add Java lockfree hashtable
[cdsspec-compiler.git] / benchmark / ms-queue / my_queue.c
1 #include <threads.h>
2 #include <stdlib.h>
3 #include "librace.h"
4 #include "model-assert.h"
5
6 #include "my_queue.h"
7
8 #define relaxed memory_order_relaxed
9 #define release memory_order_release
10 #define acquire memory_order_acquire
11
12 #define MAX_FREELIST 4 /* Each thread can own up to MAX_FREELIST free nodes */
13 #define INITIAL_FREE 2 /* Each thread starts with INITIAL_FREE free nodes */
14
15 #define POISON_IDX 0x666
16
17 static unsigned int (*free_lists)[MAX_FREELIST];
18
19 /* Search this thread's free list for a "new" node */
20 static unsigned int new_node()
21 {
22         int i;
23         int t = get_thread_num();
24         for (i = 0; i < MAX_FREELIST; i++) {
25                 //unsigned int node = load_32(&free_lists[t][i]);
26                 unsigned int node = free_lists[t][i];
27                 if (node) {
28                         //store_32(&free_lists[t][i], 0);
29                         free_lists[t][i] = 0;
30                         return node;
31                 }
32         }
33         /* free_list is empty? */
34         //MODEL_ASSERT(0);
35         return 0;
36 }
37
38 /* Place this node index back on this thread's free list */
39 static void reclaim(unsigned int node)
40 {
41         int i;
42         int t = get_thread_num();
43
44         /* Don't reclaim NULL node */
45         //MODEL_ASSERT(node);
46
47         for (i = 0; i < MAX_FREELIST; i++) {
48                 /* Should never race with our own thread here */
49                 //unsigned int idx = load_32(&free_lists[t][i]);
50                 unsigned int idx = free_lists[t][i];
51
52                 /* Found empty spot in free list */
53                 if (idx == 0) {
54                         //store_32(&free_lists[t][i], node);
55                         free_lists[t][i] = node;
56                         return;
57                 }
58         }
59         /* free list is full? */
60         //MODEL_ASSERT(0);
61 }
62
63 void init_queue(queue_t *q, int num_threads)
64 {
65         int i, j;
66
67         /* Initialize each thread's free list with INITIAL_FREE pointers */
68         /* The actual nodes are initialized with poison indexes */
69         free_lists = malloc(num_threads * sizeof(*free_lists));
70         for (i = 0; i < num_threads; i++) {
71                 for (j = 0; j < INITIAL_FREE; j++) {
72                         free_lists[i][j] = 2 + i * MAX_FREELIST + j;
73                         atomic_init(&q->nodes[free_lists[i][j]].next, MAKE_POINTER(POISON_IDX, 0));
74                 }
75         }
76
77         /* initialize queue */
78         atomic_init(&q->head, MAKE_POINTER(1, 0));
79         atomic_init(&q->tail, MAKE_POINTER(1, 0));
80         atomic_init(&q->nodes[1].next, MAKE_POINTER(0, 0));
81 }
82
83 /**
84         @Begin
85         @Interface_define: Enqueue
86         @End
87 */
88 void enqueue(queue_t *q, unsigned int val)
89 {
90         int success = 0;
91         unsigned int node;
92         pointer tail;
93         pointer next;
94         pointer tmp;
95
96         node = new_node();
97         //store_32(&q->nodes[node].value, val);
98         q->nodes[node].value = val;
99         tmp = atomic_load_explicit(&q->nodes[node].next, relaxed);
100         set_ptr(&tmp, 0); // NULL
101         atomic_store_explicit(&q->nodes[node].next, tmp, relaxed);
102
103         while (!success) {
104                 /****FIXME: detected UL ****/
105                 tail = atomic_load_explicit(&q->tail, acquire);
106                 /****FIXME: miss ****/
107                 next = atomic_load_explicit(&q->nodes[get_ptr(tail)].next, acquire);
108                 if (tail == atomic_load_explicit(&q->tail, relaxed)) {
109
110                         /* Check for uninitialized 'next' */
111                         //MODEL_ASSERT(get_ptr(next) != POISON_IDX);
112
113                         if (get_ptr(next) == 0) { // == NULL
114                                 pointer value = MAKE_POINTER(node, get_count(next) + 1);
115                                 /****FIXME: first release UL, second release miss ****/
116                                 success = atomic_compare_exchange_strong_explicit(&q->nodes[get_ptr(tail)].next,
117                                                 &next, value, release, release);
118                                 /**
119                                         @Begin
120                                         @Commit_point_define_check: success == true
121                                         @Label: Enqueue_Success_Point
122                                         @End
123                                 */
124                         }
125                         if (!success) {
126                                 /****FIXME: detected UL ****/
127                                 unsigned int ptr = get_ptr(atomic_load_explicit(&q->nodes[get_ptr(tail)].next, acquire));
128                                 pointer value = MAKE_POINTER(ptr,
129                                                 get_count(tail) + 1);
130                                 /****FIXME: both miss ****/
131                                 atomic_compare_exchange_strong_explicit(&q->tail,
132                                                 &tail, value, release, release);
133                                 thrd_yield();
134                         }
135                 }
136         }
137         /****FIXME: first UL, second miss ****/
138         atomic_compare_exchange_strong_explicit(&q->tail,
139                         &tail,
140                         MAKE_POINTER(node, get_count(tail) + 1),
141                         release, release);
142 }
143
144 /**
145         @Begin
146         @Interface_define: Dequeue
147         @End
148 */
149 unsigned int dequeue(queue_t *q)
150 {
151         unsigned int value;
152         int success = 0;
153         pointer head;
154         pointer tail;
155         pointer next;
156
157         while (!success) {
158                 /****FIXME: detected correctness error ****/
159                 head = atomic_load_explicit(&q->head, acquire);
160                 tail = atomic_load_explicit(&q->tail, relaxed);
161                 /****FIXME: miss ****/
162                 next = atomic_load_explicit(&q->nodes[get_ptr(head)].next, acquire);
163                 if (atomic_load_explicit(&q->head, relaxed) == head) {
164                         if (get_ptr(head) == get_ptr(tail)) {
165
166                                 /* Check for uninitialized 'next' */
167                                 //MODEL_ASSERT(get_ptr(next) != POISON_IDX);
168
169                                 if (get_ptr(next) == 0) { // NULL
170                                         /**
171                                                 @Begin
172                                                 @Commit_point_define_check: true
173                                                 @Label: Dequeue_Empty_Point
174                                                 @End
175                                         */
176                                         return 0; // NULL
177                                 }
178                                 /****FIXME: both miss ****/
179                                 atomic_compare_exchange_strong_explicit(&q->tail,
180                                                 &tail,
181                                                 MAKE_POINTER(get_ptr(next), get_count(tail) + 1),
182                                                 release, release);
183                                 thrd_yield();
184                         } else {
185                                 //value = load_32(&q->nodes[get_ptr(next)].value);
186                                 value = q->nodes[get_ptr(next)].value;
187                                 /****FIXME: first correctness error, second miss ****/
188                                 success = atomic_compare_exchange_strong_explicit(&q->head,
189                                                 &head,
190                                                 MAKE_POINTER(get_ptr(next), get_count(head) + 1),
191                                                 release, release);
192                                 /**
193                                         @Begin
194                                         @Commit_point_define_check: success == true
195                                         @Label: Dequeue_Success_Point
196                                         @End
197                                 */
198                                 if (!success)
199                                         thrd_yield();
200                         }
201                 }
202         }
203         reclaim(get_ptr(head));
204         return value;
205 }