net/bnxt: handle default VNIC change async event
[dpdk.git] / drivers / net / bnxt / bnxt_cpr.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2014-2018 Broadcom
3  * All rights reserved.
4  */
5
6 #include <rte_malloc.h>
7 #include <rte_alarm.h>
8 #include <rte_cycles.h>
9
10 #include "bnxt.h"
11 #include "bnxt_hwrm.h"
12 #include "bnxt_ring.h"
13 #include "hsi_struct_def_dpdk.h"
14
15 void bnxt_wait_for_device_shutdown(struct bnxt *bp)
16 {
17         uint32_t val, timeout;
18
19         /* if HWRM_FUNC_QCAPS_OUTPUT_FLAGS_ERR_RECOVER_RELOAD is set
20          * in HWRM_FUNC_QCAPS command, wait for FW_STATUS to set
21          * the SHUTDOWN bit in health register
22          */
23         if (!(bp->recovery_info &&
24               (bp->fw_cap & BNXT_FW_CAP_ERR_RECOVER_RELOAD)))
25                 return;
26
27         /* Driver has to wait for fw_reset_max_msecs or shutdown bit which comes
28          * first for FW to collect crash dump.
29          */
30         timeout = bp->fw_reset_max_msecs;
31
32         /* Driver has to poll for shutdown bit in fw_status register
33          *
34          * 1. in case of hot fw upgrade, this bit will be set after all
35          *    function drivers unregistered with fw.
36          * 2. in case of fw initiated error recovery, this bit will be
37          *    set after fw has collected the core dump
38          */
39         do {
40                 val = bnxt_read_fw_status_reg(bp, BNXT_FW_STATUS_REG);
41                 if (val & BNXT_FW_STATUS_SHUTDOWN)
42                         return;
43
44                 rte_delay_ms(100);
45                 timeout -= 100;
46         } while (timeout);
47 }
48
49 static void
50 bnxt_process_default_vnic_change(struct bnxt *bp,
51                                  struct hwrm_async_event_cmpl *async_cmp)
52 {
53         uint16_t vnic_state, vf_fid, vf_id;
54         struct bnxt_representor *vf_rep_bp;
55         struct rte_eth_dev *eth_dev;
56         bool vfr_found = false;
57         uint32_t event_data;
58
59         if (!BNXT_TRUFLOW_EN(bp))
60                 return;
61
62         PMD_DRV_LOG(INFO, "Default vnic change async event received\n");
63         event_data = rte_le_to_cpu_32(async_cmp->event_data1);
64
65         vnic_state = (event_data & BNXT_DEFAULT_VNIC_STATE_MASK) >>
66                         BNXT_DEFAULT_VNIC_STATE_SFT;
67         if (vnic_state != BNXT_DEFAULT_VNIC_ALLOC)
68                 return;
69
70         if (!bp->rep_info)
71                 return;
72
73         vf_fid = (event_data & BNXT_DEFAULT_VNIC_CHANGE_VF_ID_MASK) >>
74                         BNXT_DEFAULT_VNIC_CHANGE_VF_ID_SFT;
75         PMD_DRV_LOG(INFO, "async event received vf_id 0x%x\n", vf_fid);
76
77         for (vf_id = 0; vf_id < BNXT_MAX_VF_REPS; vf_id++) {
78                 eth_dev = bp->rep_info[vf_id].vfr_eth_dev;
79                 if (!eth_dev)
80                         continue;
81                 vf_rep_bp = eth_dev->data->dev_private;
82                 if (vf_rep_bp &&
83                     vf_rep_bp->fw_fid == vf_fid) {
84                         vfr_found = true;
85                         break;
86                 }
87         }
88         if (!vfr_found)
89                 return;
90
91         bnxt_rep_dev_start_op(eth_dev);
92 }
93
94 /*
95  * Async event handling
96  */
97 void bnxt_handle_async_event(struct bnxt *bp,
98                              struct cmpl_base *cmp)
99 {
100         struct hwrm_async_event_cmpl *async_cmp =
101                                 (struct hwrm_async_event_cmpl *)cmp;
102         uint16_t event_id = rte_le_to_cpu_16(async_cmp->event_id);
103         struct bnxt_error_recovery_info *info;
104         uint32_t event_data;
105
106         switch (event_id) {
107         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_LINK_STATUS_CHANGE:
108         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_LINK_SPEED_CHANGE:
109         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_LINK_SPEED_CFG_CHANGE:
110                 /* FALLTHROUGH */
111                 bnxt_link_update_op(bp->eth_dev, 0);
112                 break;
113         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_PF_DRVR_UNLOAD:
114                 PMD_DRV_LOG(INFO, "Async event: PF driver unloaded\n");
115                 break;
116         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_VF_CFG_CHANGE:
117                 PMD_DRV_LOG(INFO, "Async event: VF config changed\n");
118                 bnxt_hwrm_func_qcfg(bp, NULL);
119                 break;
120         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_PORT_CONN_NOT_ALLOWED:
121                 PMD_DRV_LOG(INFO, "Port conn async event\n");
122                 break;
123         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_RESET_NOTIFY:
124                 /* Ignore reset notify async events when stopping the port */
125                 if (!bp->eth_dev->data->dev_started) {
126                         bp->flags |= BNXT_FLAG_FATAL_ERROR;
127                         return;
128                 }
129
130                 event_data = rte_le_to_cpu_32(async_cmp->event_data1);
131                 /* timestamp_lo/hi values are in units of 100ms */
132                 bp->fw_reset_max_msecs = async_cmp->timestamp_hi ?
133                         rte_le_to_cpu_16(async_cmp->timestamp_hi) * 100 :
134                         BNXT_MAX_FW_RESET_TIMEOUT;
135                 bp->fw_reset_min_msecs = async_cmp->timestamp_lo ?
136                         async_cmp->timestamp_lo * 100 :
137                         BNXT_MIN_FW_READY_TIMEOUT;
138                 if ((event_data & EVENT_DATA1_REASON_CODE_MASK) ==
139                     EVENT_DATA1_REASON_CODE_FW_EXCEPTION_FATAL) {
140                         PMD_DRV_LOG(INFO,
141                                     "Firmware fatal reset event received\n");
142                         bp->flags |= BNXT_FLAG_FATAL_ERROR;
143                 } else {
144                         PMD_DRV_LOG(INFO,
145                                     "Firmware non-fatal reset event received\n");
146                 }
147
148                 bp->flags |= BNXT_FLAG_FW_RESET;
149                 rte_eal_alarm_set(US_PER_MS, bnxt_dev_reset_and_resume,
150                                   (void *)bp);
151                 break;
152         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_ERROR_RECOVERY:
153                 info = bp->recovery_info;
154
155                 if (!info)
156                         return;
157
158                 PMD_DRV_LOG(INFO, "Error recovery async event received\n");
159
160                 event_data = rte_le_to_cpu_32(async_cmp->event_data1) &
161                                 EVENT_DATA1_FLAGS_MASK;
162
163                 if (event_data & EVENT_DATA1_FLAGS_MASTER_FUNC)
164                         info->flags |= BNXT_FLAG_MASTER_FUNC;
165                 else
166                         info->flags &= ~BNXT_FLAG_MASTER_FUNC;
167
168                 if (event_data & EVENT_DATA1_FLAGS_RECOVERY_ENABLED)
169                         info->flags |= BNXT_FLAG_RECOVERY_ENABLED;
170                 else
171                         info->flags &= ~BNXT_FLAG_RECOVERY_ENABLED;
172
173                 PMD_DRV_LOG(INFO, "recovery enabled(%d), master function(%d)\n",
174                             bnxt_is_recovery_enabled(bp),
175                             bnxt_is_master_func(bp));
176
177                 if (bp->flags & BNXT_FLAG_FW_HEALTH_CHECK_SCHEDULED)
178                         return;
179
180                 info->last_heart_beat =
181                         bnxt_read_fw_status_reg(bp, BNXT_FW_HEARTBEAT_CNT_REG);
182                 info->last_reset_counter =
183                         bnxt_read_fw_status_reg(bp, BNXT_FW_RECOVERY_CNT_REG);
184
185                 bnxt_schedule_fw_health_check(bp);
186                 break;
187         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_DEBUG_NOTIFICATION:
188                 PMD_DRV_LOG(INFO, "DNC event: evt_data1 %#x evt_data2 %#x\n",
189                             rte_le_to_cpu_32(async_cmp->event_data1),
190                             rte_le_to_cpu_32(async_cmp->event_data2));
191                 break;
192         case HWRM_ASYNC_EVENT_CMPL_EVENT_ID_DEFAULT_VNIC_CHANGE:
193                 bnxt_process_default_vnic_change(bp, async_cmp);
194                 break;
195         default:
196                 PMD_DRV_LOG(DEBUG, "handle_async_event id = 0x%x\n", event_id);
197                 break;
198         }
199 }
200
201 void bnxt_handle_fwd_req(struct bnxt *bp, struct cmpl_base *cmpl)
202 {
203         struct hwrm_exec_fwd_resp_input *fwreq;
204         struct hwrm_fwd_req_cmpl *fwd_cmpl = (struct hwrm_fwd_req_cmpl *)cmpl;
205         struct input *fwd_cmd;
206         uint16_t fw_vf_id;
207         uint16_t vf_id;
208         uint16_t req_len;
209         int rc;
210
211         if (bp->pf->active_vfs <= 0) {
212                 PMD_DRV_LOG(ERR, "Forwarded VF with no active VFs\n");
213                 return;
214         }
215
216         /* Qualify the fwd request */
217         fw_vf_id = rte_le_to_cpu_16(fwd_cmpl->source_id);
218         vf_id = fw_vf_id - bp->pf->first_vf_id;
219
220         req_len = (rte_le_to_cpu_16(fwd_cmpl->req_len_type) &
221                    HWRM_FWD_REQ_CMPL_REQ_LEN_MASK) >>
222                 HWRM_FWD_REQ_CMPL_REQ_LEN_SFT;
223         if (req_len > sizeof(fwreq->encap_request))
224                 req_len = sizeof(fwreq->encap_request);
225
226         /* Locate VF's forwarded command */
227         fwd_cmd = (struct input *)bp->pf->vf_info[vf_id].req_buf;
228
229         if (fw_vf_id < bp->pf->first_vf_id ||
230             fw_vf_id >= bp->pf->first_vf_id + bp->pf->active_vfs) {
231                 PMD_DRV_LOG(ERR,
232                 "FWD req's source_id 0x%x out of range 0x%x - 0x%x (%d %d)\n",
233                         fw_vf_id, bp->pf->first_vf_id,
234                         (bp->pf->first_vf_id) + bp->pf->active_vfs - 1,
235                         bp->pf->first_vf_id, bp->pf->active_vfs);
236                 goto reject;
237         }
238
239         if (bnxt_rcv_msg_from_vf(bp, vf_id, fwd_cmd)) {
240                 /*
241                  * In older firmware versions, the MAC had to be all zeros for
242                  * the VF to set it's MAC via hwrm_func_vf_cfg. Set to all
243                  * zeros if it's being configured and has been ok'd by caller.
244                  */
245                 if (fwd_cmd->req_type == HWRM_FUNC_VF_CFG) {
246                         struct hwrm_func_vf_cfg_input *vfc = (void *)fwd_cmd;
247
248                         if (vfc->enables &
249                             HWRM_FUNC_VF_CFG_INPUT_ENABLES_DFLT_MAC_ADDR) {
250                                 bnxt_hwrm_func_vf_mac(bp, vf_id,
251                                 (const uint8_t *)"\x00\x00\x00\x00\x00");
252                         }
253                 }
254
255                 if (fwd_cmd->req_type == HWRM_CFA_L2_SET_RX_MASK) {
256                         struct hwrm_cfa_l2_set_rx_mask_input *srm =
257                                                         (void *)fwd_cmd;
258
259                         srm->vlan_tag_tbl_addr = rte_cpu_to_le_64(0);
260                         srm->num_vlan_tags = rte_cpu_to_le_32(0);
261                         srm->mask &= ~rte_cpu_to_le_32(
262                                 HWRM_CFA_L2_SET_RX_MASK_INPUT_MASK_VLANONLY |
263                             HWRM_CFA_L2_SET_RX_MASK_INPUT_MASK_VLAN_NONVLAN |
264                             HWRM_CFA_L2_SET_RX_MASK_INPUT_MASK_ANYVLAN_NONVLAN);
265                 }
266
267                 /* Forward */
268                 rc = bnxt_hwrm_exec_fwd_resp(bp, fw_vf_id, fwd_cmd, req_len);
269                 if (rc) {
270                         PMD_DRV_LOG(ERR,
271                                 "Failed to send FWD req VF 0x%x, type 0x%x.\n",
272                                 fw_vf_id - bp->pf->first_vf_id,
273                                 rte_le_to_cpu_16(fwd_cmd->req_type));
274                 }
275                 return;
276         }
277
278 reject:
279         rc = bnxt_hwrm_reject_fwd_resp(bp, fw_vf_id, fwd_cmd, req_len);
280         if (rc) {
281                 PMD_DRV_LOG(ERR,
282                         "Failed to send REJECT req VF 0x%x, type 0x%x.\n",
283                         fw_vf_id - bp->pf->first_vf_id,
284                         rte_le_to_cpu_16(fwd_cmd->req_type));
285         }
286
287         return;
288 }
289
290 int bnxt_event_hwrm_resp_handler(struct bnxt *bp, struct cmpl_base *cmp)
291 {
292         bool evt = 0;
293
294         if (bp == NULL || cmp == NULL) {
295                 PMD_DRV_LOG(ERR, "invalid NULL argument\n");
296                 return evt;
297         }
298
299         if (unlikely(is_bnxt_in_error(bp)))
300                 return 0;
301
302         switch (CMP_TYPE(cmp)) {
303         case CMPL_BASE_TYPE_HWRM_ASYNC_EVENT:
304                 /* Handle any async event */
305                 bnxt_handle_async_event(bp, cmp);
306                 evt = 1;
307                 break;
308         case CMPL_BASE_TYPE_HWRM_FWD_REQ:
309                 /* Handle HWRM forwarded responses */
310                 bnxt_handle_fwd_req(bp, cmp);
311                 evt = 1;
312                 break;
313         default:
314                 /* Ignore any other events */
315                 PMD_DRV_LOG(DEBUG, "Ignoring %02x completion\n", CMP_TYPE(cmp));
316                 break;
317         }
318
319         return evt;
320 }
321
322 bool bnxt_is_master_func(struct bnxt *bp)
323 {
324         if (bp->recovery_info->flags & BNXT_FLAG_MASTER_FUNC)
325                 return true;
326
327         return false;
328 }
329
330 bool bnxt_is_recovery_enabled(struct bnxt *bp)
331 {
332         struct bnxt_error_recovery_info *info;
333
334         info = bp->recovery_info;
335         if (info && (info->flags & BNXT_FLAG_RECOVERY_ENABLED))
336                 return true;
337
338         return false;
339 }