xref: /f-stack/dpdk/drivers/net/ice/base/ice_dcb.c (revision 2d9fd380)
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2001-2020 Intel Corporation
3  */
4 
5 #include "ice_common.h"
6 #include "ice_sched.h"
7 #include "ice_dcb.h"
8 
9 /**
10  * ice_aq_get_lldp_mib
11  * @hw: pointer to the HW struct
12  * @bridge_type: type of bridge requested
13  * @mib_type: Local, Remote or both Local and Remote MIBs
14  * @buf: pointer to the caller-supplied buffer to store the MIB block
15  * @buf_size: size of the buffer (in bytes)
16  * @local_len: length of the returned Local LLDP MIB
17  * @remote_len: length of the returned Remote LLDP MIB
18  * @cd: pointer to command details structure or NULL
19  *
20  * Requests the complete LLDP MIB (entire packet). (0x0A00)
21  */
22 enum ice_status
ice_aq_get_lldp_mib(struct ice_hw * hw,u8 bridge_type,u8 mib_type,void * buf,u16 buf_size,u16 * local_len,u16 * remote_len,struct ice_sq_cd * cd)23 ice_aq_get_lldp_mib(struct ice_hw *hw, u8 bridge_type, u8 mib_type, void *buf,
24 		    u16 buf_size, u16 *local_len, u16 *remote_len,
25 		    struct ice_sq_cd *cd)
26 {
27 	struct ice_aqc_lldp_get_mib *cmd;
28 	struct ice_aq_desc desc;
29 	enum ice_status status;
30 
31 	cmd = &desc.params.lldp_get_mib;
32 
33 	if (buf_size == 0 || !buf)
34 		return ICE_ERR_PARAM;
35 
36 	ice_fill_dflt_direct_cmd_desc(&desc, ice_aqc_opc_lldp_get_mib);
37 
38 	cmd->type = mib_type & ICE_AQ_LLDP_MIB_TYPE_M;
39 	cmd->type |= (bridge_type << ICE_AQ_LLDP_BRID_TYPE_S) &
40 		ICE_AQ_LLDP_BRID_TYPE_M;
41 
42 	desc.datalen = CPU_TO_LE16(buf_size);
43 
44 	status = ice_aq_send_cmd(hw, &desc, buf, buf_size, cd);
45 	if (!status) {
46 		if (local_len)
47 			*local_len = LE16_TO_CPU(cmd->local_len);
48 		if (remote_len)
49 			*remote_len = LE16_TO_CPU(cmd->remote_len);
50 	}
51 
52 	return status;
53 }
54 
55 /**
56  * ice_aq_cfg_lldp_mib_change
57  * @hw: pointer to the HW struct
58  * @ena_update: Enable or Disable event posting
59  * @cd: pointer to command details structure or NULL
60  *
61  * Enable or Disable posting of an event on ARQ when LLDP MIB
62  * associated with the interface changes (0x0A01)
63  */
64 enum ice_status
ice_aq_cfg_lldp_mib_change(struct ice_hw * hw,bool ena_update,struct ice_sq_cd * cd)65 ice_aq_cfg_lldp_mib_change(struct ice_hw *hw, bool ena_update,
66 			   struct ice_sq_cd *cd)
67 {
68 	struct ice_aqc_lldp_set_mib_change *cmd;
69 	struct ice_aq_desc desc;
70 
71 	cmd = &desc.params.lldp_set_event;
72 
73 	ice_fill_dflt_direct_cmd_desc(&desc, ice_aqc_opc_lldp_set_mib_change);
74 
75 	if (!ena_update)
76 		cmd->command |= ICE_AQ_LLDP_MIB_UPDATE_DIS;
77 
78 	return ice_aq_send_cmd(hw, &desc, NULL, 0, cd);
79 }
80 
81 /**
82  * ice_aq_stop_lldp
83  * @hw: pointer to the HW struct
84  * @shutdown_lldp_agent: True if LLDP Agent needs to be Shutdown
85  *			 False if LLDP Agent needs to be Stopped
86  * @persist: True if Stop/Shutdown of LLDP Agent needs to be persistent across
87  *	     reboots
88  * @cd: pointer to command details structure or NULL
89  *
90  * Stop or Shutdown the embedded LLDP Agent (0x0A05)
91  */
92 enum ice_status
ice_aq_stop_lldp(struct ice_hw * hw,bool shutdown_lldp_agent,bool persist,struct ice_sq_cd * cd)93 ice_aq_stop_lldp(struct ice_hw *hw, bool shutdown_lldp_agent, bool persist,
94 		 struct ice_sq_cd *cd)
95 {
96 	struct ice_aqc_lldp_stop *cmd;
97 	struct ice_aq_desc desc;
98 
99 	cmd = &desc.params.lldp_stop;
100 
101 	ice_fill_dflt_direct_cmd_desc(&desc, ice_aqc_opc_lldp_stop);
102 
103 	if (shutdown_lldp_agent)
104 		cmd->command |= ICE_AQ_LLDP_AGENT_SHUTDOWN;
105 
106 	if (persist)
107 		cmd->command |= ICE_AQ_LLDP_AGENT_PERSIST_DIS;
108 
109 	return ice_aq_send_cmd(hw, &desc, NULL, 0, cd);
110 }
111 
112 /**
113  * ice_aq_start_lldp
114  * @hw: pointer to the HW struct
115  * @persist: True if Start of LLDP Agent needs to be persistent across reboots
116  * @cd: pointer to command details structure or NULL
117  *
118  * Start the embedded LLDP Agent on all ports. (0x0A06)
119  */
120 enum ice_status
ice_aq_start_lldp(struct ice_hw * hw,bool persist,struct ice_sq_cd * cd)121 ice_aq_start_lldp(struct ice_hw *hw, bool persist, struct ice_sq_cd *cd)
122 {
123 	struct ice_aqc_lldp_start *cmd;
124 	struct ice_aq_desc desc;
125 
126 	cmd = &desc.params.lldp_start;
127 
128 	ice_fill_dflt_direct_cmd_desc(&desc, ice_aqc_opc_lldp_start);
129 
130 	cmd->command = ICE_AQ_LLDP_AGENT_START;
131 
132 	if (persist)
133 		cmd->command |= ICE_AQ_LLDP_AGENT_PERSIST_ENA;
134 
135 	return ice_aq_send_cmd(hw, &desc, NULL, 0, cd);
136 }
137 
138 /**
139  * ice_get_dcbx_status
140  * @hw: pointer to the HW struct
141  *
142  * Get the DCBX status from the Firmware
143  */
ice_get_dcbx_status(struct ice_hw * hw)144 u8 ice_get_dcbx_status(struct ice_hw *hw)
145 {
146 	u32 reg;
147 
148 	reg = rd32(hw, PRTDCB_GENS);
149 	return (u8)((reg & PRTDCB_GENS_DCBX_STATUS_M) >>
150 		    PRTDCB_GENS_DCBX_STATUS_S);
151 }
152 
153 /**
154  * ice_parse_ieee_ets_common_tlv
155  * @buf: Data buffer to be parsed for ETS CFG/REC data
156  * @ets_cfg: Container to store parsed data
157  *
158  * Parses the common data of IEEE 802.1Qaz ETS CFG/REC TLV
159  */
160 static void
ice_parse_ieee_ets_common_tlv(u8 * buf,struct ice_dcb_ets_cfg * ets_cfg)161 ice_parse_ieee_ets_common_tlv(u8 *buf, struct ice_dcb_ets_cfg *ets_cfg)
162 {
163 	u8 offset = 0;
164 	int i;
165 
166 	/* Priority Assignment Table (4 octets)
167 	 * Octets:|    1    |    2    |    3    |    4    |
168 	 *        -----------------------------------------
169 	 *        |pri0|pri1|pri2|pri3|pri4|pri5|pri6|pri7|
170 	 *        -----------------------------------------
171 	 *   Bits:|7  4|3  0|7  4|3  0|7  4|3  0|7  4|3  0|
172 	 *        -----------------------------------------
173 	 */
174 	for (i = 0; i < 4; i++) {
175 		ets_cfg->prio_table[i * 2] =
176 			((buf[offset] & ICE_IEEE_ETS_PRIO_1_M) >>
177 			 ICE_IEEE_ETS_PRIO_1_S);
178 		ets_cfg->prio_table[i * 2 + 1] =
179 			((buf[offset] & ICE_IEEE_ETS_PRIO_0_M) >>
180 			 ICE_IEEE_ETS_PRIO_0_S);
181 		offset++;
182 	}
183 
184 	/* TC Bandwidth Table (8 octets)
185 	 * Octets:| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
186 	 *        ---------------------------------
187 	 *        |tc0|tc1|tc2|tc3|tc4|tc5|tc6|tc7|
188 	 *        ---------------------------------
189 	 *
190 	 * TSA Assignment Table (8 octets)
191 	 * Octets:| 9 | 10| 11| 12| 13| 14| 15| 16|
192 	 *        ---------------------------------
193 	 *        |tc0|tc1|tc2|tc3|tc4|tc5|tc6|tc7|
194 	 *        ---------------------------------
195 	 */
196 	ice_for_each_traffic_class(i) {
197 		ets_cfg->tcbwtable[i] = buf[offset];
198 		ets_cfg->tsatable[i] = buf[ICE_MAX_TRAFFIC_CLASS + offset++];
199 	}
200 }
201 
202 /**
203  * ice_parse_ieee_etscfg_tlv
204  * @tlv: IEEE 802.1Qaz ETS CFG TLV
205  * @dcbcfg: Local store to update ETS CFG data
206  *
207  * Parses IEEE 802.1Qaz ETS CFG TLV
208  */
209 static void
ice_parse_ieee_etscfg_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)210 ice_parse_ieee_etscfg_tlv(struct ice_lldp_org_tlv *tlv,
211 			  struct ice_dcbx_cfg *dcbcfg)
212 {
213 	struct ice_dcb_ets_cfg *etscfg;
214 	u8 *buf = tlv->tlvinfo;
215 
216 	/* First Octet post subtype
217 	 * --------------------------
218 	 * |will-|CBS  | Re-  | Max |
219 	 * |ing  |     |served| TCs |
220 	 * --------------------------
221 	 * |1bit | 1bit|3 bits|3bits|
222 	 */
223 	etscfg = &dcbcfg->etscfg;
224 	etscfg->willing = ((buf[0] & ICE_IEEE_ETS_WILLING_M) >>
225 			   ICE_IEEE_ETS_WILLING_S);
226 	etscfg->cbs = ((buf[0] & ICE_IEEE_ETS_CBS_M) >> ICE_IEEE_ETS_CBS_S);
227 	etscfg->maxtcs = ((buf[0] & ICE_IEEE_ETS_MAXTC_M) >>
228 			  ICE_IEEE_ETS_MAXTC_S);
229 
230 	/* Begin parsing at Priority Assignment Table (offset 1 in buf) */
231 	ice_parse_ieee_ets_common_tlv(&buf[1], etscfg);
232 }
233 
234 /**
235  * ice_parse_ieee_etsrec_tlv
236  * @tlv: IEEE 802.1Qaz ETS REC TLV
237  * @dcbcfg: Local store to update ETS REC data
238  *
239  * Parses IEEE 802.1Qaz ETS REC TLV
240  */
241 static void
ice_parse_ieee_etsrec_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)242 ice_parse_ieee_etsrec_tlv(struct ice_lldp_org_tlv *tlv,
243 			  struct ice_dcbx_cfg *dcbcfg)
244 {
245 	u8 *buf = tlv->tlvinfo;
246 
247 	/* Begin parsing at Priority Assignment Table (offset 1 in buf) */
248 	ice_parse_ieee_ets_common_tlv(&buf[1], &dcbcfg->etsrec);
249 }
250 
251 /**
252  * ice_parse_ieee_pfccfg_tlv
253  * @tlv: IEEE 802.1Qaz PFC CFG TLV
254  * @dcbcfg: Local store to update PFC CFG data
255  *
256  * Parses IEEE 802.1Qaz PFC CFG TLV
257  */
258 static void
ice_parse_ieee_pfccfg_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)259 ice_parse_ieee_pfccfg_tlv(struct ice_lldp_org_tlv *tlv,
260 			  struct ice_dcbx_cfg *dcbcfg)
261 {
262 	u8 *buf = tlv->tlvinfo;
263 
264 	/* ----------------------------------------
265 	 * |will-|MBC  | Re-  | PFC |  PFC Enable  |
266 	 * |ing  |     |served| cap |              |
267 	 * -----------------------------------------
268 	 * |1bit | 1bit|2 bits|4bits| 1 octet      |
269 	 */
270 	dcbcfg->pfc.willing = ((buf[0] & ICE_IEEE_PFC_WILLING_M) >>
271 			       ICE_IEEE_PFC_WILLING_S);
272 	dcbcfg->pfc.mbc = ((buf[0] & ICE_IEEE_PFC_MBC_M) >> ICE_IEEE_PFC_MBC_S);
273 	dcbcfg->pfc.pfccap = ((buf[0] & ICE_IEEE_PFC_CAP_M) >>
274 			      ICE_IEEE_PFC_CAP_S);
275 	dcbcfg->pfc.pfcena = buf[1];
276 }
277 
278 /**
279  * ice_parse_ieee_app_tlv
280  * @tlv: IEEE 802.1Qaz APP TLV
281  * @dcbcfg: Local store to update APP PRIO data
282  *
283  * Parses IEEE 802.1Qaz APP PRIO TLV
284  */
285 static void
ice_parse_ieee_app_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)286 ice_parse_ieee_app_tlv(struct ice_lldp_org_tlv *tlv,
287 		       struct ice_dcbx_cfg *dcbcfg)
288 {
289 	u16 offset = 0;
290 	u16 typelen;
291 	int i = 0;
292 	u16 len;
293 	u8 *buf;
294 
295 	typelen = NTOHS(tlv->typelen);
296 	len = ((typelen & ICE_LLDP_TLV_LEN_M) >> ICE_LLDP_TLV_LEN_S);
297 	buf = tlv->tlvinfo;
298 
299 	/* Removing sizeof(ouisubtype) and reserved byte from len.
300 	 * Remaining len div 3 is number of APP TLVs.
301 	 */
302 	len -= (sizeof(tlv->ouisubtype) + 1);
303 
304 	/* Move offset to App Priority Table */
305 	offset++;
306 
307 	/* Application Priority Table (3 octets)
308 	 * Octets:|         1          |    2    |    3    |
309 	 *        -----------------------------------------
310 	 *        |Priority|Rsrvd| Sel |    Protocol ID    |
311 	 *        -----------------------------------------
312 	 *   Bits:|23    21|20 19|18 16|15                0|
313 	 *        -----------------------------------------
314 	 */
315 	while (offset < len) {
316 		dcbcfg->app[i].priority = ((buf[offset] &
317 					    ICE_IEEE_APP_PRIO_M) >>
318 					   ICE_IEEE_APP_PRIO_S);
319 		dcbcfg->app[i].selector = ((buf[offset] &
320 					    ICE_IEEE_APP_SEL_M) >>
321 					   ICE_IEEE_APP_SEL_S);
322 		dcbcfg->app[i].prot_id = (buf[offset + 1] << 0x8) |
323 			buf[offset + 2];
324 		/* Move to next app */
325 		offset += 3;
326 		i++;
327 		if (i >= ICE_DCBX_MAX_APPS)
328 			break;
329 	}
330 
331 	dcbcfg->numapps = i;
332 }
333 
334 /**
335  * ice_parse_ieee_tlv
336  * @tlv: IEEE 802.1Qaz TLV
337  * @dcbcfg: Local store to update ETS REC data
338  *
339  * Get the TLV subtype and send it to parsing function
340  * based on the subtype value
341  */
342 static void
ice_parse_ieee_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)343 ice_parse_ieee_tlv(struct ice_lldp_org_tlv *tlv, struct ice_dcbx_cfg *dcbcfg)
344 {
345 	u32 ouisubtype;
346 	u8 subtype;
347 
348 	ouisubtype = NTOHL(tlv->ouisubtype);
349 	subtype = (u8)((ouisubtype & ICE_LLDP_TLV_SUBTYPE_M) >>
350 		       ICE_LLDP_TLV_SUBTYPE_S);
351 	switch (subtype) {
352 	case ICE_IEEE_SUBTYPE_ETS_CFG:
353 		ice_parse_ieee_etscfg_tlv(tlv, dcbcfg);
354 		break;
355 	case ICE_IEEE_SUBTYPE_ETS_REC:
356 		ice_parse_ieee_etsrec_tlv(tlv, dcbcfg);
357 		break;
358 	case ICE_IEEE_SUBTYPE_PFC_CFG:
359 		ice_parse_ieee_pfccfg_tlv(tlv, dcbcfg);
360 		break;
361 	case ICE_IEEE_SUBTYPE_APP_PRI:
362 		ice_parse_ieee_app_tlv(tlv, dcbcfg);
363 		break;
364 	default:
365 		break;
366 	}
367 }
368 
369 /**
370  * ice_parse_cee_pgcfg_tlv
371  * @tlv: CEE DCBX PG CFG TLV
372  * @dcbcfg: Local store to update ETS CFG data
373  *
374  * Parses CEE DCBX PG CFG TLV
375  */
376 static void
ice_parse_cee_pgcfg_tlv(struct ice_cee_feat_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)377 ice_parse_cee_pgcfg_tlv(struct ice_cee_feat_tlv *tlv,
378 			struct ice_dcbx_cfg *dcbcfg)
379 {
380 	struct ice_dcb_ets_cfg *etscfg;
381 	u8 *buf = tlv->tlvinfo;
382 	u16 offset = 0;
383 	int i;
384 
385 	etscfg = &dcbcfg->etscfg;
386 
387 	if (tlv->en_will_err & ICE_CEE_FEAT_TLV_WILLING_M)
388 		etscfg->willing = 1;
389 
390 	etscfg->cbs = 0;
391 	/* Priority Group Table (4 octets)
392 	 * Octets:|    1    |    2    |    3    |    4    |
393 	 *        -----------------------------------------
394 	 *        |pri0|pri1|pri2|pri3|pri4|pri5|pri6|pri7|
395 	 *        -----------------------------------------
396 	 *   Bits:|7  4|3  0|7  4|3  0|7  4|3  0|7  4|3  0|
397 	 *        -----------------------------------------
398 	 */
399 	for (i = 0; i < 4; i++) {
400 		etscfg->prio_table[i * 2] =
401 			((buf[offset] & ICE_CEE_PGID_PRIO_1_M) >>
402 			 ICE_CEE_PGID_PRIO_1_S);
403 		etscfg->prio_table[i * 2 + 1] =
404 			((buf[offset] & ICE_CEE_PGID_PRIO_0_M) >>
405 			 ICE_CEE_PGID_PRIO_0_S);
406 		offset++;
407 	}
408 
409 	/* PG Percentage Table (8 octets)
410 	 * Octets:| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
411 	 *        ---------------------------------
412 	 *        |pg0|pg1|pg2|pg3|pg4|pg5|pg6|pg7|
413 	 *        ---------------------------------
414 	 */
415 	ice_for_each_traffic_class(i) {
416 		etscfg->tcbwtable[i] = buf[offset++];
417 
418 		if (etscfg->prio_table[i] == ICE_CEE_PGID_STRICT)
419 			dcbcfg->etscfg.tsatable[i] = ICE_IEEE_TSA_STRICT;
420 		else
421 			dcbcfg->etscfg.tsatable[i] = ICE_IEEE_TSA_ETS;
422 	}
423 
424 	/* Number of TCs supported (1 octet) */
425 	etscfg->maxtcs = buf[offset];
426 }
427 
428 /**
429  * ice_parse_cee_pfccfg_tlv
430  * @tlv: CEE DCBX PFC CFG TLV
431  * @dcbcfg: Local store to update PFC CFG data
432  *
433  * Parses CEE DCBX PFC CFG TLV
434  */
435 static void
ice_parse_cee_pfccfg_tlv(struct ice_cee_feat_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)436 ice_parse_cee_pfccfg_tlv(struct ice_cee_feat_tlv *tlv,
437 			 struct ice_dcbx_cfg *dcbcfg)
438 {
439 	u8 *buf = tlv->tlvinfo;
440 
441 	if (tlv->en_will_err & ICE_CEE_FEAT_TLV_WILLING_M)
442 		dcbcfg->pfc.willing = 1;
443 
444 	/* ------------------------
445 	 * | PFC Enable | PFC TCs |
446 	 * ------------------------
447 	 * | 1 octet    | 1 octet |
448 	 */
449 	dcbcfg->pfc.pfcena = buf[0];
450 	dcbcfg->pfc.pfccap = buf[1];
451 }
452 
453 /**
454  * ice_parse_cee_app_tlv
455  * @tlv: CEE DCBX APP TLV
456  * @dcbcfg: Local store to update APP PRIO data
457  *
458  * Parses CEE DCBX APP PRIO TLV
459  */
460 static void
ice_parse_cee_app_tlv(struct ice_cee_feat_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)461 ice_parse_cee_app_tlv(struct ice_cee_feat_tlv *tlv, struct ice_dcbx_cfg *dcbcfg)
462 {
463 	u16 len, typelen, offset = 0;
464 	struct ice_cee_app_prio *app;
465 	u8 i;
466 
467 	typelen = NTOHS(tlv->hdr.typelen);
468 	len = ((typelen & ICE_LLDP_TLV_LEN_M) >> ICE_LLDP_TLV_LEN_S);
469 
470 	dcbcfg->numapps = len / sizeof(*app);
471 	if (!dcbcfg->numapps)
472 		return;
473 	if (dcbcfg->numapps > ICE_DCBX_MAX_APPS)
474 		dcbcfg->numapps = ICE_DCBX_MAX_APPS;
475 
476 	for (i = 0; i < dcbcfg->numapps; i++) {
477 		u8 up, selector;
478 
479 		app = (struct ice_cee_app_prio *)(tlv->tlvinfo + offset);
480 		for (up = 0; up < ICE_MAX_USER_PRIORITY; up++)
481 			if (app->prio_map & BIT(up))
482 				break;
483 
484 		dcbcfg->app[i].priority = up;
485 
486 		/* Get Selector from lower 2 bits, and convert to IEEE */
487 		selector = (app->upper_oui_sel & ICE_CEE_APP_SELECTOR_M);
488 		switch (selector) {
489 		case ICE_CEE_APP_SEL_ETHTYPE:
490 			dcbcfg->app[i].selector = ICE_APP_SEL_ETHTYPE;
491 			break;
492 		case ICE_CEE_APP_SEL_TCPIP:
493 			dcbcfg->app[i].selector = ICE_APP_SEL_TCPIP;
494 			break;
495 		default:
496 			/* Keep selector as it is for unknown types */
497 			dcbcfg->app[i].selector = selector;
498 		}
499 
500 		dcbcfg->app[i].prot_id = NTOHS(app->protocol);
501 		/* Move to next app */
502 		offset += sizeof(*app);
503 	}
504 }
505 
506 /**
507  * ice_parse_cee_tlv
508  * @tlv: CEE DCBX TLV
509  * @dcbcfg: Local store to update DCBX config data
510  *
511  * Get the TLV subtype and send it to parsing function
512  * based on the subtype value
513  */
514 static void
ice_parse_cee_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)515 ice_parse_cee_tlv(struct ice_lldp_org_tlv *tlv, struct ice_dcbx_cfg *dcbcfg)
516 {
517 	struct ice_cee_feat_tlv *sub_tlv;
518 	u8 subtype, feat_tlv_count = 0;
519 	u16 len, tlvlen, typelen;
520 	u32 ouisubtype;
521 
522 	ouisubtype = NTOHL(tlv->ouisubtype);
523 	subtype = (u8)((ouisubtype & ICE_LLDP_TLV_SUBTYPE_M) >>
524 		       ICE_LLDP_TLV_SUBTYPE_S);
525 	/* Return if not CEE DCBX */
526 	if (subtype != ICE_CEE_DCBX_TYPE)
527 		return;
528 
529 	typelen = NTOHS(tlv->typelen);
530 	tlvlen = ((typelen & ICE_LLDP_TLV_LEN_M) >> ICE_LLDP_TLV_LEN_S);
531 	len = sizeof(tlv->typelen) + sizeof(ouisubtype) +
532 		sizeof(struct ice_cee_ctrl_tlv);
533 	/* Return if no CEE DCBX Feature TLVs */
534 	if (tlvlen <= len)
535 		return;
536 
537 	sub_tlv = (struct ice_cee_feat_tlv *)((char *)tlv + len);
538 	while (feat_tlv_count < ICE_CEE_MAX_FEAT_TYPE) {
539 		u16 sublen;
540 
541 		typelen = NTOHS(sub_tlv->hdr.typelen);
542 		sublen = ((typelen & ICE_LLDP_TLV_LEN_M) >> ICE_LLDP_TLV_LEN_S);
543 		subtype = (u8)((typelen & ICE_LLDP_TLV_TYPE_M) >>
544 			       ICE_LLDP_TLV_TYPE_S);
545 		switch (subtype) {
546 		case ICE_CEE_SUBTYPE_PG_CFG:
547 			ice_parse_cee_pgcfg_tlv(sub_tlv, dcbcfg);
548 			break;
549 		case ICE_CEE_SUBTYPE_PFC_CFG:
550 			ice_parse_cee_pfccfg_tlv(sub_tlv, dcbcfg);
551 			break;
552 		case ICE_CEE_SUBTYPE_APP_PRI:
553 			ice_parse_cee_app_tlv(sub_tlv, dcbcfg);
554 			break;
555 		default:
556 			return;	/* Invalid Sub-type return */
557 		}
558 		feat_tlv_count++;
559 		/* Move to next sub TLV */
560 		sub_tlv = (struct ice_cee_feat_tlv *)
561 			  ((char *)sub_tlv + sizeof(sub_tlv->hdr.typelen) +
562 			   sublen);
563 	}
564 }
565 
566 /**
567  * ice_parse_org_tlv
568  * @tlv: Organization specific TLV
569  * @dcbcfg: Local store to update ETS REC data
570  *
571  * Currently only IEEE 802.1Qaz TLV is supported, all others
572  * will be returned
573  */
574 static void
ice_parse_org_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)575 ice_parse_org_tlv(struct ice_lldp_org_tlv *tlv, struct ice_dcbx_cfg *dcbcfg)
576 {
577 	u32 ouisubtype;
578 	u32 oui;
579 
580 	ouisubtype = NTOHL(tlv->ouisubtype);
581 	oui = ((ouisubtype & ICE_LLDP_TLV_OUI_M) >> ICE_LLDP_TLV_OUI_S);
582 	switch (oui) {
583 	case ICE_IEEE_8021QAZ_OUI:
584 		ice_parse_ieee_tlv(tlv, dcbcfg);
585 		break;
586 	case ICE_CEE_DCBX_OUI:
587 		ice_parse_cee_tlv(tlv, dcbcfg);
588 		break;
589 	default:
590 		break;
591 	}
592 }
593 
594 /**
595  * ice_lldp_to_dcb_cfg
596  * @lldpmib: LLDPDU to be parsed
597  * @dcbcfg: store for LLDPDU data
598  *
599  * Parse DCB configuration from the LLDPDU
600  */
ice_lldp_to_dcb_cfg(u8 * lldpmib,struct ice_dcbx_cfg * dcbcfg)601 enum ice_status ice_lldp_to_dcb_cfg(u8 *lldpmib, struct ice_dcbx_cfg *dcbcfg)
602 {
603 	struct ice_lldp_org_tlv *tlv;
604 	enum ice_status ret = ICE_SUCCESS;
605 	u16 offset = 0;
606 	u16 typelen;
607 	u16 type;
608 	u16 len;
609 
610 	if (!lldpmib || !dcbcfg)
611 		return ICE_ERR_PARAM;
612 
613 	/* set to the start of LLDPDU */
614 	lldpmib += ETH_HEADER_LEN;
615 	tlv = (struct ice_lldp_org_tlv *)lldpmib;
616 	while (1) {
617 		typelen = NTOHS(tlv->typelen);
618 		type = ((typelen & ICE_LLDP_TLV_TYPE_M) >> ICE_LLDP_TLV_TYPE_S);
619 		len = ((typelen & ICE_LLDP_TLV_LEN_M) >> ICE_LLDP_TLV_LEN_S);
620 		offset += sizeof(typelen) + len;
621 
622 		/* END TLV or beyond LLDPDU size */
623 		if (type == ICE_TLV_TYPE_END || offset > ICE_LLDPDU_SIZE)
624 			break;
625 
626 		switch (type) {
627 		case ICE_TLV_TYPE_ORG:
628 			ice_parse_org_tlv(tlv, dcbcfg);
629 			break;
630 		default:
631 			break;
632 		}
633 
634 		/* Move to next TLV */
635 		tlv = (struct ice_lldp_org_tlv *)
636 		      ((char *)tlv + sizeof(tlv->typelen) + len);
637 	}
638 
639 	return ret;
640 }
641 
642 /**
643  * ice_aq_get_dcb_cfg
644  * @hw: pointer to the HW struct
645  * @mib_type: MIB type for the query
646  * @bridgetype: bridge type for the query (remote)
647  * @dcbcfg: store for LLDPDU data
648  *
649  * Query DCB configuration from the firmware
650  */
651 enum ice_status
ice_aq_get_dcb_cfg(struct ice_hw * hw,u8 mib_type,u8 bridgetype,struct ice_dcbx_cfg * dcbcfg)652 ice_aq_get_dcb_cfg(struct ice_hw *hw, u8 mib_type, u8 bridgetype,
653 		   struct ice_dcbx_cfg *dcbcfg)
654 {
655 	enum ice_status ret;
656 	u8 *lldpmib;
657 
658 	/* Allocate the LLDPDU */
659 	lldpmib = (u8 *)ice_malloc(hw, ICE_LLDPDU_SIZE);
660 	if (!lldpmib)
661 		return ICE_ERR_NO_MEMORY;
662 
663 	ret = ice_aq_get_lldp_mib(hw, bridgetype, mib_type, (void *)lldpmib,
664 				  ICE_LLDPDU_SIZE, NULL, NULL, NULL);
665 
666 	if (ret == ICE_SUCCESS)
667 		/* Parse LLDP MIB to get DCB configuration */
668 		ret = ice_lldp_to_dcb_cfg(lldpmib, dcbcfg);
669 
670 	ice_free(hw, lldpmib);
671 
672 	return ret;
673 }
674 
675 /**
676  * ice_aq_start_stop_dcbx - Start/Stop DCBX service in FW
677  * @hw: pointer to the HW struct
678  * @start_dcbx_agent: True if DCBX Agent needs to be started
679  *		      False if DCBX Agent needs to be stopped
680  * @dcbx_agent_status: FW indicates back the DCBX agent status
681  *		       True if DCBX Agent is active
682  *		       False if DCBX Agent is stopped
683  * @cd: pointer to command details structure or NULL
684  *
685  * Start/Stop the embedded dcbx Agent. In case that this wrapper function
686  * returns ICE_SUCCESS, caller will need to check if FW returns back the same
687  * value as stated in dcbx_agent_status, and react accordingly. (0x0A09)
688  */
689 enum ice_status
ice_aq_start_stop_dcbx(struct ice_hw * hw,bool start_dcbx_agent,bool * dcbx_agent_status,struct ice_sq_cd * cd)690 ice_aq_start_stop_dcbx(struct ice_hw *hw, bool start_dcbx_agent,
691 		       bool *dcbx_agent_status, struct ice_sq_cd *cd)
692 {
693 	struct ice_aqc_lldp_stop_start_specific_agent *cmd;
694 	enum ice_status status;
695 	struct ice_aq_desc desc;
696 	u16 opcode;
697 
698 	cmd = &desc.params.lldp_agent_ctrl;
699 
700 	opcode = ice_aqc_opc_lldp_stop_start_specific_agent;
701 
702 	ice_fill_dflt_direct_cmd_desc(&desc, opcode);
703 
704 	if (start_dcbx_agent)
705 		cmd->command = ICE_AQC_START_STOP_AGENT_START_DCBX;
706 
707 	status = ice_aq_send_cmd(hw, &desc, NULL, 0, cd);
708 
709 	*dcbx_agent_status = false;
710 
711 	if (status == ICE_SUCCESS &&
712 	    cmd->command == ICE_AQC_START_STOP_AGENT_START_DCBX)
713 		*dcbx_agent_status = true;
714 
715 	return status;
716 }
717 
718 /**
719  * ice_aq_get_cee_dcb_cfg
720  * @hw: pointer to the HW struct
721  * @buff: response buffer that stores CEE operational configuration
722  * @cd: pointer to command details structure or NULL
723  *
724  * Get CEE DCBX mode operational configuration from firmware (0x0A07)
725  */
726 enum ice_status
ice_aq_get_cee_dcb_cfg(struct ice_hw * hw,struct ice_aqc_get_cee_dcb_cfg_resp * buff,struct ice_sq_cd * cd)727 ice_aq_get_cee_dcb_cfg(struct ice_hw *hw,
728 		       struct ice_aqc_get_cee_dcb_cfg_resp *buff,
729 		       struct ice_sq_cd *cd)
730 {
731 	struct ice_aq_desc desc;
732 
733 	ice_fill_dflt_direct_cmd_desc(&desc, ice_aqc_opc_get_cee_dcb_cfg);
734 
735 	return ice_aq_send_cmd(hw, &desc, (void *)buff, sizeof(*buff), cd);
736 }
737 
738 /**
739  * ice_cee_to_dcb_cfg
740  * @cee_cfg: pointer to CEE configuration struct
741  * @pi: port information structure
742  *
743  * Convert CEE configuration from firmware to DCB configuration
744  */
745 static void
ice_cee_to_dcb_cfg(struct ice_aqc_get_cee_dcb_cfg_resp * cee_cfg,struct ice_port_info * pi)746 ice_cee_to_dcb_cfg(struct ice_aqc_get_cee_dcb_cfg_resp *cee_cfg,
747 		   struct ice_port_info *pi)
748 {
749 	u32 status, tlv_status = LE32_TO_CPU(cee_cfg->tlv_status);
750 	u32 ice_aqc_cee_status_mask, ice_aqc_cee_status_shift;
751 	u8 i, j, err, sync, oper, app_index, ice_app_sel_type;
752 	u16 app_prio = LE16_TO_CPU(cee_cfg->oper_app_prio);
753 	u16 ice_aqc_cee_app_mask, ice_aqc_cee_app_shift;
754 	struct ice_dcbx_cfg *cmp_dcbcfg, *dcbcfg;
755 	u16 ice_app_prot_id_type;
756 
757 	dcbcfg = &pi->qos_cfg.local_dcbx_cfg;
758 	dcbcfg->dcbx_mode = ICE_DCBX_MODE_CEE;
759 	dcbcfg->tlv_status = tlv_status;
760 
761 	/* CEE PG data */
762 	dcbcfg->etscfg.maxtcs = cee_cfg->oper_num_tc;
763 
764 	/* Note that the FW creates the oper_prio_tc nibbles reversed
765 	 * from those in the CEE Priority Group sub-TLV.
766 	 */
767 	for (i = 0; i < ICE_MAX_TRAFFIC_CLASS / 2; i++) {
768 		dcbcfg->etscfg.prio_table[i * 2] =
769 			((cee_cfg->oper_prio_tc[i] & ICE_CEE_PGID_PRIO_0_M) >>
770 			 ICE_CEE_PGID_PRIO_0_S);
771 		dcbcfg->etscfg.prio_table[i * 2 + 1] =
772 			((cee_cfg->oper_prio_tc[i] & ICE_CEE_PGID_PRIO_1_M) >>
773 			 ICE_CEE_PGID_PRIO_1_S);
774 	}
775 
776 	ice_for_each_traffic_class(i) {
777 		dcbcfg->etscfg.tcbwtable[i] = cee_cfg->oper_tc_bw[i];
778 
779 		if (dcbcfg->etscfg.prio_table[i] == ICE_CEE_PGID_STRICT) {
780 			/* Map it to next empty TC */
781 			dcbcfg->etscfg.prio_table[i] = cee_cfg->oper_num_tc - 1;
782 			dcbcfg->etscfg.tsatable[i] = ICE_IEEE_TSA_STRICT;
783 		} else {
784 			dcbcfg->etscfg.tsatable[i] = ICE_IEEE_TSA_ETS;
785 		}
786 	}
787 
788 	/* CEE PFC data */
789 	dcbcfg->pfc.pfcena = cee_cfg->oper_pfc_en;
790 	dcbcfg->pfc.pfccap = ICE_MAX_TRAFFIC_CLASS;
791 
792 	/* CEE APP TLV data */
793 	if (dcbcfg->app_mode == ICE_DCBX_APPS_NON_WILLING)
794 		cmp_dcbcfg = &pi->qos_cfg.desired_dcbx_cfg;
795 	else
796 		cmp_dcbcfg = &pi->qos_cfg.remote_dcbx_cfg;
797 
798 	app_index = 0;
799 	for (i = 0; i < 3; i++) {
800 		if (i == 0) {
801 			/* FCoE APP */
802 			ice_aqc_cee_status_mask = ICE_AQC_CEE_FCOE_STATUS_M;
803 			ice_aqc_cee_status_shift = ICE_AQC_CEE_FCOE_STATUS_S;
804 			ice_aqc_cee_app_mask = ICE_AQC_CEE_APP_FCOE_M;
805 			ice_aqc_cee_app_shift = ICE_AQC_CEE_APP_FCOE_S;
806 			ice_app_sel_type = ICE_APP_SEL_ETHTYPE;
807 			ice_app_prot_id_type = ICE_APP_PROT_ID_FCOE;
808 		} else if (i == 1) {
809 			/* iSCSI APP */
810 			ice_aqc_cee_status_mask = ICE_AQC_CEE_ISCSI_STATUS_M;
811 			ice_aqc_cee_status_shift = ICE_AQC_CEE_ISCSI_STATUS_S;
812 			ice_aqc_cee_app_mask = ICE_AQC_CEE_APP_ISCSI_M;
813 			ice_aqc_cee_app_shift = ICE_AQC_CEE_APP_ISCSI_S;
814 			ice_app_sel_type = ICE_APP_SEL_TCPIP;
815 			ice_app_prot_id_type = ICE_APP_PROT_ID_ISCSI;
816 
817 			for (j = 0; j < cmp_dcbcfg->numapps; j++) {
818 				u16 prot_id = cmp_dcbcfg->app[j].prot_id;
819 				u8 sel = cmp_dcbcfg->app[j].selector;
820 
821 				if  (sel == ICE_APP_SEL_TCPIP &&
822 				     (prot_id == ICE_APP_PROT_ID_ISCSI ||
823 				      prot_id == ICE_APP_PROT_ID_ISCSI_860)) {
824 					ice_app_prot_id_type = prot_id;
825 					break;
826 				}
827 			}
828 		} else {
829 			/* FIP APP */
830 			ice_aqc_cee_status_mask = ICE_AQC_CEE_FIP_STATUS_M;
831 			ice_aqc_cee_status_shift = ICE_AQC_CEE_FIP_STATUS_S;
832 			ice_aqc_cee_app_mask = ICE_AQC_CEE_APP_FIP_M;
833 			ice_aqc_cee_app_shift = ICE_AQC_CEE_APP_FIP_S;
834 			ice_app_sel_type = ICE_APP_SEL_ETHTYPE;
835 			ice_app_prot_id_type = ICE_APP_PROT_ID_FIP;
836 		}
837 
838 		status = (tlv_status & ice_aqc_cee_status_mask) >>
839 			 ice_aqc_cee_status_shift;
840 		err = (status & ICE_TLV_STATUS_ERR) ? 1 : 0;
841 		sync = (status & ICE_TLV_STATUS_SYNC) ? 1 : 0;
842 		oper = (status & ICE_TLV_STATUS_OPER) ? 1 : 0;
843 		/* Add FCoE/iSCSI/FIP APP if Error is False and
844 		 * Oper/Sync is True
845 		 */
846 		if (!err && sync && oper) {
847 			dcbcfg->app[app_index].priority =
848 				(app_prio & ice_aqc_cee_app_mask) >>
849 				ice_aqc_cee_app_shift;
850 			dcbcfg->app[app_index].selector = ice_app_sel_type;
851 			dcbcfg->app[app_index].prot_id = ice_app_prot_id_type;
852 			app_index++;
853 		}
854 	}
855 
856 	dcbcfg->numapps = app_index;
857 }
858 
859 /**
860  * ice_get_ieee_dcb_cfg
861  * @pi: port information structure
862  * @dcbx_mode: mode of DCBX (IEEE or CEE)
863  *
864  * Get IEEE or CEE mode DCB configuration from the Firmware
865  */
866 STATIC enum ice_status
ice_get_ieee_or_cee_dcb_cfg(struct ice_port_info * pi,u8 dcbx_mode)867 ice_get_ieee_or_cee_dcb_cfg(struct ice_port_info *pi, u8 dcbx_mode)
868 {
869 	struct ice_dcbx_cfg *dcbx_cfg = NULL;
870 	enum ice_status ret;
871 
872 	if (!pi)
873 		return ICE_ERR_PARAM;
874 
875 	if (dcbx_mode == ICE_DCBX_MODE_IEEE)
876 		dcbx_cfg = &pi->qos_cfg.local_dcbx_cfg;
877 	else if (dcbx_mode == ICE_DCBX_MODE_CEE)
878 		dcbx_cfg = &pi->qos_cfg.desired_dcbx_cfg;
879 
880 	/* Get Local DCB Config in case of ICE_DCBX_MODE_IEEE
881 	 * or get CEE DCB Desired Config in case of ICE_DCBX_MODE_CEE
882 	 */
883 	ret = ice_aq_get_dcb_cfg(pi->hw, ICE_AQ_LLDP_MIB_LOCAL,
884 				 ICE_AQ_LLDP_BRID_TYPE_NEAREST_BRID, dcbx_cfg);
885 	if (ret)
886 		goto out;
887 
888 	/* Get Remote DCB Config */
889 	dcbx_cfg = &pi->qos_cfg.remote_dcbx_cfg;
890 	ret = ice_aq_get_dcb_cfg(pi->hw, ICE_AQ_LLDP_MIB_REMOTE,
891 				 ICE_AQ_LLDP_BRID_TYPE_NEAREST_BRID, dcbx_cfg);
892 	/* Don't treat ENOENT as an error for Remote MIBs */
893 	if (pi->hw->adminq.sq_last_status == ICE_AQ_RC_ENOENT)
894 		ret = ICE_SUCCESS;
895 
896 out:
897 	return ret;
898 }
899 
900 /**
901  * ice_get_dcb_cfg
902  * @pi: port information structure
903  *
904  * Get DCB configuration from the Firmware
905  */
ice_get_dcb_cfg(struct ice_port_info * pi)906 enum ice_status ice_get_dcb_cfg(struct ice_port_info *pi)
907 {
908 	struct ice_aqc_get_cee_dcb_cfg_resp cee_cfg;
909 	struct ice_dcbx_cfg *dcbx_cfg;
910 	enum ice_status ret;
911 
912 	if (!pi)
913 		return ICE_ERR_PARAM;
914 
915 	ret = ice_aq_get_cee_dcb_cfg(pi->hw, &cee_cfg, NULL);
916 	if (ret == ICE_SUCCESS) {
917 		/* CEE mode */
918 		ret = ice_get_ieee_or_cee_dcb_cfg(pi, ICE_DCBX_MODE_CEE);
919 		ice_cee_to_dcb_cfg(&cee_cfg, pi);
920 	} else if (pi->hw->adminq.sq_last_status == ICE_AQ_RC_ENOENT) {
921 		/* CEE mode not enabled try querying IEEE data */
922 		dcbx_cfg = &pi->qos_cfg.local_dcbx_cfg;
923 		dcbx_cfg->dcbx_mode = ICE_DCBX_MODE_IEEE;
924 		ret = ice_get_ieee_or_cee_dcb_cfg(pi, ICE_DCBX_MODE_IEEE);
925 	}
926 
927 	return ret;
928 }
929 
930 /**
931  * ice_init_dcb
932  * @hw: pointer to the HW struct
933  * @enable_mib_change: enable MIB change event
934  *
935  * Update DCB configuration from the Firmware
936  */
ice_init_dcb(struct ice_hw * hw,bool enable_mib_change)937 enum ice_status ice_init_dcb(struct ice_hw *hw, bool enable_mib_change)
938 {
939 	struct ice_qos_cfg *qos_cfg = &hw->port_info->qos_cfg;
940 	enum ice_status ret = ICE_SUCCESS;
941 
942 	if (!hw->func_caps.common_cap.dcb)
943 		return ICE_ERR_NOT_SUPPORTED;
944 
945 	qos_cfg->is_sw_lldp = true;
946 
947 	/* Get DCBX status */
948 	qos_cfg->dcbx_status = ice_get_dcbx_status(hw);
949 
950 	if (qos_cfg->dcbx_status == ICE_DCBX_STATUS_DONE ||
951 	    qos_cfg->dcbx_status == ICE_DCBX_STATUS_IN_PROGRESS ||
952 	    qos_cfg->dcbx_status == ICE_DCBX_STATUS_NOT_STARTED) {
953 		/* Get current DCBX configuration */
954 		ret = ice_get_dcb_cfg(hw->port_info);
955 		if (ret)
956 			return ret;
957 		qos_cfg->is_sw_lldp = false;
958 	} else if (qos_cfg->dcbx_status == ICE_DCBX_STATUS_DIS) {
959 		return ICE_ERR_NOT_READY;
960 	}
961 
962 	/* Configure the LLDP MIB change event */
963 	if (enable_mib_change) {
964 		ret = ice_aq_cfg_lldp_mib_change(hw, true, NULL);
965 		if (ret)
966 			qos_cfg->is_sw_lldp = true;
967 	}
968 
969 	return ret;
970 }
971 
972 /**
973  * ice_cfg_lldp_mib_change
974  * @hw: pointer to the HW struct
975  * @ena_mib: enable/disable MIB change event
976  *
977  * Configure (disable/enable) MIB
978  */
ice_cfg_lldp_mib_change(struct ice_hw * hw,bool ena_mib)979 enum ice_status ice_cfg_lldp_mib_change(struct ice_hw *hw, bool ena_mib)
980 {
981 	struct ice_qos_cfg *qos_cfg = &hw->port_info->qos_cfg;
982 	enum ice_status ret;
983 
984 	if (!hw->func_caps.common_cap.dcb)
985 		return ICE_ERR_NOT_SUPPORTED;
986 
987 	/* Get DCBX status */
988 	qos_cfg->dcbx_status = ice_get_dcbx_status(hw);
989 
990 	if (qos_cfg->dcbx_status == ICE_DCBX_STATUS_DIS)
991 		return ICE_ERR_NOT_READY;
992 
993 	ret = ice_aq_cfg_lldp_mib_change(hw, ena_mib, NULL);
994 	if (!ret)
995 		qos_cfg->is_sw_lldp = !ena_mib;
996 
997 	return ret;
998 }
999 
1000 /**
1001  * ice_add_ieee_ets_common_tlv
1002  * @buf: Data buffer to be populated with ice_dcb_ets_cfg data
1003  * @ets_cfg: Container for ice_dcb_ets_cfg data
1004  *
1005  * Populate the TLV buffer with ice_dcb_ets_cfg data
1006  */
1007 static void
ice_add_ieee_ets_common_tlv(u8 * buf,struct ice_dcb_ets_cfg * ets_cfg)1008 ice_add_ieee_ets_common_tlv(u8 *buf, struct ice_dcb_ets_cfg *ets_cfg)
1009 {
1010 	u8 priority0, priority1;
1011 	u8 offset = 0;
1012 	int i;
1013 
1014 	/* Priority Assignment Table (4 octets)
1015 	 * Octets:|    1    |    2    |    3    |    4    |
1016 	 *        -----------------------------------------
1017 	 *        |pri0|pri1|pri2|pri3|pri4|pri5|pri6|pri7|
1018 	 *        -----------------------------------------
1019 	 *   Bits:|7  4|3  0|7  4|3  0|7  4|3  0|7  4|3  0|
1020 	 *        -----------------------------------------
1021 	 */
1022 	for (i = 0; i < ICE_MAX_TRAFFIC_CLASS / 2; i++) {
1023 		priority0 = ets_cfg->prio_table[i * 2] & 0xF;
1024 		priority1 = ets_cfg->prio_table[i * 2 + 1] & 0xF;
1025 		buf[offset] = (priority0 << ICE_IEEE_ETS_PRIO_1_S) | priority1;
1026 		offset++;
1027 	}
1028 
1029 	/* TC Bandwidth Table (8 octets)
1030 	 * Octets:| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
1031 	 *        ---------------------------------
1032 	 *        |tc0|tc1|tc2|tc3|tc4|tc5|tc6|tc7|
1033 	 *        ---------------------------------
1034 	 *
1035 	 * TSA Assignment Table (8 octets)
1036 	 * Octets:| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
1037 	 *        ---------------------------------
1038 	 *        |tc0|tc1|tc2|tc3|tc4|tc5|tc6|tc7|
1039 	 *        ---------------------------------
1040 	 */
1041 	ice_for_each_traffic_class(i) {
1042 		buf[offset] = ets_cfg->tcbwtable[i];
1043 		buf[ICE_MAX_TRAFFIC_CLASS + offset] = ets_cfg->tsatable[i];
1044 		offset++;
1045 	}
1046 }
1047 
1048 /**
1049  * ice_add_ieee_ets_tlv - Prepare ETS TLV in IEEE format
1050  * @tlv: Fill the ETS config data in IEEE format
1051  * @dcbcfg: Local store which holds the DCB Config
1052  *
1053  * Prepare IEEE 802.1Qaz ETS CFG TLV
1054  */
1055 static void
ice_add_ieee_ets_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)1056 ice_add_ieee_ets_tlv(struct ice_lldp_org_tlv *tlv, struct ice_dcbx_cfg *dcbcfg)
1057 {
1058 	struct ice_dcb_ets_cfg *etscfg;
1059 	u8 *buf = tlv->tlvinfo;
1060 	u8 maxtcwilling = 0;
1061 	u32 ouisubtype;
1062 	u16 typelen;
1063 
1064 	typelen = ((ICE_TLV_TYPE_ORG << ICE_LLDP_TLV_TYPE_S) |
1065 		   ICE_IEEE_ETS_TLV_LEN);
1066 	tlv->typelen = HTONS(typelen);
1067 
1068 	ouisubtype = ((ICE_IEEE_8021QAZ_OUI << ICE_LLDP_TLV_OUI_S) |
1069 		      ICE_IEEE_SUBTYPE_ETS_CFG);
1070 	tlv->ouisubtype = HTONL(ouisubtype);
1071 
1072 	/* First Octet post subtype
1073 	 * --------------------------
1074 	 * |will-|CBS  | Re-  | Max |
1075 	 * |ing  |     |served| TCs |
1076 	 * --------------------------
1077 	 * |1bit | 1bit|3 bits|3bits|
1078 	 */
1079 	etscfg = &dcbcfg->etscfg;
1080 	if (etscfg->willing)
1081 		maxtcwilling = BIT(ICE_IEEE_ETS_WILLING_S);
1082 	maxtcwilling |= etscfg->maxtcs & ICE_IEEE_ETS_MAXTC_M;
1083 	buf[0] = maxtcwilling;
1084 
1085 	/* Begin adding at Priority Assignment Table (offset 1 in buf) */
1086 	ice_add_ieee_ets_common_tlv(&buf[1], etscfg);
1087 }
1088 
1089 /**
1090  * ice_add_ieee_etsrec_tlv - Prepare ETS Recommended TLV in IEEE format
1091  * @tlv: Fill ETS Recommended TLV in IEEE format
1092  * @dcbcfg: Local store which holds the DCB Config
1093  *
1094  * Prepare IEEE 802.1Qaz ETS REC TLV
1095  */
1096 static void
ice_add_ieee_etsrec_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)1097 ice_add_ieee_etsrec_tlv(struct ice_lldp_org_tlv *tlv,
1098 			struct ice_dcbx_cfg *dcbcfg)
1099 {
1100 	struct ice_dcb_ets_cfg *etsrec;
1101 	u8 *buf = tlv->tlvinfo;
1102 	u32 ouisubtype;
1103 	u16 typelen;
1104 
1105 	typelen = ((ICE_TLV_TYPE_ORG << ICE_LLDP_TLV_TYPE_S) |
1106 		   ICE_IEEE_ETS_TLV_LEN);
1107 	tlv->typelen = HTONS(typelen);
1108 
1109 	ouisubtype = ((ICE_IEEE_8021QAZ_OUI << ICE_LLDP_TLV_OUI_S) |
1110 		      ICE_IEEE_SUBTYPE_ETS_REC);
1111 	tlv->ouisubtype = HTONL(ouisubtype);
1112 
1113 	etsrec = &dcbcfg->etsrec;
1114 
1115 	/* First Octet is reserved */
1116 	/* Begin adding at Priority Assignment Table (offset 1 in buf) */
1117 	ice_add_ieee_ets_common_tlv(&buf[1], etsrec);
1118 }
1119 
1120 /**
1121  * ice_add_ieee_pfc_tlv - Prepare PFC TLV in IEEE format
1122  * @tlv: Fill PFC TLV in IEEE format
1123  * @dcbcfg: Local store which holds the PFC CFG data
1124  *
1125  * Prepare IEEE 802.1Qaz PFC CFG TLV
1126  */
1127 static void
ice_add_ieee_pfc_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)1128 ice_add_ieee_pfc_tlv(struct ice_lldp_org_tlv *tlv, struct ice_dcbx_cfg *dcbcfg)
1129 {
1130 	u8 *buf = tlv->tlvinfo;
1131 	u32 ouisubtype;
1132 	u16 typelen;
1133 
1134 	typelen = ((ICE_TLV_TYPE_ORG << ICE_LLDP_TLV_TYPE_S) |
1135 		   ICE_IEEE_PFC_TLV_LEN);
1136 	tlv->typelen = HTONS(typelen);
1137 
1138 	ouisubtype = ((ICE_IEEE_8021QAZ_OUI << ICE_LLDP_TLV_OUI_S) |
1139 		      ICE_IEEE_SUBTYPE_PFC_CFG);
1140 	tlv->ouisubtype = HTONL(ouisubtype);
1141 
1142 	/* ----------------------------------------
1143 	 * |will-|MBC  | Re-  | PFC |  PFC Enable  |
1144 	 * |ing  |     |served| cap |              |
1145 	 * -----------------------------------------
1146 	 * |1bit | 1bit|2 bits|4bits| 1 octet      |
1147 	 */
1148 	if (dcbcfg->pfc.willing)
1149 		buf[0] = BIT(ICE_IEEE_PFC_WILLING_S);
1150 
1151 	if (dcbcfg->pfc.mbc)
1152 		buf[0] |= BIT(ICE_IEEE_PFC_MBC_S);
1153 
1154 	buf[0] |= dcbcfg->pfc.pfccap & 0xF;
1155 	buf[1] = dcbcfg->pfc.pfcena;
1156 }
1157 
1158 /**
1159  * ice_add_ieee_app_pri_tlv -  Prepare APP TLV in IEEE format
1160  * @tlv: Fill APP TLV in IEEE format
1161  * @dcbcfg: Local store which holds the APP CFG data
1162  *
1163  * Prepare IEEE 802.1Qaz APP CFG TLV
1164  */
1165 static void
ice_add_ieee_app_pri_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg)1166 ice_add_ieee_app_pri_tlv(struct ice_lldp_org_tlv *tlv,
1167 			 struct ice_dcbx_cfg *dcbcfg)
1168 {
1169 	u16 typelen, len, offset = 0;
1170 	u8 priority, selector, i = 0;
1171 	u8 *buf = tlv->tlvinfo;
1172 	u32 ouisubtype;
1173 
1174 	/* No APP TLVs then just return */
1175 	if (dcbcfg->numapps == 0)
1176 		return;
1177 	ouisubtype = ((ICE_IEEE_8021QAZ_OUI << ICE_LLDP_TLV_OUI_S) |
1178 		      ICE_IEEE_SUBTYPE_APP_PRI);
1179 	tlv->ouisubtype = HTONL(ouisubtype);
1180 
1181 	/* Move offset to App Priority Table */
1182 	offset++;
1183 	/* Application Priority Table (3 octets)
1184 	 * Octets:|         1          |    2    |    3    |
1185 	 *        -----------------------------------------
1186 	 *        |Priority|Rsrvd| Sel |    Protocol ID    |
1187 	 *        -----------------------------------------
1188 	 *   Bits:|23    21|20 19|18 16|15                0|
1189 	 *        -----------------------------------------
1190 	 */
1191 	while (i < dcbcfg->numapps) {
1192 		priority = dcbcfg->app[i].priority & 0x7;
1193 		selector = dcbcfg->app[i].selector & 0x7;
1194 		buf[offset] = (priority << ICE_IEEE_APP_PRIO_S) | selector;
1195 		buf[offset + 1] = (dcbcfg->app[i].prot_id >> 0x8) & 0xFF;
1196 		buf[offset + 2] = dcbcfg->app[i].prot_id & 0xFF;
1197 		/* Move to next app */
1198 		offset += 3;
1199 		i++;
1200 		if (i >= ICE_DCBX_MAX_APPS)
1201 			break;
1202 	}
1203 	/* len includes size of ouisubtype + 1 reserved + 3*numapps */
1204 	len = sizeof(tlv->ouisubtype) + 1 + (i * 3);
1205 	typelen = ((ICE_TLV_TYPE_ORG << ICE_LLDP_TLV_TYPE_S) | (len & 0x1FF));
1206 	tlv->typelen = HTONS(typelen);
1207 }
1208 
1209 /**
1210  * ice_add_dcb_tlv - Add all IEEE TLVs
1211  * @tlv: Fill TLV data in IEEE format
1212  * @dcbcfg: Local store which holds the DCB Config
1213  * @tlvid: Type of IEEE TLV
1214  *
1215  * Add tlv information
1216  */
1217 static void
ice_add_dcb_tlv(struct ice_lldp_org_tlv * tlv,struct ice_dcbx_cfg * dcbcfg,u16 tlvid)1218 ice_add_dcb_tlv(struct ice_lldp_org_tlv *tlv, struct ice_dcbx_cfg *dcbcfg,
1219 		u16 tlvid)
1220 {
1221 	switch (tlvid) {
1222 	case ICE_IEEE_TLV_ID_ETS_CFG:
1223 		ice_add_ieee_ets_tlv(tlv, dcbcfg);
1224 		break;
1225 	case ICE_IEEE_TLV_ID_ETS_REC:
1226 		ice_add_ieee_etsrec_tlv(tlv, dcbcfg);
1227 		break;
1228 	case ICE_IEEE_TLV_ID_PFC_CFG:
1229 		ice_add_ieee_pfc_tlv(tlv, dcbcfg);
1230 		break;
1231 	case ICE_IEEE_TLV_ID_APP_PRI:
1232 		ice_add_ieee_app_pri_tlv(tlv, dcbcfg);
1233 		break;
1234 	default:
1235 		break;
1236 	}
1237 }
1238 
1239 /**
1240  * ice_dcb_cfg_to_lldp - Convert DCB configuration to MIB format
1241  * @lldpmib: pointer to the HW struct
1242  * @miblen: length of LLDP MIB
1243  * @dcbcfg: Local store which holds the DCB Config
1244  *
1245  * Convert the DCB configuration to MIB format
1246  */
ice_dcb_cfg_to_lldp(u8 * lldpmib,u16 * miblen,struct ice_dcbx_cfg * dcbcfg)1247 void ice_dcb_cfg_to_lldp(u8 *lldpmib, u16 *miblen, struct ice_dcbx_cfg *dcbcfg)
1248 {
1249 	u16 len, offset = 0, tlvid = ICE_TLV_ID_START;
1250 	struct ice_lldp_org_tlv *tlv;
1251 	u16 typelen;
1252 
1253 	tlv = (struct ice_lldp_org_tlv *)lldpmib;
1254 	while (1) {
1255 		ice_add_dcb_tlv(tlv, dcbcfg, tlvid++);
1256 		typelen = NTOHS(tlv->typelen);
1257 		len = (typelen & ICE_LLDP_TLV_LEN_M) >> ICE_LLDP_TLV_LEN_S;
1258 		if (len)
1259 			offset += len + 2;
1260 		/* END TLV or beyond LLDPDU size */
1261 		if (tlvid >= ICE_TLV_ID_END_OF_LLDPPDU ||
1262 		    offset > ICE_LLDPDU_SIZE)
1263 			break;
1264 		/* Move to next TLV */
1265 		if (len)
1266 			tlv = (struct ice_lldp_org_tlv *)
1267 				((char *)tlv + sizeof(tlv->typelen) + len);
1268 	}
1269 	*miblen = offset;
1270 }
1271 
1272 /**
1273  * ice_set_dcb_cfg - Set the local LLDP MIB to FW
1274  * @pi: port information structure
1275  *
1276  * Set DCB configuration to the Firmware
1277  */
ice_set_dcb_cfg(struct ice_port_info * pi)1278 enum ice_status ice_set_dcb_cfg(struct ice_port_info *pi)
1279 {
1280 	u8 mib_type, *lldpmib = NULL;
1281 	struct ice_dcbx_cfg *dcbcfg;
1282 	enum ice_status ret;
1283 	struct ice_hw *hw;
1284 	u16 miblen;
1285 
1286 	if (!pi)
1287 		return ICE_ERR_PARAM;
1288 
1289 	hw = pi->hw;
1290 
1291 	/* update the HW local config */
1292 	dcbcfg = &pi->qos_cfg.local_dcbx_cfg;
1293 	/* Allocate the LLDPDU */
1294 	lldpmib = (u8 *)ice_malloc(hw, ICE_LLDPDU_SIZE);
1295 	if (!lldpmib)
1296 		return ICE_ERR_NO_MEMORY;
1297 
1298 	mib_type = SET_LOCAL_MIB_TYPE_LOCAL_MIB;
1299 	if (dcbcfg->app_mode == ICE_DCBX_APPS_NON_WILLING)
1300 		mib_type |= SET_LOCAL_MIB_TYPE_CEE_NON_WILLING;
1301 
1302 	ice_dcb_cfg_to_lldp(lldpmib, &miblen, dcbcfg);
1303 	ret = ice_aq_set_lldp_mib(hw, mib_type, (void *)lldpmib, miblen,
1304 				  NULL);
1305 
1306 	ice_free(hw, lldpmib);
1307 
1308 	return ret;
1309 }
1310 
1311 /**
1312  * ice_aq_query_port_ets - query port ETS configuration
1313  * @pi: port information structure
1314  * @buf: pointer to buffer
1315  * @buf_size: buffer size in bytes
1316  * @cd: pointer to command details structure or NULL
1317  *
1318  * query current port ETS configuration
1319  */
1320 enum ice_status
ice_aq_query_port_ets(struct ice_port_info * pi,struct ice_aqc_port_ets_elem * buf,u16 buf_size,struct ice_sq_cd * cd)1321 ice_aq_query_port_ets(struct ice_port_info *pi,
1322 		      struct ice_aqc_port_ets_elem *buf, u16 buf_size,
1323 		      struct ice_sq_cd *cd)
1324 {
1325 	struct ice_aqc_query_port_ets *cmd;
1326 	struct ice_aq_desc desc;
1327 	enum ice_status status;
1328 
1329 	if (!pi)
1330 		return ICE_ERR_PARAM;
1331 	cmd = &desc.params.port_ets;
1332 	ice_fill_dflt_direct_cmd_desc(&desc, ice_aqc_opc_query_port_ets);
1333 	cmd->port_teid = pi->root->info.node_teid;
1334 
1335 	status = ice_aq_send_cmd(pi->hw, &desc, buf, buf_size, cd);
1336 	return status;
1337 }
1338 
1339 /**
1340  * ice_update_port_tc_tree_cfg - update TC tree configuration
1341  * @pi: port information structure
1342  * @buf: pointer to buffer
1343  *
1344  * update the SW DB with the new TC changes
1345  */
1346 enum ice_status
ice_update_port_tc_tree_cfg(struct ice_port_info * pi,struct ice_aqc_port_ets_elem * buf)1347 ice_update_port_tc_tree_cfg(struct ice_port_info *pi,
1348 			    struct ice_aqc_port_ets_elem *buf)
1349 {
1350 	struct ice_sched_node *node, *tc_node;
1351 	struct ice_aqc_txsched_elem_data elem;
1352 	enum ice_status status = ICE_SUCCESS;
1353 	u32 teid1, teid2;
1354 	u8 i, j;
1355 
1356 	if (!pi)
1357 		return ICE_ERR_PARAM;
1358 	/* suspend the missing TC nodes */
1359 	for (i = 0; i < pi->root->num_children; i++) {
1360 		teid1 = LE32_TO_CPU(pi->root->children[i]->info.node_teid);
1361 		ice_for_each_traffic_class(j) {
1362 			teid2 = LE32_TO_CPU(buf->tc_node_teid[j]);
1363 			if (teid1 == teid2)
1364 				break;
1365 		}
1366 		if (j < ICE_MAX_TRAFFIC_CLASS)
1367 			continue;
1368 		/* TC is missing */
1369 		pi->root->children[i]->in_use = false;
1370 	}
1371 	/* add the new TC nodes */
1372 	ice_for_each_traffic_class(j) {
1373 		teid2 = LE32_TO_CPU(buf->tc_node_teid[j]);
1374 		if (teid2 == ICE_INVAL_TEID)
1375 			continue;
1376 		/* Is it already present in the tree ? */
1377 		for (i = 0; i < pi->root->num_children; i++) {
1378 			tc_node = pi->root->children[i];
1379 			if (!tc_node)
1380 				continue;
1381 			teid1 = LE32_TO_CPU(tc_node->info.node_teid);
1382 			if (teid1 == teid2) {
1383 				tc_node->tc_num = j;
1384 				tc_node->in_use = true;
1385 				break;
1386 			}
1387 		}
1388 		if (i < pi->root->num_children)
1389 			continue;
1390 		/* new TC */
1391 		status = ice_sched_query_elem(pi->hw, teid2, &elem);
1392 		if (!status)
1393 			status = ice_sched_add_node(pi, 1, &elem);
1394 		if (status)
1395 			break;
1396 		/* update the TC number */
1397 		node = ice_sched_find_node_by_teid(pi->root, teid2);
1398 		if (node)
1399 			node->tc_num = j;
1400 	}
1401 	return status;
1402 }
1403 
1404 /**
1405  * ice_query_port_ets - query port ETS configuration
1406  * @pi: port information structure
1407  * @buf: pointer to buffer
1408  * @buf_size: buffer size in bytes
1409  * @cd: pointer to command details structure or NULL
1410  *
1411  * query current port ETS configuration and update the
1412  * SW DB with the TC changes
1413  */
1414 enum ice_status
ice_query_port_ets(struct ice_port_info * pi,struct ice_aqc_port_ets_elem * buf,u16 buf_size,struct ice_sq_cd * cd)1415 ice_query_port_ets(struct ice_port_info *pi,
1416 		   struct ice_aqc_port_ets_elem *buf, u16 buf_size,
1417 		   struct ice_sq_cd *cd)
1418 {
1419 	enum ice_status status;
1420 
1421 	ice_acquire_lock(&pi->sched_lock);
1422 	status = ice_aq_query_port_ets(pi, buf, buf_size, cd);
1423 	if (!status)
1424 		status = ice_update_port_tc_tree_cfg(pi, buf);
1425 	ice_release_lock(&pi->sched_lock);
1426 	return status;
1427 }
1428