source: tests/concurrent/channels/parallel_harness.hfa@ d61d034

ADT ast-experimental
Last change on this file since d61d034 was 42b739d7, checked in by caparsons <caparson@…>, 3 years ago

fixed termination synchronization in the channel benchmark to get rid of deadlock case

  • Property mode set to 100644
File size: 4.9 KB
Line 
1#include <locks.hfa>
2#include <fstream.hfa>
3#include <stdio.h>
4#include <string.h>
5#include <channel.hfa>
6#include <thread.hfa>
7#include <time.hfa>
8#include <stats.hfa>
9
10// user defines this
11// #define BIG 1
12
13owner_lock o;
14
15unsigned long long total_operations = 0;
16
17struct bigObject {
18 size_t a;
19 size_t b;
20 size_t c;
21 size_t d;
22 size_t e;
23 size_t f;
24 size_t g;
25 size_t h;
26};
27
28void ?{}( bigObject & this, size_t i ) with(this) { a = i; b = i; c = i; d = i; e = i; f = i; g = i; h = i; }
29void ?{}( bigObject & this ) { this{0}; }
30
31#ifdef BIG
32typedef channel( bigObject ) Channel;
33#else
34typedef channel( size_t ) Channel;
35#endif
36
37Channel * channels;
38
39volatile bool cons_done = false, prod_done = false;
40volatile int cons_done_count = 0;
41size_t cons_check = 0, prod_check = 0;
42
43thread Consumer {
44 size_t i;
45};
46static inline void ?{}( Consumer & c, size_t i, cluster & clu ) {
47 ((thread &)c){ clu };
48 c.i = i;
49}
50void main(Consumer & this) {
51 unsigned long long runs = 0;
52 size_t my_check = 0;
53 for ( ;; ) {
54 if ( cons_done ) break;
55 #ifdef BIG
56 bigObject j = remove( channels[ this.i ] );
57 my_check = my_check ^ (j.a + j.b + j.c + j.d + j.d + j.e + j.f + j.g + j.h);
58 #else
59 size_t j = remove( channels[ this.i ] );
60 my_check = my_check ^ j;
61 #endif
62
63 if ( !prod_done ) runs++;
64 }
65 lock(o);
66 total_operations += runs;
67 cons_done_count++;
68 cons_check = cons_check ^ my_check;
69 // sout | "C: " | runs;
70 unlock(o);
71}
72
73thread Producer {
74 size_t i;
75};
76static inline void ?{}( Producer & p, size_t i, cluster & clu ) {
77 ((thread &)p){ clu };
78 p.i = i;
79}
80void main(Producer & this) {
81 unsigned long long runs = 0;
82 size_t my_check = 0;
83 for ( ;; ) {
84 if ( prod_done ) break;
85 #ifdef BIG
86 bigObject j{(size_t)runs};
87 insert( channels[ this.i ], j );
88 my_check = my_check ^ (j.a + j.b + j.c + j.d + j.d + j.e + j.f + j.g + j.h);
89 #else
90 insert( channels[ this.i ], (size_t)runs );
91 my_check = my_check ^ ((size_t)runs);
92 #endif
93 runs++;
94 }
95 lock(o);
96 total_operations += runs;
97 prod_check = prod_check ^ my_check;
98 // sout | "P: " | runs;
99 unlock(o);
100}
101
102
103int test( size_t Processors, size_t Channels, size_t Producers, size_t Consumers, size_t ChannelSize ) {
104 size_t Clusters = 1;
105 // create a cluster
106 cluster clus[Clusters];
107 processor * proc[Processors];
108 for ( i; Processors ) {
109 (*(proc[i] = alloc())){clus[i % Clusters]};
110 }
111
112 channels = anew( Channels );
113
114 // sout | "Processors: " | Processors | " ProdsPerChan: " | Producers | " ConsPerChan: " | Consumers | "Channels: " | Channels | " Channel Size: " | ChannelSize;
115
116 for ( i; Channels ) {
117 channels[i]{ ChannelSize };
118 }
119
120 sout | "start";
121 Consumer * c[Consumers * Channels];
122 Producer * p[Producers * Channels];
123
124 for ( i; Consumers * Channels ) {
125 (*(c[i] = alloc())){ i % Channels, clus[i % Clusters] };
126 }
127
128 for ( i; Producers * Channels ) {
129 (*(p[i] = alloc())){ i % Channels, clus[i % Clusters] };
130 }
131
132 sleep(1`s);
133 prod_done = true;
134
135 for ( i; Producers * Channels ) {
136 delete(p[i]);
137 }
138
139 sout | "prods";
140 cons_done = true;
141 while( cons_done_count != Consumers * Channels ) {
142 for ( i; Channels ) {
143 if ( has_waiting_consumers( channels[i] ) ){
144 #ifdef BIG
145 bigObject b{0};
146 insert( channels[i], b );
147 #else
148 insert( channels[i], 0 );
149 #endif
150 }
151 }
152
153 }
154 // for ( i; Channels ) {
155 // // sout | get_count( channels[i] );
156 // if ( get_count( channels[i] ) < Consumers ){
157 // #ifdef BIG
158 // bigObject b{0};
159 // #endif
160 // for ( j; Consumers ) {
161 // #ifdef BIG
162 // insert( channels[i], b );
163 // #else
164 // insert( channels[i], 0 );
165 // #endif
166 // }
167 // }
168 // }
169 sout | "cons";
170 for ( i; Consumers * Channels ) {
171 delete(c[i]);
172 }
173
174 sout | "flush";
175 for ( i; Channels ) {
176 for ( ;; ) {
177 if ( get_count( channels[i] ) > 0 ) {
178 #ifdef BIG
179 bigObject j = remove( channels[ i ] );
180 cons_check = cons_check ^ (j.a + j.b + j.c + j.d + j.d + j.e + j.f + j.g + j.h);
181 #else
182 size_t j = remove( channels[ i ] );
183 cons_check = cons_check ^ j;
184 #endif
185 } else break;
186 }
187 }
188
189 adelete( channels );
190 // sout | "total channel ops: " | total_operations;
191 if ( cons_check != prod_check )
192 sout | "CHECKSUM MISMATCH !!!";
193 // print_stats_now( *active_cluster(), CFA_STATS_READY_Q);
194
195 for ( i; Processors ) {
196 delete(proc[i]);
197 }
198 sout | "done";
199 return 0;
200}
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