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			208 lines
		
	
	
	
		
			7.1 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			208 lines
		
	
	
	
		
			7.1 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/* -*- mode: C++; c-basic-offset: 4; indent-tabs-mode: nil -*- */
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// vim: ft=cpp:expandtab:ts=8:sw=4:softtabstop=4:
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#ident "$Id$"
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/*======
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This file is part of PerconaFT.
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Copyright (c) 2006, 2015, Percona and/or its affiliates. All rights reserved.
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    PerconaFT is free software: you can redistribute it and/or modify
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    it under the terms of the GNU General Public License, version 2,
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    as published by the Free Software Foundation.
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    PerconaFT is distributed in the hope that it will be useful,
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    but WITHOUT ANY WARRANTY; without even the implied warranty of
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    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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    GNU General Public License for more details.
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    You should have received a copy of the GNU General Public License
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    along with PerconaFT.  If not, see <http://www.gnu.org/licenses/>.
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----------------------------------------
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    PerconaFT is free software: you can redistribute it and/or modify
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    it under the terms of the GNU Affero General Public License, version 3,
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    as published by the Free Software Foundation.
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    PerconaFT is distributed in the hope that it will be useful,
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    but WITHOUT ANY WARRANTY; without even the implied warranty of
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    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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    GNU Affero General Public License for more details.
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    You should have received a copy of the GNU Affero General Public License
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    along with PerconaFT.  If not, see <http://www.gnu.org/licenses/>.
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======= */
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#ident                                                                         \
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    "Copyright (c) 2006, 2015, Percona and/or its affiliates. All rights reserved."
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/* The goal of this test.  Make sure that inserts stay behind deletes. */
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#include "test.h"
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#include "cachetable/checkpoint.h"
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#include "ft-flusher-internal.h"
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#include "ft-flusher.h"
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#include <ft-cachetable-wrappers.h>
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static TOKUTXN const null_txn = 0;
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enum { NODESIZE = 1024, KSIZE = NODESIZE - 100, TOKU_PSIZE = 20 };
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CACHETABLE ct;
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FT_HANDLE ft;
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const char *fname = TOKU_TEST_FILENAME;
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static int update_func(DB *UU(db), const DBT *key, const DBT *old_val,
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                       const DBT *UU(extra),
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                       void (*set_val)(const DBT *new_val, void *set_extra),
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                       void *set_extra) {
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  DBT new_val;
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  assert(old_val->size > 0);
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  if (verbose) {
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    printf("applying update to %s\n", (char *)key->data);
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  }
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  toku_init_dbt(&new_val);
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  set_val(&new_val, set_extra);
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  return 0;
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}
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// callback functions for toku_ft_flush_some_child
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static bool destroy_bn(void *UU(extra)) { return true; }
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static bool recursively_flush_should_not_happen(FTNODE UU(child),
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                                                void *UU(extra)) {
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  assert(false);
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}
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static int child_to_flush(FT UU(h), FTNODE parent, void *UU(extra)) {
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  assert(parent->height == 1);
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  assert(parent->n_children == 1);
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  return 0;
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}
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static void dummy_update_status(FTNODE UU(child), int UU(dirtied),
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                                void *UU(extra)) {}
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static void doit() {
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  BLOCKNUM node_leaf;
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  BLOCKNUM node_root;
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  BLOCKNUM node_internal;
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  int r;
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  toku_cachetable_create(&ct, 500 * 1024 * 1024, ZERO_LSN, nullptr);
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  unlink(fname);
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  r = toku_open_ft_handle(fname, 1, &ft, NODESIZE, NODESIZE / 2,
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                          TOKU_DEFAULT_COMPRESSION_METHOD, ct, null_txn,
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                          toku_builtin_compare_fun);
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  assert(r == 0);
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  ft->options.update_fun = update_func;
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  ft->ft->update_fun = update_func;
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  toku_testsetup_initialize(); // must precede any other toku_testsetup calls
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  char *pivots[1];
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  pivots[0] = toku_strdup("kkkkk");
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  int pivot_len = 6;
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  r = toku_testsetup_leaf(ft, &node_leaf, 2, pivots, &pivot_len);
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  assert(r == 0);
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  toku_free(pivots[0]);
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  r = toku_testsetup_nonleaf(ft, 1, &node_internal, 1, &node_leaf, 0, 0);
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  assert(r == 0);
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  r = toku_testsetup_nonleaf(ft, 2, &node_root, 1, &node_internal, 0, 0);
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  assert(r == 0);
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  r = toku_testsetup_root(ft, node_root);
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  assert(r == 0);
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  r = toku_testsetup_insert_to_leaf(ft, node_leaf,
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                                    "a", // key
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                                    2,   // keylen
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                                    "aa", 3);
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  assert(r == 0);
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  r = toku_testsetup_insert_to_leaf(ft, node_leaf,
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                                    "z", // key
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                                    2,   // keylen
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                                    "zz", 3);
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  assert(r == 0);
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  char filler[400];
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  memset(filler, 0, sizeof(filler));
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  // now we insert filler data so that the rebalance
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  // keeps it at two nodes
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  r = toku_testsetup_insert_to_leaf(ft, node_leaf,
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                                    "b", // key
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                                    2,   // keylen
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                                    filler, sizeof(filler));
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  assert(r == 0);
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  r = toku_testsetup_insert_to_leaf(ft, node_leaf,
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                                    "y", // key
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                                    2,   // keylen
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                                    filler, sizeof(filler));
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  assert(r == 0);
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  r = toku_testsetup_insert_to_nonleaf(ft, node_internal, FT_INSERT,
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                                       "a", // key
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                                       2,   // keylen
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                                       "yy", 3);
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  assert(r == 0);
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  r = toku_testsetup_insert_to_nonleaf(ft, node_root, FT_INSERT,
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                                       "a", // key
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                                       2,   // keylen
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                                       "zz", 3);
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  assert(r == 0);
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  // at this point of time, the logical row count will be 6. This has to be
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  // manually set up as the tests work under the interface of the ft_send_msg
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  ft->ft->in_memory_logical_rows = 6;
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  // now run a checkpoint to get everything clean
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  CHECKPOINTER cp = toku_cachetable_get_checkpointer(ct);
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  r = toku_checkpoint(cp, NULL, NULL, NULL, NULL, NULL, CLIENT_CHECKPOINT);
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  assert_zero(r);
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  // now do a lookup on one of the keys, this should bring a leaf node up to
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  // date
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  DBT k;
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  struct check_pair pair = {2, "a", 3, "zz", 0};
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  r = toku_ft_lookup(ft, toku_fill_dbt(&k, "a", 2), lookup_checkf, &pair);
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  assert(r == 0);
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  assert(ft->ft->in_memory_logical_rows == 4);
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  // now lock and release the leaf node to make sure it is what we expect it to
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  // be.
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  FTNODE node = NULL;
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  ftnode_fetch_extra bfe;
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  bfe.create_for_min_read(ft->ft);
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  toku_pin_ftnode_with_dep_nodes(
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      ft->ft, node_internal, toku_cachetable_hash(ft->ft->cf, node_internal),
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      &bfe, PL_WRITE_EXPENSIVE, 0, NULL, &node, true);
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  assert(node->height == 1);
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  assert(node->n_children == 1);
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  struct flusher_advice fa;
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  flusher_advice_init(&fa, child_to_flush, destroy_bn,
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                      recursively_flush_should_not_happen, default_merge_child,
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                      dummy_update_status, default_pick_child_after_split,
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                      NULL);
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  // do the flush which forces an evict of the leaf. logical row count back to
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  // 6 before the flush
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  toku_ft_flush_some_child(ft->ft, node, &fa);
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  assert(ft->ft->in_memory_logical_rows == 5);
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  r = toku_close_ft_handle_nolsn(ft, 0);
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  assert(r == 0);
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  toku_cachetable_close(&ct);
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}
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int test_main(int argc __attribute__((__unused__)),
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              const char *argv[] __attribute__((__unused__))) {
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  default_parse_args(argc, argv);
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  doit();
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  return 0;
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}
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