4 * memcpy: Simple memory copy in various ways
6 * Written by Hitoshi Mitake <mitake@dcl.info.waseda.ac.jp>
10 #include "../util/util.h"
11 #include "../util/parse-options.h"
12 #include "../util/header.h"
14 #include "mem-memcpy-arch.h"
24 static const char *length_str = "1MB";
25 static const char *routine = "default";
26 static int iterations = 1;
27 static bool use_cycle;
29 static bool only_prefault;
30 static bool no_prefault;
32 static const struct option options[] = {
33 OPT_STRING('l', "length", &length_str, "1MB",
34 "Specify length of memory to copy. "
35 "Available units: B, KB, MB, GB and TB (upper and lower)"),
36 OPT_STRING('r', "routine", &routine, "default",
37 "Specify routine to copy"),
38 OPT_INTEGER('i', "iterations", &iterations,
39 "repeat memcpy() invocation this number of times"),
40 OPT_BOOLEAN('c', "cycle", &use_cycle,
41 "Use cycles event instead of gettimeofday() for measuring"),
42 OPT_BOOLEAN('o', "only-prefault", &only_prefault,
43 "Show only the result with page faults before memcpy()"),
44 OPT_BOOLEAN('n', "no-prefault", &no_prefault,
45 "Show only the result without page faults before memcpy()"),
49 typedef void *(*memcpy_t)(void *, const void *, size_t);
57 struct routine routines[] = {
59 "Default memcpy() provided by glibc",
63 #define MEMCPY_FN(fn, name, desc) { name, desc, fn },
64 #include "mem-memcpy-x86-64-asm-def.h"
74 static const char * const bench_mem_memcpy_usage[] = {
75 "perf bench mem memcpy <options>",
79 static struct perf_event_attr cycle_attr = {
80 .type = PERF_TYPE_HARDWARE,
81 .config = PERF_COUNT_HW_CPU_CYCLES
84 static void init_cycle(void)
86 cycle_fd = sys_perf_event_open(&cycle_attr, getpid(), -1, -1, 0);
88 if (cycle_fd < 0 && errno == ENOSYS)
89 die("No CONFIG_PERF_EVENTS=y kernel support configured?\n");
94 static u64 get_cycle(void)
99 ret = read(cycle_fd, &clk, sizeof(u64));
100 BUG_ON(ret != sizeof(u64));
105 static double timeval2double(struct timeval *ts)
107 return (double)ts->tv_sec +
108 (double)ts->tv_usec / (double)1000000;
111 static void alloc_mem(void **dst, void **src, size_t length)
113 *dst = zalloc(length);
115 die("memory allocation failed - maybe length is too large?\n");
117 *src = zalloc(length);
119 die("memory allocation failed - maybe length is too large?\n");
122 static u64 do_memcpy_cycle(memcpy_t fn, size_t len, bool prefault)
124 u64 cycle_start = 0ULL, cycle_end = 0ULL;
125 void *src = NULL, *dst = NULL;
128 alloc_mem(&src, &dst, len);
133 cycle_start = get_cycle();
134 for (i = 0; i < iterations; ++i)
136 cycle_end = get_cycle();
140 return cycle_end - cycle_start;
143 static double do_memcpy_gettimeofday(memcpy_t fn, size_t len, bool prefault)
145 struct timeval tv_start, tv_end, tv_diff;
146 void *src = NULL, *dst = NULL;
149 alloc_mem(&src, &dst, len);
154 BUG_ON(gettimeofday(&tv_start, NULL));
155 for (i = 0; i < iterations; ++i)
157 BUG_ON(gettimeofday(&tv_end, NULL));
159 timersub(&tv_end, &tv_start, &tv_diff);
163 return (double)((double)len / timeval2double(&tv_diff));
166 #define pf (no_prefault ? 0 : 1)
168 #define print_bps(x) do { \
170 printf(" %14lf B/Sec", x); \
171 else if (x < K * K) \
172 printf(" %14lfd KB/Sec", x / K); \
173 else if (x < K * K * K) \
174 printf(" %14lf MB/Sec", x / K / K); \
176 printf(" %14lf GB/Sec", x / K / K / K); \
179 int bench_mem_memcpy(int argc, const char **argv,
180 const char *prefix __maybe_unused)
184 double result_bps[2];
187 argc = parse_options(argc, argv, options,
188 bench_mem_memcpy_usage, 0);
193 len = (size_t)perf_atoll((char *)length_str);
195 result_cycle[0] = result_cycle[1] = 0ULL;
196 result_bps[0] = result_bps[1] = 0.0;
199 fprintf(stderr, "Invalid length:%s\n", length_str);
203 /* same to without specifying either of prefault and no-prefault */
204 if (only_prefault && no_prefault)
205 only_prefault = no_prefault = false;
207 for (i = 0; routines[i].name; i++) {
208 if (!strcmp(routines[i].name, routine))
211 if (!routines[i].name) {
212 printf("Unknown routine:%s\n", routine);
213 printf("Available routines...\n");
214 for (i = 0; routines[i].name; i++) {
215 printf("\t%s ... %s\n",
216 routines[i].name, routines[i].desc);
221 if (bench_format == BENCH_FORMAT_DEFAULT)
222 printf("# Copying %s Bytes ...\n\n", length_str);
224 if (!only_prefault && !no_prefault) {
225 /* show both of results */
228 do_memcpy_cycle(routines[i].fn, len, false);
230 do_memcpy_cycle(routines[i].fn, len, true);
233 do_memcpy_gettimeofday(routines[i].fn,
236 do_memcpy_gettimeofday(routines[i].fn,
242 do_memcpy_cycle(routines[i].fn,
246 do_memcpy_gettimeofday(routines[i].fn,
251 switch (bench_format) {
252 case BENCH_FORMAT_DEFAULT:
253 if (!only_prefault && !no_prefault) {
255 printf(" %14lf Cycle/Byte\n",
256 (double)result_cycle[0]
258 printf(" %14lf Cycle/Byte (with prefault)\n",
259 (double)result_cycle[1]
262 print_bps(result_bps[0]);
264 print_bps(result_bps[1]);
265 printf(" (with prefault)\n");
269 printf(" %14lf Cycle/Byte",
270 (double)result_cycle[pf]
273 print_bps(result_bps[pf]);
275 printf("%s\n", only_prefault ? " (with prefault)" : "");
278 case BENCH_FORMAT_SIMPLE:
279 if (!only_prefault && !no_prefault) {
282 (double)result_cycle[0] / (double)len,
283 (double)result_cycle[1] / (double)len);
286 result_bps[0], result_bps[1]);
290 printf("%lf\n", (double)result_cycle[pf]
293 printf("%lf\n", result_bps[pf]);
297 /* reaching this means there's some disaster: */
298 die("unknown format: %d\n", bench_format);