129 lines
3.2 KiB
C
129 lines
3.2 KiB
C
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#include "test/jemalloc_test.h"
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static const uint64_t interval = 1 << 20;
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TEST_BEGIN(test_counter_accum) {
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uint64_t increment = interval >> 4;
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unsigned n = interval / increment;
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uint64_t accum = 0;
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counter_accum_t c;
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counter_accum_init(&c, interval);
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tsd_t *tsd = tsd_fetch();
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bool trigger;
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for (unsigned i = 0; i < n; i++) {
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trigger = counter_accum(tsd_tsdn(tsd), &c, increment);
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accum += increment;
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if (accum < interval) {
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assert_b_eq(trigger, false, "Should not trigger");
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} else {
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assert_b_eq(trigger, true, "Should have triggered");
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}
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}
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assert_b_eq(trigger, true, "Should have triggered");
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}
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TEST_END
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void
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assert_counter_value(counter_accum_t *c, uint64_t v) {
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uint64_t accum;
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#ifdef JEMALLOC_ATOMIC_U64
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accum = atomic_load_u64(&(c->accumbytes), ATOMIC_RELAXED);
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#else
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accum = c->accumbytes;
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#endif
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assert_u64_eq(accum, v, "Counter value mismatch");
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}
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TEST_BEGIN(test_counter_rollback) {
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uint64_t half_interval = interval / 2;
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counter_accum_t c;
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counter_accum_init(&c, interval);
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tsd_t *tsd = tsd_fetch();
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counter_rollback(tsd_tsdn(tsd), &c, half_interval);
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bool trigger;
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trigger = counter_accum(tsd_tsdn(tsd), &c, half_interval);
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assert_b_eq(trigger, false, "Should not trigger");
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counter_rollback(tsd_tsdn(tsd), &c, half_interval + 1);
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assert_counter_value(&c, 0);
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trigger = counter_accum(tsd_tsdn(tsd), &c, half_interval);
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assert_b_eq(trigger, false, "Should not trigger");
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counter_rollback(tsd_tsdn(tsd), &c, half_interval - 1);
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assert_counter_value(&c, 1);
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counter_rollback(tsd_tsdn(tsd), &c, 1);
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assert_counter_value(&c, 0);
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trigger = counter_accum(tsd_tsdn(tsd), &c, half_interval);
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assert_b_eq(trigger, false, "Should not trigger");
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counter_rollback(tsd_tsdn(tsd), &c, 1);
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assert_counter_value(&c, half_interval - 1);
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trigger = counter_accum(tsd_tsdn(tsd), &c, half_interval);
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assert_b_eq(trigger, false, "Should not trigger");
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assert_counter_value(&c, interval - 1);
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trigger = counter_accum(tsd_tsdn(tsd), &c, 1);
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assert_b_eq(trigger, true, "Should have triggered");
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assert_counter_value(&c, 0);
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trigger = counter_accum(tsd_tsdn(tsd), &c, interval + 1);
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assert_b_eq(trigger, true, "Should have triggered");
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assert_counter_value(&c, 1);
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}
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TEST_END
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#define N_THDS (16)
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#define N_ITER_THD (1 << 12)
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#define ITER_INCREMENT (interval >> 4)
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static void *
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thd_start(void *varg) {
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counter_accum_t *c = (counter_accum_t *)varg;
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tsd_t *tsd = tsd_fetch();
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bool trigger;
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uintptr_t n_triggered = 0;
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for (unsigned i = 0; i < N_ITER_THD; i++) {
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trigger = counter_accum(tsd_tsdn(tsd), c, ITER_INCREMENT);
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n_triggered += trigger ? 1 : 0;
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}
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return (void *)n_triggered;
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}
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TEST_BEGIN(test_counter_mt) {
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counter_accum_t shared_c;
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counter_accum_init(&shared_c, interval);
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thd_t thds[N_THDS];
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unsigned i;
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for (i = 0; i < N_THDS; i++) {
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thd_create(&thds[i], thd_start, (void *)&shared_c);
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}
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uint64_t sum = 0;
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for (i = 0; i < N_THDS; i++) {
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void *ret;
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thd_join(thds[i], &ret);
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sum += (uintptr_t)ret;
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}
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assert_u64_eq(sum, N_THDS * N_ITER_THD / (interval / ITER_INCREMENT),
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"Incorrect number of triggers");
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}
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TEST_END
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int
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main(void) {
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return test(
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test_counter_accum,
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test_counter_rollback,
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test_counter_mt);
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}
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