net/enic: avoid error message when no advanced filtering
[dpdk.git] / drivers / net / sfc / sfc_sw_stats.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  *
3  * Copyright(c) 2021 Xilinx, Inc.
4  */
5 #include <rte_dev.h>
6 #include <rte_bitmap.h>
7
8 #include "sfc.h"
9 #include "sfc_rx.h"
10 #include "sfc_tx.h"
11 #include "sfc_sw_stats.h"
12
13 #define SFC_SW_STAT_INVALID             UINT64_MAX
14
15 #define SFC_SW_STATS_GROUP_SIZE_MAX     2U
16 #define SFC_SW_STAT_GOOD_PACKETS        "packets"
17 #define SFC_SW_STAT_GOOD_BYTES          "bytes"
18
19 enum sfc_sw_stats_type {
20         SFC_SW_STATS_RX,
21         SFC_SW_STATS_TX,
22 };
23
24 enum sfc_sw_stats_group_basic {
25         SFC_SW_STATS_GROUP_BASIC_PKTS = 0,
26         SFC_SW_STATS_GROUP_BASIC_BYTES,
27         SFX_SW_STATS_GROUP_BASIC_MAX
28 };
29
30 typedef void sfc_get_sw_stat_val_t(struct sfc_adapter *sa, uint16_t qid,
31                                    uint64_t *values, unsigned int values_count);
32
33 struct sfc_sw_stat_descr {
34         const char *name;
35         enum sfc_sw_stats_type type;
36         sfc_get_sw_stat_val_t *get_val;
37         bool provide_total;
38 };
39
40 static sfc_get_sw_stat_val_t sfc_sw_stat_get_rx_good_pkts_bytes;
41 static void
42 sfc_sw_stat_get_rx_good_pkts_bytes(struct sfc_adapter *sa, uint16_t qid,
43                                    uint64_t *values,
44                                    unsigned int values_count)
45 {
46         struct sfc_adapter_shared *sas = sfc_sa2shared(sa);
47         struct sfc_rxq_info *rxq_info;
48         union sfc_pkts_bytes qstats;
49
50         RTE_SET_USED(values_count);
51         SFC_ASSERT(values_count == SFX_SW_STATS_GROUP_BASIC_MAX);
52         rxq_info = sfc_rxq_info_by_ethdev_qid(sas, qid);
53         if (rxq_info->state & SFC_RXQ_INITIALIZED) {
54                 sfc_pkts_bytes_get(&rxq_info->dp->dpq.stats, &qstats);
55                 values[SFC_SW_STATS_GROUP_BASIC_PKTS] = qstats.pkts;
56                 values[SFC_SW_STATS_GROUP_BASIC_BYTES] = qstats.bytes;
57         } else {
58                 values[SFC_SW_STATS_GROUP_BASIC_PKTS] = 0;
59                 values[SFC_SW_STATS_GROUP_BASIC_BYTES] = 0;
60         }
61 }
62
63 static sfc_get_sw_stat_val_t sfc_sw_stat_get_tx_good_pkts_bytes;
64 static void
65 sfc_sw_stat_get_tx_good_pkts_bytes(struct sfc_adapter *sa, uint16_t qid,
66                                    uint64_t *values,
67                                    unsigned int values_count)
68 {
69         struct sfc_adapter_shared *sas = sfc_sa2shared(sa);
70         struct sfc_txq_info *txq_info;
71         union sfc_pkts_bytes qstats;
72
73         RTE_SET_USED(values_count);
74         SFC_ASSERT(values_count == SFX_SW_STATS_GROUP_BASIC_MAX);
75         txq_info = sfc_txq_info_by_ethdev_qid(sas, qid);
76         if (txq_info->state & SFC_TXQ_INITIALIZED) {
77                 sfc_pkts_bytes_get(&txq_info->dp->dpq.stats, &qstats);
78                 values[SFC_SW_STATS_GROUP_BASIC_PKTS] = qstats.pkts;
79                 values[SFC_SW_STATS_GROUP_BASIC_BYTES] = qstats.bytes;
80         } else {
81                 values[SFC_SW_STATS_GROUP_BASIC_PKTS] = 0;
82                 values[SFC_SW_STATS_GROUP_BASIC_BYTES] = 0;
83         }
84 }
85
86 static sfc_get_sw_stat_val_t sfc_get_sw_stat_val_rx_dbells;
87 static void
88 sfc_get_sw_stat_val_rx_dbells(struct sfc_adapter *sa, uint16_t qid,
89                                uint64_t *values, unsigned int values_count)
90 {
91         struct sfc_adapter_shared *sas = sfc_sa2shared(sa);
92         struct sfc_rxq_info *rxq_info;
93
94         RTE_SET_USED(values_count);
95         SFC_ASSERT(values_count == 1);
96         rxq_info = sfc_rxq_info_by_ethdev_qid(sas, qid);
97         values[0] = rxq_info->state & SFC_RXQ_INITIALIZED ?
98                     rxq_info->dp->dpq.rx_dbells : 0;
99 }
100
101 static sfc_get_sw_stat_val_t sfc_get_sw_stat_val_tx_dbells;
102 static void
103 sfc_get_sw_stat_val_tx_dbells(struct sfc_adapter *sa, uint16_t qid,
104                                uint64_t *values, unsigned int values_count)
105 {
106         struct sfc_adapter_shared *sas = sfc_sa2shared(sa);
107         struct sfc_txq_info *txq_info;
108
109         RTE_SET_USED(values_count);
110         SFC_ASSERT(values_count == 1);
111         txq_info = sfc_txq_info_by_ethdev_qid(sas, qid);
112         values[0] = txq_info->state & SFC_TXQ_INITIALIZED ?
113                     txq_info->dp->dpq.tx_dbells : 0;
114 }
115
116 /*
117  * SW stats can be grouped together. When stats are grouped the corresponding
118  * stats values for each queue are obtained during calling one get value
119  * callback. Stats of the same group are contiguous in the structure below.
120  * The start of the group is denoted by stat implementing get value callback.
121  */
122 const struct sfc_sw_stat_descr sfc_sw_stats_descr[] = {
123         /* Group of Rx packets/bytes stats */
124         {
125                 .name = SFC_SW_STAT_GOOD_PACKETS,
126                 .type = SFC_SW_STATS_RX,
127                 .get_val  = sfc_sw_stat_get_rx_good_pkts_bytes,
128                 .provide_total = false,
129         },
130         {
131                 .name = SFC_SW_STAT_GOOD_BYTES,
132                 .type = SFC_SW_STATS_RX,
133                 .get_val  = NULL,
134                 .provide_total = false,
135         },
136         /* Group of Tx packets/bytes stats */
137         {
138                 .name = SFC_SW_STAT_GOOD_PACKETS,
139                 .type = SFC_SW_STATS_TX,
140                 .get_val  = sfc_sw_stat_get_tx_good_pkts_bytes,
141                 .provide_total = false,
142         },
143         {
144                 .name = SFC_SW_STAT_GOOD_BYTES,
145                 .type = SFC_SW_STATS_TX,
146                 .get_val  = NULL,
147                 .provide_total = false,
148         },
149         /* End of basic stats */
150         {
151                 .name = "dbells",
152                 .type = SFC_SW_STATS_RX,
153                 .get_val  = sfc_get_sw_stat_val_rx_dbells,
154                 .provide_total = true,
155         },
156         {
157                 .name = "dbells",
158                 .type = SFC_SW_STATS_TX,
159                 .get_val  = sfc_get_sw_stat_val_tx_dbells,
160                 .provide_total = true,
161         }
162 };
163
164 static int
165 sfc_sw_stat_get_name(struct sfc_adapter *sa,
166                      const struct sfc_sw_stat_descr *sw_stat, char *name,
167                      size_t name_size, unsigned int id_off)
168 {
169         const char *prefix;
170         int ret;
171
172         switch (sw_stat->type) {
173         case SFC_SW_STATS_RX:
174                 prefix = "rx";
175                 break;
176         case SFC_SW_STATS_TX:
177                 prefix = "tx";
178                 break;
179         default:
180                 sfc_err(sa, "%s: unknown software statistics type %d",
181                         __func__, sw_stat->type);
182                 return -EINVAL;
183         }
184
185         if (sw_stat->provide_total && id_off == 0) {
186                 ret = snprintf(name, name_size, "%s_%s", prefix,
187                                                          sw_stat->name);
188                 if (ret < 0 || ret >= (int)name_size) {
189                         sfc_err(sa, "%s: failed to fill xstat name %s_%s, err %d",
190                                 __func__, prefix, sw_stat->name, ret);
191                         return ret > 0 ? -EINVAL : ret;
192                 }
193         } else {
194                 uint16_t qid = id_off - sw_stat->provide_total;
195                 ret = snprintf(name, name_size, "%s_q%u_%s", prefix, qid,
196                                                         sw_stat->name);
197                 if (ret < 0 || ret >= (int)name_size) {
198                         sfc_err(sa, "%s: failed to fill xstat name %s_q%u_%s, err %d",
199                                 __func__, prefix, qid, sw_stat->name, ret);
200                         return ret > 0 ? -EINVAL : ret;
201                 }
202         }
203
204         return 0;
205 }
206
207 static unsigned int
208 sfc_sw_stat_get_queue_count(struct sfc_adapter *sa,
209                             const struct sfc_sw_stat_descr *sw_stat)
210 {
211         struct sfc_adapter_shared *sas = sfc_sa2shared(sa);
212
213         switch (sw_stat->type) {
214         case SFC_SW_STATS_RX:
215                 return sas->ethdev_rxq_count;
216         case SFC_SW_STATS_TX:
217                 return sas->ethdev_txq_count;
218         default:
219                 sfc_err(sa, "%s: unknown software statistics type %d",
220                         __func__, sw_stat->type);
221                 return 0;
222         }
223 }
224
225 static unsigned int
226 sfc_sw_xstat_per_queue_get_count(const struct sfc_sw_stat_descr *sw_stat,
227                                  unsigned int nb_queues)
228 {
229         /* Take into account the total xstat of all queues */
230         return nb_queues > 0 ? sw_stat->provide_total + nb_queues : 0;
231 }
232
233 static unsigned int
234 sfc_sw_xstat_get_nb_supported(struct sfc_adapter *sa,
235                               const struct sfc_sw_stat_descr *sw_stat)
236 {
237         unsigned int nb_queues;
238
239         nb_queues = sfc_sw_stat_get_queue_count(sa, sw_stat);
240         return sfc_sw_xstat_per_queue_get_count(sw_stat, nb_queues);
241 }
242
243 static int
244 sfc_sw_stat_get_names(struct sfc_adapter *sa,
245                       const struct sfc_sw_stat_descr *sw_stat,
246                       struct rte_eth_xstat_name *xstats_names,
247                       unsigned int xstats_names_sz,
248                       unsigned int *nb_written,
249                       unsigned int *nb_supported)
250 {
251         const size_t name_size = sizeof(xstats_names[0].name);
252         unsigned int id_base = *nb_supported;
253         unsigned int nb_queues;
254         unsigned int qid;
255         int rc;
256
257         nb_queues = sfc_sw_stat_get_queue_count(sa, sw_stat);
258         if (nb_queues == 0)
259                 return 0;
260         *nb_supported += sfc_sw_xstat_per_queue_get_count(sw_stat, nb_queues);
261
262         /*
263          * The order of each software xstat type is the total xstat
264          * followed by per-queue xstats.
265          */
266         if (*nb_written < xstats_names_sz && sw_stat->provide_total) {
267                 rc = sfc_sw_stat_get_name(sa, sw_stat,
268                                           xstats_names[*nb_written].name,
269                                           name_size, *nb_written - id_base);
270                 if (rc != 0)
271                         return rc;
272                 (*nb_written)++;
273         }
274
275         for (qid = 0; qid < nb_queues; ++qid) {
276                 if (*nb_written < xstats_names_sz) {
277                         rc = sfc_sw_stat_get_name(sa, sw_stat,
278                                               xstats_names[*nb_written].name,
279                                               name_size, *nb_written - id_base);
280                         if (rc != 0)
281                                 return rc;
282                         (*nb_written)++;
283                 }
284         }
285
286         return 0;
287 }
288
289 static int
290 sfc_sw_xstat_get_names_by_id(struct sfc_adapter *sa,
291                              const struct sfc_sw_stat_descr *sw_stat,
292                              const uint64_t *ids,
293                              struct rte_eth_xstat_name *xstats_names,
294                              unsigned int size,
295                              unsigned int *nb_supported)
296 {
297         const size_t name_size = sizeof(xstats_names[0].name);
298         unsigned int id_base = *nb_supported;
299         unsigned int id_end;
300         unsigned int nb_queues;
301         unsigned int i;
302         int rc;
303
304         nb_queues = sfc_sw_stat_get_queue_count(sa, sw_stat);
305         if (nb_queues == 0)
306                 return 0;
307         *nb_supported += sfc_sw_xstat_per_queue_get_count(sw_stat, nb_queues);
308
309         /*
310          * The order of each software xstat type is the total xstat
311          * followed by per-queue xstats.
312          */
313         id_end = id_base + sw_stat->provide_total + nb_queues;
314         for (i = 0; i < size; i++) {
315                 if (id_base <= ids[i] && ids[i] < id_end) {
316                         rc = sfc_sw_stat_get_name(sa, sw_stat,
317                                                   xstats_names[i].name,
318                                                   name_size, ids[i] - id_base);
319                         if (rc != 0)
320                                 return rc;
321                 }
322         }
323
324         return 0;
325 }
326
327 static uint64_t
328 sfc_sw_stat_get_val(struct sfc_adapter *sa,
329                     unsigned int sw_stat_idx, uint16_t qid)
330 {
331         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
332         uint64_t *res = &sw_stats->supp[sw_stat_idx].cache[qid];
333         uint64_t values[SFC_SW_STATS_GROUP_SIZE_MAX];
334         unsigned int group_start_idx;
335         unsigned int group_size;
336         unsigned int i;
337
338         if (*res != SFC_SW_STAT_INVALID)
339                 return *res;
340
341         /*
342          * Search for the group start, i.e. the stat that implements
343          * get value callback.
344          */
345         group_start_idx = sw_stat_idx;
346         while (sw_stats->supp[group_start_idx].descr->get_val == NULL)
347                 group_start_idx--;
348
349         /*
350          * Calculate number of elements in the group with loop till the next
351          * group start or the list end.
352          */
353         group_size = 1;
354         for (i = sw_stat_idx + 1; i < sw_stats->supp_count; i++) {
355                 if (sw_stats->supp[i].descr->get_val != NULL)
356                         break;
357                 group_size++;
358         }
359         group_size += sw_stat_idx - group_start_idx;
360
361         SFC_ASSERT(group_size <= SFC_SW_STATS_GROUP_SIZE_MAX);
362         sw_stats->supp[group_start_idx].descr->get_val(sa, qid, values,
363                                                        group_size);
364         for (i = group_start_idx; i < (group_start_idx + group_size); i++)
365                 sw_stats->supp[i].cache[qid] = values[i - group_start_idx];
366
367         return *res;
368 }
369
370 static void
371 sfc_sw_xstat_get_values(struct sfc_adapter *sa,
372                         const struct sfc_sw_stat_descr *sw_stat,
373                         unsigned int sw_stat_idx,
374                         struct rte_eth_xstat *xstats,
375                         unsigned int xstats_size,
376                         unsigned int *nb_written,
377                         unsigned int *nb_supported)
378 {
379         unsigned int qid;
380         uint64_t value;
381         struct rte_eth_xstat *total_xstat;
382         bool count_total_value = false;
383         unsigned int nb_queues;
384
385         nb_queues = sfc_sw_stat_get_queue_count(sa, sw_stat);
386         if (nb_queues == 0)
387                 return;
388         *nb_supported += sfc_sw_xstat_per_queue_get_count(sw_stat, nb_queues);
389
390         /*
391          * The order of each software xstat type is the total xstat
392          * followed by per-queue xstats.
393          */
394         if (*nb_written < xstats_size && sw_stat->provide_total) {
395                 count_total_value = true;
396                 total_xstat = &xstats[*nb_written];
397                 xstats[*nb_written].id = *nb_written;
398                 xstats[*nb_written].value = 0;
399                 (*nb_written)++;
400         }
401
402         for (qid = 0; qid < nb_queues; ++qid) {
403                 value = sfc_sw_stat_get_val(sa, sw_stat_idx, qid);
404
405                 if (*nb_written < xstats_size) {
406                         xstats[*nb_written].id = *nb_written;
407                         xstats[*nb_written].value = value;
408                         (*nb_written)++;
409                 }
410
411                 if (count_total_value)
412                         total_xstat->value += value;
413         }
414 }
415
416 static void
417 sfc_sw_xstat_get_values_by_id(struct sfc_adapter *sa,
418                               const struct sfc_sw_stat_descr *sw_stat,
419                               unsigned int sw_stat_idx,
420                               const uint64_t *ids,
421                               uint64_t *values,
422                               unsigned int ids_size,
423                               unsigned int *nb_supported)
424 {
425         rte_spinlock_t *bmp_lock = &sa->sw_stats.queues_bitmap_lock;
426         struct rte_bitmap *bmp = sa->sw_stats.queues_bitmap;
427         unsigned int id_base = *nb_supported;
428         unsigned int id_base_q;
429         unsigned int id_end;
430         bool count_total_value = false;
431         unsigned int total_value_idx;
432         uint64_t total_value = 0;
433         unsigned int i, qid;
434         unsigned int nb_queues;
435
436
437         rte_spinlock_lock(bmp_lock);
438         rte_bitmap_reset(bmp);
439
440         nb_queues = sfc_sw_stat_get_queue_count(sa, sw_stat);
441         if (nb_queues == 0)
442                 goto unlock;
443         *nb_supported += sfc_sw_xstat_per_queue_get_count(sw_stat, nb_queues);
444
445         /*
446          * The order of each software xstat type is the total xstat
447          * followed by per-queue xstats.
448          */
449         id_end = id_base + sw_stat->provide_total + nb_queues;
450         for (i = 0; i < ids_size; i++) {
451                 if (id_base <= ids[i] && ids[i] < id_end) {
452                         if (sw_stat->provide_total && ids[i] == id_base) {
453                                 /* Accumulative value */
454                                 count_total_value = true;
455                                 total_value_idx = i;
456                                 continue;
457                         }
458                         id_base_q = id_base + sw_stat->provide_total;
459                         qid = ids[i] - id_base_q;
460                         values[i] = sfc_sw_stat_get_val(sa, sw_stat_idx, qid);
461                         total_value += values[i];
462
463                         rte_bitmap_set(bmp, qid);
464                 }
465         }
466
467         if (count_total_value) {
468                 values[total_value_idx] = 0;
469                 for (qid = 0; qid < nb_queues; ++qid) {
470                         if (rte_bitmap_get(bmp, qid) != 0)
471                                 continue;
472                         values[total_value_idx] += sfc_sw_stat_get_val(sa,
473                                                                     sw_stat_idx,
474                                                                     qid);
475                 }
476                 values[total_value_idx] += total_value;
477         }
478
479 unlock:
480         rte_spinlock_unlock(bmp_lock);
481 }
482
483 unsigned int
484 sfc_sw_xstats_get_nb_supported(struct sfc_adapter *sa)
485 {
486         SFC_ASSERT(sfc_adapter_is_locked(sa));
487         return sa->sw_stats.xstats_count;
488 }
489
490 static void
491 sfc_sw_stats_clear_cache(struct sfc_adapter *sa)
492 {
493         unsigned int cache_count = sa->sw_stats.cache_count;
494         uint64_t *cache = sa->sw_stats.cache;
495
496         RTE_BUILD_BUG_ON(UINT64_C(0xffffffffffffffff) != SFC_SW_STAT_INVALID);
497         memset(cache, 0xff, cache_count * sizeof(*cache));
498 }
499
500 void
501 sfc_sw_xstats_get_vals(struct sfc_adapter *sa,
502                        struct rte_eth_xstat *xstats,
503                        unsigned int xstats_count,
504                        unsigned int *nb_written,
505                        unsigned int *nb_supported)
506 {
507         uint64_t *reset_vals = sa->sw_stats.reset_vals;
508         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
509         unsigned int sw_xstats_offset;
510         unsigned int i;
511
512         sfc_adapter_lock(sa);
513
514         sfc_sw_stats_clear_cache(sa);
515
516         sw_xstats_offset = *nb_supported;
517
518         for (i = 0; i < sw_stats->supp_count; i++) {
519                 sfc_sw_xstat_get_values(sa, sw_stats->supp[i].descr, i,
520                                 xstats, xstats_count, nb_written, nb_supported);
521         }
522
523         for (i = sw_xstats_offset; i < *nb_written; i++)
524                 xstats[i].value -= reset_vals[i - sw_xstats_offset];
525
526         sfc_adapter_unlock(sa);
527 }
528
529 int
530 sfc_sw_xstats_get_names(struct sfc_adapter *sa,
531                         struct rte_eth_xstat_name *xstats_names,
532                         unsigned int xstats_count,
533                         unsigned int *nb_written,
534                         unsigned int *nb_supported)
535 {
536         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
537         unsigned int i;
538         int ret;
539
540         sfc_adapter_lock(sa);
541
542         for (i = 0; i < sw_stats->supp_count; i++) {
543                 ret = sfc_sw_stat_get_names(sa, sw_stats->supp[i].descr,
544                                             xstats_names, xstats_count,
545                                             nb_written, nb_supported);
546                 if (ret != 0) {
547                         sfc_adapter_unlock(sa);
548                         return ret;
549                 }
550         }
551
552         sfc_adapter_unlock(sa);
553
554         return 0;
555 }
556
557 void
558 sfc_sw_xstats_get_vals_by_id(struct sfc_adapter *sa,
559                              const uint64_t *ids,
560                              uint64_t *values,
561                              unsigned int n,
562                              unsigned int *nb_supported)
563 {
564         uint64_t *reset_vals = sa->sw_stats.reset_vals;
565         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
566         unsigned int sw_xstats_offset;
567         unsigned int i;
568
569         sfc_adapter_lock(sa);
570
571         sfc_sw_stats_clear_cache(sa);
572
573         sw_xstats_offset = *nb_supported;
574
575         for (i = 0; i < sw_stats->supp_count; i++) {
576                 sfc_sw_xstat_get_values_by_id(sa, sw_stats->supp[i].descr, i,
577                                               ids, values, n, nb_supported);
578         }
579
580         for (i = 0; i < n; i++) {
581                 if (sw_xstats_offset <= ids[i] && ids[i] < *nb_supported)
582                         values[i] -= reset_vals[ids[i] - sw_xstats_offset];
583         }
584
585         sfc_adapter_unlock(sa);
586 }
587
588 int
589 sfc_sw_xstats_get_names_by_id(struct sfc_adapter *sa,
590                               const uint64_t *ids,
591                               struct rte_eth_xstat_name *xstats_names,
592                               unsigned int size,
593                               unsigned int *nb_supported)
594 {
595         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
596         unsigned int i;
597         int ret;
598
599         sfc_adapter_lock(sa);
600
601         for (i = 0; i < sw_stats->supp_count; i++) {
602                 ret = sfc_sw_xstat_get_names_by_id(sa, sw_stats->supp[i].descr,
603                                                    ids, xstats_names, size,
604                                                    nb_supported);
605                 if (ret != 0) {
606                         sfc_adapter_unlock(sa);
607                         SFC_ASSERT(ret < 0);
608                         return ret;
609                 }
610         }
611
612         sfc_adapter_unlock(sa);
613
614         return 0;
615 }
616
617 static void
618 sfc_sw_xstat_reset(struct sfc_adapter *sa,
619                    const struct sfc_sw_stat_descr *sw_stat,
620                    unsigned int sw_stat_idx,
621                    uint64_t *reset_vals)
622 {
623         unsigned int nb_queues;
624         unsigned int qid;
625         uint64_t *total_xstat_reset = NULL;
626
627         SFC_ASSERT(sfc_adapter_is_locked(sa));
628
629         nb_queues = sfc_sw_stat_get_queue_count(sa, sw_stat);
630         if (nb_queues == 0)
631                 return;
632
633         /*
634          * The order of each software xstat type is the total xstat
635          * followed by per-queue xstats.
636          */
637         if (sw_stat->provide_total) {
638                 total_xstat_reset = reset_vals;
639                 *total_xstat_reset = 0;
640                 reset_vals++;
641         }
642
643         for (qid = 0; qid < nb_queues; ++qid) {
644                 reset_vals[qid] = sfc_sw_stat_get_val(sa, sw_stat_idx, qid);
645                 if (sw_stat->provide_total)
646                         *total_xstat_reset += reset_vals[qid];
647         }
648 }
649
650 void
651 sfc_sw_xstats_reset(struct sfc_adapter *sa)
652 {
653         uint64_t *reset_vals = sa->sw_stats.reset_vals;
654         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
655         unsigned int i;
656
657         SFC_ASSERT(sfc_adapter_is_locked(sa));
658
659         sfc_sw_stats_clear_cache(sa);
660
661         for (i = 0; i < sw_stats->supp_count; i++) {
662                 sfc_sw_xstat_reset(sa, sw_stats->supp[i].descr, i, reset_vals);
663                 reset_vals += sfc_sw_xstat_get_nb_supported(sa,
664                                                        sw_stats->supp[i].descr);
665         }
666 }
667
668 static bool
669 sfc_sw_stats_is_packets_or_bytes(const char *xstat_name)
670 {
671         return strcmp(xstat_name, SFC_SW_STAT_GOOD_PACKETS) == 0 ||
672                strcmp(xstat_name, SFC_SW_STAT_GOOD_BYTES) == 0;
673 }
674
675 static void
676 sfc_sw_stats_fill_available_descr(struct sfc_adapter *sa)
677 {
678         const struct sfc_adapter_priv *sap = &sa->priv;
679         bool have_dp_rx_stats = sap->dp_rx->features & SFC_DP_RX_FEAT_STATS;
680         bool have_dp_tx_stats = sap->dp_tx->features & SFC_DP_TX_FEAT_STATS;
681         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
682         const struct sfc_sw_stat_descr *sw_stat_descr;
683         unsigned int i;
684
685         sw_stats->supp_count = 0;
686         for (i = 0; i < RTE_DIM(sfc_sw_stats_descr); i++) {
687                 sw_stat_descr = &sfc_sw_stats_descr[i];
688                 if (!have_dp_rx_stats &&
689                     sw_stat_descr->type == SFC_SW_STATS_RX &&
690                     sfc_sw_stats_is_packets_or_bytes(sw_stat_descr->name))
691                         continue;
692                 if (!have_dp_tx_stats &&
693                     sw_stat_descr->type == SFC_SW_STATS_TX &&
694                     sfc_sw_stats_is_packets_or_bytes(sw_stat_descr->name))
695                         continue;
696                 sw_stats->supp[sw_stats->supp_count].descr = sw_stat_descr;
697                 sw_stats->supp_count++;
698         }
699 }
700
701 static int
702 sfc_sw_stats_set_reset_basic_stats(struct sfc_adapter *sa)
703 {
704         uint64_t *reset_vals = sa->sw_stats.reset_vals;
705         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
706         const struct sfc_sw_stat_descr *sw_stat;
707         unsigned int i;
708
709         for (i = 0; i < sw_stats->supp_count; i++) {
710                 sw_stat = sw_stats->supp[i].descr;
711
712                 switch (sw_stat->type) {
713                 case SFC_SW_STATS_RX:
714                         if (strcmp(sw_stat->name,
715                                    SFC_SW_STAT_GOOD_PACKETS) == 0)
716                                 sa->sw_stats.reset_rx_pkts = reset_vals;
717                         else if (strcmp(sw_stat->name,
718                                         SFC_SW_STAT_GOOD_BYTES) == 0)
719                                 sa->sw_stats.reset_rx_bytes = reset_vals;
720                         break;
721                 case SFC_SW_STATS_TX:
722                         if (strcmp(sw_stat->name,
723                                    SFC_SW_STAT_GOOD_PACKETS) == 0)
724                                 sa->sw_stats.reset_tx_pkts = reset_vals;
725                         else if (strcmp(sw_stat->name,
726                                         SFC_SW_STAT_GOOD_BYTES) == 0)
727                                 sa->sw_stats.reset_tx_bytes = reset_vals;
728                         break;
729                 default:
730                         SFC_GENERIC_LOG(ERR, "Unknown SW stat type");
731                         return -EINVAL;
732                 }
733
734                 reset_vals += sfc_sw_xstat_get_nb_supported(sa, sw_stat);
735         }
736
737         return 0;
738 }
739
740 int
741 sfc_sw_xstats_configure(struct sfc_adapter *sa)
742 {
743         uint64_t **reset_vals = &sa->sw_stats.reset_vals;
744         struct sfc_sw_stats *sw_stats = &sa->sw_stats;
745         unsigned int cache_count = 0;
746         uint64_t **cache =  &sa->sw_stats.cache;
747         uint64_t *stat_cache;
748         size_t nb_supported = 0;
749         unsigned int i;
750         int rc;
751
752         sw_stats->supp_count = RTE_DIM(sfc_sw_stats_descr);
753         if (sw_stats->supp == NULL) {
754                 sw_stats->supp = rte_malloc(NULL, sw_stats->supp_count *
755                                             sizeof(*sw_stats->supp), 0);
756                 if (sw_stats->supp == NULL)
757                         return -ENOMEM;
758         }
759         for (i = 0; i < sw_stats->supp_count; i++)
760                 sw_stats->supp[i].descr = &sfc_sw_stats_descr[i];
761         sfc_sw_stats_fill_available_descr(sa);
762
763         for (i = 0; i < sw_stats->supp_count; i++) {
764                 nb_supported += sfc_sw_xstat_get_nb_supported(sa,
765                                                        sw_stats->supp[i].descr);
766                 cache_count += sfc_sw_stat_get_queue_count(sa,
767                                                        sw_stats->supp[i].descr);
768         }
769         sa->sw_stats.xstats_count = nb_supported;
770
771         *reset_vals = rte_realloc(*reset_vals,
772                                   nb_supported * sizeof(**reset_vals), 0);
773         if (*reset_vals == NULL) {
774                 rc = -ENOMEM;
775                 goto fail_reset_vals;
776         }
777
778         memset(*reset_vals, 0, nb_supported * sizeof(**reset_vals));
779
780         *cache = rte_realloc(*cache, cache_count * sizeof(*cache), 0);
781         if (*cache == NULL) {
782                 rc = ENOMEM;
783                 goto fail_cache;
784         }
785         sa->sw_stats.cache_count = cache_count;
786         stat_cache = *cache;
787         rc = sfc_sw_stats_set_reset_basic_stats(sa);
788         if (rc != 0)
789                 goto fail_reset_basic_stats;
790
791         for (i = 0; i < sw_stats->supp_count; i++) {
792                 sw_stats->supp[i].cache = stat_cache;
793                 stat_cache += sfc_sw_stat_get_queue_count(sa,
794                                                        sw_stats->supp[i].descr);
795         }
796
797         return 0;
798
799 fail_reset_basic_stats:
800         rte_free(*cache);
801         *cache = NULL;
802         sa->sw_stats.cache_count = 0;
803 fail_cache:
804         rte_free(*reset_vals);
805         *reset_vals = NULL;
806 fail_reset_vals:
807         sa->sw_stats.xstats_count = 0;
808         rte_free(sw_stats->supp);
809         sw_stats->supp = NULL;
810         sw_stats->supp_count = 0;
811
812         return rc;
813 }
814
815 static void
816 sfc_sw_xstats_free_queues_bitmap(struct sfc_adapter *sa)
817 {
818         rte_bitmap_free(sa->sw_stats.queues_bitmap);
819         rte_free(sa->sw_stats.queues_bitmap_mem);
820 }
821
822 static int
823 sfc_sw_xstats_alloc_queues_bitmap(struct sfc_adapter *sa)
824 {
825         struct rte_bitmap **queues_bitmap = &sa->sw_stats.queues_bitmap;
826         void **queues_bitmap_mem = &sa->sw_stats.queues_bitmap_mem;
827         uint32_t bmp_size;
828         int rc;
829
830         bmp_size = rte_bitmap_get_memory_footprint(RTE_MAX_QUEUES_PER_PORT);
831         *queues_bitmap_mem = NULL;
832         *queues_bitmap = NULL;
833
834         *queues_bitmap_mem = rte_calloc_socket("bitmap_mem", bmp_size, 1, 0,
835                                                sa->socket_id);
836         if (*queues_bitmap_mem == NULL)
837                 return ENOMEM;
838
839         *queues_bitmap = rte_bitmap_init(RTE_MAX_QUEUES_PER_PORT,
840                                          *queues_bitmap_mem, bmp_size);
841         if (*queues_bitmap == NULL) {
842                 rc = EINVAL;
843                 goto fail;
844         }
845
846         rte_spinlock_init(&sa->sw_stats.queues_bitmap_lock);
847         return 0;
848
849 fail:
850         sfc_sw_xstats_free_queues_bitmap(sa);
851         return rc;
852 }
853
854 int
855 sfc_sw_xstats_init(struct sfc_adapter *sa)
856 {
857         sa->sw_stats.xstats_count = 0;
858         sa->sw_stats.supp = NULL;
859         sa->sw_stats.supp_count = 0;
860         sa->sw_stats.cache = NULL;
861         sa->sw_stats.cache_count = 0;
862         sa->sw_stats.reset_vals = NULL;
863
864         return sfc_sw_xstats_alloc_queues_bitmap(sa);
865 }
866
867 void
868 sfc_sw_xstats_close(struct sfc_adapter *sa)
869 {
870         sfc_sw_xstats_free_queues_bitmap(sa);
871         sa->sw_stats.reset_vals = NULL;
872         rte_free(sa->sw_stats.cache);
873         sa->sw_stats.cache = NULL;
874         sa->sw_stats.cache_count = 0;
875         rte_free(sa->sw_stats.reset_vals);
876         rte_free(sa->sw_stats.supp);
877         sa->sw_stats.supp = NULL;
878         sa->sw_stats.supp_count = 0;
879         sa->sw_stats.xstats_count = 0;
880 }