mariadb/ft/tests/cachetable-simple-clone.c
Leif Walsh 3719bf2c2f [t:4901] merging brt->ft rename to main
git-svn-id: file:///svn/toku/tokudb@43686 c7de825b-a66e-492c-adef-691d508d4ae1
2013-04-17 00:00:35 -04:00

153 lines
4.9 KiB
C

#ident "$Id: cachetable-simple-verify.c 39504 2012-02-03 16:19:33Z zardosht $"
#ident "Copyright (c) 2007-2011 Tokutek Inc. All rights reserved."
#include "includes.h"
#include "test.h"
BOOL clone_called;
BOOL check_flush;
BOOL flush_expected;
BOOL flush_called;
static void
clone_callback(void* UU(value_data), void** cloned_value_data, PAIR_ATTR* new_attr, BOOL UU(for_checkpoint), void* UU(write_extraargs))
{
*cloned_value_data = (void *)1;
new_attr->is_valid = FALSE;
clone_called = TRUE;
}
static void
flush (
CACHEFILE f __attribute__((__unused__)),
int UU(fd),
CACHEKEY k __attribute__((__unused__)),
void *v __attribute__((__unused__)),
void** UU(dd),
void *e __attribute__((__unused__)),
PAIR_ATTR s __attribute__((__unused__)),
PAIR_ATTR* new_size __attribute__((__unused__)),
BOOL w __attribute__((__unused__)),
BOOL keep __attribute__((__unused__)),
BOOL c __attribute__((__unused__)),
BOOL UU(is_clone)
)
{
if (w) usleep(5*1024*1024);
if (w && check_flush) {
assert(flush_expected);
if (clone_called) assert(is_clone);
}
flush_called = TRUE;
if (is_clone) assert(!keep);
}
static uint64_t tdelta_usec(struct timeval *tend, struct timeval *tstart) {
uint64_t t = tend->tv_sec * 1000000 + tend->tv_usec;
t -= tstart->tv_sec * 1000000 + tstart->tv_usec;
return t;
}
//
// test the following things for simple cloning:
// - if the pending pair is clean, nothing gets written
// - if the pending pair is dirty and cloneable, then pair is written
// in background and get_and_pin returns immedietely
// - if the pending pair is dirty and not cloneable, then get_and_pin
// blocks until the pair is written out
//
static void
test_clean (enum cachetable_dirty dirty, BOOL cloneable) {
const int test_limit = 12;
int r;
CACHETABLE ct;
r = toku_create_cachetable(&ct, test_limit, ZERO_LSN, NULL_LOGGER); assert(r == 0);
char fname1[] = __SRCFILE__ "test1.dat";
unlink(fname1);
CACHEFILE f1;
r = toku_cachetable_openf(&f1, ct, fname1, O_RDWR|O_CREAT, S_IRWXU|S_IRWXG|S_IRWXO); assert(r == 0);
void* v1;
long s1;
CACHETABLE_WRITE_CALLBACK wc = def_write_callback(NULL);
wc.clone_callback = cloneable ? clone_callback : NULL;
wc.flush_callback = flush;
r = toku_cachetable_get_and_pin(f1, make_blocknum(1), 1, &v1, &s1, wc, def_fetch, def_pf_req_callback, def_pf_callback, TRUE, NULL);
r = toku_cachetable_unpin(f1, make_blocknum(1), 1, dirty, make_pair_attr(8));
check_flush = TRUE;
clone_called = FALSE;
flush_expected = (dirty == CACHETABLE_DIRTY) ? TRUE : FALSE;
flush_called = FALSE;
// begin checkpoint, since pair is clean, we should not
// have the clone called
r = toku_cachetable_begin_checkpoint(ct, NULL);
assert_zero(r);
struct timeval tstart;
struct timeval tend;
gettimeofday(&tstart, NULL);
// test that having a pin that passes FALSE for may_modify_value does not stall behind checkpoint
r = toku_cachetable_get_and_pin(f1, make_blocknum(1), 1, &v1, &s1, wc, def_fetch, def_pf_req_callback, def_pf_callback, FALSE, NULL);
r = toku_cachetable_unpin(f1, make_blocknum(1), 1, CACHETABLE_CLEAN, make_pair_attr(8));
gettimeofday(&tend, NULL);
assert(tdelta_usec(&tend, &tstart) <= 2000000);
assert(!clone_called);
r = toku_cachetable_get_and_pin(f1, make_blocknum(1), 1, &v1, &s1, wc, def_fetch, def_pf_req_callback, def_pf_callback, TRUE, NULL);
gettimeofday(&tend, NULL);
// we take 5 seconds for a write
// we check if time to pin is less than 2 seconds, if it is
// then we know act of cloning worked properly
if (cloneable || !dirty ) {
assert(tdelta_usec(&tend, &tstart) <= 2000000);
}
else {
assert(tdelta_usec(&tend, &tstart) >= 2000000);
}
if (dirty == CACHETABLE_DIRTY && cloneable) {
assert(clone_called);
}
else {
assert(!clone_called);
}
// at this point, there should be no more dirty writes
r = toku_cachetable_unpin(f1, make_blocknum(1), 1, CACHETABLE_CLEAN, make_pair_attr(8));
gettimeofday(&tend, NULL);
if (cloneable || !dirty ) {
assert(tdelta_usec(&tend, &tstart) <= 2000000);
}
else {
assert(tdelta_usec(&tend, &tstart) >= 2000000);
}
r = toku_cachetable_end_checkpoint(
ct,
NULL,
fake_ydb_lock,
fake_ydb_unlock,
NULL,
NULL
);
assert_zero(r);
check_flush = FALSE;
toku_cachetable_verify(ct);
r = toku_cachefile_close(&f1, 0, FALSE, ZERO_LSN); assert(r == 0);
r = toku_cachetable_close(&ct); lazy_assert_zero(r);
}
int
test_main(int argc, const char *argv[]) {
default_parse_args(argc, argv);
test_clean(CACHETABLE_CLEAN, TRUE);
test_clean(CACHETABLE_DIRTY, TRUE);
test_clean(CACHETABLE_CLEAN, FALSE);
test_clean(CACHETABLE_DIRTY, FALSE);
return 0;
}