mariadb/newbrt/log_upgrade.c
Barry Perlman 722bd044ff [t:2892] Improve upgrade footprint/status.
git-svn-id: file:///svn/toku/tokudb@25770 c7de825b-a66e-492c-adef-691d508d4ae1
2013-04-16 23:59:31 -04:00

222 lines
7 KiB
C

/* -*- mode: C; c-basic-offset: 4 -*- */
#ident "$Id$"
#ident "Copyright (c) 2007-2010 Tokutek Inc. All rights reserved."
#ident "The technology is licensed by the Massachusetts Institute of Technology, Rutgers State University of New Jersey, and the Research Foundation of State University of New York at Stony Brook under United States of America Serial No. 11/760379 and to the patents and/or patent applications resulting from it."
#include "includes.h"
#include "log_header.h"
#include "checkpoint.h"
static uint64_t footprint = 0; // for debug and accountability
uint64_t
toku_log_upgrade_get_footprint(void) {
return footprint;
}
// Footprint concept here is that each function increments a different decimal digit.
// The cumulative total shows the path taken for the upgrade.
// Each function must have a single return for this to work.
#define FOOTPRINT(x) function_footprint=(x*footprint_increment)
#define FOOTPRINTSETUP(increment) uint64_t function_footprint = 0; uint64_t footprint_increment=increment;
#define FOOTPRINTCAPTURE footprint+=function_footprint;
// return 0 if clean shutdown, TOKUDB_UPGRADE_FAILURE if not clean shutdown
static int
verify_clean_shutdown_of_log_version_current(const char *log_dir, LSN * last_lsn) {
int rval = TOKUDB_UPGRADE_FAILURE;
TOKULOGCURSOR cursor = NULL;
int r;
FOOTPRINTSETUP(100);
FOOTPRINT(1);
r = toku_logcursor_create(&cursor, log_dir);
assert(r == 0);
struct log_entry *le = NULL;
r = toku_logcursor_last(cursor, &le);
if (r == 0) {
FOOTPRINT(2);
if (le->cmd==LT_shutdown) {
LSN lsn = le->u.shutdown.lsn;
if (last_lsn)
*last_lsn = lsn;
rval = 0;
}
}
r = toku_logcursor_destroy(&cursor);
assert(r == 0);
FOOTPRINTCAPTURE;
return rval;
}
// return 0 if clean shutdown, TOKUDB_UPGRADE_FAILURE if not clean shutdown
static int
verify_clean_shutdown_of_log_version_old(const char *log_dir, LSN * last_lsn) {
int rval = TOKUDB_UPGRADE_FAILURE;
int r;
FOOTPRINTSETUP(10);
FOOTPRINT(1);
int n_logfiles;
char **logfiles;
r = toku_logger_find_logfiles(log_dir, &logfiles, &n_logfiles);
if (r!=0) return r;
char *basename;
TOKULOGCURSOR cursor;
struct log_entry *entry;
// Only look at newest log
// basename points to first char after last / in file pathname
basename = strrchr(logfiles[n_logfiles-1], '/') + 1;
int version;
long long index = -1;
r = sscanf(basename, "log%lld.tokulog%d", &index, &version);
assert(r==2); // found index and version
assert(version>=TOKU_LOG_MIN_SUPPORTED_VERSION);
assert(version< TOKU_LOG_VERSION); //Must be old
// find last LSN
r = toku_logcursor_create_for_file(&cursor, log_dir, basename);
if (r==0) {
r = toku_logcursor_last(cursor, &entry);
if (r == 0) {
FOOTPRINT(2);
if (entry->cmd==LT_shutdown) {
LSN lsn = entry->u.shutdown.lsn;
if (last_lsn)
*last_lsn = lsn;
rval = 0;
}
}
r = toku_logcursor_destroy(&cursor);
assert(r == 0);
}
for(int i=0;i<n_logfiles;i++) {
toku_free(logfiles[i]);
}
toku_free(logfiles);
FOOTPRINTCAPTURE;
return rval;
}
static int
verify_clean_shutdown_of_log_version(const char *log_dir, uint32_t version, LSN *last_lsn) {
// return 0 if clean shutdown, TOKUDB_UPGRADE_FAILURE if not clean shutdown
int r = 0;
FOOTPRINTSETUP(1000);
if (version < TOKU_LOG_VERSION) {
FOOTPRINT(1);
r = verify_clean_shutdown_of_log_version_old(log_dir, last_lsn);
}
else {
FOOTPRINT(2);
assert(version == TOKU_LOG_VERSION);
r = verify_clean_shutdown_of_log_version_current(log_dir, last_lsn);
}
FOOTPRINTCAPTURE;
return r;
}
// Actually create a log file of the current version, making the environment be of the current version.
static int
upgrade_log(const char *env_dir, const char *log_dir, LSN last_lsn) { // the real deal
int r;
FOOTPRINTSETUP(10000);
LSN initial_lsn = last_lsn;
initial_lsn.lsn++;
CACHETABLE ct;
TOKULOGGER logger;
FOOTPRINT(1);
{ //Create temporary environment
r = toku_create_cachetable(&ct, 1<<25, initial_lsn, NULL);
assert(r == 0);
toku_cachetable_set_env_dir(ct, env_dir);
r = toku_logger_create(&logger);
assert(r == 0);
toku_logger_set_cachetable(logger, ct);
r = toku_logger_open(log_dir, logger);
assert(r==0);
}
{ //Checkpoint
r = toku_checkpoint(ct, logger, NULL, NULL, NULL, NULL); //fsyncs log dir
assert(r == 0);
}
{ //Close cachetable and logger
r = toku_logger_shutdown(logger);
assert(r==0);
r = toku_cachetable_close(&ct);
assert(r==0);
r = toku_logger_close(&logger);
assert(r==0);
}
{
r = verify_clean_shutdown_of_log_version(log_dir, TOKU_LOG_VERSION, NULL);
assert(r==0);
}
FOOTPRINTCAPTURE;
return 0;
}
// If log on disk is old (environment is old) and clean shutdown, then create log of current version,
// which will make the environment of the current version (and delete the old logs).
int
toku_maybe_upgrade_log(const char *env_dir, const char *log_dir, LSN * lsn_of_clean_shutdown, BOOL * upgrade_in_progress) {
int r;
int lockfd = -1;
FOOTPRINTSETUP(100000);
footprint = 0;
*upgrade_in_progress = FALSE; // set TRUE only if all criteria are met and we're actually doing an upgrade
FOOTPRINT(1);
r = toku_recover_lock(log_dir, &lockfd);
if (r == 0) {
FOOTPRINT(2);
assert(log_dir);
assert(env_dir);
uint32_t version_of_logs_on_disk;
BOOL found_any_logs;
r = toku_get_version_of_logs_on_disk(log_dir, &found_any_logs, &version_of_logs_on_disk);
if (r==0) {
FOOTPRINT(3);
if (!found_any_logs)
r = 0; //No logs means no logs to upgrade.
else if (version_of_logs_on_disk > TOKU_LOG_VERSION)
r = TOKUDB_DICTIONARY_TOO_NEW;
else if (version_of_logs_on_disk < TOKU_LOG_MIN_SUPPORTED_VERSION)
r = TOKUDB_DICTIONARY_TOO_OLD;
else if (version_of_logs_on_disk == TOKU_LOG_VERSION)
r = 0; //Logs are up to date
else {
FOOTPRINT(4);
LSN last_lsn;
r = verify_clean_shutdown_of_log_version(log_dir, version_of_logs_on_disk, &last_lsn);
if (r==0) {
FOOTPRINT(5);
*lsn_of_clean_shutdown = last_lsn;
*upgrade_in_progress = TRUE;
r = upgrade_log(env_dir, log_dir, last_lsn);
}
}
}
{
//Clean up
int rc;
rc = toku_recover_unlock(lockfd);
if (r==0) r = rc;
}
}
FOOTPRINTCAPTURE;
return r;
}