Commit 1469a3d6 authored by John Esmet's avatar John Esmet

Add test to detect a case of bad implicition promotion

parent 06adab50
/* -*- mode: C++; c-basic-offset: 4; indent-tabs-mode: nil -*- */
// vim: ft=cpp:expandtab:ts=8:sw=4:softtabstop=4:
#ident "$Id$"
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TokuDB, Tokutek Fractal Tree Indexing Library.
Copyright (C) 2014 Tokutek, Inc.
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This software is covered by US Patent No. 8,489,638.
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*/
#ident "Copyright (c) 2014 Tokutek Inc. All rights reserved."
#include "test.h"
// Test the following scenario:
// Begin A
// A deletes key K
// A aborts
// Begin B
// B deletes key K-1
// B deletes key K
// B deletes key K+1
// B commits
// Begin C
// C queries K, should read K (not the delete!).
//
// An incorrect mvcc implementation would 'implicitly' promote
// A's delete to committed, based on the fact that the oldest
// referenced xid at the time of injection for key k-1 and k+1
// is greater than A's xid.
static void test_insert_bad_implicit_promotion(void) {
int r;
DB_ENV *env;
r = db_env_create(&env, 0); CKERR(r);
r = env->set_cachesize(env, 1, 0, 1); CKERR(r); // 1gb cache so this test fits in memory
r = env->open(env, TOKU_TEST_FILENAME, DB_CREATE+DB_PRIVATE+DB_INIT_MPOOL+DB_INIT_TXN, 0); CKERR(r);
DB *db;
r = db_create(&db, env, 0); CKERR(r);
r = db->set_pagesize(db, 4096); CKERR(r);
r = db->open(db, NULL, "db", NULL, DB_BTREE, DB_CREATE, 0666); CKERR(r);
const int val_size = 512;
DBT key;
DBT val;
char *XMALLOC_N(val_size, val_buf);
memset(val_buf, 'x', val_size);
dbt_init(&val, val_buf, val_size);
// Insert rows [0, N]
const int N = 1000;
for (int i = 0; i < N; i++) {
int k = toku_htonl(i);
dbt_init(&key, &k, sizeof(k));
r = db->put(db, NULL, &key, &val, 0); CKERR(r);
}
int key_500 = toku_htonl(500);
int key_499 = toku_htonl(499);
int key_501 = toku_htonl(501);
// sanity check our keys
r = db->get(db, NULL, dbt_init(&key, &key_500, sizeof(key_500)), &val, 0); CKERR(r);
r = db->get(db, NULL, dbt_init(&key, &key_500, sizeof(key_499)), &val, 0); CKERR(r);
r = db->get(db, NULL, dbt_init(&key, &key_500, sizeof(key_501)), &val, 0); CKERR(r);
// Abort a delete for key 500
DB_TXN *txn_A;
r = env->txn_begin(env, NULL, &txn_A, DB_SERIALIZABLE); CKERR(r);
dbt_init(&key, &key_500, sizeof(key_500));
r = db->del(db, NULL, &key, 0); CKERR(r);
r = txn_A->abort(txn_A); CKERR(r);
// Commit two deletes on keys 499 and 501. This should inject
// at least one message in the same buffer that has the delete/abort
// messages for key 500.
DB_TXN *txn_B;
r = env->txn_begin(env, NULL, &txn_B, DB_SERIALIZABLE); CKERR(r);
dbt_init(&key, &key_499, sizeof(key_499));
r = db->del(db, NULL, &key, 0); CKERR(r);
dbt_init(&key, &key_501, sizeof(key_501));
r = db->del(db, NULL, &key, 0); CKERR(r);
r = txn_B->commit(txn_B, 0); CKERR(r);
// No transactions are live - so when we create txn C, the oldest
// referenced xid will be txn C. If our implicit promotion logic is
// wrong, we will use txn C's xid to promote the delete on key 500
// before the abort message hits it, and C's query will return nothing.
DB_TXN *txn_C;
dbt_init(&key, &key_500, sizeof(key_500));
r = env->txn_begin(env, NULL, &txn_C, DB_TXN_SNAPSHOT); CKERR(r);
r = db->get(db, txn_B, &key, &val, 0); CKERR(r);
r = txn_C->commit(txn_C, 0); CKERR(r);
toku_free(val_buf);
r = db->close(db, 0); CKERR(r);
r = env->close(env, 0); CKERR(r);
}
int
test_main(int argc, char *const argv[]) {
parse_args(argc, argv);
toku_os_recursive_delete(TOKU_TEST_FILENAME);
int r = toku_os_mkdir(TOKU_TEST_FILENAME, S_IRWXU+S_IRWXG+S_IRWXO); CKERR(r);
test_insert_bad_implicit_promotion();
return 0;
}
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