2 * fp-bench.c - A collection of simple floating point microbenchmarks.
4 * Copyright (C) 2018, Emilio G. Cota <cota@braap.org>
6 * License: GNU GPL, version 2 or later.
7 * See the COPYING file in the top-level directory.
10 #error Must define HW_POISON_H to work around TARGET_* poisoning
13 #include "qemu/osdep.h"
16 #include "qemu/timer.h"
17 #include "fpu/softfloat.h"
19 /* amortize the computation of random inputs */
20 #define OPS_PER_ITER 50000
22 #define MAX_OPERANDS 3
24 #define SEED_A 0xdeadfacedeadface
25 #define SEED_B 0xbadc0feebadc0fee
26 #define SEED_C 0xbeefdeadbeefdead
39 static const char * const op_names
[] = {
67 static const char * const round_names
[] = {
68 [ROUND_EVEN
] = "even",
69 [ROUND_ZERO
] = "zero",
70 [ROUND_DOWN
] = "down",
72 [ROUND_TIEAWAY
] = "tieaway",
81 static const char * const tester_names
[] = {
82 [TESTER_SOFT
] = "soft",
83 [TESTER_HOST
] = "host",
84 [TESTER_MAX_NR
] = NULL
,
97 typedef float (*float_func_t
)(const struct op_state
*s
);
98 typedef double (*double_func_t
)(const struct op_state
*s
);
101 float_func_t float_func
;
102 double_func_t double_func
;
105 typedef void (*bench_func_t
)(void);
108 const char * const name
;
111 #define DEFAULT_DURATION_SECS 1
113 static uint64_t random_ops
[MAX_OPERANDS
] = {
114 SEED_A
, SEED_B
, SEED_C
,
116 static float_status soft_status
;
117 static enum precision precision
;
118 static enum op operation
;
119 static enum tester tester
;
120 static uint64_t n_completed_ops
;
121 static unsigned int duration
= DEFAULT_DURATION_SECS
;
122 static int64_t ns_elapsed
;
123 /* disable optimizations with volatile */
124 static volatile union fp res
;
127 * From: https://en.wikipedia.org/wiki/Xorshift
128 * This is faster than rand_r(), and gives us a wider range (RAND_MAX is only
129 * guaranteed to be >= INT_MAX).
131 static uint64_t xorshift64star(uint64_t x
)
133 x
^= x
>> 12; /* a */
134 x
^= x
<< 25; /* b */
135 x
^= x
>> 27; /* c */
136 return x
* UINT64_C(2685821657736338717);
139 static void update_random_ops(int n_ops
, enum precision prec
)
143 for (i
= 0; i
< n_ops
; i
++) {
144 uint64_t r
= random_ops
[i
];
150 r
= xorshift64star(r
);
151 } while (!float32_is_normal(r
));
156 r
= xorshift64star(r
);
157 } while (!float64_is_normal(r
));
160 g_assert_not_reached();
166 static void fill_random(union fp
*ops
, int n_ops
, enum precision prec
,
171 for (i
= 0; i
< n_ops
; i
++) {
175 ops
[i
].f32
= make_float32(random_ops
[i
]);
176 if (no_neg
&& float32_is_neg(ops
[i
].f32
)) {
177 ops
[i
].f32
= float32_chs(ops
[i
].f32
);
182 ops
[i
].f64
= make_float64(random_ops
[i
]);
183 if (no_neg
&& float64_is_neg(ops
[i
].f64
)) {
184 ops
[i
].f64
= float64_chs(ops
[i
].f64
);
188 g_assert_not_reached();
194 * The main benchmark function. Instead of (ab)using macros, we rely
195 * on the compiler to unfold this at compile-time.
197 static void bench(enum precision prec
, enum op op
, int n_ops
, bool no_neg
)
199 int64_t tf
= get_clock() + duration
* 1000000000LL;
201 while (get_clock() < tf
) {
202 union fp ops
[MAX_OPERANDS
];
206 update_random_ops(n_ops
, prec
);
209 fill_random(ops
, n_ops
, prec
, no_neg
);
211 for (i
= 0; i
< OPS_PER_ITER
; i
++) {
230 res
.f
= fmaf(a
, b
, c
);
236 res
.u64
= isgreater(a
, b
);
239 g_assert_not_reached();
244 fill_random(ops
, n_ops
, prec
, no_neg
);
246 for (i
= 0; i
< OPS_PER_ITER
; i
++) {
265 res
.d
= fma(a
, b
, c
);
271 res
.u64
= isgreater(a
, b
);
274 g_assert_not_reached();
279 fill_random(ops
, n_ops
, prec
, no_neg
);
281 for (i
= 0; i
< OPS_PER_ITER
; i
++) {
282 float32 a
= ops
[0].f32
;
283 float32 b
= ops
[1].f32
;
284 float32 c
= ops
[2].f32
;
288 res
.f32
= float32_add(a
, b
, &soft_status
);
291 res
.f32
= float32_sub(a
, b
, &soft_status
);
294 res
.f
= float32_mul(a
, b
, &soft_status
);
297 res
.f32
= float32_div(a
, b
, &soft_status
);
300 res
.f32
= float32_muladd(a
, b
, c
, 0, &soft_status
);
303 res
.f32
= float32_sqrt(a
, &soft_status
);
306 res
.u64
= float32_compare_quiet(a
, b
, &soft_status
);
309 g_assert_not_reached();
314 fill_random(ops
, n_ops
, prec
, no_neg
);
316 for (i
= 0; i
< OPS_PER_ITER
; i
++) {
317 float64 a
= ops
[0].f64
;
318 float64 b
= ops
[1].f64
;
319 float64 c
= ops
[2].f64
;
323 res
.f64
= float64_add(a
, b
, &soft_status
);
326 res
.f64
= float64_sub(a
, b
, &soft_status
);
329 res
.f
= float64_mul(a
, b
, &soft_status
);
332 res
.f64
= float64_div(a
, b
, &soft_status
);
335 res
.f64
= float64_muladd(a
, b
, c
, 0, &soft_status
);
338 res
.f64
= float64_sqrt(a
, &soft_status
);
341 res
.u64
= float64_compare_quiet(a
, b
, &soft_status
);
344 g_assert_not_reached();
349 g_assert_not_reached();
351 ns_elapsed
+= get_clock() - t0
;
352 n_completed_ops
+= OPS_PER_ITER
;
356 #define GEN_BENCH(name, type, prec, op, n_ops) \
357 static void __attribute__((flatten)) name(void) \
359 bench(prec, op, n_ops, false); \
362 #define GEN_BENCH_NO_NEG(name, type, prec, op, n_ops) \
363 static void __attribute__((flatten)) name(void) \
365 bench(prec, op, n_ops, true); \
368 #define GEN_BENCH_ALL_TYPES(opname, op, n_ops) \
369 GEN_BENCH(bench_ ## opname ## _float, float, PREC_SINGLE, op, n_ops) \
370 GEN_BENCH(bench_ ## opname ## _double, double, PREC_DOUBLE, op, n_ops) \
371 GEN_BENCH(bench_ ## opname ## _float32, float32, PREC_FLOAT32, op, n_ops) \
372 GEN_BENCH(bench_ ## opname ## _float64, float64, PREC_FLOAT64, op, n_ops)
374 GEN_BENCH_ALL_TYPES(add
, OP_ADD
, 2)
375 GEN_BENCH_ALL_TYPES(sub
, OP_SUB
, 2)
376 GEN_BENCH_ALL_TYPES(mul
, OP_MUL
, 2)
377 GEN_BENCH_ALL_TYPES(div
, OP_DIV
, 2)
378 GEN_BENCH_ALL_TYPES(fma
, OP_FMA
, 3)
379 GEN_BENCH_ALL_TYPES(cmp
, OP_CMP
, 2)
380 #undef GEN_BENCH_ALL_TYPES
382 #define GEN_BENCH_ALL_TYPES_NO_NEG(name, op, n) \
383 GEN_BENCH_NO_NEG(bench_ ## name ## _float, float, PREC_SINGLE, op, n) \
384 GEN_BENCH_NO_NEG(bench_ ## name ## _double, double, PREC_DOUBLE, op, n) \
385 GEN_BENCH_NO_NEG(bench_ ## name ## _float32, float32, PREC_FLOAT32, op, n) \
386 GEN_BENCH_NO_NEG(bench_ ## name ## _float64, float64, PREC_FLOAT64, op, n)
388 GEN_BENCH_ALL_TYPES_NO_NEG(sqrt
, OP_SQRT
, 1)
389 #undef GEN_BENCH_ALL_TYPES_NO_NEG
391 #undef GEN_BENCH_NO_NEG
394 #define GEN_BENCH_FUNCS(opname, op) \
396 [PREC_SINGLE] = bench_ ## opname ## _float, \
397 [PREC_DOUBLE] = bench_ ## opname ## _double, \
398 [PREC_FLOAT32] = bench_ ## opname ## _float32, \
399 [PREC_FLOAT64] = bench_ ## opname ## _float64, \
402 static const bench_func_t bench_funcs
[OP_MAX_NR
][PREC_MAX_NR
] = {
403 GEN_BENCH_FUNCS(add
, OP_ADD
),
404 GEN_BENCH_FUNCS(sub
, OP_SUB
),
405 GEN_BENCH_FUNCS(mul
, OP_MUL
),
406 GEN_BENCH_FUNCS(div
, OP_DIV
),
407 GEN_BENCH_FUNCS(fma
, OP_FMA
),
408 GEN_BENCH_FUNCS(sqrt
, OP_SQRT
),
409 GEN_BENCH_FUNCS(cmp
, OP_CMP
),
412 #undef GEN_BENCH_FUNCS
414 static void run_bench(void)
418 f
= bench_funcs
[operation
][precision
];
423 /* @arr must be NULL-terminated */
424 static int find_name(const char * const *arr
, const char *name
)
428 for (i
= 0; arr
[i
] != NULL
; i
++) {
429 if (strcmp(name
, arr
[i
]) == 0) {
436 static void usage_complete(int argc
, char *argv
[])
438 gchar
*op_list
= g_strjoinv(", ", (gchar
**)op_names
);
439 gchar
*tester_list
= g_strjoinv(", ", (gchar
**)tester_names
);
441 fprintf(stderr
, "Usage: %s [options]\n", argv
[0]);
442 fprintf(stderr
, "options:\n");
443 fprintf(stderr
, " -d = duration, in seconds. Default: %d\n",
444 DEFAULT_DURATION_SECS
);
445 fprintf(stderr
, " -h = show this help message.\n");
446 fprintf(stderr
, " -o = floating point operation (%s). Default: %s\n",
447 op_list
, op_names
[0]);
448 fprintf(stderr
, " -p = floating point precision (single, double). "
449 "Default: single\n");
450 fprintf(stderr
, " -r = rounding mode (even, zero, down, up, tieaway). "
452 fprintf(stderr
, " -t = tester (%s). Default: %s\n",
453 tester_list
, tester_names
[0]);
454 fprintf(stderr
, " -z = flush inputs to zero (soft tester only). "
455 "Default: disabled\n");
456 fprintf(stderr
, " -Z = flush output to zero (soft tester only). "
457 "Default: disabled\n");
463 static int round_name_to_mode(const char *name
)
467 for (i
= 0; i
< N_ROUND_MODES
; i
++) {
468 if (!strcmp(round_names
[i
], name
)) {
475 static void QEMU_NORETURN
die_host_rounding(enum rounding rounding
)
477 fprintf(stderr
, "fatal: '%s' rounding not supported on this host\n",
478 round_names
[rounding
]);
482 static void set_host_precision(enum rounding rounding
)
488 rhost
= FE_TONEAREST
;
491 rhost
= FE_TOWARDZERO
;
500 die_host_rounding(rounding
);
503 g_assert_not_reached();
506 if (fesetround(rhost
)) {
507 die_host_rounding(rounding
);
511 static void set_soft_precision(enum rounding rounding
)
517 mode
= float_round_nearest_even
;
520 mode
= float_round_to_zero
;
523 mode
= float_round_down
;
526 mode
= float_round_up
;
529 mode
= float_round_ties_away
;
532 g_assert_not_reached();
534 soft_status
.float_rounding_mode
= mode
;
537 static void parse_args(int argc
, char *argv
[])
541 int rounding
= ROUND_EVEN
;
544 c
= getopt(argc
, argv
, "d:ho:p:r:t:zZ");
550 duration
= atoi(optarg
);
553 usage_complete(argc
, argv
);
556 val
= find_name(op_names
, optarg
);
558 fprintf(stderr
, "Unsupported op '%s'\n", optarg
);
564 if (!strcmp(optarg
, "single")) {
565 precision
= PREC_SINGLE
;
566 } else if (!strcmp(optarg
, "double")) {
567 precision
= PREC_DOUBLE
;
569 fprintf(stderr
, "Unsupported precision '%s'\n", optarg
);
574 rounding
= round_name_to_mode(optarg
);
576 fprintf(stderr
, "fatal: invalid rounding mode '%s'\n", optarg
);
581 val
= find_name(tester_names
, optarg
);
583 fprintf(stderr
, "Unsupported tester '%s'\n", optarg
);
589 soft_status
.flush_inputs_to_zero
= 1;
592 soft_status
.flush_to_zero
= 1;
597 /* set precision and rounding mode based on the tester */
600 set_host_precision(rounding
);
603 set_soft_precision(rounding
);
606 precision
= PREC_FLOAT32
;
609 precision
= PREC_FLOAT64
;
612 g_assert_not_reached();
616 g_assert_not_reached();
620 static void pr_stats(void)
622 printf("%.2f MFlops\n", (double)n_completed_ops
/ ns_elapsed
* 1e3
);
625 int main(int argc
, char *argv
[])
627 parse_args(argc
, argv
);