268f845c89a4e79cc8262e425707d70436a22151
[dpdk.git] / drivers / event / cnxk / cnxk_tim_worker.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(C) 2021 Marvell.
3  */
4
5 #include "cnxk_tim_evdev.h"
6 #include "cnxk_tim_worker.h"
7
8 static inline int
9 cnxk_tim_arm_checks(const struct cnxk_tim_ring *const tim_ring,
10                     struct rte_event_timer *const tim)
11 {
12         if (unlikely(tim->state)) {
13                 tim->state = RTE_EVENT_TIMER_ERROR;
14                 rte_errno = EALREADY;
15                 goto fail;
16         }
17
18         if (unlikely(!tim->timeout_ticks ||
19                      tim->timeout_ticks > tim_ring->nb_bkts)) {
20                 tim->state = tim->timeout_ticks ?
21                                            RTE_EVENT_TIMER_ERROR_TOOLATE :
22                                            RTE_EVENT_TIMER_ERROR_TOOEARLY;
23                 rte_errno = EINVAL;
24                 goto fail;
25         }
26
27         return 0;
28
29 fail:
30         return -EINVAL;
31 }
32
33 static inline void
34 cnxk_tim_format_event(const struct rte_event_timer *const tim,
35                       struct cnxk_tim_ent *const entry)
36 {
37         entry->w0 = (tim->ev.event & 0xFFC000000000) >> 6 |
38                     (tim->ev.event & 0xFFFFFFFFF);
39         entry->wqe = tim->ev.u64;
40 }
41
42 static inline void
43 cnxk_tim_sync_start_cyc(struct cnxk_tim_ring *tim_ring)
44 {
45         uint64_t cur_cyc = cnxk_tim_cntvct();
46         uint32_t real_bkt;
47
48         if (cur_cyc - tim_ring->last_updt_cyc > tim_ring->tot_int) {
49                 real_bkt = plt_read64(tim_ring->base + TIM_LF_RING_REL) >> 44;
50                 cur_cyc = cnxk_tim_cntvct();
51
52                 tim_ring->ring_start_cyc =
53                         cur_cyc - (real_bkt * tim_ring->tck_int);
54                 tim_ring->last_updt_cyc = cur_cyc;
55         }
56 }
57
58 static __rte_always_inline uint16_t
59 cnxk_tim_timer_arm_burst(const struct rte_event_timer_adapter *adptr,
60                          struct rte_event_timer **tim, const uint16_t nb_timers,
61                          const uint8_t flags)
62 {
63         struct cnxk_tim_ring *tim_ring = adptr->data->adapter_priv;
64         struct cnxk_tim_ent entry;
65         uint16_t index;
66         int ret;
67
68         cnxk_tim_sync_start_cyc(tim_ring);
69         for (index = 0; index < nb_timers; index++) {
70                 if (cnxk_tim_arm_checks(tim_ring, tim[index]))
71                         break;
72
73                 cnxk_tim_format_event(tim[index], &entry);
74                 if (flags & CNXK_TIM_SP)
75                         ret = cnxk_tim_add_entry_sp(tim_ring,
76                                                     tim[index]->timeout_ticks,
77                                                     tim[index], &entry, flags);
78                 if (flags & CNXK_TIM_MP)
79                         ret = cnxk_tim_add_entry_mp(tim_ring,
80                                                     tim[index]->timeout_ticks,
81                                                     tim[index], &entry, flags);
82
83                 if (unlikely(ret)) {
84                         rte_errno = -ret;
85                         break;
86                 }
87         }
88
89         return index;
90 }
91
92 #define FP(_name, _f2, _f1, _flags)                                            \
93         uint16_t __rte_noinline cnxk_tim_arm_burst_##_name(                    \
94                 const struct rte_event_timer_adapter *adptr,                   \
95                 struct rte_event_timer **tim, const uint16_t nb_timers)        \
96         {                                                                      \
97                 return cnxk_tim_timer_arm_burst(adptr, tim, nb_timers,         \
98                                                 _flags);                       \
99         }
100 TIM_ARM_FASTPATH_MODES
101 #undef FP