multithreading tests from 152 lab 5
[riscv-tests.git] / mt / ay_vvadd / ay_vvadd.c
1 //**************************************************************************
2 // Vector-vector add benchmark
3 //--------------------------------------------------------------------------
4 // Author : Andrew Waterman
5 // TA : Christopher Celio
6 // Student :
7 //
8 // This benchmark adds two vectors and writes the results to a
9 // third vector. The input data (and reference data) should be
10 // generated using the vvadd_gendata.pl perl script and dumped
11 // to a file named dataset.h
12
13 // to print out arrays, etc.
14 //#define DEBUG
15
16 //--------------------------------------------------------------------------
17 // Includes
18
19 #include <string.h>
20 #include <stdlib.h>
21 #include <stdio.h>
22
23
24 //--------------------------------------------------------------------------
25 // Input/Reference Data
26
27 typedef float data_t;
28 #include "dataset.h"
29
30
31 //--------------------------------------------------------------------------
32 // Basic Utilities and Multi-thread Support
33
34 __thread unsigned long coreid;
35 unsigned long ncores;
36
37 #include "util.h"
38
39 #define stringify_1(s) #s
40 #define stringify(s) stringify_1(s)
41 #define stats(code) do { \
42 unsigned long _c = -rdcycle(), _i = -rdinstret(); \
43 code; \
44 _c += rdcycle(), _i += rdinstret(); \
45 if (coreid == 0) \
46 printf("%s: %ld cycles, %ld.%ld cycles/iter, %ld.%ld CPI\n", \
47 stringify(code), _c, _c/DATA_SIZE, 10*_c/DATA_SIZE%10, _c/_i, 10*_c/_i%10); \
48 } while(0)
49
50
51 //--------------------------------------------------------------------------
52 // Helper functions
53
54 void printArray( char name[], int n, data_t arr[] )
55 {
56 int i;
57 if (coreid != 0)
58 return;
59
60 printf( " %10s :", name );
61 for ( i = 0; i < n; i++ )
62 printf( " %4ld ", (long) arr[i] );
63 printf( "\n" );
64 }
65
66 void __attribute__((noinline)) verify(size_t n, const data_t* test, const data_t* correct)
67 {
68 if (coreid != 0)
69 return;
70
71 size_t i;
72 for (i = 0; i < n; i++)
73 {
74 if (test[i] != correct[i])
75 {
76 printf("FAILED test[%d]= %4ld, correct[%d]= %4ld\n",
77 i, (long) test[i], i, (long)correct[i]);
78 exit(-1);
79 }
80 }
81
82 return;
83 }
84
85 //--------------------------------------------------------------------------
86 // vvadd function
87
88 //perform in-place vvadd
89 void __attribute__((noinline)) vvadd(size_t n, data_t* __restrict__ x, const data_t* __restrict__ y)
90 {
91 size_t i;
92
93 // interleave accesses
94 for (i = coreid; i < n; i+=ncores)
95 {
96 x[i] = x[i] + y[i];
97 }
98 }
99
100 void __attribute__((noinline)) vvadd_opt(size_t n, data_t* __restrict__ x, const data_t* __restrict__ y)
101 {
102 size_t i;
103
104 // Each core uses its own block
105 if (coreid == 0) {
106 for (i = 0; i < (n/2); i++) {
107 x[i] = x[i] + y[i];
108 }
109 }
110 else {
111 for (i = (n/2); i < n; i++) {
112 x[i] = x[i] + y[i];
113 }
114 }
115 }
116
117 //--------------------------------------------------------------------------
118 // Main
119 //
120 // all threads start executing thread_entry(). Use their "coreid" to
121 // differentiate between threads (each thread is running on a separate core).
122
123 void thread_entry(int cid, int nc)
124 {
125 coreid = cid;
126 ncores = nc;
127
128 // static allocates data in the binary, which is visible to both threads
129 static data_t results_data[DATA_SIZE];
130
131 // because we're going to perform an in-place vvadd (and we're going to run
132 // it a couple of times) let's copy the input data to a temporary results
133 // array
134
135 size_t i;
136 if (coreid == 0)
137 {
138 for (i = 0; i < DATA_SIZE; i++)
139 results_data[i] = input1_data[i];
140 }
141
142
143 // Execute the provided, terrible vvadd
144 barrier();
145 stats(vvadd(DATA_SIZE, results_data, input2_data); barrier());
146
147
148 // verify
149 verify(DATA_SIZE, results_data, verify_data);
150
151 // reset results from the first trial
152 if (coreid == 0)
153 {
154 for (i=0; i < DATA_SIZE; i++)
155 results_data[i] = input1_data[i];
156 }
157 barrier();
158
159
160 // Execute your faster vvadd
161 barrier();
162 stats(vvadd_opt(DATA_SIZE, results_data, input2_data); barrier());
163
164 #ifdef DEBUG
165 printArray("results: ", DATA_SIZE, results_data);
166 printArray("verify : ", DATA_SIZE, verify_data);
167 #endif
168
169 // verify
170 verify(DATA_SIZE, results_data, verify_data);
171 barrier();
172
173 exit(0);
174 }
175