets;
332         struct qed_hw_info *p_info;
333         u32 pri_tc_tbl, flags;
334         u8 dcbx_version;
335         int num_entries;
336         int rc = 0;
337
338         flags = p_hwfn->p_dcbx_info->operational.flags;
339         dcbx_version = QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION);
340
341         p_app = &p_hwfn->p_dcbx_info->operational.features.app;
342         p_tbl = p_app->app_pri_tbl;
343
344         p_ets = &p_hwfn->p_dcbx_info->operational.features.ets;
345         pri_tc_tbl = p_ets->pri_tc_tbl[0];
346
347         p_info = &p_hwfn->hw_info;
348         num_entries = QED_MFW_GET_FIELD(p_app->flags, DCBX_APP_NUM_ENTRIES);
349
350         rc = qed_dcbx_process_tlv(p_hwfn, &data, p_tbl, pri_tc_tbl,
351                                   num_entries, dcbx_version);
352         if (rc)
353                 return rc;
354
355         p_info->num_tc = QED_MFW_GET_FIELD(p_ets->flags, DCBX_ETS_MAX_TCS);
356         data.pf_id = p_hwfn->rel_pf_id;
357         data.dcbx_enabled = !!dcbx_version;
358
359         qed_dcbx_dp_protocol(p_hwfn, &data);
360
361         memcpy(&p_hwfn->p_dcbx_info->results, &data,
362                sizeof(struct qed_dcbx_results));
363
364         return 0;
365 }
366
367 static int
368 qed_dcbx_copy_mib(struct qed_hwfn *p_hwfn,
369                   struct qed_ptt *p_ptt,
370                   struct qed_dcbx_mib_meta_data *p_data,
371                   enum qed_mib_read_type type)
372 {
373         u32 prefix_seq_num, suffix_seq_num;
374         int read_count = 0;
375         int rc = 0;
376
377         /* The data is considered to be valid only if both sequence numbers are
378          * the same.
379          */
380         do {
381                 if (type == QED_DCBX_REMOTE_LLDP_MIB) {
382                         qed_memcpy_from(p_hwfn, p_ptt, p_data->lldp_remote,
383                                         p_data->addr, p_data->size);
384                         prefix_seq_num = p_data->lldp_remote->prefix_seq_num;
385                         suffix_seq_num = p_data->lldp_remote->suffix_seq_num;
386                 } else {
387                         qed_memcpy_from(p_hwfn, p_ptt, p_data->mib,
388                                         p_data->addr, p_data->size);
389                         prefix_seq_num = p_data->mib->prefix_seq_num;
390                         suffix_seq_num = p_data->mib->suffix_seq_num;
391                 }
392                 read_count++;
393
394                 DP_VERBOSE(p_hwfn,
395                            QED_MSG_DCB,
396                            "mib type = %d, try count = %d prefix seq num  = %d suffix seq num = %d\n",
397                            type, read_count, prefix_seq_num, suffix_seq_num);
398         } while ((prefix_seq_num != suffix_seq_num) &&
399                  (read_count < QED_DCBX_MAX_MIB_READ_TRY));
400
401         if (read_count >= QED_DCBX_MAX_MIB_READ_TRY) {
402                 DP_ERR(p_hwfn,
403                        "MIB read err, mib type = %d, try count = %d prefix seq num = %d suffix seq num = %d\n",
404                        type, read_count, prefix_seq_num, suffix_seq_num);
405                 rc = -EIO;
406         }
407
408         return rc;
409 }
410
411 #ifdef CONFIG_DCB
412 static void
413 qed_dcbx_get_priority_info(struct qed_hwfn *p_hwfn,
414                            struct qed_dcbx_app_prio *p_prio,
415                            struct qed_dcbx_results *p_results)
416 {
417         u8 val;
418
419         p_prio->roce = QED_DCBX_INVALID_PRIORITY;
420         p_prio->roce_v2 = QED_DCBX_INVALID_PRIORITY;
421         p_prio->iscsi = QED_DCBX_INVALID_PRIORITY;
422         p_prio->fcoe = QED_DCBX_INVALID_PRIORITY;
423
424         if (p_results->arr[DCBX_PROTOCOL_ROCE].update &&
425             p_results->arr[DCBX_PROTOCOL_ROCE].enable)
426                 p_prio->roce = p_results->arr[DCBX_PROTOCOL_ROCE].priority;
427
428         if (p_results->arr[DCBX_PROTOCOL_ROCE_V2].update &&
429             p_results->arr[DCBX_PROTOCOL_ROCE_V2].enable) {
430                 val = p_results->arr[DCBX_PROTOCOL_ROCE_V2].priority;
431                 p_prio->roce_v2 = val;
432         }
433
434         if (p_results->arr[DCBX_PROTOCOL_ISCSI].update &&
435             p_results->arr[DCBX_PROTOCOL_ISCSI].enable)
436                 p_prio->iscsi = p_results->arr[DCBX_PROTOCOL_ISCSI].priority;
437
438         if (p_results->arr[DCBX_PROTOCOL_FCOE].update &&
439             p_results->arr[DCBX_PROTOCOL_FCOE].enable)
440                 p_prio->fcoe = p_results->arr[DCBX_PROTOCOL_FCOE].priority;
441
442         if (p_results->arr[DCBX_PROTOCOL_ETH].update &&
443             p_results->arr[DCBX_PROTOCOL_ETH].enable)
444                 p_prio->eth = p_results->arr[DCBX_PROTOCOL_ETH].priority;
445
446         DP_VERBOSE(p_hwfn, QED_MSG_DCB,
447                    "Priorities: iscsi %d, roce %d, roce v2 %d, fcoe %d, eth %d\n",
448                    p_prio->iscsi, p_prio->roce, p_prio->roce_v2, p_prio->fcoe,
449                    p_prio->eth);
450 }
451
452 static void
453 qed_dcbx_get_app_data(struct qed_hwfn *p_hwfn,
454                       struct dcbx_app_priority_feature *p_app,
455                       struct dcbx_app_priority_entry *p_tbl,
456                       struct qed_dcbx_params *p_params, bool ieee)
457 {
458         struct qed_app_entry *entry;
459         u8 pri_map;
460         int i;
461
462         p_params->app_willing = QED_MFW_GET_FIELD(p_app->flags,
463                                                   DCBX_APP_WILLING);
464         p_params->app_valid = QED_MFW_GET_FIELD(p_app->flags, DCBX_APP_ENABLED);
465         p_params->app_error = QED_MFW_GET_FIELD(p_app->flags, DCBX_APP_ERROR);
466         p_params->num_app_entries = QED_MFW_GET_FIELD(p_app->flags,
467                                                       DCBX_APP_NUM_ENTRIES);
468         for (i = 0; i < DCBX_MAX_APP_PROTOCOL; i++) {
469                 entry = &p_params->app_entry[i];
470                 if (ieee) {
471                         u8 sf_ieee;
472                         u32 val;
473
474                         sf_ieee = QED_MFW_GET_FIELD(p_tbl[i].entry,
475                                                     DCBX_APP_SF_IEEE);
476                         switch (sf_ieee) {
477                         case DCBX_APP_SF_IEEE_RESERVED:
478                                 /* Old MFW */
479                                 val = QED_MFW_GET_FIELD(p_tbl[i].entry,
480                                                         DCBX_APP_SF);
481                                 entry->sf_ieee = val ?
482                                     QED_DCBX_SF_IEEE_TCP_UDP_PORT :
483                                     QED_DCBX_SF_IEEE_ETHTYPE;
484                                 break;
485                         case DCBX_APP_SF_IEEE_ETHTYPE:
486                                 entry->sf_ieee = QED_DCBX_SF_IEEE_ETHTYPE;
487                                 break;
488                         case DCBX_APP_SF_IEEE_TCP_PORT:
489                                 entry->sf_ieee = QED_DCBX_SF_IEEE_TCP_PORT;
490                                 break;
491                         case DCBX_APP_SF_IEEE_UDP_PORT:
492                                 entry->sf_ieee = QED_DCBX_SF_IEEE_UDP_PORT;
493                                 break;
494                         case DCBX_APP_SF_IEEE_TCP_UDP_PORT:
495                                 entry->sf_ieee = QED_DCBX_SF_IEEE_TCP_UDP_PORT;
496                                 break;
497                         }
498                 } else {
499                         entry->ethtype = !(QED_MFW_GET_FIELD(p_tbl[i].entry,
500                                                              DCBX_APP_SF));
501                 }
502
503                 pri_map = QED_MFW_GET_FIELD(p_tbl[i].entry, DCBX_APP_PRI_MAP);
504                 entry->prio = ffs(pri_map) - 1;
505                 entry->proto_id = QED_MFW_GET_FIELD(p_tbl[i].entry,
506                                                     DCBX_APP_PROTOCOL_ID);
507                 qed_dcbx_get_app_protocol_type(p_hwfn, p_tbl[i].entry,
508                                                entry->proto_id,
509                                                &entry->proto_type, ieee);
510         }
511
512         DP_VERBOSE(p_hwfn, QED_MSG_DCB,
513                    "APP params: willing %d, valid %d error = %d\n",
514                    p_params->app_willing, p_params->app_valid,
515                    p_params->app_error);
516 }
517
518 static void
519 qed_dcbx_get_pfc_data(struct qed_hwfn *p_hwfn,
520                       u32 pfc, struct qed_dcbx_params *p_params)
521 {
522         u8 pfc_map;
523
524         p_params->pfc.willing = QED_MFW_GET_FIELD(pfc, DCBX_PFC_WILLING);
525         p_params->pfc.max_tc = QED_MFW_GET_FIELD(pfc, DCBX_PFC_CAPS);
526         p_params->pfc.enabled = QED_MFW_GET_FIELD(pfc, DCBX_PFC_ENABLED);
527         pfc_map = QED_MFW_GET_FIELD(pfc, DCBX_PFC_PRI_EN_BITMAP);
528         p_params->pfc.prio[0] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_0);
529         p_params->pfc.prio[1] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_1);
530         p_params->pfc.prio[2] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_2);
531         p_params->pfc.prio[3] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_3);
532         p_params->pfc.prio[4] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_4);
533         p_params->pfc.prio[5] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_5);
534         p_params->pfc.prio[6] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_6);
535         p_params->pfc.prio[7] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_7);
536
537         DP_VERBOSE(p_hwfn, QED_MSG_DCB,
538                    "PFC params: willing %d, pfc_bitmap %d\n",
539                    p_params->pfc.willing, pfc_map);
540 }
541
542 static void
543 qed_dcbx_get_ets_data(struct qed_hwfn *p_hwfn,
544                       struct dcbx_ets_feature *p_ets,
545                       struct qed_dcbx_params *p_params)
546 {
547         u32 bw_map[2], tsa_map[2], pri_map;
548         int i;
549
550         p_params->ets_willing = QED_MFW_GET_FIELD(p_ets->flags,
551                                                   DCBX_ETS_WILLING);
552         p_params->ets_enabled = QED_MFW_GET_FIELD(p_ets->flags,
553                                                   DCBX_ETS_ENABLED);
554         p_params->ets_cbs = QED_MFW_GET_FIELD(p_ets->flags, DCBX_ETS_CBS);
555         p_params->max_ets_tc = QED_MFW_GET_FIELD(p_ets->flags,
556                                                  DCBX_ETS_MAX_TCS);
557         DP_VERBOSE(p_hwfn, QED_MSG_DCB,
558                    "ETS params: willing %d, ets_cbs %d pri_tc_tbl_0 %x max_ets_tc %d\n",
559                    p_params->ets_willing,
560                    p_params->ets_cbs,
561                    p_ets->pri_tc_tbl[0], p_params->max_ets_tc);
562
563         /* 8 bit tsa and bw data corresponding to each of the 8 TC's are
564          * encoded in a type u32 array of size 2.
565          */
566         bw_map[0] = be32_to_cpu(p_ets->tc_bw_tbl[0]);
567         bw_map[1] = be32_to_cpu(p_ets->tc_bw_tbl[1]);
568         tsa_map[0] = be32_to_cpu(p_ets->tc_tsa_tbl[0]);
569         tsa_map[1] = be32_to_cpu(p_ets->tc_tsa_tbl[1]);
570         pri_map = p_ets->pri_tc_tbl[0];
571         for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) {
572                 p_params->ets_tc_bw_tbl[i] = ((u8 *)bw_map)[i];
573                 p_params->ets_tc_tsa_tbl[i] = ((u8 *)tsa_map)[i];
574                 p_params->ets_pri_tc_tbl[i] = QED_DCBX_PRIO2TC(pri_map, i);
575                 DP_VERBOSE(p_hwfn, QED_MSG_DCB,
576                            "elem %d  bw_tbl %x tsa_tbl %x\n",
577                            i, p_params->ets_tc_bw_tbl[i],
578                            p_params->ets_tc_tsa_tbl[i]);
579         }
580 }
581
582 static void
583 qed_dcbx_get_common_params(struct qed_hwfn *p_hwfn,
584                            struct dcbx_app_priority_feature *p_app,
585                            struct dcbx_app_priority_entry *p_tbl,
586                            struct dcbx_ets_feature *p_ets,
587                            u32 pfc, struct qed_dcbx_params *p_params, bool ieee)
588 {
589         qed_dcbx_get_app_data(p_hwfn, p_app, p_tbl, p_params, ieee);
590         qed_dcbx_get_ets_data(p_hwfn, p_ets, p_params);
591         qed_dcbx_get_pfc_data(p_hwfn, pfc, p_params);
592 }
593
594 static void
595 qed_dcbx_get_local_params(struct qed_hwfn *p_hwfn,
596                           struct qed_ptt *p_ptt, struct qed_dcbx_get *params)
597 {
598         struct dcbx_features *p_feat;
599
600         p_feat = &p_hwfn->p_dcbx_info->local_admin.features;
601         qed_dcbx_get_common_params(p_hwfn, &p_feat->app,
602                                    p_feat->app.app_pri_tbl, &p_feat->ets,
603                                    p_feat->pfc, &params->local.params, false);
604         params->local.valid = true;
605 }
606
607 static void
608 qed_dcbx_get_remote_params(struct qed_hwfn *p_hwfn,
609                            struct qed_ptt *p_ptt, struct qed_dcbx_get *params)
610 {
611         struct dcbx_features *p_feat;
612
613         p_feat = &p_hwfn->p_dcbx_info->remote.features;
614         qed_dcbx_get_common_params(p_hwfn, &p_feat->app,
615                                    p_feat->app.app_pri_tbl, &p_feat->ets,
616                                    p_feat->pfc, &params->remote.params, false);
617         params->remote.valid = true;
618 }
619
620 static void
621 qed_dcbx_get_operational_params(struct qed_hwfn *p_hwfn,
622                                 struct qed_ptt *p_ptt,
623                                 struct qed_dcbx_get *params)
624 {
625         struct qed_dcbx_operational_params *p_operational;
626         struct qed_dcbx_results *p_results;
627         struct dcbx_features *p_feat;
628         bool enabled, err;
629         u32 flags;
630         bool val;
631
632         flags = p_hwfn->p_dcbx_info->operational.flags;
633
634         /* If DCBx version is non zero, then negotiation
635          * was successfuly performed
636          */
637         p_operational = &params->operational;
638         enabled = !!(QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION) !=
639                      DCBX_CONFIG_VERSION_DISABLED);
640         if (!enabled) {
641                 p_operational->enabled = enabled;
642                 p_operational->valid = false;
643                 return;
644         }
645
646         p_feat = &p_hwfn->p_dcbx_info->operational.features;
647         p_results = &p_hwfn->p_dcbx_info->results;
648
649         val = !!(QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION) ==
650                  DCBX_CONFIG_VERSION_IEEE);
651         p_operational->ieee = val;
652         val = !!(QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION) ==
653                  DCBX_CONFIG_VERSION_CEE);
654         p_operational->cee = val;
655
656         DP_VERBOSE(p_hwfn, QED_MSG_DCB, "Version support: ieee %d, cee %d\n",
657                    p_operational->ieee, p_operational->cee);
658
659         qed_dcbx_get_common_params(p_hwfn, &p_feat->app,
660                                    p_feat->app.app_pri_tbl, &p_feat->ets,
661                                    p_feat->pfc, &params->operational.params,
662                                    p_operational->ieee);
663         qed_dcbx_get_priority_info(p_hwfn, &p_operational->app_prio, p_results);
664         err = QED_MFW_GET_FIELD(p_feat->app.flags, DCBX_APP_ERROR);
665         p_operational->err = err;
666         p_operational->enabled = enabled;
667         p_operational->valid = true;
668 }
669
670 static void
671 qed_dcbx_get_local_lldp_params(struct qed_hwfn *p_hwfn,
672                                struct qed_ptt *p_ptt,
673                                struct qed_dcbx_get *params)
674 {
675         struct lldp_config_params_s *p_local;
676
677         p_local = &p_hwfn->p_dcbx_info->lldp_local[LLDP_NEAREST_BRIDGE];
678
679         memcpy(params->lldp_local.local_chassis_id, p_local->local_chassis_id,
680                ARRAY_SIZE(p_local->local_chassis_id));
681         memcpy(params->lldp_local.local_port_id, p_local->local_port_id,
682                ARRAY_SIZE(p_local->local_port_id));
683 }
684
685 static void
686 qed_dcbx_get_remote_lldp_params(struct qed_hwfn *p_hwfn,
687                                 struct qed_ptt *p_ptt,
688                                 struct qed_dcbx_get *params)
689 {
690         struct lldp_status_params_s *p_remote;
691
692         p_remote = &p_hwfn->p_dcbx_info->lldp_remote[LLDP_NEAREST_BRIDGE];
693
694         memcpy(params->lldp_remote.peer_chassis_id, p_remote->peer_chassis_id,
695                ARRAY_SIZE(p_remote->peer_chassis_id));
696         memcpy(params->lldp_remote.peer_port_id, p_remote->peer_port_id,
697                ARRAY_SIZE(p_remote->peer_port_id));
698 }
699
700 static int
701 qed_dcbx_get_params(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt,
702                     struct qed_dcbx_get *p_params,
703                     enum qed_mib_read_type type)
704 {
705         switch (type) {
706         case QED_DCBX_REMOTE_MIB:
707                 qed_dcbx_get_remote_params(p_hwfn, p_ptt, p_params);
708                 break;
709         case QED_DCBX_LOCAL_MIB:
710                 qed_dcbx_get_local_params(p_hwfn, p_ptt, p_params);
711                 break;
712         case QED_DCBX_OPERATIONAL_MIB:
713                 qed_dcbx_get_operational_params(p_hwfn, p_ptt, p_params);
714                 break;
715         case QED_DCBX_REMOTE_LLDP_MIB:
716                 qed_dcbx_get_remote_lldp_params(p_hwfn, p_ptt, p_params);
717                 break;
718         case QED_DCBX_LOCAL_LLDP_MIB:
719                 qed_dcbx_get_local_lldp_params(p_hwfn, p_ptt, p_params);
720                 break;
721         default:
722                 DP_ERR(p_hwfn, "MIB read err, unknown mib type %d\n", type);
723                 return -EINVAL;
724         }
725
726         return 0;
727 }
728 #endif
729
730 static int
731 qed_dcbx_read_local_lldp_mib(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
732 {
733         struct qed_dcbx_mib_meta_data data;
734         int rc = 0;
735
736         memset(&data, 0, sizeof(data));
737         data.addr = p_hwfn->mcp_info->port_addr + offsetof(struct public_port,
738                                                            lldp_config_params);
739         data.lldp_local = p_hwfn->p_dcbx_info->lldp_local;
740         data.size = sizeof(struct lldp_config_params_s);
741         qed_memcpy_from(p_hwfn, p_ptt, data.lldp_local, data.addr, data.size);
742
743         return rc;
744 }
745
746 static int
747 qed_dcbx_read_remote_lldp_mib(struct qed_hwfn *p_hwfn,
748                               struct qed_ptt *p_ptt,
749                               enum qed_mib_read_type type)
750 {
751         struct qed_dcbx_mib_meta_data data;
752         int rc = 0;
753
754         memset(&data, 0, sizeof(data));
755         data.addr = p_hwfn->mcp_info->port_addr + offsetof(struct public_port,
756                                                            lldp_status_params);
757         data.lldp_remote = p_hwfn->p_dcbx_info->lldp_remote;
758         data.size = sizeof(struct lldp_status_params_s);
759         rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type);
760
761         return rc;
762 }
763
764 static int
765 qed_dcbx_read_operational_mib(struct qed_hwfn *p_hwfn,
766                               struct qed_ptt *p_ptt,
767                               enum qed_mib_read_type type)
768 {
769         struct qed_dcbx_mib_meta_data data;
770         int rc = 0;
771
772         memset(&data, 0, sizeof(data));
773         data.addr = p_hwfn->mcp_info->port_addr +
774                     offsetof(struct public_port, operational_dcbx_mib);
775         data.mib = &p_hwfn->p_dcbx_info->operational;
776         data.size = sizeof(struct dcbx_mib);
777         rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type);
778
779         return rc;
780 }
781
782 static int
783 qed_dcbx_read_remote_mib(struct qed_hwfn *p_hwfn,
784                          struct qed_ptt *p_ptt, enum qed_mib_read_type type)
785 {
786         struct qed_dcbx_mib_meta_data data;
787         int rc = 0;
788
789         memset(&data, 0, sizeof(data));
790         data.addr = p_hwfn->mcp_info->port_addr +
791                     offsetof(struct public_port, remote_dcbx_mib);
792         data.mib = &p_hwfn->p_dcbx_info->remote;
793         data.size = sizeof(struct dcbx_mib);
794         rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type);
795
796         return rc;
797 }
798
799 static int
800 qed_dcbx_read_local_mib(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
801 {
802         struct qed_dcbx_mib_meta_data data;
803         int rc = 0;
804
805         memset(&data, 0, sizeof(data));
806         data.addr = p_hwfn->mcp_info->port_addr +
807                     offsetof(struct public_port, local_admin_dcbx_mib);
808         data.local_admin = &p_hwfn->p_dcbx_info->local_admin;
809         data.size = sizeof(struct dcbx_local_params);
810         qed_memcpy_from(p_hwfn, p_ptt, data.local_admin, data.addr, data.size);
811
812         return rc;
813 }
814
815 static int qed_dcbx_read_mib(struct qed_hwfn *p_hwfn,
816                              struct qed_ptt *p_ptt, enum qed_mib_read_type type)
817 {
818         int rc = -EINVAL;
819
820         switch (type) {
821         case QED_DCBX_OPERATIONAL_MIB:
822                 rc = qed_dcbx_read_operational_mib(p_hwfn, p_ptt, type);
823                 break;
824         case QED_DCBX_REMOTE_MIB:
825                 rc = qed_dcbx_read_remote_mib(p_hwfn, p_ptt, type);
826                 break;
827         case QED_DCBX_LOCAL_MIB:
828                 rc = qed_dcbx_read_local_mib(p_hwfn, p_ptt);
829                 break;
830         case QED_DCBX_REMOTE_LLDP_MIB:
831                 rc = qed_dcbx_read_remote_lldp_mib(p_hwfn, p_ptt, type);
832                 break;
833         case QED_DCBX_LOCAL_LLDP_MIB:
834                 rc = qed_dcbx_read_local_lldp_mib(p_hwfn, p_ptt);
835                 break;
836         default:
837                 DP_ERR(p_hwfn, "MIB read err, unknown mib type %d\n", type);
838         }
839
840         return rc;
841 }
842
843 /* Read updated MIB.
844  * Reconfigure QM and invoke PF update ramrod command if operational MIB
845  * change is detected.
846  */
847 int
848 qed_dcbx_mib_update_event(struct qed_hwfn *p_hwfn,
849                           struct qed_ptt *p_ptt, enum qed_mib_read_type type)
850 {
851         int rc = 0;
852
853         rc = qed_dcbx_read_mib(p_hwfn, p_ptt, type);
854         if (rc)
855                 return rc;
856
857         if (type == QED_DCBX_OPERATIONAL_MIB) {
858                 rc = qed_dcbx_process_mib_info(p_hwfn);
859                 if (!rc) {
860                         /* reconfigure tcs of QM queues according
861                          * to negotiation results
862                          */
863                         qed_qm_reconf(p_hwfn, p_ptt);
864
865                         /* update storm FW with negotiation results */
866                         qed_sp_pf_update(p_hwfn);
867                 }
868         }
869
870         return rc;
871 }
872
873 int qed_dcbx_info_alloc(struct qed_hwfn *p_hwfn)
874 {
875         int rc = 0;
876
877         p_hwfn->p_dcbx_info = kzalloc(sizeof(*p_hwfn->p_dcbx_info), GFP_KERNEL);
878         if (!p_hwfn->p_dcbx_info) {
879                 DP_NOTICE(p_hwfn,
880                           "Failed to allocate 'struct qed_dcbx_info'\n");
881                 rc = -ENOMEM;
882         }
883
884         return rc;
885 }
886
887 void qed_dcbx_info_free(struct qed_hwfn *p_hwfn,
888                         struct qed_dcbx_info *p_dcbx_info)
889 {
890         kfree(p_hwfn->p_dcbx_info);
891 }
892
893 static void qed_dcbx_update_protocol_data(struct protocol_dcb_data *p_data,
894                                           struct qed_dcbx_results *p_src,
895                                           enum dcbx_protocol_type type)
896 {
897         p_data->dcb_enable_flag = p_src->arr[type].enable;
898         p_data->dcb_priority = p_src->arr[type].priority;
899         p_data->dcb_tc = p_src->arr[type].tc;
900 }
901
902 /* Set pf update ramrod command params */
903 void qed_dcbx_set_pf_update_params(struct qed_dcbx_results *p_src,
904                                    struct pf_update_ramrod_data *p_dest)
905 {
906         struct protocol_dcb_data *p_dcb_data;
907         bool update_flag = false;
908
909         p_dest->pf_id = p_src->pf_id;
910
911         update_flag = p_src->arr[DCBX_PROTOCOL_FCOE].update;
912         p_dest->update_fcoe_dcb_data_flag = update_flag;
913
914         update_flag = p_src->arr[DCBX_PROTOCOL_ROCE].update;
915         p_dest->update_roce_dcb_data_flag = update_flag;
916         update_flag = p_src->arr[DCBX_PROTOCOL_ROCE_V2].update;
917         p_dest->update_roce_dcb_data_flag = update_flag;
918
919         update_flag = p_src->arr[DCBX_PROTOCOL_ISCSI].update;
920         p_dest->update_iscsi_dcb_data_flag = update_flag;
921         update_flag = p_src->arr[DCBX_PROTOCOL_ETH].update;
922         p_dest->update_eth_dcb_data_flag = update_flag;
923
924         p_dcb_data = &p_dest->fcoe_dcb_data;
925         qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_FCOE);
926         p_dcb_data = &p_dest->roce_dcb_data;
927
928         if (p_src->arr[DCBX_PROTOCOL_ROCE].update)
929                 qed_dcbx_update_protocol_data(p_dcb_data, p_src,
930                                               DCBX_PROTOCOL_ROCE);
931         if (p_src->arr[DCBX_PROTOCOL_ROCE_V2].update)
932                 qed_dcbx_update_protocol_data(p_dcb_data, p_src,
933                                               DCBX_PROTOCOL_ROCE_V2);
934
935         p_dcb_data = &p_dest->iscsi_dcb_data;
936         qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_ISCSI);
937         p_dcb_data = &p_dest->eth_dcb_data;
938         qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_ETH);
939 }
940
941 #ifdef CONFIG_DCB
942 static int qed_dcbx_query_params(struct qed_hwfn *p_hwfn,
943                                  struct qed_dcbx_get *p_get,
944                                  enum qed_mib_read_type type)
945 {
946         struct qed_ptt *p_ptt;
947         int rc;
948
949         if (IS_VF(p_hwfn->cdev))
950                 return -EINVAL;
951
952         p_ptt = qed_ptt_acquire(p_hwfn);
953         if (!p_ptt)
954                 return -EBUSY;
955
956         rc = qed_dcbx_read_mib(p_hwfn, p_ptt, type);
957         if (rc)
958                 goto out;
959
960         rc = qed_dcbx_get_params(p_hwfn, p_ptt, p_get, type);
961
962 out:
963         qed_ptt_release(p_hwfn, p_ptt);
964         return rc;
965 }
966
967 static void
968 qed_dcbx_set_pfc_data(struct qed_hwfn *p_hwfn,
969                       u32 *pfc, struct qed_dcbx_params *p_params)
970 {
971         u8 pfc_map = 0;
972         int i;
973
974         if (p_params->pfc.willing)
975                 *pfc |= DCBX_PFC_WILLING_MASK;
976         else
977                 *pfc &= ~DCBX_PFC_WILLING_MASK;
978
979         if (p_params->pfc.enabled)
980                 *pfc |= DCBX_PFC_ENABLED_MASK;
981         else
982                 *pfc &= ~DCBX_PFC_ENABLED_MASK;
983
984         *pfc &= ~DCBX_PFC_CAPS_MASK;
985         *pfc |= (u32)p_params->pfc.max_tc << DCBX_PFC_CAPS_SHIFT;
986
987         for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++)
988                 if (p_params->pfc.prio[i])
989                         pfc_map |= BIT(i);
990
991         *pfc &= ~DCBX_PFC_PRI_EN_BITMAP_MASK;
992         *pfc |= (pfc_map << DCBX_PFC_PRI_EN_BITMAP_SHIFT);
993
994         DP_VERBOSE(p_hwfn, QED_MSG_DCB, "pfc = 0x%x\n", *pfc);
995 }
996
997 static void
998 qed_dcbx_set_ets_data(struct qed_hwfn *p_hwfn,
999                       struct dcbx_ets_feature *p_ets,
1000                       struct qed_dcbx_params *p_params)
1001 {
1002         u8 *bw_map, *tsa_map;
1003         u32 val;
1004         int i;
1005
1006         if (p_params->ets_willing)
1007                 p_ets->flags |= DCBX_ETS_WILLING_MASK;
1008         else
1009                 p_ets->flags &= ~DCBX_ETS_WILLING_MASK;
1010
1011         if (p_params->ets_cbs)
1012                 p_ets->flags |= DCBX_ETS_CBS_MASK;
1013         else
1014                 p_ets->flags &= ~DCBX_ETS_CBS_MASK;
1015
1016         if (p_params->ets_enabled)
1017                 p_ets->flags |= DCBX_ETS_ENABLED_MASK;
1018         else
1019                 p_ets->flags &= ~DCBX_ETS_ENABLED_MASK;
1020
1021         p_ets->flags &= ~DCBX_ETS_MAX_TCS_MASK;
1022         p_ets->flags |= (u32)p_params->max_ets_tc << DCBX_ETS_MAX_TCS_SHIFT;
1023
1024         bw_map = (u8 *)&p_ets->tc_bw_tbl[0];
1025         tsa_map = (u8 *)&p_ets->tc_tsa_tbl[0];
1026         p_ets->pri_tc_tbl[0] = 0;
1027         for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) {
1028                 bw_map[i] = p_params->ets_tc_bw_tbl[i];
1029                 tsa_map[i] = p_params->ets_tc_tsa_tbl[i];
1030                 /* Copy the priority value to the corresponding 4 bits in the
1031                  * traffic class table.
1032                  */
1033                 val = (((u32)p_params->ets_pri_tc_tbl[i]) << ((7 - i) * 4));
1034                 p_ets->pri_tc_tbl[0] |= val;
1035         }
1036         for (i = 0; i < 2; i++) {
1037                 p_ets->tc_bw_tbl[i] = cpu_to_be32(p_ets->tc_bw_tbl[i]);
1038                 p_ets->tc_tsa_tbl[i] = cpu_to_be32(p_ets->tc_tsa_tbl[i]);
1039         }
1040 }
1041
1042 static void
1043 qed_dcbx_set_app_data(struct qed_hwfn *p_hwfn,
1044                       struct dcbx_app_priority_feature *p_app,
1045                       struct qed_dcbx_params *p_params, bool ieee)
1046 {
1047         u32 *entry;
1048         int i;
1049
1050         if (p_params->app_willing)
1051                 p_app->flags |= DCBX_APP_WILLING_MASK;
1052         else
1053                 p_app->flags &= ~DCBX_APP_WILLING_MASK;
1054
1055         if (p_params->app_valid)
1056                 p_app->flags |= DCBX_APP_ENABLED_MASK;
1057         else
1058                 p_app->flags &= ~DCBX_APP_ENABLED_MASK;
1059
1060         p_app->flags &= ~DCBX_APP_NUM_ENTRIES_MASK;
1061         p_app->flags |= (u32)p_params->num_app_entries <<
1062             DCBX_APP_NUM_ENTRIES_SHIFT;
1063
1064         for (i = 0; i < DCBX_MAX_APP_PROTOCOL; i++) {
1065                 entry = &p_app->app_pri_tbl[i].entry;
1066                 *entry = 0;
1067                 if (ieee) {
1068                         *entry &= ~(DCBX_APP_SF_IEEE_MASK | DCBX_APP_SF_MASK);
1069                         switch (p_params->app_entry[i].sf_ieee) {
1070                         case QED_DCBX_SF_IEEE_ETHTYPE:
1071                                 *entry |= ((u32)DCBX_APP_SF_IEEE_ETHTYPE <<
1072                                            DCBX_APP_SF_IEEE_SHIFT);
1073                                 *entry |= ((u32)DCBX_APP_SF_ETHTYPE <<
1074                                            DCBX_APP_SF_SHIFT);
1075                                 break;
1076                         case QED_DCBX_SF_IEEE_TCP_PORT:
1077                                 *entry |= ((u32)DCBX_APP_SF_IEEE_TCP_PORT <<
1078                                            DCBX_APP_SF_IEEE_SHIFT);
1079                                 *entry |= ((u32)DCBX_APP_SF_PORT <<
1080                                            DCBX_APP_SF_SHIFT);
1081                                 break;
1082                         case QED_DCBX_SF_IEEE_UDP_PORT:
1083                                 *entry |= ((u32)DCBX_APP_SF_IEEE_UDP_PORT <<
1084                                            DCBX_APP_SF_IEEE_SHIFT);
1085                                 *entry |= ((u32)DCBX_APP_SF_PORT <<
1086                                            DCBX_APP_SF_SHIFT);
1087                                 break;
1088                         case QED_DCBX_SF_IEEE_TCP_UDP_PORT:
1089                                 *entry |= ((u32)DCBX_APP_SF_IEEE_TCP_UDP_PORT <<
1090                                            DCBX_APP_SF_IEEE_SHIFT);
1091                                 *entry |= ((u32)DCBX_APP_SF_PORT <<
1092                                            DCBX_APP_SF_SHIFT);
1093                                 break;
1094                         }
1095                 } else {
1096                         *entry &= ~DCBX_APP_SF_MASK;
1097                         if (p_params->app_entry[i].ethtype)
1098                                 *entry |= ((u32)DCBX_APP_SF_ETHTYPE <<
1099                                            DCBX_APP_SF_SHIFT);
1100                         else
1101                                 *entry |= ((u32)DCBX_APP_SF_PORT <<
1102                                            DCBX_APP_SF_SHIFT);
1103                 }
1104
1105                 *entry &= ~DCBX_APP_PROTOCOL_ID_MASK;
1106                 *entry |= ((u32)p_params->app_entry[i].proto_id <<
1107                            DCBX_APP_PROTOCOL_ID_SHIFT);
1108                 *entry &= ~DCBX_APP_PRI_MAP_MASK;
1109                 *entry |= ((u32)(p_params->app_entry[i].prio) <<
1110                            DCBX_APP_PRI_MAP_SHIFT);
1111         }
1112 }
1113
1114 static void
1115 qed_dcbx_set_local_params(struct qed_hwfn *p_hwfn,
1116                           struct dcbx_local_params *local_admin,
1117                           struct qed_dcbx_set *params)
1118 {
1119         bool ieee = false;
1120
1121         local_admin->flags = 0;
1122         memcpy(&local_admin->features,
1123                &p_hwfn->p_dcbx_info->operational.features,
1124                sizeof(local_admin->features));
1125
1126         if (params->enabled) {
1127                 local_admin->config = params->ver_num;
1128                 ieee = !!(params->ver_num & DCBX_CONFIG_VERSION_IEEE);
1129         } else {
1130                 local_admin->config = DCBX_CONFIG_VERSION_DISABLED;
1131         }
1132
1133         if (params->override_flags & QED_DCBX_OVERRIDE_PFC_CFG)
1134                 qed_dcbx_set_pfc_data(p_hwfn, &local_admin->features.pfc,
1135                                       &params->config.params);
1136
1137         if (params->override_flags & QED_DCBX_OVERRIDE_ETS_CFG)
1138                 qed_dcbx_set_ets_data(p_hwfn, &local_admin->features.ets,
1139                                       &params->config.params);
1140
1141         if (params->override_flags & QED_DCBX_OVERRIDE_APP_CFG)
1142                 qed_dcbx_set_app_data(p_hwfn, &local_admin->features.app,
1143                                       &params->config.params, ieee);
1144 }
1145
1146 int qed_dcbx_config_params(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt,
1147                            struct qed_dcbx_set *params, bool hw_commit)
1148 {
1149         struct dcbx_local_params local_admin;
1150         struct qed_dcbx_mib_meta_data data;
1151         u32 resp = 0, param = 0;
1152         int rc = 0;
1153
1154         if (!hw_commit) {
1155                 memcpy(&p_hwfn->p_dcbx_info->set, params,
1156                        sizeof(struct qed_dcbx_set));
1157                 return 0;
1158         }
1159
1160         /* clear set-parmas cache */
1161         memset(&p_hwfn->p_dcbx_info->set, 0, sizeof(p_hwfn->p_dcbx_info->set));
1162
1163         memset(&local_admin, 0, sizeof(local_admin));
1164         qed_dcbx_set_local_params(p_hwfn, &local_admin, params);
1165
1166         data.addr = p_hwfn->mcp_info->port_addr +
1167             offsetof(struct public_port, local_admin_dcbx_mib);
1168         data.local_admin = &local_admin;
1169         data.size = sizeof(struct dcbx_local_params);
1170         qed_memcpy_to(p_hwfn, p_ptt, data.addr, data.local_admin, data.size);
1171
1172         rc = qed_mcp_cmd(p_hwfn, p_ptt, DRV_MSG_CODE_SET_DCBX,
1173                          1 << DRV_MB_PARAM_LLDP_SEND_SHIFT, &resp, &param);
1174         if (rc)
1175                 DP_NOTICE(p_hwfn, "Failed to send DCBX update request\n");
1176
1177         return rc;
1178 }
1179
1180 int qed_dcbx_get_config_params(struct qed_hwfn *p_hwfn,
1181                                struct qed_dcbx_set *params)
1182 {
1183         struct qed_dcbx_get *dcbx_info;
1184         int rc;
1185
1186         if (p_hwfn->p_dcbx_info->set.config.valid) {
1187                 memcpy(params, &p_hwfn->p_dcbx_info->set,
1188                        sizeof(struct qed_dcbx_set));
1189                 return 0;
1190         }
1191
1192         dcbx_info = kzalloc(sizeof(*dcbx_info), GFP_KERNEL);
1193         if (!dcbx_info) {
1194                 DP_ERR(p_hwfn, "Failed to allocate struct qed_dcbx_info\n");
1195                 return -ENOMEM;
1196         }
1197
1198         rc = qed_dcbx_query_params(p_hwfn, dcbx_info, QED_DCBX_OPERATIONAL_MIB);
1199         if (rc) {
1200                 kfree(dcbx_info);
1201                 return rc;
1202         }
1203
1204         p_hwfn->p_dcbx_info->set.override_flags = 0;
1205         p_hwfn->p_dcbx_info->set.ver_num = DCBX_CONFIG_VERSION_DISABLED;
1206         if (dcbx_info->operational.cee)
1207                 p_hwfn->p_dcbx_info->set.ver_num |= DCBX_CONFIG_VERSION_CEE;
1208         if (dcbx_info->operational.ieee)
1209                 p_hwfn->p_dcbx_info->set.ver_num |= DCBX_CONFIG_VERSION_IEEE;
1210
1211         p_hwfn->p_dcbx_info->set.enabled = dcbx_info->operational.enabled;
1212         memcpy(&p_hwfn->p_dcbx_info->set.config.params,
1213                &dcbx_info->operational.params,
1214                sizeof(struct qed_dcbx_admin_params));
1215         p_hwfn->p_dcbx_info->set.config.valid = true;
1216
1217         memcpy(params, &p_hwfn->p_dcbx_info->set, sizeof(struct qed_dcbx_set));
1218
1219         kfree(dcbx_info);
1220
1221         return 0;
1222 }
1223
1224 static struct qed_dcbx_get *qed_dcbnl_get_dcbx(struct qed_hwfn *hwfn,
1225                                                enum qed_mib_read_type type)
1226 {
1227         struct qed_dcbx_get *dcbx_info;
1228
1229         dcbx_info = kzalloc(sizeof(*dcbx_info), GFP_KERNEL);
1230         if (!dcbx_info) {
1231                 DP_ERR(hwfn->cdev, "Failed to allocate memory for dcbx_info\n");
1232                 return NULL;
1233         }
1234
1235         if (qed_dcbx_query_params(hwfn, dcbx_info, type)) {
1236                 kfree(dcbx_info);
1237                 return NULL;
1238         }
1239
1240         if ((type == QED_DCBX_OPERATIONAL_MIB) &&
1241             !dcbx_info->operational.enabled) {
1242                 DP_INFO(hwfn, "DCBX is not enabled/operational\n");
1243                 kfree(dcbx_info);
1244                 return NULL;
1245         }
1246
1247         return dcbx_info;
1248 }
1249
1250 static u8 qed_dcbnl_getstate(struct qed_dev *cdev)
1251 {
1252         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1253         struct qed_dcbx_get *dcbx_info;
1254         bool enabled;
1255
1256         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1257         if (!dcbx_info)
1258                 return 0;
1259
1260         enabled = dcbx_info->operational.enabled;
1261         DP_VERBOSE(hwfn, QED_MSG_DCB, "DCB state = %d\n", enabled);
1262         kfree(dcbx_info);
1263
1264         return enabled;
1265 }
1266
1267 static u8 qed_dcbnl_setstate(struct qed_dev *cdev, u8 state)
1268 {
1269         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1270         struct qed_dcbx_set dcbx_set;
1271         struct qed_ptt *ptt;
1272         int rc;
1273
1274         DP_VERBOSE(hwfn, QED_MSG_DCB, "DCB state = %d\n", state);
1275
1276         memset(&dcbx_set, 0, sizeof(dcbx_set));
1277         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1278         if (rc)
1279                 return 1;
1280
1281         dcbx_set.enabled = !!state;
1282
1283         ptt = qed_ptt_acquire(hwfn);
1284         if (!ptt)
1285                 return 1;
1286
1287         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1288
1289         qed_ptt_release(hwfn, ptt);
1290
1291         return rc ? 1 : 0;
1292 }
1293
1294 static void qed_dcbnl_getpgtccfgtx(struct qed_dev *cdev, int tc, u8 *prio_type,
1295                                    u8 *pgid, u8 *bw_pct, u8 *up_map)
1296 {
1297         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1298         struct qed_dcbx_get *dcbx_info;
1299
1300         DP_VERBOSE(hwfn, QED_MSG_DCB, "tc = %d\n", tc);
1301         *prio_type = *pgid = *bw_pct = *up_map = 0;
1302         if (tc < 0 || tc >= QED_MAX_PFC_PRIORITIES) {
1303                 DP_INFO(hwfn, "Invalid tc %d\n", tc);
1304                 return;
1305         }
1306
1307         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1308         if (!dcbx_info)
1309                 return;
1310
1311         *pgid = dcbx_info->operational.params.ets_pri_tc_tbl[tc];
1312         kfree(dcbx_info);
1313 }
1314
1315 static void qed_dcbnl_getpgbwgcfgtx(struct qed_dev *cdev, int pgid, u8 *bw_pct)
1316 {
1317         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1318         struct qed_dcbx_get *dcbx_info;
1319
1320         *bw_pct = 0;
1321         DP_VERBOSE(hwfn, QED_MSG_DCB, "pgid = %d\n", pgid);
1322         if (pgid < 0 || pgid >= QED_MAX_PFC_PRIORITIES) {
1323                 DP_INFO(hwfn, "Invalid pgid %d\n", pgid);
1324                 return;
1325         }
1326
1327         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1328         if (!dcbx_info)
1329                 return;
1330
1331         *bw_pct = dcbx_info->operational.params.ets_tc_bw_tbl[pgid];
1332         DP_VERBOSE(hwfn, QED_MSG_DCB, "bw_pct = %d\n", *bw_pct);
1333         kfree(dcbx_info);
1334 }
1335
1336 static void qed_dcbnl_getpgtccfgrx(struct qed_dev *cdev, int tc, u8 *prio,
1337                                    u8 *bwg_id, u8 *bw_pct, u8 *up_map)
1338 {
1339         DP_INFO(QED_LEADING_HWFN(cdev), "Rx ETS is not supported\n");
1340         *prio = *bwg_id = *bw_pct = *up_map = 0;
1341 }
1342
1343 static void qed_dcbnl_getpgbwgcfgrx(struct qed_dev *cdev,
1344                                     int bwg_id, u8 *bw_pct)
1345 {
1346         DP_INFO(QED_LEADING_HWFN(cdev), "Rx ETS is not supported\n");
1347         *bw_pct = 0;
1348 }
1349
1350 static void qed_dcbnl_getpfccfg(struct qed_dev *cdev,
1351                                 int priority, u8 *setting)
1352 {
1353         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1354         struct qed_dcbx_get *dcbx_info;
1355
1356         DP_VERBOSE(hwfn, QED_MSG_DCB, "priority = %d\n", priority);
1357         if (priority < 0 || priority >= QED_MAX_PFC_PRIORITIES) {
1358                 DP_INFO(hwfn, "Invalid priority %d\n", priority);
1359                 return;
1360         }
1361
1362         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1363         if (!dcbx_info)
1364                 return;
1365
1366         *setting = dcbx_info->operational.params.pfc.prio[priority];
1367         DP_VERBOSE(hwfn, QED_MSG_DCB, "setting = %d\n", *setting);
1368         kfree(dcbx_info);
1369 }
1370
1371 static void qed_dcbnl_setpfccfg(struct qed_dev *cdev, int priority, u8 setting)
1372 {
1373         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1374         struct qed_dcbx_set dcbx_set;
1375         struct qed_ptt *ptt;
1376         int rc;
1377
1378         DP_VERBOSE(hwfn, QED_MSG_DCB, "priority = %d setting = %d\n",
1379                    priority, setting);
1380         if (priority < 0 || priority >= QED_MAX_PFC_PRIORITIES) {
1381                 DP_INFO(hwfn, "Invalid priority %d\n", priority);
1382                 return;
1383         }
1384
1385         memset(&dcbx_set, 0, sizeof(dcbx_set));
1386         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1387         if (rc)
1388                 return;
1389
1390         dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG;
1391         dcbx_set.config.params.pfc.prio[priority] = !!setting;
1392
1393         ptt = qed_ptt_acquire(hwfn);
1394         if (!ptt)
1395                 return;
1396
1397         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1398
1399         qed_ptt_release(hwfn, ptt);
1400 }
1401
1402 static u8 qed_dcbnl_getcap(struct qed_dev *cdev, int capid, u8 *cap)
1403 {
1404         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1405         struct qed_dcbx_get *dcbx_info;
1406         int rc = 0;
1407
1408         DP_VERBOSE(hwfn, QED_MSG_DCB, "capid = %d\n", capid);
1409         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1410         if (!dcbx_info)
1411                 return 1;
1412
1413         switch (capid) {
1414         case DCB_CAP_ATTR_PG:
1415         case DCB_CAP_ATTR_PFC:
1416         case DCB_CAP_ATTR_UP2TC:
1417         case DCB_CAP_ATTR_GSP:
1418                 *cap = true;
1419                 break;
1420         case DCB_CAP_ATTR_PG_TCS:
1421         case DCB_CAP_ATTR_PFC_TCS:
1422                 *cap = 0x80;
1423                 break;
1424         case DCB_CAP_ATTR_DCBX:
1425                 *cap = (DCB_CAP_DCBX_LLD_MANAGED | DCB_CAP_DCBX_VER_CEE |
1426                         DCB_CAP_DCBX_VER_IEEE);
1427                 break;
1428         default:
1429                 *cap = false;
1430                 rc = 1;
1431         }
1432
1433         DP_VERBOSE(hwfn, QED_MSG_DCB, "id = %d caps = %d\n", capid, *cap);
1434         kfree(dcbx_info);
1435
1436         return rc;
1437 }
1438
1439 static int qed_dcbnl_getnumtcs(struct qed_dev *cdev, int tcid, u8 *num)
1440 {
1441         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1442         struct qed_dcbx_get *dcbx_info;
1443         int rc = 0;
1444
1445         DP_VERBOSE(hwfn, QED_MSG_DCB, "tcid = %d\n", tcid);
1446         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1447         if (!dcbx_info)
1448                 return -EINVAL;
1449
1450         switch (tcid) {
1451         case DCB_NUMTCS_ATTR_PG:
1452                 *num = dcbx_info->operational.params.max_ets_tc;
1453                 break;
1454         case DCB_NUMTCS_ATTR_PFC:
1455                 *num = dcbx_info->operational.params.pfc.max_tc;
1456                 break;
1457         default:
1458                 rc = -EINVAL;
1459         }
1460
1461         kfree(dcbx_info);
1462         DP_VERBOSE(hwfn, QED_MSG_DCB, "numtcs = %d\n", *num);
1463
1464         return rc;
1465 }
1466
1467 static u8 qed_dcbnl_getpfcstate(struct qed_dev *cdev)
1468 {
1469         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1470         struct qed_dcbx_get *dcbx_info;
1471         bool enabled;
1472
1473         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1474         if (!dcbx_info)
1475                 return 0;
1476
1477         enabled = dcbx_info->operational.params.pfc.enabled;
1478         DP_VERBOSE(hwfn, QED_MSG_DCB, "pfc state = %d\n", enabled);
1479         kfree(dcbx_info);
1480
1481         return enabled;
1482 }
1483
1484 static u8 qed_dcbnl_getdcbx(struct qed_dev *cdev)
1485 {
1486         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1487         struct qed_dcbx_get *dcbx_info;
1488         u8 mode = 0;
1489
1490         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1491         if (!dcbx_info)
1492                 return 0;
1493
1494         if (dcbx_info->operational.enabled)
1495                 mode |= DCB_CAP_DCBX_LLD_MANAGED;
1496         if (dcbx_info->operational.ieee)
1497                 mode |= DCB_CAP_DCBX_VER_IEEE;
1498         if (dcbx_info->operational.cee)
1499                 mode |= DCB_CAP_DCBX_VER_CEE;
1500
1501         DP_VERBOSE(hwfn, QED_MSG_DCB, "dcb mode = %d\n", mode);
1502         kfree(dcbx_info);
1503
1504         return mode;
1505 }
1506
1507 static void qed_dcbnl_setpgtccfgtx(struct qed_dev *cdev,
1508                                    int tc,
1509                                    u8 pri_type, u8 pgid, u8 bw_pct, u8 up_map)
1510 {
1511         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1512         struct qed_dcbx_set dcbx_set;
1513         struct qed_ptt *ptt;
1514         int rc;
1515
1516         DP_VERBOSE(hwfn, QED_MSG_DCB,
1517                    "tc = %d pri_type = %d pgid = %d bw_pct = %d up_map = %d\n",
1518                    tc, pri_type, pgid, bw_pct, up_map);
1519
1520         if (tc < 0 || tc >= QED_MAX_PFC_PRIORITIES) {
1521                 DP_INFO(hwfn, "Invalid tc %d\n", tc);
1522                 return;
1523         }
1524
1525         memset(&dcbx_set, 0, sizeof(dcbx_set));
1526         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1527         if (rc)
1528                 return;
1529
1530         dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG;
1531         dcbx_set.config.params.ets_pri_tc_tbl[tc] = pgid;
1532
1533         ptt = qed_ptt_acquire(hwfn);
1534         if (!ptt)
1535                 return;
1536
1537         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1538
1539         qed_ptt_release(hwfn, ptt);
1540 }
1541
1542 static void qed_dcbnl_setpgtccfgrx(struct qed_dev *cdev, int prio,
1543                                    u8 pri_type, u8 pgid, u8 bw_pct, u8 up_map)
1544 {
1545         DP_INFO(QED_LEADING_HWFN(cdev), "Rx ETS is not supported\n");
1546 }
1547
1548 static void qed_dcbnl_setpgbwgcfgtx(struct qed_dev *cdev, int pgid, u8 bw_pct)
1549 {
1550         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1551         struct qed_dcbx_set dcbx_set;
1552         struct qed_ptt *ptt;
1553         int rc;
1554
1555         DP_VERBOSE(hwfn, QED_MSG_DCB, "pgid = %d bw_pct = %d\n", pgid, bw_pct);
1556         if (pgid < 0 || pgid >= QED_MAX_PFC_PRIORITIES) {
1557                 DP_INFO(hwfn, "Invalid pgid %d\n", pgid);
1558                 return;
1559         }
1560
1561         memset(&dcbx_set, 0, sizeof(dcbx_set));
1562         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1563         if (rc)
1564                 return;
1565
1566         dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG;
1567         dcbx_set.config.params.ets_tc_bw_tbl[pgid] = bw_pct;
1568
1569         ptt = qed_ptt_acquire(hwfn);
1570         if (!ptt)
1571                 return;
1572
1573         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1574
1575         qed_ptt_release(hwfn, ptt);
1576 }
1577
1578 static void qed_dcbnl_setpgbwgcfgrx(struct qed_dev *cdev, int pgid, u8 bw_pct)
1579 {
1580         DP_INFO(QED_LEADING_HWFN(cdev), "Rx ETS is not supported\n");
1581 }
1582
1583 static u8 qed_dcbnl_setall(struct qed_dev *cdev)
1584 {
1585         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1586         struct qed_dcbx_set dcbx_set;
1587         struct qed_ptt *ptt;
1588         int rc;
1589
1590         memset(&dcbx_set, 0, sizeof(dcbx_set));
1591         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1592         if (rc)
1593                 return 1;
1594
1595         ptt = qed_ptt_acquire(hwfn);
1596         if (!ptt)
1597                 return 1;
1598
1599         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 1);
1600
1601         qed_ptt_release(hwfn, ptt);
1602
1603         return rc;
1604 }
1605
1606 static int qed_dcbnl_setnumtcs(struct qed_dev *cdev, int tcid, u8 num)
1607 {
1608         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1609         struct qed_dcbx_set dcbx_set;
1610         struct qed_ptt *ptt;
1611         int rc;
1612
1613         DP_VERBOSE(hwfn, QED_MSG_DCB, "tcid = %d num = %d\n", tcid, num);
1614         memset(&dcbx_set, 0, sizeof(dcbx_set));
1615         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1616         if (rc)
1617                 return 1;
1618
1619         switch (tcid) {
1620         case DCB_NUMTCS_ATTR_PG:
1621                 dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG;
1622                 dcbx_set.config.params.max_ets_tc = num;
1623                 break;
1624         case DCB_NUMTCS_ATTR_PFC:
1625                 dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG;
1626                 dcbx_set.config.params.pfc.max_tc = num;
1627                 break;
1628         default:
1629                 DP_INFO(hwfn, "Invalid tcid %d\n", tcid);
1630                 return -EINVAL;
1631         }
1632
1633         ptt = qed_ptt_acquire(hwfn);
1634         if (!ptt)
1635                 return -EINVAL;
1636
1637         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1638
1639         qed_ptt_release(hwfn, ptt);
1640
1641         return 0;
1642 }
1643
1644 static void qed_dcbnl_setpfcstate(struct qed_dev *cdev, u8 state)
1645 {
1646         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1647         struct qed_dcbx_set dcbx_set;
1648         struct qed_ptt *ptt;
1649         int rc;
1650
1651         DP_VERBOSE(hwfn, QED_MSG_DCB, "new state = %d\n", state);
1652
1653         memset(&dcbx_set, 0, sizeof(dcbx_set));
1654         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1655         if (rc)
1656                 return;
1657
1658         dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG;
1659         dcbx_set.config.params.pfc.enabled = !!state;
1660
1661         ptt = qed_ptt_acquire(hwfn);
1662         if (!ptt)
1663                 return;
1664
1665         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1666
1667         qed_ptt_release(hwfn, ptt);
1668 }
1669
1670 static int qed_dcbnl_getapp(struct qed_dev *cdev, u8 idtype, u16 idval)
1671 {
1672         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1673         struct qed_dcbx_get *dcbx_info;
1674         struct qed_app_entry *entry;
1675         bool ethtype;
1676         u8 prio = 0;
1677         int i;
1678
1679         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1680         if (!dcbx_info)
1681                 return -EINVAL;
1682
1683         ethtype = !!(idtype == DCB_APP_IDTYPE_ETHTYPE);
1684         for (i = 0; i < QED_DCBX_MAX_APP_PROTOCOL; i++) {
1685                 entry = &dcbx_info->operational.params.app_entry[i];
1686                 if ((entry->ethtype == ethtype) && (entry->proto_id == idval)) {
1687                         prio = entry->prio;
1688                         break;
1689                 }
1690         }
1691
1692         if (i == QED_DCBX_MAX_APP_PROTOCOL) {
1693                 DP_ERR(cdev, "App entry (%d, %d) not found\n", idtype, idval);
1694                 kfree(dcbx_info);
1695                 return -EINVAL;
1696         }
1697
1698         kfree(dcbx_info);
1699
1700         return prio;
1701 }
1702
1703 static int qed_dcbnl_setapp(struct qed_dev *cdev,
1704                             u8 idtype, u16 idval, u8 pri_map)
1705 {
1706         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1707         struct qed_dcbx_set dcbx_set;
1708         struct qed_app_entry *entry;
1709         struct qed_ptt *ptt;
1710         bool ethtype;
1711         int rc, i;
1712
1713         memset(&dcbx_set, 0, sizeof(dcbx_set));
1714         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1715         if (rc)
1716                 return -EINVAL;
1717
1718         ethtype = !!(idtype == DCB_APP_IDTYPE_ETHTYPE);
1719         for (i = 0; i < QED_DCBX_MAX_APP_PROTOCOL; i++) {
1720                 entry = &dcbx_set.config.params.app_entry[i];
1721                 if ((entry->ethtype == ethtype) && (entry->proto_id == idval))
1722                         break;
1723                 /* First empty slot */
1724                 if (!entry->proto_id) {
1725                         dcbx_set.config.params.num_app_entries++;
1726                         break;
1727                 }
1728         }
1729
1730         if (i == QED_DCBX_MAX_APP_PROTOCOL) {
1731                 DP_ERR(cdev, "App table is full\n");
1732                 return -EBUSY;
1733         }
1734
1735         dcbx_set.override_flags |= QED_DCBX_OVERRIDE_APP_CFG;
1736         dcbx_set.config.params.app_entry[i].ethtype = ethtype;
1737         dcbx_set.config.params.app_entry[i].proto_id = idval;
1738         dcbx_set.config.params.app_entry[i].prio = pri_map;
1739
1740         ptt = qed_ptt_acquire(hwfn);
1741         if (!ptt)
1742                 return -EBUSY;
1743
1744         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1745
1746         qed_ptt_release(hwfn, ptt);
1747
1748         return rc;
1749 }
1750
1751 static u8 qed_dcbnl_setdcbx(struct qed_dev *cdev, u8 mode)
1752 {
1753         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1754         struct qed_dcbx_set dcbx_set;
1755         struct qed_ptt *ptt;
1756         int rc;
1757
1758         DP_VERBOSE(hwfn, QED_MSG_DCB, "new mode = %x\n", mode);
1759
1760         if (!(mode & DCB_CAP_DCBX_VER_IEEE) && !(mode & DCB_CAP_DCBX_VER_CEE)) {
1761                 DP_INFO(hwfn, "Allowed mode is cee, ieee or both\n");
1762                 return 1;
1763         }
1764
1765         memset(&dcbx_set, 0, sizeof(dcbx_set));
1766         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1767         if (rc)
1768                 return 1;
1769
1770         dcbx_set.ver_num = 0;
1771         if (mode & DCB_CAP_DCBX_VER_CEE) {
1772                 dcbx_set.ver_num |= DCBX_CONFIG_VERSION_CEE;
1773                 dcbx_set.enabled = true;
1774         }
1775
1776         if (mode & DCB_CAP_DCBX_VER_IEEE) {
1777                 dcbx_set.ver_num |= DCBX_CONFIG_VERSION_IEEE;
1778                 dcbx_set.enabled = true;
1779         }
1780
1781         ptt = qed_ptt_acquire(hwfn);
1782         if (!ptt)
1783                 return 1;
1784
1785         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1786
1787         qed_ptt_release(hwfn, ptt);
1788
1789         return 0;
1790 }
1791
1792 static u8 qed_dcbnl_getfeatcfg(struct qed_dev *cdev, int featid, u8 *flags)
1793 {
1794         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1795         struct qed_dcbx_get *dcbx_info;
1796
1797         DP_VERBOSE(hwfn, QED_MSG_DCB, "Feature id  = %d\n", featid);
1798         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1799         if (!dcbx_info)
1800                 return 1;
1801
1802         *flags = 0;
1803         switch (featid) {
1804         case DCB_FEATCFG_ATTR_PG:
1805                 if (dcbx_info->operational.params.ets_enabled)
1806                         *flags = DCB_FEATCFG_ENABLE;
1807                 else
1808                         *flags = DCB_FEATCFG_ERROR;
1809                 break;
1810         case DCB_FEATCFG_ATTR_PFC:
1811                 if (dcbx_info->operational.params.pfc.enabled)
1812                         *flags = DCB_FEATCFG_ENABLE;
1813                 else
1814                         *flags = DCB_FEATCFG_ERROR;
1815                 break;
1816         case DCB_FEATCFG_ATTR_APP:
1817                 if (dcbx_info->operational.params.app_valid)
1818                         *flags = DCB_FEATCFG_ENABLE;
1819                 else
1820                         *flags = DCB_FEATCFG_ERROR;
1821                 break;
1822         default:
1823                 DP_INFO(hwfn, "Invalid feature-ID %d\n", featid);
1824                 kfree(dcbx_info);
1825                 return 1;
1826         }
1827
1828         DP_VERBOSE(hwfn, QED_MSG_DCB, "flags = %d\n", *flags);
1829         kfree(dcbx_info);
1830
1831         return 0;
1832 }
1833
1834 static u8 qed_dcbnl_setfeatcfg(struct qed_dev *cdev, int featid, u8 flags)
1835 {
1836         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1837         struct qed_dcbx_set dcbx_set;
1838         bool enabled, willing;
1839         struct qed_ptt *ptt;
1840         int rc;
1841
1842         DP_VERBOSE(hwfn, QED_MSG_DCB, "featid = %d flags = %d\n",
1843                    featid, flags);
1844         memset(&dcbx_set, 0, sizeof(dcbx_set));
1845         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
1846         if (rc)
1847                 return 1;
1848
1849         enabled = !!(flags & DCB_FEATCFG_ENABLE);
1850         willing = !!(flags & DCB_FEATCFG_WILLING);
1851         switch (featid) {
1852         case DCB_FEATCFG_ATTR_PG:
1853                 dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG;
1854                 dcbx_set.config.params.ets_enabled = enabled;
1855                 dcbx_set.config.params.ets_willing = willing;
1856                 break;
1857         case DCB_FEATCFG_ATTR_PFC:
1858                 dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG;
1859                 dcbx_set.config.params.pfc.enabled = enabled;
1860                 dcbx_set.config.params.pfc.willing = willing;
1861                 break;
1862         case DCB_FEATCFG_ATTR_APP:
1863                 dcbx_set.override_flags |= QED_DCBX_OVERRIDE_APP_CFG;
1864                 dcbx_set.config.params.app_willing = willing;
1865                 break;
1866         default:
1867                 DP_INFO(hwfn, "Invalid feature-ID %d\n", featid);
1868                 return 1;
1869         }
1870
1871         ptt = qed_ptt_acquire(hwfn);
1872         if (!ptt)
1873                 return 1;
1874
1875         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
1876
1877         qed_ptt_release(hwfn, ptt);
1878
1879         return 0;
1880 }
1881
1882 static int qed_dcbnl_peer_getappinfo(struct qed_dev *cdev,
1883                                      struct dcb_peer_app_info *info,
1884                                      u16 *app_count)
1885 {
1886         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1887         struct qed_dcbx_get *dcbx_info;
1888
1889         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_REMOTE_MIB);
1890         if (!dcbx_info)
1891                 return -EINVAL;
1892
1893         info->willing = dcbx_info->remote.params.app_willing;
1894         info->error = dcbx_info->remote.params.app_error;
1895         *app_count = dcbx_info->remote.params.num_app_entries;
1896         kfree(dcbx_info);
1897
1898         return 0;
1899 }
1900
1901 static int qed_dcbnl_peer_getapptable(struct qed_dev *cdev,
1902                                       struct dcb_app *table)
1903 {
1904         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1905         struct qed_dcbx_get *dcbx_info;
1906         int i;
1907
1908         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_REMOTE_MIB);
1909         if (!dcbx_info)
1910                 return -EINVAL;
1911
1912         for (i = 0; i < dcbx_info->remote.params.num_app_entries; i++) {
1913                 if (dcbx_info->remote.params.app_entry[i].ethtype)
1914                         table[i].selector = DCB_APP_IDTYPE_ETHTYPE;
1915                 else
1916                         table[i].selector = DCB_APP_IDTYPE_PORTNUM;
1917                 table[i].priority = dcbx_info->remote.params.app_entry[i].prio;
1918                 table[i].protocol =
1919                     dcbx_info->remote.params.app_entry[i].proto_id;
1920         }
1921
1922         kfree(dcbx_info);
1923
1924         return 0;
1925 }
1926
1927 static int qed_dcbnl_cee_peer_getpfc(struct qed_dev *cdev, struct cee_pfc *pfc)
1928 {
1929         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1930         struct qed_dcbx_get *dcbx_info;
1931         int i;
1932
1933         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_REMOTE_MIB);
1934         if (!dcbx_info)
1935                 return -EINVAL;
1936
1937         for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++)
1938                 if (dcbx_info->remote.params.pfc.prio[i])
1939                         pfc->pfc_en |= BIT(i);
1940
1941         pfc->tcs_supported = dcbx_info->remote.params.pfc.max_tc;
1942         DP_VERBOSE(hwfn, QED_MSG_DCB, "pfc state = %d tcs_supported = %d\n",
1943                    pfc->pfc_en, pfc->tcs_supported);
1944         kfree(dcbx_info);
1945
1946         return 0;
1947 }
1948
1949 static int qed_dcbnl_cee_peer_getpg(struct qed_dev *cdev, struct cee_pg *pg)
1950 {
1951         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1952         struct qed_dcbx_get *dcbx_info;
1953         int i;
1954
1955         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_REMOTE_MIB);
1956         if (!dcbx_info)
1957                 return -EINVAL;
1958
1959         pg->willing = dcbx_info->remote.params.ets_willing;
1960         for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) {
1961                 pg->pg_bw[i] = dcbx_info->remote.params.ets_tc_bw_tbl[i];
1962                 pg->prio_pg[i] = dcbx_info->remote.params.ets_pri_tc_tbl[i];
1963         }
1964
1965         DP_VERBOSE(hwfn, QED_MSG_DCB, "willing = %d", pg->willing);
1966         kfree(dcbx_info);
1967
1968         return 0;
1969 }
1970
1971 static int qed_dcbnl_get_ieee_pfc(struct qed_dev *cdev,
1972                                   struct ieee_pfc *pfc, bool remote)
1973 {
1974         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1975         struct qed_dcbx_params *params;
1976         struct qed_dcbx_get *dcbx_info;
1977         int rc, i;
1978
1979         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
1980         if (!dcbx_info)
1981                 return -EINVAL;
1982
1983         if (!dcbx_info->operational.ieee) {
1984                 DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n");
1985                 return -EINVAL;
1986         }
1987
1988         if (remote) {
1989                 memset(dcbx_info, 0, sizeof(*dcbx_info));
1990                 rc = qed_dcbx_query_params(hwfn, dcbx_info,
1991                                            QED_DCBX_REMOTE_MIB);
1992                 if (rc) {
1993                         kfree(dcbx_info);
1994                         return -EINVAL;
1995                 }
1996
1997                 params = &dcbx_info->remote.params;
1998         } else {
1999                 params = &dcbx_info->operational.params;
2000         }
2001
2002         pfc->pfc_cap = params->pfc.max_tc;
2003         pfc->pfc_en = 0;
2004         for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++)
2005                 if (params->pfc.prio[i])
2006                         pfc->pfc_en |= BIT(i);
2007
2008         kfree(dcbx_info);
2009
2010         return 0;
2011 }
2012
2013 static int qed_dcbnl_ieee_getpfc(struct qed_dev *cdev, struct ieee_pfc *pfc)
2014 {
2015         return qed_dcbnl_get_ieee_pfc(cdev, pfc, false);
2016 }
2017
2018 static int qed_dcbnl_ieee_setpfc(struct qed_dev *cdev, struct ieee_pfc *pfc)
2019 {
2020         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
2021         struct qed_dcbx_get *dcbx_info;
2022         struct qed_dcbx_set dcbx_set;
2023         struct qed_ptt *ptt;
2024         int rc, i;
2025
2026         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
2027         if (!dcbx_info)
2028                 return -EINVAL;
2029
2030         if (!dcbx_info->operational.ieee) {
2031                 DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n");
2032                 kfree(dcbx_info);
2033                 return -EINVAL;
2034         }
2035
2036         kfree(dcbx_info);
2037
2038         memset(&dcbx_set, 0, sizeof(dcbx_set));
2039         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
2040         if (rc)
2041                 return -EINVAL;
2042
2043         dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG;
2044         for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++)
2045                 dcbx_set.config.params.pfc.prio[i] = !!(pfc->pfc_en & BIT(i));
2046
2047         ptt = qed_ptt_acquire(hwfn);
2048         if (!ptt)
2049                 return -EINVAL;
2050
2051         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
2052
2053         qed_ptt_release(hwfn, ptt);
2054
2055         return rc;
2056 }
2057
2058 static int qed_dcbnl_get_ieee_ets(struct qed_dev *cdev,
2059                                   struct ieee_ets *ets, bool remote)
2060 {
2061         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
2062         struct qed_dcbx_get *dcbx_info;
2063         struct qed_dcbx_params *params;
2064         int rc;
2065
2066         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
2067         if (!dcbx_info)
2068                 return -EINVAL;
2069
2070         if (!dcbx_info->operational.ieee) {
2071                 DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n");
2072                 kfree(dcbx_info);
2073                 return -EINVAL;
2074         }
2075
2076         if (remote) {
2077                 memset(dcbx_info, 0, sizeof(*dcbx_info));
2078                 rc = qed_dcbx_query_params(hwfn, dcbx_info,
2079                                            QED_DCBX_REMOTE_MIB);
2080                 if (rc) {
2081                         kfree(dcbx_info);
2082                         return -EINVAL;
2083                 }
2084
2085                 params = &dcbx_info->remote.params;
2086         } else {
2087                 params = &dcbx_info->operational.params;
2088         }
2089
2090         ets->ets_cap = params->max_ets_tc;
2091         ets->willing = params->ets_willing;
2092         ets->cbs = params->ets_cbs;
2093         memcpy(ets->tc_tx_bw, params->ets_tc_bw_tbl, sizeof(ets->tc_tx_bw));
2094         memcpy(ets->tc_tsa, params->ets_tc_tsa_tbl, sizeof(ets->tc_tsa));
2095         memcpy(ets->prio_tc, params->ets_pri_tc_tbl, sizeof(ets->prio_tc));
2096         kfree(dcbx_info);
2097
2098         return 0;
2099 }
2100
2101 static int qed_dcbnl_ieee_getets(struct qed_dev *cdev, struct ieee_ets *ets)
2102 {
2103         return qed_dcbnl_get_ieee_ets(cdev, ets, false);
2104 }
2105
2106 static int qed_dcbnl_ieee_setets(struct qed_dev *cdev, struct ieee_ets *ets)
2107 {
2108         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
2109         struct qed_dcbx_get *dcbx_info;
2110         struct qed_dcbx_set dcbx_set;
2111         struct qed_ptt *ptt;
2112         int rc;
2113
2114         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
2115         if (!dcbx_info)
2116                 return -EINVAL;
2117
2118         if (!dcbx_info->operational.ieee) {
2119                 DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n");
2120                 kfree(dcbx_info);
2121                 return -EINVAL;
2122         }
2123
2124         kfree(dcbx_info);
2125
2126         memset(&dcbx_set, 0, sizeof(dcbx_set));
2127         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
2128         if (rc)
2129                 return -EINVAL;
2130
2131         dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG;
2132         dcbx_set.config.params.max_ets_tc = ets->ets_cap;
2133         dcbx_set.config.params.ets_willing = ets->willing;
2134         dcbx_set.config.params.ets_cbs = ets->cbs;
2135         memcpy(dcbx_set.config.params.ets_tc_bw_tbl, ets->tc_tx_bw,
2136                sizeof(ets->tc_tx_bw));
2137         memcpy(dcbx_set.config.params.ets_tc_tsa_tbl, ets->tc_tsa,
2138                sizeof(ets->tc_tsa));
2139         memcpy(dcbx_set.config.params.ets_pri_tc_tbl, ets->prio_tc,
2140                sizeof(ets->prio_tc));
2141
2142         ptt = qed_ptt_acquire(hwfn);
2143         if (!ptt)
2144                 return -EINVAL;
2145
2146         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
2147
2148         qed_ptt_release(hwfn, ptt);
2149
2150         return rc;
2151 }
2152
2153 int qed_dcbnl_ieee_peer_getets(struct qed_dev *cdev, struct ieee_ets *ets)
2154 {
2155         return qed_dcbnl_get_ieee_ets(cdev, ets, true);
2156 }
2157
2158 int qed_dcbnl_ieee_peer_getpfc(struct qed_dev *cdev, struct ieee_pfc *pfc)
2159 {
2160         return qed_dcbnl_get_ieee_pfc(cdev, pfc, true);
2161 }
2162
2163 int qed_dcbnl_ieee_getapp(struct qed_dev *cdev, struct dcb_app *app)
2164 {
2165         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
2166         struct qed_dcbx_get *dcbx_info;
2167         struct qed_app_entry *entry;
2168         bool ethtype;
2169         u8 prio = 0;
2170         int i;
2171
2172         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
2173         if (!dcbx_info)
2174                 return -EINVAL;
2175
2176         if (!dcbx_info->operational.ieee) {
2177                 DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n");
2178                 kfree(dcbx_info);
2179                 return -EINVAL;
2180         }
2181
2182         /* ieee defines the selector field value for ethertype to be 1 */
2183         ethtype = !!((app->selector - 1) == DCB_APP_IDTYPE_ETHTYPE);
2184         for (i = 0; i < QED_DCBX_MAX_APP_PROTOCOL; i++) {
2185                 entry = &dcbx_info->operational.params.app_entry[i];
2186                 if ((entry->ethtype == ethtype) &&
2187                     (entry->proto_id == app->protocol)) {
2188                         prio = entry->prio;
2189                         break;
2190                 }
2191         }
2192
2193         if (i == QED_DCBX_MAX_APP_PROTOCOL) {
2194                 DP_ERR(cdev, "App entry (%d, %d) not found\n", app->selector,
2195                        app->protocol);
2196                 kfree(dcbx_info);
2197                 return -EINVAL;
2198         }
2199
2200         app->priority = ffs(prio) - 1;
2201
2202         kfree(dcbx_info);
2203
2204         return 0;
2205 }
2206
2207 int qed_dcbnl_ieee_setapp(struct qed_dev *cdev, struct dcb_app *app)
2208 {
2209         struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
2210         struct qed_dcbx_get *dcbx_info;
2211         struct qed_dcbx_set dcbx_set;
2212         struct qed_app_entry *entry;
2213         struct qed_ptt *ptt;
2214         bool ethtype;
2215         int rc, i;
2216
2217         if (app->priority < 0 || app->priority >= QED_MAX_PFC_PRIORITIES) {
2218                 DP_INFO(hwfn, "Invalid priority %d\n", app->priority);
2219                 return -EINVAL;
2220         }
2221
2222         dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB);
2223         if (!dcbx_info)
2224                 return -EINVAL;
2225
2226         if (!dcbx_info->operational.ieee) {
2227                 DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n");
2228                 kfree(dcbx_info);
2229                 return -EINVAL;
2230         }
2231
2232         kfree(dcbx_info);
2233
2234         memset(&dcbx_set, 0, sizeof(dcbx_set));
2235         rc = qed_dcbx_get_config_params(hwfn, &dcbx_set);
2236         if (rc)
2237                 return -EINVAL;
2238
2239         /* ieee defines the selector field value for ethertype to be 1 */
2240         ethtype = !!((app->selector - 1) == DCB_APP_IDTYPE_ETHTYPE);
2241         for (i = 0; i < QED_DCBX_MAX_APP_PROTOCOL; i++) {
2242                 entry = &dcbx_set.config.params.app_entry[i];
2243                 if ((entry->ethtype == ethtype) &&
2244                     (entry->proto_id == app->protocol))
2245                         break;
2246                 /* First empty slot */
2247                 if (!entry->proto_id) {
2248                         dcbx_set.config.params.num_app_entries++;
2249                         break;
2250                 }
2251         }
2252
2253         if (i == QED_DCBX_MAX_APP_PROTOCOL) {
2254                 DP_ERR(cdev, "App table is full\n");
2255                 return -EBUSY;
2256         }
2257
2258         dcbx_set.override_flags |= QED_DCBX_OVERRIDE_APP_CFG;
2259         dcbx_set.config.params.app_entry[i].ethtype = ethtype;
2260         dcbx_set.config.params.app_entry[i].proto_id = app->protocol;
2261         dcbx_set.config.params.app_entry[i].prio = BIT(app->priority);
2262
2263         ptt = qed_ptt_acquire(hwfn);
2264         if (!ptt)
2265                 return -EBUSY;
2266
2267         rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0);
2268
2269         qed_ptt_release(hwfn, ptt);
2270
2271         return rc;
2272 }
2273
2274 const struct qed_eth_dcbnl_ops qed_dcbnl_ops_pass = {
2275         .getstate = qed_dcbnl_getstate,
2276         .setstate = qed_dcbnl_setstate,
2277         .getpgtccfgtx = qed_dcbnl_getpgtccfgtx,
2278         .getpgbwgcfgtx = qed_dcbnl_getpgbwgcfgtx,
2279         .getpgtccfgrx = qed_dcbnl_getpgtccfgrx,
2280         .getpgbwgcfgrx = qed_dcbnl_getpgbwgcfgrx,
2281         .getpfccfg = qed_dcbnl_getpfccfg,
2282         .setpfccfg = qed_dcbnl_setpfccfg,
2283         .getcap = qed_dcbnl_getcap,
2284         .getnumtcs = qed_dcbnl_getnumtcs,
2285         .getpfcstate = qed_dcbnl_getpfcstate,
2286         .getdcbx = qed_dcbnl_getdcbx,
2287         .setpgtccfgtx = qed_dcbnl_setpgtccfgtx,
2288         .setpgtccfgrx = qed_dcbnl_setpgtccfgrx,
2289         .setpgbwgcfgtx = qed_dcbnl_setpgbwgcfgtx,
2290         .setpgbwgcfgrx = qed_dcbnl_setpgbwgcfgrx,
2291         .setall = qed_dcbnl_setall,
2292         .setnumtcs = qed_dcbnl_setnumtcs,
2293         .setpfcstate = qed_dcbnl_setpfcstate,
2294         .setapp = qed_dcbnl_setapp,
2295         .setdcbx = qed_dcbnl_setdcbx,
2296         .setfeatcfg = qed_dcbnl_setfeatcfg,
2297         .getfeatcfg = qed_dcbnl_getfeatcfg,
2298         .getapp = qed_dcbnl_getapp,
2299         .peer_getappinfo = qed_dcbnl_peer_getappinfo,
2300         .peer_getapptable = qed_dcbnl_peer_getapptable,
2301         .cee_peer_getpfc = qed_dcbnl_cee_peer_getpfc,
2302         .cee_peer_getpg = qed_dcbnl_cee_peer_getpg,
2303         .ieee_getpfc = qed_dcbnl_ieee_getpfc,
2304         .ieee_setpfc = qed_dcbnl_ieee_setpfc,
2305         .ieee_getets = qed_dcbnl_ieee_getets,
2306         .ieee_setets = qed_dcbnl_ieee_setets,
2307         .ieee_peer_getpfc = qed_dcbnl_ieee_peer_getpfc,
2308         .ieee_peer_getets = qed_dcbnl_ieee_peer_getets,
2309         .ieee_getapp = qed_dcbnl_ieee_getapp,
2310         .ieee_setapp = qed_dcbnl_ieee_setapp,
2311 };
2312
2313 #endif