1 /* SPDX-License-Identifier: BSD-3-Clause
2 * Copyright(c) 2019 Intel Corporation
5 #ifndef _RTE_STACK_LF_C11_H_
6 #define _RTE_STACK_LF_C11_H_
8 #include <rte_branch_prediction.h>
9 #include <rte_prefetch.h>
11 static __rte_always_inline unsigned int
12 __rte_stack_lf_count(struct rte_stack *s)
14 /* stack_lf_push() and stack_lf_pop() do not update the list's contents
15 * and stack_lf->len atomically, which can cause the list to appear
16 * shorter than it actually is if this function is called while other
17 * threads are modifying the list.
19 * However, given the inherently approximate nature of the get_count
20 * callback -- even if the list and its size were updated atomically,
21 * the size could change between when get_count executes and when the
22 * value is returned to the caller -- this is acceptable.
24 * The stack_lf->len updates are placed such that the list may appear to
25 * have fewer elements than it does, but will never appear to have more
26 * elements. If the mempool is near-empty to the point that this is a
27 * concern, the user should consider increasing the mempool size.
29 return (unsigned int)__atomic_load_n(&s->stack_lf.used.len,
33 static __rte_always_inline void
34 __rte_stack_lf_push_elems(struct rte_stack_lf_list *list,
35 struct rte_stack_lf_elem *first,
36 struct rte_stack_lf_elem *last,
39 struct rte_stack_lf_head old_head;
42 old_head = list->head;
45 struct rte_stack_lf_head new_head;
47 /* Swing the top pointer to the first element in the list and
48 * make the last element point to the old top.
51 new_head.cnt = old_head.cnt + 1;
53 last->next = old_head.top;
55 /* Use the release memmodel to ensure the writes to the LF LIFO
56 * elements are visible before the head pointer write.
58 success = rte_atomic128_cmp_exchange(
59 (rte_int128_t *)&list->head,
60 (rte_int128_t *)&old_head,
61 (rte_int128_t *)&new_head,
64 } while (success == 0);
66 /* Ensure the stack modifications are not reordered with respect
67 * to the LIFO len update.
69 __atomic_add_fetch(&list->len, num, __ATOMIC_RELEASE);
72 static __rte_always_inline struct rte_stack_lf_elem *
73 __rte_stack_lf_pop_elems(struct rte_stack_lf_list *list,
76 struct rte_stack_lf_elem **last)
78 struct rte_stack_lf_head old_head;
82 /* Reserve num elements, if available */
83 len = __atomic_load_n(&list->len, __ATOMIC_RELAXED);
86 /* Does the list contain enough elements? */
87 if (unlikely(len < num))
90 /* len is updated on failure */
91 if (__atomic_compare_exchange_n(&list->len,
98 /* If a torn read occurs, the CAS will fail and set old_head to the
99 * correct/latest value.
101 old_head = list->head;
103 /* Pop num elements */
105 struct rte_stack_lf_head new_head;
106 struct rte_stack_lf_elem *tmp;
109 /* Use the acquire memmodel to ensure the reads to the LF LIFO
110 * elements are properly ordered with respect to the head
113 __atomic_thread_fence(__ATOMIC_ACQUIRE);
115 rte_prefetch0(old_head.top);
119 /* Traverse the list to find the new head. A next pointer will
120 * either point to another element or NULL; if a thread
121 * encounters a pointer that has already been popped, the CAS
124 for (i = 0; i < num && tmp != NULL; i++) {
125 rte_prefetch0(tmp->next);
127 obj_table[i] = tmp->data;
133 /* If NULL was encountered, the list was modified while
134 * traversing it. Retry.
137 old_head = list->head;
142 new_head.cnt = old_head.cnt + 1;
145 * The CAS should have release semantics to ensure that
146 * items are read before the head is updated.
147 * But this function is internal, and items are read
148 * only when __rte_stack_lf_pop calls this function to
149 * pop items from used list.
150 * Then, those items are pushed to the free list.
151 * Push uses a CAS store-release on head, which makes
152 * sure that items are read before they are pushed to
153 * the free list, without need for a CAS release here.
154 * This CAS could also be used to ensure that the new
155 * length is visible before the head update, but
156 * acquire semantics on the length update is enough.
158 success = rte_atomic128_cmp_exchange(
159 (rte_int128_t *)&list->head,
160 (rte_int128_t *)&old_head,
161 (rte_int128_t *)&new_head,
164 } while (success == 0);
169 #endif /* _RTE_STACK_LF_C11_H_ */