mariadb/newbrt/tests/verify-unsorted-leaf.c
Zardosht Kasheff 7db834d5c9 [t:4765], remove usage of txn OMTs from toku_brt_root_put_cmd
git-svn-id: file:///svn/toku/tokudb@43494 c7de825b-a66e-492c-adef-691d508d4ae1
2013-04-17 00:00:29 -04:00

117 lines
3 KiB
C

/* -*- mode: C; c-basic-offset: 4; indent-tabs-mode: nil -*- */
#ident "$Id$"
#ident "Copyright (c) 2011 Tokutek Inc. All rights reserved."
// generate a tree with a single leaf node containing unsorted keys
// check that brt verify finds them
#include "includes.h"
#include <brt-cachetable-wrappers.h>
#include "test.h"
static BRTNODE
make_node(BRT brt, int height) {
BRTNODE node = NULL;
int n_children = (height == 0) ? 1 : 0;
toku_create_new_brtnode(brt, &node, height, n_children);
if (n_children) BP_STATE(node,0) = PT_AVAIL;
return node;
}
static void
append_leaf(BRTNODE leafnode, void *key, size_t keylen, void *val, size_t vallen) {
assert(leafnode->height == 0);
DBT thekey = { .data = key, .size = keylen };
DBT theval = { .data = val, .size = vallen };
// get an index that we can use to create a new leaf entry
uint32_t idx = toku_omt_size(BLB_BUFFER(leafnode, 0));
// apply an insert to the leaf node
MSN msn = next_dummymsn();
BRT_MSG_S cmd = { BRT_INSERT, msn, xids_get_root_xids(), .u.id = { &thekey, &theval } };
brt_leaf_apply_cmd_once(leafnode, BLB(leafnode, 0), &cmd, idx, NULL, NULL);
// dont forget to dirty the node
leafnode->dirty = 1;
}
static void
populate_leaf(BRTNODE leafnode, int k, int v) {
append_leaf(leafnode, &k, sizeof k, &v, sizeof v);
}
static void
test_dup_in_leaf(int do_verify) {
int r;
// cleanup
char fname[]= __FILE__ ".brt";
r = unlink(fname);
assert(r == 0 || (r == -1 && errno == ENOENT));
// create a cachetable
CACHETABLE ct = NULL;
r = toku_brt_create_cachetable(&ct, 0, ZERO_LSN, NULL_LOGGER);
assert(r == 0);
// create the brt
TOKUTXN null_txn = NULL;
BRT brt = NULL;
r = toku_open_brt(fname, 1, &brt, 1024, 256, ct, null_txn, toku_builtin_compare_fun);
assert(r == 0);
// discard the old root block
BRTNODE newroot = make_node(brt, 0);
populate_leaf(newroot, htonl(2), 1);
populate_leaf(newroot, htonl(1), 2);
// set the new root to point to the new tree
toku_brtheader_set_new_root_blocknum(brt->h, newroot->thisnodename);
// unpin the new root
toku_unpin_brtnode(brt->h, newroot);
if (do_verify) {
r = toku_verify_brt(brt);
assert(r != 0);
}
// flush to the file system
r = toku_close_brt_nolsn(brt, 0);
assert(r == 0);
// shutdown the cachetable
r = toku_cachetable_close(&ct);
assert(r == 0);
}
static int
usage(void) {
return 1;
}
int
test_main (int argc , const char *argv[]) {
int do_verify = 1;
initialize_dummymsn();
for (int i = 1; i < argc; i++) {
const char *arg = argv[i];
if (strcmp(arg, "-v") == 0) {
verbose++;
continue;
}
if (strcmp(arg, "-q") == 0) {
verbose = 0;
continue;
}
if (strcmp(arg, "--verify") == 0 && i+1 < argc) {
do_verify = atoi(argv[++i]);
continue;
}
return usage();
}
test_dup_in_leaf(do_verify);
return 0;
}