ydb.c 214 KB
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/* -*- mode: C; c-basic-offset: 4 -*- */
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#ident "Copyright (c) 2007-2009 Tokutek Inc.  All rights reserved."
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#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."

const char *toku_patent_string = "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.";
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const char *toku_copyright_string = "Copyright (c) 2007-2009 Tokutek Inc.  All rights reserved.";
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#include <toku_portability.h>
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#include <toku_pthread.h>
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#include <ctype.h>
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#include <errno.h>
#include <limits.h>
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#include <stdio.h>
#include <stdlib.h>
#include <string.h>
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#include <fcntl.h>
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#include <sys/stat.h>
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#include <sys/types.h>
#include <unistd.h>
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#include <db.h>
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#include "toku_assert.h"
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#include "ydb.h"
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#include "ydb-internal.h"
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#include "brt-internal.h"
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#include "cachetable.h"
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#include "log.h"
#include "memory.h"
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#include "dlmalloc.h"
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#include "checkpoint.h"
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#include "key.h"
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#include "loader.h"
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#include "indexer.h"
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#include "ydb_load.h"
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#include "brtloader.h"
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#ifdef TOKUTRACE
 #define DB_ENV_CREATE_FUN db_env_create_toku10
 #define DB_CREATE_FUN db_create_toku10
#else
 #define DB_ENV_CREATE_FUN db_env_create
 #define DB_CREATE_FUN db_create
 int toku_set_trace_file (char *fname __attribute__((__unused__))) { return 0; }
 int toku_close_trace_file (void) { return 0; } 
#endif

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#define DB_ISOLATION_FLAGS (DB_READ_COMMITTED | DB_READ_UNCOMMITTED | DB_TXN_SNAPSHOT | DB_SERIALIZABLE | DB_INHERIT_ISOLATION)
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// Accountability: operation counters available for debugging and for "show engine status"
static u_int64_t num_inserts;
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static u_int64_t num_inserts_fail;
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static u_int64_t num_deletes;
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static u_int64_t num_deletes_fail;
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static u_int64_t num_updates;
static u_int64_t num_updates_fail;
static u_int64_t num_multi_inserts;
static u_int64_t num_multi_inserts_fail;
static u_int64_t num_multi_deletes;
static u_int64_t num_multi_deletes_fail;
static u_int64_t num_multi_updates;
static u_int64_t num_multi_updates_fail;
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static u_int64_t num_point_queries;
static u_int64_t num_sequential_queries;
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static u_int64_t logsuppress;                // number of times logs are suppressed for empty table (2440)
static u_int64_t logsuppressfail;            // number of times unable to suppress logs for empty table (2440)
static time_t    startuptime;                // timestamp of system startup
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static DB_ENV *  most_recent_env;            // most recently opened env, used for engine status on crash

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static uint32_t  engine_status_enable = 1;   // if zero, suppress engine status output on failed assert, for test programs only

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static void
init_status_info(void) {
    num_inserts = 0;
    num_inserts_fail = 0;
    num_deletes = 0;
    num_deletes_fail = 0;
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    num_updates = 0;
    num_updates_fail = 0;
    num_multi_inserts = 0;
    num_multi_inserts_fail = 0;
    num_multi_deletes = 0;
    num_multi_deletes_fail = 0;
    num_multi_updates = 0;
    num_multi_updates_fail = 0;
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    num_point_queries = 0;
    num_sequential_queries = 0;
    logsuppress = 0;
    logsuppressfail = 0;
    startuptime = time(NULL);
}
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const char * environmentdictionary = "tokudb.environment";
const char * fileopsdirectory = "tokudb.directory";

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static int env_get_iname(DB_ENV* env, DBT* dname_dbt, DBT* iname_dbt);
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static const char single_process_lock_file[] = "/__tokudb_lock_dont_delete_me_";

static int
single_process_lock(const char *lock_dir, const char *which, int *lockfd) {
    if (!lock_dir)
        return ENOENT;
    int namelen=strlen(lock_dir)+strlen(which);
    char lockfname[namelen+sizeof(single_process_lock_file)];

    int l = snprintf(lockfname, sizeof(lockfname), "%s%s%s", lock_dir, single_process_lock_file, which);
    assert(l+1 == (signed)(sizeof(lockfname)));
    *lockfd = toku_os_lock_file(lockfname);
    if (*lockfd < 0) {
        int e = errno;
        fprintf(stderr, "Couldn't start tokudb because some other tokudb process is using the same directory [%s] for [%s]\n", lock_dir, which);
        return e;
    }
    return 0;
}

static int
single_process_unlock(int *lockfd) {
    int fd = *lockfd;
    *lockfd = -1;
    if (fd>=0) {
        int r = toku_os_unlock_file(fd);
        if (r != 0)
            return errno;
    }
    return 0;
}
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/** The default maximum number of persistent locks in a lock tree  */
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const u_int32_t __toku_env_default_max_locks = 0x7FFFFFFF;
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const uint64_t __toku_env_default_max_lock_memory = 1000*1024;
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static inline DBT*
init_dbt_realloc(DBT *dbt) {
    memset(dbt, 0, sizeof(*dbt));
    dbt->flags = DB_DBT_REALLOC;
    return dbt;
}

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//Callback used for redirecting dictionaries.
static void
ydb_set_brt(DB *db, BRT brt) {
    db->i->brt = brt;
}

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int 
toku_ydb_init(void) {
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    int r = 0;
    //Lower level must be initialized first.
    if (r==0) 
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        r = toku_brt_init(toku_ydb_lock, toku_ydb_unlock, ydb_set_brt);
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    if (r==0) 
        r = toku_ydb_lock_init();
    return r;
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}

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int 
toku_ydb_destroy(void) {
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    int r = 0;
    if (r==0)
        r = toku_ydb_lock_destroy();
    //Lower level must be cleaned up last.
    if (r==0)
        r = toku_brt_destroy();
    return r;
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}

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static int
ydb_getf_do_nothing(DBT const* UU(key), DBT const* UU(val), void* UU(extra)) {
    return 0;
}

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/* env methods */
static int toku_env_close(DB_ENV *env, u_int32_t flags);
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static int toku_env_set_data_dir(DB_ENV * env, const char *dir);
static int toku_env_set_lg_dir(DB_ENV * env, const char *dir);
static int toku_env_set_tmp_dir(DB_ENV * env, const char *tmp_dir);
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static inline int 
env_opened(DB_ENV *env) {
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    return env->i->cachetable != 0;
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}

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static void 
env_init_open_txn(DB_ENV *env) {
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    toku_list_init(&env->i->open_txns);
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}

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// add a txn to the list of open txn's
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static void 
env_add_open_txn(DB_ENV *env, DB_TXN *txn) {
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    toku_list_push(&env->i->open_txns, (struct toku_list *) (void *) &txn->open_txns);
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}

// remove a txn from the list of open txn's
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static void 
env_remove_open_txn(DB_ENV *UU(env), DB_TXN *txn) {
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    toku_list_remove((struct toku_list *) (void *) &txn->open_txns);
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}

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static int toku_txn_abort(DB_TXN * txn, TXN_PROGRESS_POLL_FUNCTION, void*);
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static void
env_fs_report_in_yellow(DB_ENV *UU(env)) {
    char tbuf[26];
    time_t tnow = time(NULL);
    fprintf(stderr, "%.24s Tokudb file system space is low\n", ctime_r(&tnow, tbuf)); fflush(stderr);
}

static void
env_fs_report_in_red(DB_ENV *UU(env)) {
    char tbuf[26];
    time_t tnow = time(NULL);
    fprintf(stderr, "%.24s Tokudb file system space is really low and access is restricted\n", ctime_r(&tnow, tbuf)); fflush(stderr);
}

static inline uint64_t
env_fs_redzone(DB_ENV *env, uint64_t total) {
    return total * env->i->redzone / 100;
}

#define ZONEREPORTLIMIT 12
// Check the available space in the file systems used by tokudb and erect barriers when available space gets low.
static int
env_fs_poller(void *arg) {
    if (0) printf("%s:%d %p\n", __FUNCTION__, __LINE__, arg);
 
    DB_ENV *env = (DB_ENV *) arg;
    int r;
#if 0
    // get the cachetable size limit (not yet needed)
    uint64_t cs = toku_cachetable_get_size_limit(env->i->cachetable);
#endif

    int in_yellow; // set true to issue warning to user
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    int in_red;    // set true to prevent certain operations (returning ENOSPC)
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    // get the fs sizes for the home dir
    uint64_t avail_size, total_size;
    r = toku_get_filesystem_sizes(env->i->dir, &avail_size, NULL, &total_size);
    assert(r == 0);
    if (0) fprintf(stderr, "%s %"PRIu64" %"PRIu64"\n", env->i->dir, avail_size, total_size);
    in_yellow = (avail_size < 2 * env_fs_redzone(env, total_size));
    in_red = (avail_size < env_fs_redzone(env, total_size));
    
    // get the fs sizes for the data dir if different than the home dir
    if (strcmp(env->i->dir, env->i->real_data_dir) != 0) {
        r = toku_get_filesystem_sizes(env->i->real_data_dir, &avail_size, NULL, &total_size);
        assert(r == 0);
        if (0) fprintf(stderr, "%s %"PRIu64" %"PRIu64"\n", env->i->real_data_dir, avail_size, total_size);
        in_yellow += (avail_size < 2 * env_fs_redzone(env, total_size));
        in_red += (avail_size < env_fs_redzone(env, total_size));
    }

    // get the fs sizes for the log dir if different than the home dir and data dir
    if (strcmp(env->i->dir, env->i->real_log_dir) != 0 && strcmp(env->i->real_data_dir, env->i->real_log_dir) != 0) {
        r = toku_get_filesystem_sizes(env->i->real_log_dir, &avail_size, NULL, &total_size);
        assert(r == 0);
        if (0) fprintf(stderr, "%s %"PRIu64" %"PRIu64"\n", env->i->real_log_dir, avail_size, total_size);
        in_yellow += (avail_size < 2 * env_fs_redzone(env, total_size));
        in_red += (avail_size < env_fs_redzone(env, total_size));
    }

    
    env->i->fs_seq++;                    // how many times through this polling loop?
    uint64_t now = env->i->fs_seq;

    // Don't issue report if we have not been out of this fs_state for a while, unless we're at system startup
    switch (env->i->fs_state) {
    case FS_RED:
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        if (!in_red) {
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	    if (in_yellow) {
		env->i->fs_state = FS_YELLOW;
	    } else {
		env->i->fs_state = FS_GREEN;
	    }
	}
        break;
    case FS_YELLOW:
        if (in_red) {
	    if ((now - env->i->last_seq_entered_red > ZONEREPORTLIMIT) || (now < ZONEREPORTLIMIT))
		env_fs_report_in_red(env);
            env->i->fs_state = FS_RED;
	    env->i->last_seq_entered_red = now;
        } else if (!in_yellow) {
            env->i->fs_state = FS_GREEN;
        }
        break;
    case FS_GREEN:
        if (in_red) {
	    if ((now - env->i->last_seq_entered_red > ZONEREPORTLIMIT) || (now < ZONEREPORTLIMIT))
		env_fs_report_in_red(env);
            env->i->fs_state = FS_RED;
	    env->i->last_seq_entered_red = now;
        } else if (in_yellow) {
	    if ((now - env->i->last_seq_entered_yellow > ZONEREPORTLIMIT) || (now < ZONEREPORTLIMIT))
		env_fs_report_in_yellow(env);
            env->i->fs_state = FS_YELLOW;
	    env->i->last_seq_entered_yellow = now;
        }
        break;
    }
    return 0;
}
#undef ZONEREPORTLIMIT

static void
env_fs_init(DB_ENV *env) {
    env->i->fs_state = FS_GREEN;
    env->i->fs_poll_time = 5;  // seconds
    env->i->redzone = 5;       // percent of total space
    env->i->fs_poller_is_init = FALSE;
}

// Initialize the minicron that polls file system space
static int
env_fs_init_minicron(DB_ENV *env) {
    int r = toku_minicron_setup(&env->i->fs_poller, env->i->fs_poll_time, env_fs_poller, env); 
    assert(r == 0);
    env->i->fs_poller_is_init = TRUE;
    return r;
}

// Destroy the file system space minicron
static void
env_fs_destroy(DB_ENV *env) {
    if (env->i->fs_poller_is_init) {
        int r = toku_minicron_shutdown(&env->i->fs_poller);
        assert(r == 0);
        env->i->fs_poller_is_init = FALSE;
    }
}

// Check if the available file system space is less than the reserve
// Returns ENOSPC if not enough space, othersize 0
static inline int 
env_check_avail_fs_space(DB_ENV *env) {
    int r = env->i->fs_state == FS_RED ? ENOSPC : 0; 
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    if (r) env->i->enospc_redzone_ctr++;
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    return r;
}

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int
toku_ydb_check_avail_fs_space(DB_ENV *env) {
    int rval = env_check_avail_fs_space(env);
    return rval;
}

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/* db methods */
static inline int db_opened(DB *db) {
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    return db->i->opened != 0;
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}

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static int toku_db_put(DB * db, DB_TXN * txn, DBT * key, DBT * data, u_int32_t flags);
static int toku_db_get (DB * db, DB_TXN * txn, DBT * key, DBT * data, u_int32_t flags);
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static int toku_db_cursor(DB *db, DB_TXN * txn, DBC **c, u_int32_t flags, int is_temporary_cursor);
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/* txn methods */

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/* lightweight cursor methods. */
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static int toku_c_getf_first(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra);

static int toku_c_getf_last(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra);
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static int toku_c_getf_next(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra);
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static int toku_c_getf_prev(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra);
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static int toku_c_getf_current(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra);
static int toku_c_getf_current_binding(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra);
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static int toku_c_getf_set(DBC *c, u_int32_t flag, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra);
static int toku_c_getf_set_range(DBC *c, u_int32_t flag, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra);
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static int toku_c_getf_set_range_reverse(DBC *c, u_int32_t flag, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra);
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// Effect: Lightweight cursor get

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/* cursor methods */
static int toku_c_get(DBC * c, DBT * key, DBT * data, u_int32_t flag);
static int toku_c_del(DBC *c, u_int32_t flags);
static int toku_c_count(DBC *cursor, db_recno_t *count, u_int32_t flags);
static int toku_c_close(DBC * c);
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static void
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env_setup_real_dir(DB_ENV *env, char **real_dir, const char *nominal_dir) {
    toku_free(*real_dir);
    *real_dir = NULL;
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    assert(env->i->dir);
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    if (nominal_dir) 
	*real_dir = toku_construct_full_name(2, env->i->dir, nominal_dir);
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    else
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        *real_dir = toku_strdup(env->i->dir);
}

static void
env_setup_real_data_dir(DB_ENV *env) {
    env_setup_real_dir(env, &env->i->real_data_dir, env->i->data_dir);
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}

static void
env_setup_real_log_dir(DB_ENV *env) {
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    env_setup_real_dir(env, &env->i->real_log_dir, env->i->lg_dir);
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}

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static void
env_setup_real_tmp_dir(DB_ENV *env) {
    env_setup_real_dir(env, &env->i->real_tmp_dir, env->i->tmp_dir);
}

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static int 
ydb_do_recovery (DB_ENV *env) {
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    assert(env->i->real_log_dir);
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    toku_ydb_unlock();
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    int r = tokudb_recover(env->i->dir, env->i->real_log_dir, env->i->bt_compare,
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                           env->i->generate_row_for_put, env->i->generate_row_for_del,
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                           env->i->cachetable_size);
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    toku_ydb_lock();
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    return r;
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}

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static int 
needs_recovery (DB_ENV *env) {
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    assert(env->i->real_log_dir);
    int recovery_needed = tokudb_needs_recovery(env->i->real_log_dir, TRUE);
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    return recovery_needed ? DB_RUNRECOVERY : 0;
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}

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static int toku_db_create(DB ** db, DB_ENV * env, u_int32_t flags);
static int toku_db_open(DB * db, DB_TXN * txn, const char *fname, const char *dbname, DBTYPE dbtype, u_int32_t flags, int mode);
static int toku_env_txn_checkpoint(DB_ENV * env, u_int32_t kbyte, u_int32_t min, u_int32_t flags);
static int toku_db_close(DB * db, u_int32_t flags);
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static int toku_txn_begin(DB_ENV *env, DB_TXN * stxn, DB_TXN ** txn, u_int32_t flags, int internal);
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static int toku_txn_commit(DB_TXN * txn, u_int32_t flags, TXN_PROGRESS_POLL_FUNCTION, void*);
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static int db_open_iname(DB * db, DB_TXN * txn, const char *iname, u_int32_t flags, int mode);

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static void finalize_file_removal(DICTIONARY_ID dict_id, void * extra);
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// Instruct db to use the default (built-in) key comparison function
// by setting the flag bits in the db and brt structs
static int
db_use_builtin_key_cmp(DB *db) {
    HANDLE_PANICKED_DB(db);
    int r;
    if (db_opened(db))
        r = toku_ydb_do_error(db->dbenv, EINVAL, "Comparison functions cannot be set after DB open.\n");
    else if (db->i->key_compare_was_set)
        r = toku_ydb_do_error(db->dbenv, EINVAL, "Key comparison function already set.\n");
    else {
        u_int32_t tflags;
        r = toku_brt_get_flags(db->i->brt, &tflags);
        if (r!=0) return r;

        tflags |= TOKU_DB_KEYCMP_BUILTIN;
        r = toku_brt_set_flags(db->i->brt, tflags);
        if (!r)
            db->i->key_compare_was_set = TRUE;
    }
    return r;
}

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// Keys used in persistent environment dictionary:
// Following keys added in version 12
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static const char * orig_env_ver_key = "original_version";
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static const char * curr_env_ver_key = "current_version";  
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// Following keys added in version 13, add more keys for future versions
static const char * creation_time_key         = "creation_time";
static const char * last_lsn_of_v12_key       = "last_lsn_of_v12";
static const char * upgrade_v13_time_key      = "upgrade_v13_time";      
static const char * upgrade_v13_footprint_key = "upgrade_v13_footprint";
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// Values read from (or written into) persistent environment,
// kept here for read-only access from engine status.
static uint32_t persistent_original_env_version;
static uint32_t persistent_stored_env_version_at_startup;    // read from curr_env_ver_key, prev version as of this startup
static time_t   persistent_creation_time;
static uint64_t persistent_last_lsn_of_v12;
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static time_t   persistent_upgrade_v13_time;
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static uint64_t persistent_upgrade_v13_footprint;
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// Requires: persistent environment dictionary is already open.
// Input arg is lsn of clean shutdown of previous version,
// or ZERO_LSN if no upgrade or if crash between log upgrade and here.
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static int
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maybe_upgrade_persistent_environment_dictionary(DB_ENV * env, DB_TXN * txn, LSN last_lsn_of_clean_shutdown_read_from_log) {
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    int r;
    DBT key, val;
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    DB *persistent_environment = env->i->persistent_environment;
490

491
    toku_fill_dbt(&key, curr_env_ver_key, strlen(curr_env_ver_key));
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    toku_init_dbt(&val);
493
    r = toku_db_get(persistent_environment, txn, &key, &val, 0);
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    assert(r == 0);
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    uint32_t stored_env_version = toku_dtoh32(*(uint32_t*)val.data);
    persistent_stored_env_version_at_startup = stored_env_version;
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    if (stored_env_version > BRT_LAYOUT_VERSION)
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	r = TOKUDB_DICTIONARY_TOO_NEW;
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    else if (stored_env_version < BRT_LAYOUT_MIN_SUPPORTED_VERSION)
	r = TOKUDB_DICTIONARY_TOO_OLD;
    else if (stored_env_version < BRT_LAYOUT_VERSION) {
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        const uint32_t curr_env_ver_d = toku_htod32(BRT_LAYOUT_VERSION);
503
        toku_fill_dbt(&key, curr_env_ver_key, strlen(curr_env_ver_key));
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        toku_fill_dbt(&val, &curr_env_ver_d, sizeof(curr_env_ver_d));
        r = toku_db_put(persistent_environment, txn, &key, &val, DB_YESOVERWRITE);
        assert(r==0);
	
	uint64_t last_lsn_of_v12_d = toku_htod64(last_lsn_of_clean_shutdown_read_from_log.lsn);
	toku_fill_dbt(&key, last_lsn_of_v12_key, strlen(last_lsn_of_v12_key));
	toku_fill_dbt(&val, &last_lsn_of_v12_d, sizeof(last_lsn_of_v12_d));
	r = toku_db_put(persistent_environment, txn, &key, &val, DB_YESOVERWRITE);
        assert(r==0);
	
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	time_t upgrade_v13_time_d = toku_htod64(time(NULL));
	toku_fill_dbt(&key, upgrade_v13_time_key, strlen(upgrade_v13_time_key));
	toku_fill_dbt(&val, &upgrade_v13_time_d, sizeof(upgrade_v13_time_d));
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	r = toku_db_put(persistent_environment, txn, &key, &val, DB_NOOVERWRITE);
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        assert(r==0);
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	uint64_t upgrade_v13_footprint_d = toku_htod64(toku_log_upgrade_get_footprint());
	toku_fill_dbt(&key, upgrade_v13_footprint_key, strlen(upgrade_v13_footprint_key));
	toku_fill_dbt(&val, &upgrade_v13_footprint_d, sizeof(upgrade_v13_footprint_d));
	r = toku_db_put(persistent_environment, txn, &key, &val, DB_NOOVERWRITE);
        assert(r==0);
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    }
526
    return r;
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}

529

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// Capture contents of persistent_environment dictionary so that it can be read by engine status
531
static void
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capture_persistent_env_contents (DB_ENV * env, DB_TXN * txn) {
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    int r;
    DBT key, val;
    DB *persistent_environment = env->i->persistent_environment;

    toku_fill_dbt(&key, curr_env_ver_key, strlen(curr_env_ver_key));
    toku_init_dbt(&val);
    r = toku_db_get(persistent_environment, txn, &key, &val, 0);
    assert(r == 0);
    uint32_t curr_env_version = toku_dtoh32(*(uint32_t*)val.data);
    assert(curr_env_version == BRT_LAYOUT_VERSION);

    toku_fill_dbt(&key, orig_env_ver_key, strlen(orig_env_ver_key));
    toku_init_dbt(&val);
    r = toku_db_get(persistent_environment, txn, &key, &val, 0);
    assert(r == 0);
    persistent_original_env_version = toku_dtoh32(*(uint32_t*)val.data);
    assert(persistent_original_env_version <= curr_env_version);

    // make no assertions about timestamps, clock may have been reset
    if (persistent_original_env_version >= BRT_LAYOUT_VERSION_13) {
	toku_fill_dbt(&key, creation_time_key, strlen(creation_time_key));
	toku_init_dbt(&val);
	r = toku_db_get(persistent_environment, txn, &key, &val, 0);
	assert(r == 0);
	persistent_creation_time = toku_dtoh64((*(time_t*)val.data));
    }

    if (persistent_original_env_version != curr_env_version) {
	// an upgrade was performed at some time, capture info about the upgrade
	
	toku_fill_dbt(&key, last_lsn_of_v12_key, strlen(last_lsn_of_v12_key));
	toku_init_dbt(&val);
	r = toku_db_get(persistent_environment, txn, &key, &val, 0);
	assert(r == 0);
	persistent_last_lsn_of_v12 = toku_dtoh64(*(uint32_t*)val.data);

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	toku_fill_dbt(&key, upgrade_v13_time_key, strlen(upgrade_v13_time_key));
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	toku_init_dbt(&val);
	r = toku_db_get(persistent_environment, txn, &key, &val, 0);
	assert(r == 0);
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	persistent_upgrade_v13_time = toku_dtoh64((*(time_t*)val.data));
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	toku_fill_dbt(&key, upgrade_v13_footprint_key, strlen(upgrade_v13_footprint_key));
	toku_init_dbt(&val);
	r = toku_db_get(persistent_environment, txn, &key, &val, 0);
	assert(r == 0);
	persistent_upgrade_v13_footprint = toku_dtoh64((*(uint64_t*)val.data));
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    }

}




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// return 0 if log exists or ENOENT if log does not exist
static int
ydb_recover_log_exists(DB_ENV *env) {
590
    int r = tokudb_recover_log_exists(env->i->real_log_dir);
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    return r;
}


// Validate that all required files are present, no side effects.
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// Return 0 if all is well, ENOENT if some files are present but at least one is missing, 
// other non-zero value if some other error occurs.
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// Set *valid_newenv if creating a new environment (all files missing).
// (Note, if special dictionaries exist, then they were created transactionally and log should exist.)
static int 
601
validate_env(DB_ENV * env, BOOL * valid_newenv, BOOL need_rollback_cachefile) {
602
    int r;
603
    BOOL expect_newenv = FALSE;        // set true if we expect to create a new env
604 605
    toku_struct_stat buf;
    char* path = NULL;
606

607
    // Test for persistent environment
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608
    path = toku_construct_full_name(2, env->i->dir, environmentdictionary);
609 610
    assert(path);
    r = toku_stat(path, &buf);
611
    int stat_errno = errno;
612
    toku_free(path);
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    if (r == 0) {
	expect_newenv = FALSE;  // persistent info exists
    }
616
    else if (stat_errno == ENOENT) {
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	expect_newenv = TRUE;
	r = 0;
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    }
    else {
621 622
	r = toku_ydb_do_error(env, errno, "Unable to access persistent environment\n");
	assert(r);
623
    }
624

625
    // Test for existence of rollback cachefile if it is expected to exist
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    if (r == 0 && need_rollback_cachefile) {
	path = toku_construct_full_name(2, env->i->dir, ROLLBACK_CACHEFILE_NAME);
	assert(path);
	r = toku_stat(path, &buf);
	stat_errno = errno;
	toku_free(path);
	if (r == 0) {  
	    if (expect_newenv)  // rollback cachefile exists, but persistent env is missing
		r = toku_ydb_do_error(env, ENOENT, "Persistent environment is missing\n");
	}
	else if (stat_errno == ENOENT) {
	    if (!expect_newenv)  // rollback cachefile is missing but persistent env exists
		r = toku_ydb_do_error(env, ENOENT, "rollback cachefile directory is missing\n");
	    else 
		r = 0;           // both rollback cachefile and persistent env are missing
	}
	else {
643
	    r = toku_ydb_do_error(env, stat_errno, "Unable to access rollback cachefile\n");
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	    assert(r);
	}
    }

648 649
    // Test for fileops directory
    if (r == 0) {
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	path = toku_construct_full_name(2, env->i->dir, fileopsdirectory);
651 652
	assert(path);
	r = toku_stat(path, &buf);
653
	stat_errno = errno;
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	toku_free(path);
	if (r == 0) {  
	    if (expect_newenv)  // fileops directory exists, but persistent env is missing
		r = toku_ydb_do_error(env, ENOENT, "Persistent environment is missing\n");
	}
659
	else if (stat_errno == ENOENT) {
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	    if (!expect_newenv)  // fileops directory is missing but persistent env exists
		r = toku_ydb_do_error(env, ENOENT, "Fileops directory is missing\n");
	    else 
		r = 0;           // both fileops directory and persistent env are missing
	}
	else {
666
	    r = toku_ydb_do_error(env, stat_errno, "Unable to access fileops directory\n");
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	    assert(r);
	}
    }

    // Test for recovery log
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    if ((r == 0) && (env->i->open_flags & DB_INIT_LOG)) {
	// if using transactions, test for existence of log
	r = ydb_recover_log_exists(env);  // return 0 or ENOENT
	if (expect_newenv && (r != ENOENT))
	    r = toku_ydb_do_error(env, ENOENT, "Persistent environment information is missing (but log exists)\n");
	else if (!expect_newenv && r == ENOENT)
	    r = toku_ydb_do_error(env, ENOENT, "Recovery log is missing (persistent environment information is present)\n");
	else
	    r = 0;
    }

    if (r == 0)
	*valid_newenv = expect_newenv;
    else 
	*valid_newenv = FALSE;
    return r;
}

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// The version of the environment (on disk) is the version of the recovery log.  
// If the recovery log is of the current version, then there is no upgrade to be done.  
// If the recovery log is of an old version, then replacing it with a new recovery log
// of the current version is how the upgrade is done.  
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695
// Note, the upgrade procedure takes a checkpoint, so we must release the ydb lock.
696
static int
697
ydb_maybe_upgrade_env (DB_ENV *env, LSN * last_lsn_of_clean_shutdown_read_from_log, BOOL * upgrade_in_progress) {
698 699 700
    int r = 0;
    if (env->i->open_flags & DB_INIT_TXN && env->i->open_flags & DB_INIT_LOG) {
        toku_ydb_unlock();
701
        r = toku_maybe_upgrade_log(env->i->dir, env->i->real_log_dir, last_lsn_of_clean_shutdown_read_from_log, upgrade_in_progress);
702 703 704 705 706 707
        toku_ydb_lock();
    }
    return r;
}


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static void
unlock_single_process(DB_ENV *env) {
    int r;
    r = single_process_unlock(&env->i->envdir_lockfd);
    lazy_assert(r==0);
    r = single_process_unlock(&env->i->datadir_lockfd);
    lazy_assert(r==0);
    r = single_process_unlock(&env->i->logdir_lockfd);
    lazy_assert(r==0);
    r = single_process_unlock(&env->i->tmpdir_lockfd);
    lazy_assert(r==0);
}
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// Open the environment.
// If this is a new environment, then create the necessary files.
// Return 0 on success, ENOENT if any of the expected necessary files are missing.
// (The set of necessary files is defined in the function validate_env() above.)
static int 
toku_env_open(DB_ENV * env, const char *home, u_int32_t flags, int mode) {
727
    HANDLE_PANICKED_ENV(env);
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    int r;
729
    BOOL newenv;  // true iff creating a new environment
730
    u_int32_t unused_flags=flags;
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    if (env_opened(env)) {
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	r = toku_ydb_do_error(env, EINVAL, "The environment is already open\n");
        goto cleanup;
735
    }
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737 738
    assert(sizeof(time_t) == sizeof(uint64_t));

739 740 741 742
    HANDLE_EXTRA_FLAGS(env, flags, 
                       DB_CREATE|DB_PRIVATE|DB_INIT_LOG|DB_INIT_TXN|DB_RECOVER|DB_INIT_MPOOL|DB_INIT_LOCK|DB_THREAD);


743 744
    // DB_CREATE means create if env does not exist, and Tokudb requires it because
    // Tokudb requries DB_PRIVATE.
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    if ((flags & DB_PRIVATE) && !(flags & DB_CREATE)) {
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	r = toku_ydb_do_error(env, ENOENT, "DB_PRIVATE requires DB_CREATE (seems gratuitous to us, but that's BDB's behavior\n");
        goto cleanup;
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    }

750
    if (!(flags & DB_PRIVATE)) {
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	r = toku_ydb_do_error(env, ENOENT, "TokuDB requires DB_PRIVATE\n");
        goto cleanup;
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    }
754

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    if ((flags & DB_INIT_LOG) && !(flags & DB_INIT_TXN)) {
	r = toku_ydb_do_error(env, EINVAL, "TokuDB requires transactions for logging\n");
        goto cleanup;
    }
759

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760
    if (!home) home = ".";
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762 763 764
    // Verify that the home exists.
    {
	BOOL made_new_home = FALSE;
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        char* new_home = NULL;
766
    	toku_struct_stat buf;
767
        if (strlen(home) > 1 && home[strlen(home)-1] == '\\') {
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            new_home = toku_malloc(strlen(home));
            memcpy(new_home, home, strlen(home));
            new_home[strlen(home) - 1] = 0;
            made_new_home = TRUE;
        }
773
    	r = toku_stat(made_new_home? new_home : home, &buf);
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        if (made_new_home) {
            toku_free(new_home);
        }
    	if (r!=0) {
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    	    r = toku_ydb_do_error(env, errno, "Error from toku_stat(\"%s\",...)\n", home);
            goto cleanup;
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    	}
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    }
782
    unused_flags &= ~DB_PRIVATE;
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    if (env->i->dir)
        toku_free(env->i->dir);
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    env->i->dir = toku_strdup(home);
787
    if (env->i->dir == 0) {
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	r = toku_ydb_do_error(env, ENOMEM, "Out of memory\n");
        goto cleanup;
790
    }
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    if (0) {
        died1:
        toku_free(env->i->dir);
        env->i->dir = NULL;
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        goto cleanup;
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    }
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    env->i->open_flags = flags;
    env->i->open_mode = mode;
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800 801
    env_setup_real_data_dir(env);
    env_setup_real_log_dir(env);
802
    env_setup_real_tmp_dir(env);
803

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    r = single_process_lock(env->i->dir, "environment", &env->i->envdir_lockfd);
    if (r!=0) goto cleanup;
806
    r = single_process_lock(env->i->real_data_dir, "data", &env->i->datadir_lockfd);
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    if (r!=0) goto cleanup;
808
    r = single_process_lock(env->i->real_log_dir, "logs", &env->i->logdir_lockfd);
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    if (r!=0) goto cleanup;
810
    r = single_process_lock(env->i->real_tmp_dir, "temp", &env->i->tmpdir_lockfd);
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    if (r!=0) goto cleanup;


814 815 816 817 818
    BOOL need_rollback_cachefile = FALSE;
    if (flags & (DB_INIT_TXN | DB_INIT_LOG)) {
        need_rollback_cachefile = TRUE;
    }

819 820
    init_status_info();  // do this before possibly upgrading, so upgrade work is counted in status counters

821 822 823
    LSN last_lsn_of_clean_shutdown_read_from_log = ZERO_LSN;
    BOOL upgrade_in_progress = FALSE;
    r = ydb_maybe_upgrade_env(env, &last_lsn_of_clean_shutdown_read_from_log, &upgrade_in_progress);
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    if (r!=0) goto cleanup;
825

826 827 828 829 830 831 832 833 834 835 836
    if (upgrade_in_progress) {
	// Delete old rollback file.  There was a clean shutdown, so it has nothing useful,
	// and there is no value in upgrading it.  It is simpler to just create a new one.
	char* rollback_filename = toku_construct_full_name(2, env->i->dir, ROLLBACK_CACHEFILE_NAME);
	assert(rollback_filename);
	r = unlink(rollback_filename);
	toku_free(rollback_filename);
	assert(r==0 || errno==ENOENT);	
	need_rollback_cachefile = FALSE;  // we're not expecting it to exist now
    }
    
837
    r = validate_env(env, &newenv, need_rollback_cachefile);  // make sure that environment is either new or complete
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    if (r != 0) goto cleanup;
839

840
    unused_flags &= ~DB_INIT_TXN & ~DB_INIT_LOG;
841

842 843 844 845 846 847 848
    // do recovery only if there exists a log and recovery is requested
    // otherwise, a log is created when the logger is opened later
    if (!newenv) {
        if (flags & DB_INIT_LOG) {
            // the log does exist
            if (flags & DB_RECOVER) {
                r = ydb_do_recovery(env);
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                if (r != 0) goto cleanup;
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            } else {
                // the log is required to have clean shutdown if recovery is not requested
                r = needs_recovery(env);
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                if (r != 0) goto cleanup;
854
            }
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        }
    }
857 858
    
    toku_loader_cleanup_temp_files(env);
859

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    if (flags & (DB_INIT_TXN | DB_INIT_LOG)) {
861
	assert(env->i->logger);
862
        toku_logger_write_log_files(env->i->logger, (BOOL)((flags & DB_INIT_LOG) != 0));
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        r = toku_logger_open(env->i->real_log_dir, env->i->logger);
864
	if (r!=0) {
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	    toku_ydb_do_error(env, r, "Could not open logger\n");
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	died2:
867
	    toku_logger_close(&env->i->logger);
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	    goto died1;
	}
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    } else {
	r = toku_logger_close(&env->i->logger); // if no logging system, then kill the logger
	assert(r==0);
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    }

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    unused_flags &= ~DB_INIT_MPOOL; // we always init an mpool.
    unused_flags &= ~DB_CREATE;     // we always do DB_CREATE
    unused_flags &= ~DB_INIT_LOCK;  // we check this later (e.g. in db->open)
    unused_flags &= ~DB_RECOVER;

// This is probably correct, but it will be pain...
//    if ((flags & DB_THREAD)==0) {
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//	r = toku_ydb_do_error(env, EINVAL, "TokuDB requires DB_THREAD");
//	goto cleanup;
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//    }
    unused_flags &= ~DB_THREAD;

    if (unused_flags!=0) {
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	r = toku_ydb_do_error(env, EINVAL, "Extra flags not understood by tokudb: %u\n", unused_flags);
        goto cleanup;
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    }

892
    r = toku_brt_create_cachetable(&env->i->cachetable, env->i->cachetable_size, ZERO_LSN, env->i->logger);
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    if (r!=0) goto died2;
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    toku_cachetable_set_env_dir(env->i->cachetable, env->i->dir);

897 898
    int using_txns = env->i->open_flags & DB_INIT_TXN;
    if (env->i->logger) {
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	// if this is a newborn env or if this is an upgrade, then create a brand new rollback file
	BOOL create_new_rollback_file = newenv | upgrade_in_progress;
901 902 903
	assert (using_txns);
	toku_logger_set_cachetable(env->i->logger, env->i->cachetable);
	toku_logger_set_remove_finalize_callback(env->i->logger, finalize_file_removal, env->i->ltm);
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        r = toku_logger_open_rollback(env->i->logger, env->i->cachetable, create_new_rollback_file);
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        assert(r==0);
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    }
907

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    DB_TXN *txn=NULL;
    if (using_txns) {
910
        r = toku_txn_begin(env, 0, &txn, 0, 1);
911
        assert(r==0);
912
    }
913

914 915
    {
        r = toku_db_create(&env->i->persistent_environment, env, 0);
916
        assert(r==0);
917 918
        r = db_use_builtin_key_cmp(env->i->persistent_environment);
        assert(r==0);
919
	r = db_open_iname(env->i->persistent_environment, txn, environmentdictionary, DB_CREATE, mode);
920
	assert(r==0);
921
	if (newenv) {
922 923
	    // create new persistent_environment
	    DBT key, val;
924 925 926
	    persistent_original_env_version = BRT_LAYOUT_VERSION;
	    const uint32_t environment_version = toku_htod32(persistent_original_env_version);

927
	    toku_fill_dbt(&key, orig_env_ver_key, strlen(orig_env_ver_key));
928 929 930
	    toku_fill_dbt(&val, &environment_version, sizeof(environment_version));
	    r = toku_db_put(env->i->persistent_environment, txn, &key, &val, 0);
	    assert(r==0);
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932
	    toku_fill_dbt(&key, curr_env_ver_key, strlen(curr_env_ver_key));
933 934 935
	    toku_fill_dbt(&val, &environment_version, sizeof(environment_version));
	    r = toku_db_put(env->i->persistent_environment, txn, &key, &val, 0);
	    assert(r==0);
936 937 938 939 940 941

	    time_t creation_time_d = toku_htod64(time(NULL));
	    toku_fill_dbt(&key, creation_time_key, strlen(creation_time_key));
	    toku_fill_dbt(&val, &creation_time_d, sizeof(creation_time_d));
	    r = toku_db_put(env->i->persistent_environment, txn, &key, &val, 0);
	    assert(r==0);
942 943
	}
	else {
944
	    r = maybe_upgrade_persistent_environment_dictionary(env, txn, last_lsn_of_clean_shutdown_read_from_log);
945 946
	    assert(r==0);
	}
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947
	capture_persistent_env_contents(env, txn);
948 949 950
    }
    {
        r = toku_db_create(&env->i->directory, env, 0);
951
        assert(r==0);
952 953
        r = db_use_builtin_key_cmp(env->i->directory);
        assert(r==0);
954 955
        r = db_open_iname(env->i->directory, txn, fileopsdirectory, DB_CREATE, mode);
        assert(r==0);
956 957
    }
    if (using_txns) {
958
        r = toku_txn_commit(txn, 0, NULL, NULL);
959
        assert(r==0);
960 961
    }
    toku_ydb_unlock();
962
    r = toku_checkpoint(env->i->cachetable, env->i->logger, NULL, NULL, NULL, NULL);
963
    assert(r==0);
964
    toku_ydb_lock();
965 966
    env_fs_poller(env);          // get the file system state at startup
    env_fs_init_minicron(env); 
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cleanup:
    if (r!=0) {
        if (env && env->i) {
            unlock_single_process(env);
        }
    }
973
    if (r == 0) {
974
	errno = 0; // tabula rasa
975 976
	most_recent_env = env;
    }
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    return r;
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}
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980 981
static int 
toku_env_close(DB_ENV * env, u_int32_t flags) {
982 983 984
    int r = 0;

    // if panicked, or if any open transactions, or any open dbs, then do nothing.
985

986
    if (toku_env_is_panicked(env)) goto panic_and_quit_early;
987
    if (!toku_list_empty(&env->i->open_txns)) {
988 989 990
        r = toku_ydb_do_error(env, EINVAL, "Cannot close environment due to open transactions\n");
        goto panic_and_quit_early;
    }
991 992 993 994 995 996 997
    { //Verify open dbs. Zombies are ok at this stage, fully open is not.
        uint32_t size = toku_omt_size(env->i->open_dbs);
        assert(size == env->i->num_open_dbs + env->i->num_zombie_dbs);
        if (env->i->num_open_dbs > 0) {
            r = toku_ydb_do_error(env, EINVAL, "Cannot close environment due to open DBs\n");
            goto panic_and_quit_early;
        }
998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014
    }
    {
        if (env->i->persistent_environment) {
            r = toku_db_close(env->i->persistent_environment, 0);
            if (r) {
                toku_ydb_do_error(env, r, "Cannot close persistent environment dictionary (DB->close error)\n");
                goto panic_and_quit_early;
            }
        }
        if (env->i->directory) {
            r = toku_db_close(env->i->directory, 0);
            if (r) {
                toku_ydb_do_error(env, r, "Cannot close Directory dictionary (DB->close error)\n");
                goto panic_and_quit_early;
            }
        }
    }
1015
    if (env->i->cachetable) {
1016 1017
	toku_ydb_unlock();  // ydb lock must not be held when shutting down minicron
	toku_cachetable_minicron_shutdown(env->i->cachetable);
1018
        if (env->i->logger) {
1019 1020 1021
            if ( flags && DB_CLOSE_DONT_TRIM_LOG ) {
                toku_logger_trim_log_files(env->i->logger, FALSE);
            }
1022
            r = toku_checkpoint(env->i->cachetable, env->i->logger, NULL, NULL, NULL, NULL);
1023 1024 1025 1026
            if (r) {
                toku_ydb_do_error(env, r, "Cannot close environment (error during checkpoint)\n");
                goto panic_and_quit_early;
            }
1027 1028 1029 1030 1031 1032 1033 1034
            { //Verify open dbs. Neither Zombies nor fully open are ok at this stage.
                uint32_t size = toku_omt_size(env->i->open_dbs);
                assert(size == env->i->num_open_dbs + env->i->num_zombie_dbs);
                if (size > 0) {
                    r = toku_ydb_do_error(env, EINVAL, "Cannot close environment due to zombie DBs\n");
                    goto panic_and_quit_early;
                }
            }
1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045
            r = toku_logger_close_rollback(env->i->logger, FALSE);
            if (r) {
                toku_ydb_do_error(env, r, "Cannot close environment (error during closing rollback cachefile)\n");
                goto panic_and_quit_early;
            }
            //Do a second checkpoint now that the rollback cachefile is closed.
            r = toku_checkpoint(env->i->cachetable, env->i->logger, NULL, NULL, NULL, NULL);
            if (r) {
                toku_ydb_do_error(env, r, "Cannot close environment (error during checkpoint)\n");
                goto panic_and_quit_early;
            }
1046 1047 1048 1049 1050
            r = toku_logger_shutdown(env->i->logger); 
            if (r) {
                toku_ydb_do_error(env, r, "Cannot close environment (error during logger shutdown)\n");
                goto panic_and_quit_early;
            }
1051
        }
1052
	toku_ydb_lock();
1053 1054 1055 1056
        r=toku_cachetable_close(&env->i->cachetable);
	if (r) {
	    toku_ydb_do_error(env, r, "Cannot close environment (cachetable close error)\n");
            goto panic_and_quit_early;
1057 1058 1059
	}
    }
    if (env->i->logger) {
1060 1061 1062 1063 1064
        r=toku_logger_close(&env->i->logger);
	if (r) {
            env->i->logger = NULL;
	    toku_ydb_do_error(env, r, "Cannot close environment (logger close error)\n");
            goto panic_and_quit_early;
1065 1066 1067 1068
	}
    }
    // Even if nothing else went wrong, but we were panicked, then raise an error.
    // But if something else went wrong then raise that error (above)
1069 1070 1071 1072
    if (toku_env_is_panicked(env))
        goto panic_and_quit_early;
    else
	assert(env->i->panic_string==0);
1073

1074
    env_fs_destroy(env);
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    toku_ltm_close(env->i->ltm);
1076 1077
    if (env->i->data_dir)
        toku_free(env->i->data_dir);
1078 1079
    if (env->i->lg_dir)
        toku_free(env->i->lg_dir);
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1080 1081
    if (env->i->tmp_dir)
        toku_free(env->i->tmp_dir);
1082 1083 1084 1085
    if (env->i->real_data_dir)
	toku_free(env->i->real_data_dir);
    if (env->i->real_log_dir)
	toku_free(env->i->real_log_dir);
1086 1087
    if (env->i->real_tmp_dir)
	toku_free(env->i->real_tmp_dir);
1088 1089
    if (env->i->open_dbs)
        toku_omt_destroy(&env->i->open_dbs);
1090 1091
    if (env->i->dir)
	toku_free(env->i->dir);
1092 1093
    //Immediately before freeing internal environment unlock the directories
    unlock_single_process(env);
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1094
    toku_free(env->i);
1095
    env->i = NULL;
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    toku_free(env);
1097 1098 1099 1100 1101 1102
    env = NULL;
    if ((flags!=0) && !(flags==DB_CLOSE_DONT_TRIM_LOG))
        r = EINVAL;
    return r;

panic_and_quit_early:
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1103 1104
    //release lock files.
    unlock_single_process(env);
1105 1106 1107 1108 1109 1110 1111 1112
    //r is the panic error
    if (toku_env_is_panicked(env)) {
        char *panic_string = env->i->panic_string;
        r = toku_ydb_do_error(env, toku_env_is_panicked(env), "Cannot close environment due to previous error: %s\n", panic_string);
    }
    else
        env->i->is_panicked = r;
    return r;
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}
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1115 1116
static int 
toku_env_log_archive(DB_ENV * env, char **list[], u_int32_t flags) {
1117
    return toku_logger_log_archive(env->i->logger, list, flags);
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}
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1120 1121
static int 
toku_env_log_flush(DB_ENV * env, const DB_LSN * lsn __attribute__((__unused__))) {
1122
    HANDLE_PANICKED_ENV(env);
1123 1124
    // We just flush everything.  MySQL uses lsn==0 which means flush everything.  For anyone else using the log, it is correct to flush too much, so we are OK.
    return toku_logger_fsync(env->i->logger);
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}
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1127 1128
static int 
toku_env_set_cachesize(DB_ENV * env, u_int32_t gbytes, u_int32_t bytes, int ncache) {
1129
    HANDLE_PANICKED_ENV(env);
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    if (ncache != 1)
        return EINVAL;
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1132 1133 1134 1135 1136
    u_int64_t cs64 = ((u_int64_t) gbytes << 30) + bytes;
    unsigned long cs = cs64;
    if (cs64 > cs)
        return EINVAL;
    env->i->cachetable_size = cs;
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1137 1138 1139
    return 0;
}

1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164
static int toku_env_dbremove(DB_ENV * env, DB_TXN *txn, const char *fname, const char *dbname, u_int32_t flags);

static int
locked_env_dbremove(DB_ENV * env, DB_TXN *txn, const char *fname, const char *dbname, u_int32_t flags) {
    toku_multi_operation_client_lock(); //Cannot begin checkpoint
    toku_ydb_lock();
    int r = toku_env_dbremove(env, txn, fname, dbname, flags);
    toku_ydb_unlock();
    toku_multi_operation_client_unlock(); //Can now begin checkpoint
    return r;
}

static int toku_env_dbrename(DB_ENV *env, DB_TXN *txn, const char *fname, const char *dbname, const char *newname, u_int32_t flags);

static int
locked_env_dbrename(DB_ENV *env, DB_TXN *txn, const char *fname, const char *dbname, const char *newname, u_int32_t flags) {
    toku_multi_operation_client_lock(); //Cannot begin checkpoint
    toku_ydb_lock();
    int r = toku_env_dbrename(env, txn, fname, dbname, newname, flags);
    toku_ydb_unlock();
    toku_multi_operation_client_unlock(); //Can now begin checkpoint
    return r;
}


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1165 1166
#if DB_VERSION_MAJOR == 4 && DB_VERSION_MINOR >= 3

1167 1168
static int 
toku_env_get_cachesize(DB_ENV * env, u_int32_t *gbytes, u_int32_t *bytes, int *ncache) {
1169
    HANDLE_PANICKED_ENV(env);
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1170 1171 1172 1173 1174 1175
    *gbytes = env->i->cachetable_size >> 30;
    *bytes = env->i->cachetable_size & ((1<<30)-1);
    *ncache = 1;
    return 0;
}

1176 1177
static int 
locked_env_get_cachesize(DB_ENV *env, u_int32_t *gbytes, u_int32_t *bytes, int *ncache) {
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    toku_ydb_lock(); int r = toku_env_get_cachesize(env, gbytes, bytes, ncache); toku_ydb_unlock(); return r;
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}
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1180 1181
#endif

1182 1183
static int 
toku_env_set_data_dir(DB_ENV * env, const char *dir) {
1184
    HANDLE_PANICKED_ENV(env);
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1185 1186
    int r;
    
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1187
    if (env_opened(env) || !dir) {
1188
	r = toku_ydb_do_error(env, EINVAL, "You cannot set the data dir after opening the env\n");
1189
    }
1190 1191
    else if (env->i->data_dir)
	r = toku_ydb_do_error(env, EINVAL, "You cannot set the data dir more than once.\n");
1192 1193 1194 1195 1196
    else {
        env->i->data_dir = toku_strdup(dir);
        if (env->i->data_dir==NULL) {
            assert(errno == ENOMEM);
            r = toku_ydb_do_error(env, ENOMEM, "Out of memory\n");
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        }
1198
        else r = 0;
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    }
1200
    return r;
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}
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1203 1204
static void 
toku_env_set_errcall(DB_ENV * env, toku_env_errcall_t errcall) {
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    env->i->errcall = errcall;
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}
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1208 1209
static void 
toku_env_set_errfile(DB_ENV*env, FILE*errfile) {
1210 1211 1212
    env->i->errfile = errfile;
}

1213 1214
static void 
toku_env_set_errpfx(DB_ENV * env, const char *errpfx) {
1215
    env->i->errpfx = errpfx;
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}
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1218 1219
static int 
toku_env_set_flags(DB_ENV * env, u_int32_t flags, int onoff) {
1220
    HANDLE_PANICKED_ENV(env);
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1221 1222 1223 1224 1225 1226

    u_int32_t change = 0;
    if (flags & DB_AUTO_COMMIT) {
        change |=  DB_AUTO_COMMIT;
        flags  &= ~DB_AUTO_COMMIT;
    }
1227
    if (flags != 0 && onoff) {
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	return toku_ydb_do_error(env, EINVAL, "TokuDB does not (yet) support any nonzero ENV flags other than DB_AUTO_COMMIT\n");
1229
    }
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1230 1231
    if   (onoff) env->i->open_flags |=  change;
    else         env->i->open_flags &= ~change;
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    return 0;
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1233
}
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1235 1236
static int 
toku_env_set_lg_bsize(DB_ENV * env, u_int32_t bsize) {
1237
    HANDLE_PANICKED_ENV(env);
1238
    return toku_logger_set_lg_bsize(env->i->logger, bsize);
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1239
}
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1241 1242
static int 
toku_env_set_lg_dir(DB_ENV * env, const char *dir) {
1243
    HANDLE_PANICKED_ENV(env);
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1244
    if (env_opened(env)) {
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1245
	return toku_ydb_do_error(env, EINVAL, "Cannot set log dir after opening the env\n");
1246
    }
1247 1248

    if (env->i->lg_dir) toku_free(env->i->lg_dir);
1249 1250
    if (dir) {
        env->i->lg_dir = toku_strdup(dir);
1251
        if (!env->i->lg_dir) {
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1252
	    return toku_ydb_do_error(env, ENOMEM, "Out of memory\n");
1253
	}
1254
    }
1255 1256
    else env->i->lg_dir = NULL;
    return 0;
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}
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1259 1260
static int 
toku_env_set_lg_max(DB_ENV * env, u_int32_t lg_max) {
1261
    HANDLE_PANICKED_ENV(env);
1262 1263 1264
    return toku_logger_set_lg_max(env->i->logger, lg_max);
}

1265 1266
static int 
toku_env_get_lg_max(DB_ENV * env, u_int32_t *lg_maxp) {
1267 1268
    HANDLE_PANICKED_ENV(env);
    return toku_logger_get_lg_max(env->i->logger, lg_maxp);
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}
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1271 1272
static int 
toku_env_set_lk_detect(DB_ENV * env, u_int32_t detect) {
1273
    HANDLE_PANICKED_ENV(env);
1274
    detect=detect;
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    return toku_ydb_do_error(env, EINVAL, "TokuDB does not (yet) support set_lk_detect\n");
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}
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1278 1279
static int 
toku_env_set_lk_max_locks(DB_ENV *dbenv, u_int32_t max) {
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    int r = ENOSYS;
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    HANDLE_PANICKED_ENV(dbenv);
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    if (env_opened(dbenv))         { return EINVAL; }
1283
    r = toku_ltm_set_max_locks(dbenv->i->ltm, max);
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    return r;
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1285 1286
}

1287
#if DB_VERSION_MAJOR == 4 && DB_VERSION_MINOR <= 4
1288 1289
static int 
toku_env_set_lk_max(DB_ENV * env, u_int32_t lk_max) {
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    return toku_env_set_lk_max_locks(env, lk_max);
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}
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1293 1294
static int 
locked_env_set_lk_max(DB_ENV * env, u_int32_t lk_max) {
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    toku_ydb_lock(); int r = toku_env_set_lk_max(env, lk_max); toku_ydb_unlock(); return r;
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}
1297
#endif
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1299 1300
static int 
toku_env_get_lk_max_locks(DB_ENV *dbenv, u_int32_t *lk_maxp) {
1301
    HANDLE_PANICKED_ENV(dbenv);
1302
    return toku_ltm_get_max_locks(dbenv->i->ltm, lk_maxp);
1303 1304
}

1305 1306
static int 
locked_env_set_lk_max_locks(DB_ENV *dbenv, u_int32_t max) {
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    toku_ydb_lock(); int r = toku_env_set_lk_max_locks(dbenv, max); toku_ydb_unlock(); return r;
1308 1309
}

1310 1311
static int 
locked_env_get_lk_max_locks(DB_ENV *dbenv, u_int32_t *lk_maxp) {
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1312
    toku_ydb_lock(); int r = toku_env_get_lk_max_locks(dbenv, lk_maxp); toku_ydb_unlock(); return r;
1313 1314
}

1315 1316
static int 
toku_env_set_lk_max_memory(DB_ENV *dbenv, uint64_t max) {
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    int r = ENOSYS;
    HANDLE_PANICKED_ENV(dbenv);
    if (env_opened(dbenv))         { return EINVAL; }
    r = toku_ltm_set_max_lock_memory(dbenv->i->ltm, max);
    return r;
}

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static int 
toku_env_get_lk_max_memory(DB_ENV *dbenv, uint64_t *lk_maxp) {
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    HANDLE_PANICKED_ENV(dbenv);
    return toku_ltm_get_max_lock_memory(dbenv->i->ltm, lk_maxp);
}

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static int 
locked_env_set_lk_max_memory(DB_ENV *dbenv, uint64_t max) {
    toku_ydb_lock(); 
    int r = toku_env_set_lk_max_memory(dbenv, max); 
    toku_ydb_unlock(); 
    return r;
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}

static int locked_env_get_lk_max_memory(DB_ENV *dbenv, uint64_t *lk_maxp) {
    toku_ydb_lock(); int r = toku_env_get_lk_max_memory(dbenv, lk_maxp); toku_ydb_unlock(); return r;
}

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1342
//void toku__env_set_noticecall (DB_ENV *env, void (*noticecall)(DB_ENV *, db_notices)) {
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//    env->i->noticecall = noticecall;
//}
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static int 
toku_env_set_tmp_dir(DB_ENV * env, const char *tmp_dir) {
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    HANDLE_PANICKED_ENV(env);
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    if (env_opened(env)) {
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	return toku_ydb_do_error(env, EINVAL, "Cannot set the tmp dir after opening an env\n");
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    }
    if (!tmp_dir) {
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	return toku_ydb_do_error(env, EINVAL, "Tmp dir bust be non-null\n");
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    }
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    if (env->i->tmp_dir)
        toku_free(env->i->tmp_dir);
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    env->i->tmp_dir = toku_strdup(tmp_dir);
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    return env->i->tmp_dir ? 0 : ENOMEM;
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}
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static int 
toku_env_set_verbose(DB_ENV * env, u_int32_t which, int onoff) {
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    HANDLE_PANICKED_ENV(env);
    which=which; onoff=onoff;
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    return 1;
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}
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// For test purposes only.
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// These callbacks are never used in production code, only as a way to test the system
// (for example, by causing crashes at predictable times).
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static void (*checkpoint_callback_f)(void*) = NULL;
static void * checkpoint_callback_extra     = NULL;
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static void (*checkpoint_callback2_f)(void*) = NULL;
static void * checkpoint_callback2_extra     = NULL;
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static int 
toku_env_txn_checkpoint(DB_ENV * env, u_int32_t kbyte __attribute__((__unused__)), u_int32_t min __attribute__((__unused__)), u_int32_t flags __attribute__((__unused__))) {
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    int r = toku_checkpoint(env->i->cachetable, env->i->logger,
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			    checkpoint_callback_f,  checkpoint_callback_extra,
			    checkpoint_callback2_f, checkpoint_callback2_extra);
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    if (r) {
	env->i->is_panicked = r; // Panicking the whole environment may be overkill, but I'm not sure what else to do.
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	env->i->panic_string = toku_strdup("checkpoint error");
        toku_ydb_do_error(env, r, "Checkpoint\n");
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    }
    return r;
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}

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static int 
toku_env_txn_stat(DB_ENV * env, DB_TXN_STAT ** statp, u_int32_t flags) {
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    HANDLE_PANICKED_ENV(env);
    statp=statp;flags=flags;
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    return 1;
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}

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static int 
locked_env_open(DB_ENV * env, const char *home, u_int32_t flags, int mode) {
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    toku_ydb_lock(); int r = toku_env_open(env, home, flags, mode); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_close(DB_ENV * env, u_int32_t flags) {
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    toku_ydb_lock(); int r = toku_env_close(env, flags); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_log_archive(DB_ENV * env, char **list[], u_int32_t flags) {
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    toku_ydb_lock(); int r = toku_env_log_archive(env, list, flags); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_log_flush(DB_ENV * env, const DB_LSN * lsn) {
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    toku_ydb_lock(); int r = toku_env_log_flush(env, lsn); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_set_cachesize(DB_ENV *env, u_int32_t gbytes, u_int32_t bytes, int ncache) {
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    toku_ydb_lock(); int r = toku_env_set_cachesize(env, gbytes, bytes, ncache); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_set_data_dir(DB_ENV * env, const char *dir) {
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    toku_ydb_lock(); int r = toku_env_set_data_dir(env, dir); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_set_flags(DB_ENV * env, u_int32_t flags, int onoff) {
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    toku_ydb_lock(); int r = toku_env_set_flags(env, flags, onoff); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_set_lg_bsize(DB_ENV * env, u_int32_t bsize) {
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    toku_ydb_lock(); int r = toku_env_set_lg_bsize(env, bsize); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_set_lg_dir(DB_ENV * env, const char *dir) {
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    toku_ydb_lock(); int r = toku_env_set_lg_dir(env, dir); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_set_lg_max(DB_ENV * env, u_int32_t lg_max) {
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    toku_ydb_lock(); int r = toku_env_set_lg_max(env, lg_max); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_get_lg_max(DB_ENV * env, u_int32_t *lg_maxp) {
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    toku_ydb_lock(); int r = toku_env_get_lg_max(env, lg_maxp); toku_ydb_unlock(); return r;
}

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static int 
locked_env_set_lk_detect(DB_ENV * env, u_int32_t detect) {
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    toku_ydb_lock(); int r = toku_env_set_lk_detect(env, detect); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_set_tmp_dir(DB_ENV * env, const char *tmp_dir) {
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    toku_ydb_lock(); int r = toku_env_set_tmp_dir(env, tmp_dir); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_set_verbose(DB_ENV * env, u_int32_t which, int onoff) {
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    toku_ydb_lock(); int r = toku_env_set_verbose(env, which, onoff); toku_ydb_unlock(); return r;
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}

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static int 
locked_env_txn_stat(DB_ENV * env, DB_TXN_STAT ** statp, u_int32_t flags) {
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    toku_ydb_lock(); int r = toku_env_txn_stat(env, statp, flags); toku_ydb_unlock(); return r;
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}

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static int
env_checkpointing_set_period(DB_ENV * env, u_int32_t seconds) {
    HANDLE_PANICKED_ENV(env);
    int r;
    if (!env_opened(env)) r = EINVAL;
    else
        r = toku_set_checkpoint_period(env->i->cachetable, seconds);
    return r;
}

static int
locked_env_checkpointing_set_period(DB_ENV * env, u_int32_t seconds) {
    toku_ydb_lock(); int r = env_checkpointing_set_period(env, seconds); toku_ydb_unlock(); return r;
}

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static int
locked_env_create_indexer(DB_ENV *env,
                          DB_TXN *txn,
                          DB_INDEXER **indexerp,
                          DB *src_db,
                          int N,
                          DB *dest_dbs[N],
                          uint32_t db_flags[N],
                          uint32_t indexer_flags) {
    toku_ydb_lock();
    int r = toku_indexer_create_indexer(env, txn, indexerp, src_db, N, dest_dbs, db_flags, indexer_flags);
    toku_ydb_unlock();
    return r;
}


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static int
env_checkpointing_get_period(DB_ENV * env, u_int32_t *seconds) {
    HANDLE_PANICKED_ENV(env);
    int r = 0;
    if (!env_opened(env)) r = EINVAL;
    else 
        *seconds = toku_get_checkpoint_period(env->i->cachetable);
    return r;
}

static int
locked_env_checkpointing_get_period(DB_ENV * env, u_int32_t *seconds) {
    toku_ydb_lock(); int r = env_checkpointing_get_period(env, seconds); toku_ydb_unlock(); return r;
}

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static int
env_checkpointing_postpone(DB_ENV * env) {
    HANDLE_PANICKED_ENV(env);
    int r = 0;
    if (!env_opened(env)) r = EINVAL;
    else toku_checkpoint_safe_client_lock();
    return r;
}

static int
env_checkpointing_resume(DB_ENV * env) {
    HANDLE_PANICKED_ENV(env);
    int r = 0;
    if (!env_opened(env)) r = EINVAL;
    else toku_checkpoint_safe_client_unlock();
    return r;
}

static int
env_checkpointing_begin_atomic_operation(DB_ENV * env) {
    HANDLE_PANICKED_ENV(env);
    int r = 0;
    if (!env_opened(env)) r = EINVAL;
    else toku_multi_operation_client_lock();
    return r;
}

static int
env_checkpointing_end_atomic_operation(DB_ENV * env) {
    HANDLE_PANICKED_ENV(env);
    int r = 0;
    if (!env_opened(env)) r = EINVAL;
    else toku_multi_operation_client_unlock();
    return r;
}

static int
env_set_default_bt_compare(DB_ENV * env, int (*bt_compare) (DB *, const DBT *, const DBT *)) {
    HANDLE_PANICKED_ENV(env);
    int r = 0;
    if (env_opened(env)) r = EINVAL;
    else {
        env->i->bt_compare = bt_compare;
    }
    return r;
}

static int
locked_env_set_default_bt_compare(DB_ENV * env, int (*bt_compare) (DB *, const DBT *, const DBT *)) {
    toku_ydb_lock();
    int r = env_set_default_bt_compare(env, bt_compare);
    toku_ydb_unlock();
    return r;
}

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static int
1573
env_set_generate_row_callback_for_put(DB_ENV *env, generate_row_for_put_func generate_row_for_put) {
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    HANDLE_PANICKED_ENV(env);
    int r = 0;
    if (env_opened(env)) r = EINVAL;
    else {
1578
        env->i->generate_row_for_put = generate_row_for_put;
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    }
    return r;
}

static int
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env_set_generate_row_callback_for_del(DB_ENV *env, generate_row_for_del_func generate_row_for_del) {
    HANDLE_PANICKED_ENV(env);
    int r = 0;
    if (env_opened(env)) r = EINVAL;
    else {
        env->i->generate_row_for_del = generate_row_for_del;
    }
    return r;
}

static int
locked_env_set_generate_row_callback_for_put(DB_ENV *env, generate_row_for_put_func generate_row_for_put) {
1596
    toku_ydb_lock();
1597
    int r = env_set_generate_row_callback_for_put(env, generate_row_for_put);
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    toku_ydb_unlock();
    return r;
}

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static int
locked_env_set_generate_row_callback_for_del(DB_ENV *env, generate_row_for_del_func generate_row_for_del) {
    toku_ydb_lock();
    int r = env_set_generate_row_callback_for_del(env, generate_row_for_del);
    toku_ydb_unlock();
    return r;
}

1610
static int env_put_multiple(DB_ENV *env, DB *src_db, DB_TXN *txn, 
1611
                            const DBT *src_key, const DBT *src_val, 
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                            uint32_t num_dbs, DB **db_array, DBT *keys, DBT *vals, uint32_t *flags_array);
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static int env_del_multiple(DB_ENV *env, DB *src_db, DB_TXN *txn, 
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                            const DBT *src_key, const DBT *src_val, 
1616
                            uint32_t num_dbs, DB **db_array, DBT *keys, uint32_t *flags_array);
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static int env_update_multiple(DB_ENV *env, DB *src_db, DB_TXN *txn, 
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                               DBT *old_src_key, DBT *old_src_data,
                               DBT *new_src_key, DBT *new_src_data,
                               uint32_t num_dbs, DB **db_array, uint32_t* flags_array, 
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                               uint32_t num_keys, DBT *keys, 
1623
                               uint32_t num_vals, DBT *vals);
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static int
1626
locked_env_put_multiple(DB_ENV *env, DB *src_db, DB_TXN *txn, const DBT *src_key, const DBT *src_val, uint32_t num_dbs, DB **db_array, DBT *keys, DBT *vals, uint32_t *flags_array) {
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    int r = env_check_avail_fs_space(env);
    if (r == 0) {
	toku_ydb_lock();
1630
	r = env_put_multiple(env, src_db, txn, src_key, src_val, num_dbs, db_array, keys, vals, flags_array);
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	toku_ydb_unlock();
    }
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    return r;
}

static int
1637
locked_env_del_multiple(DB_ENV *env, DB *src_db, DB_TXN *txn, const DBT *src_key, const DBT *src_val, uint32_t num_dbs, DB **db_array, DBT *keys, uint32_t *flags_array) {
1638
    toku_ydb_lock();
1639
    int r = env_del_multiple(env, src_db, txn, src_key, src_val, num_dbs, db_array, keys, flags_array);
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    toku_ydb_unlock();
    return r;
}

1644 1645
static int
locked_env_update_multiple(DB_ENV *env, DB *src_db, DB_TXN *txn,                                
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                           DBT *old_src_key, DBT *old_src_data,
                           DBT *new_src_key, DBT *new_src_data,
                           uint32_t num_dbs, DB **db_array, uint32_t* flags_array, 
1649
                           uint32_t num_keys, DBT *keys, 
1650
                           uint32_t num_vals, DBT *vals) {
1651
    toku_ydb_lock();
1652
    int r = env_update_multiple(env, src_db, txn, old_src_key, old_src_data, new_src_key, new_src_data, num_dbs, db_array, flags_array, num_keys, keys, num_vals, vals);
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    toku_ydb_unlock();
    return r;
}
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static int
env_set_redzone(DB_ENV *env, int redzone) {
    HANDLE_PANICKED_ENV(env);
    int r;
    if (env_opened(env))
        r = EINVAL;
    else {
        env->i->redzone = redzone;
        r = 0;
    }
    return r;
}

static int 
locked_env_set_redzone(DB_ENV *env, int redzone) {
    toku_ydb_lock();
    int r= env_set_redzone(env, redzone);
    toku_ydb_unlock();
    return r;
}

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static void
format_time(const time_t *timer, char *buf) {
    ctime_r(timer, buf);
    size_t len = strlen(buf);
    assert(len < 26);
    char end;

    assert(len>=1);
    end = buf[len-1];
    while (end == '\n' || end == '\r') {
        buf[len-1] = '\0';
        len--;
        assert(len>=1);
        end = buf[len-1];
    }
}
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// Do not take ydb lock or any other lock around or in this function.  
// If the engine is blocked because some thread is holding a lock, this function
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// can help diagnose the problem.
// This function only collects information, and it does not matter if something gets garbled
// because of a race condition.  
1700
// Note, engine status is still collected even if the environment or logger is panicked
1701
static int
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env_get_engine_status(DB_ENV * env, ENGINE_STATUS * engstat, char * env_panic_string_buf, int env_panic_string_length) {
    int r;
    if (env_panic_string_buf) {
	if (env && env->i && env->i->is_panicked && env->i->panic_string)
	    strncpy(env_panic_string_buf, env->i->panic_string, env_panic_string_length);
	else 
	    *env_panic_string_buf = '\0';
    }

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    if ( !(env)     || 
	 !(env->i)  || 
	 !(env_opened(env)) )
	r = EINVAL;
1715
    else {
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	r = 0;
	engstat->env_panic = env->i->is_panicked;
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	format_time(&persistent_creation_time, engstat->creationtime);
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	time_t now = time(NULL);
        format_time(&now, engstat->now);
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        format_time(&startuptime, engstat->startuptime);
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	{
	    SCHEDULE_STATUS_S schedstat;
	    toku_ydb_lock_get_status(&schedstat);
	    engstat->ydb_lock_ctr = schedstat.ydb_lock_ctr;                        /* how many times has ydb lock been taken/released */ 
	    engstat->max_possible_sleep = schedstat.max_possible_sleep;            /* max possible sleep time for ydb lock scheduling (constant) */ 
	    engstat->processor_freq_mhz = schedstat.processor_freq_mhz;            /* clock frequency in MHz */
	    engstat->max_requested_sleep = schedstat.max_requested_sleep;          /* max sleep time requested, can be larger than max possible */ 
	    engstat->times_max_sleep_used = schedstat.times_max_sleep_used;        /* number of times the max_possible_sleep was used to sleep */ 
	    engstat->total_sleepers = schedstat.total_sleepers;                    /* total number of times a client slept for ydb lock scheduling */ 
	    engstat->total_sleep_time = schedstat.total_sleep_time;                /* total time spent sleeping for ydb lock scheduling */ 
	    engstat->max_waiters = schedstat.max_waiters;                          /* max number of simultaneous client threads kept waiting for ydb lock  */ 
	    engstat->total_waiters = schedstat.total_waiters;                      /* total number of times a client thread waited for ydb lock  */ 
	    engstat->total_clients = schedstat.total_clients;                      /* total number of separate client threads that use ydb lock  */ 
	    engstat->time_ydb_lock_held_unavailable = schedstat.time_ydb_lock_held_unavailable;  /* number of times a thread migrated and theld is unavailable */ 
	    engstat->total_time_ydb_lock_held = schedstat.total_time_ydb_lock_held;/* total time client threads held the ydb lock  */ 
	    engstat->max_time_ydb_lock_held = schedstat.max_time_ydb_lock_held;    /* max time client threads held the ydb lock  */ 
	}

1740
	engstat->checkpoint_period = toku_get_checkpoint_period_unlocked(env->i->cachetable);  // do not take any locks (not even minicron lock)
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	{
            CHECKPOINT_STATUS_S cpstat;
            toku_checkpoint_get_status(&cpstat);
            engstat->checkpoint_footprint = cpstat.footprint;
	    format_time(&cpstat.time_last_checkpoint_begin_complete, engstat->checkpoint_time_begin_complete);
	    format_time(&cpstat.time_last_checkpoint_begin,          engstat->checkpoint_time_begin);
	    format_time(&cpstat.time_last_checkpoint_end,            engstat->checkpoint_time_end);
1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769
	    engstat->checkpoint_last_lsn   = cpstat.last_lsn;
	    engstat->checkpoint_count      = cpstat.checkpoint_count;
	    engstat->checkpoint_count_fail = cpstat.checkpoint_count_fail;
	}
	{
	    TXN_STATUS_S txnstat;
	    toku_txn_get_status(&txnstat);
	    engstat->txn_begin   = txnstat.begin;
	    engstat->txn_commit  = txnstat.commit;
	    engstat->txn_abort   = txnstat.abort;
	    engstat->txn_close   = txnstat.close;
	    {
		uint64_t oldest_xid = 0;
		uint64_t next_lsn   = 0;
		TOKULOGGER logger = env->i->logger;
		if (logger) {
		    oldest_xid = toku_logger_get_oldest_living_xid(env->i->logger);
		    next_lsn   = (toku_logger_get_next_lsn(env->i->logger)).lsn;
		}
		engstat->txn_oldest_live = oldest_xid;
		engstat->next_lsn = next_lsn;
	    }
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	}
1771 1772 1773
	{
	    CACHETABLE_STATUS_S ctstat;
	    toku_cachetable_get_status(env->i->cachetable, &ctstat);
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	    engstat->cachetable_lock_taken    = ctstat.lock_taken;
	    engstat->cachetable_lock_released = ctstat.lock_released;
	    engstat->cachetable_hit           = ctstat.hit;
	    engstat->cachetable_miss          = ctstat.miss;
	    engstat->cachetable_misstime      = ctstat.misstime;
	    engstat->cachetable_waittime      = ctstat.waittime;
	    engstat->cachetable_wait_reading  = ctstat.wait_reading;
	    engstat->cachetable_wait_writing  = ctstat.wait_writing;
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	    engstat->cachetable_wait_checkpoint = ctstat.wait_checkpoint;
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	    engstat->puts                     = ctstat.puts;
	    engstat->prefetches               = ctstat.prefetches;
	    engstat->maybe_get_and_pins       = ctstat.maybe_get_and_pins;
	    engstat->maybe_get_and_pin_hits   = ctstat.maybe_get_and_pin_hits;
	    engstat->cachetable_size_current  = ctstat.size_current;
	    engstat->cachetable_size_limit    = ctstat.size_limit;
	    engstat->cachetable_size_writing  = ctstat.size_writing;
	    engstat->get_and_pin_footprint    = ctstat.get_and_pin_footprint;
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	    engstat->local_checkpoint         = ctstat.local_checkpoint;
	    engstat->local_checkpoint_files   = ctstat.local_checkpoint_files;
	    engstat->local_checkpoint_during_checkpoint = ctstat.local_checkpoint_during_checkpoint;
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	}
1795 1796
	{
	    toku_ltm* ltm = env->i->ltm;
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	    LTM_STATUS_S ltmstat;
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	    uint32_t max_locks, curr_locks;
	    uint64_t max_lock_memory, curr_lock_memory;
	    toku_ltm_get_status(ltm, &max_locks, &curr_locks, 
				&max_lock_memory, &curr_lock_memory,
				&ltmstat);
1803 1804
	    engstat->range_locks_max                 = max_locks;
	    engstat->range_locks_curr                = curr_locks;
1805 1806
	    engstat->range_locks_max_memory          = max_lock_memory;
	    engstat->range_locks_curr_memory         = curr_lock_memory;
1807 1808
	    engstat->range_lock_escalation_successes = ltmstat.lock_escalation_successes;
	    engstat->range_lock_escalation_failures  = ltmstat.lock_escalation_failures;
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	    engstat->range_read_locks                = ltmstat.read_lock;
	    engstat->range_read_locks_fail           = ltmstat.read_lock_fail;
	    engstat->range_out_of_read_locks         = ltmstat.out_of_read_locks;
	    engstat->range_write_locks               = ltmstat.write_lock;
	    engstat->range_write_locks_fail          = ltmstat.write_lock_fail;
	    engstat->range_out_of_write_locks        = ltmstat.out_of_write_locks;
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	}
1816
	{
1817
     	    engstat->inserts            = num_inserts;
1818
	    engstat->inserts_fail       = num_inserts_fail;
1819
	    engstat->deletes            = num_deletes;
1820
	    engstat->deletes_fail       = num_deletes_fail;
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	    engstat->updates            = num_updates;
	    engstat->updates_fail       = num_updates_fail;
     	    engstat->multi_inserts      = num_multi_inserts;
	    engstat->multi_inserts_fail = num_multi_inserts_fail;
	    engstat->multi_deletes      = num_multi_deletes;
	    engstat->multi_deletes_fail = num_multi_deletes_fail;
	    engstat->multi_updates      = num_multi_updates;
	    engstat->multi_updates_fail = num_multi_updates_fail;
1829 1830 1831
	    engstat->point_queries      = num_point_queries;
	    engstat->sequential_queries = num_sequential_queries;
	}
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	{
	    u_int64_t fsync_count, fsync_time;
	    toku_get_fsync_times(&fsync_count, &fsync_time);
	    engstat->fsync_count = fsync_count;
	    engstat->fsync_time  = fsync_time;
	}
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	{
	    LOGGER_STATUS_S log_stat;
	    TOKULOGGER logger = env->i->logger;
	    toku_logger_get_status(logger, &log_stat);
	    engstat->logger_ilock_ctr = log_stat.ilock_ctr;
	    engstat->logger_olock_ctr = log_stat.olock_ctr;
	    engstat->logger_swap_ctr  = log_stat.swap_ctr;
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	    engstat->logger_panic     = log_stat.panicked;
	    engstat->logger_panic_errno = log_stat.panic_errno;
1847
	}
1848 1849
	{
	    time_t    enospc_most_recent_timestamp;
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	    u_int64_t enospc_threads_blocked, enospc_ctr;
	    toku_fs_get_write_info(&enospc_most_recent_timestamp, &enospc_threads_blocked, &enospc_ctr);
1852 1853
	    format_time(&enospc_most_recent_timestamp, engstat->enospc_most_recent);	    
	    engstat->enospc_threads_blocked = enospc_threads_blocked;
1854
	    engstat->enospc_ctr = enospc_ctr;
1855
	}
1856
	{
1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873
	    engstat->enospc_redzone_ctr   = env->i->enospc_redzone_ctr;   // number of operations rejected by enospc prevention (red zone)
	    engstat->enospc_state         = env->i->fs_state;
	}
	{
	    LOADER_STATUS_S loader_stat;
	    toku_loader_get_status(&loader_stat);
	    engstat->loader_create         = loader_stat.create;
	    engstat->loader_create_fail    = loader_stat.create_fail;
	    engstat->loader_put            = loader_stat.put;
	    engstat->loader_close          = loader_stat.close;
	    engstat->loader_close_fail     = loader_stat.close_fail;
	    engstat->loader_abort          = loader_stat.abort;
	    engstat->loader_current        = loader_stat.current;
	    engstat->loader_max            = loader_stat.max;
	    
	    engstat->logsuppress     = logsuppress;
	    engstat->logsuppressfail = logsuppressfail;
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	}
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	{
	    INDEXER_STATUS_S indexer_stat;
	    toku_indexer_get_status(&indexer_stat);
	    engstat->indexer_create         = indexer_stat.create;
	    engstat->indexer_create_fail    = indexer_stat.create_fail;
	    engstat->indexer_build          = indexer_stat.build;
	    engstat->indexer_build_fail     = indexer_stat.build_fail;
	    engstat->indexer_close          = indexer_stat.close;
	    engstat->indexer_close_fail     = indexer_stat.close_fail;
	    engstat->indexer_abort          = indexer_stat.abort;
	    engstat->indexer_current        = indexer_stat.current;
	    engstat->indexer_max            = indexer_stat.max;
	}
1888
	{
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	    BRT_UPGRADE_STATUS_S brt_upgrade_stat;
	    toku_brt_get_upgrade_status(&brt_upgrade_stat);
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	    uint64_t upgrade_footprint  = toku_log_upgrade_get_footprint();
	    // Footprint of upgrade maybe performed for this time environment is opened
	    // is provided in six least significant decimal digits, footprint of 
	    // upgrade performed when environment was actually upgraded is provided
	    // in most significant decimal digits.
	    // If ver_at_startup == 12, then the footprint will have the same value in 
	    // upper and lower digits.
	    engstat->upgrade_env_status = (persistent_upgrade_v13_footprint * 1000000) + upgrade_footprint;
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	    engstat->upgrade_header     = brt_upgrade_stat.header_12;
	    engstat->upgrade_nonleaf    = brt_upgrade_stat.nonleaf_12;
	    engstat->upgrade_leaf       = brt_upgrade_stat.leaf_12;
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	    engstat->original_ver       = persistent_original_env_version;
	    engstat->ver_at_startup     = persistent_stored_env_version_at_startup;
	    engstat->last_lsn_v12       = persistent_last_lsn_of_v12;
	    format_time(&persistent_upgrade_v13_time, engstat->upgrade_v13_time);
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	}
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    }
    return r;
}

1911

1912
// Fill buff with text description of engine status up to bufsiz bytes.
1913 1914
// Intended for use by test programs that do not have the handlerton available,
// and for use by toku_assert logic to print diagnostic info on crash.
1915 1916 1917
static int
env_get_engine_status_text(DB_ENV * env, char * buff, int bufsiz) {
    ENGINE_STATUS engstat;
Zardosht Kasheff's avatar
Zardosht Kasheff committed
1918
    uint32_t stringsize = 80;
1919
    char panicstring[stringsize];
1920 1921
    int n = 0;  // number of characters printed so far

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    int r = env_get_engine_status(env, &engstat, panicstring, stringsize);    

    if (strlen(panicstring)) {
	invariant(strlen(panicstring) <= stringsize);
	n += snprintf(buff + n, bufsiz - n, "Env panic: %s\n", panicstring);
    }

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    if (r) {
	n += snprintf(buff + n, bufsiz - n, "Engine status not available: ");
	if (!env) {
	    n += snprintf(buff + n, bufsiz - n, "no environment\n");
	}
	else if (!(env->i)) {
	    n += snprintf(buff + n, bufsiz - n, "environment internal struct is null\n");
	}
	else if (!env_opened(env)) {
	    n += snprintf(buff + n, bufsiz - n, "environment is not open\n");
	}
    }
    else {
1942
	n += snprintf(buff + n, bufsiz - n, "env panic                        %"PRIu64"\n", engstat.env_panic);
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	n += snprintf(buff + n, bufsiz - n, "creationtime                     %s \n", engstat.creationtime);
	n += snprintf(buff + n, bufsiz - n, "startuptime                      %s \n", engstat.startuptime);
	n += snprintf(buff + n, bufsiz - n, "now                              %s \n", engstat.now);
	n += snprintf(buff + n, bufsiz - n, "ydb_lock_ctr                     %"PRIu64"\n", engstat.ydb_lock_ctr);
	n += snprintf(buff + n, bufsiz - n, "max_possible_sleep               %"PRIu64"\n", engstat.max_possible_sleep);
	n += snprintf(buff + n, bufsiz - n, "processor_freq_mhz               %"PRIu64"\n", engstat.processor_freq_mhz);
	n += snprintf(buff + n, bufsiz - n, "max_requested_sleep              %"PRIu64"\n", engstat.max_requested_sleep);
	n += snprintf(buff + n, bufsiz - n, "times_max_sleep_used             %"PRIu64"\n", engstat.times_max_sleep_used);
	n += snprintf(buff + n, bufsiz - n, "total_sleepers                   %"PRIu64"\n", engstat.total_sleepers);
	n += snprintf(buff + n, bufsiz - n, "total_sleep_time                 %"PRIu64"\n", engstat.total_sleep_time);
	n += snprintf(buff + n, bufsiz - n, "max_waiters                      %"PRIu64"\n", engstat.max_waiters);
	n += snprintf(buff + n, bufsiz - n, "total_waiters                    %"PRIu64"\n", engstat.total_waiters);
	n += snprintf(buff + n, bufsiz - n, "total_clients                    %"PRIu64"\n", engstat.total_clients);
	n += snprintf(buff + n, bufsiz - n, "time_ydb_lock_held_unavailable   %"PRIu64"\n", engstat.time_ydb_lock_held_unavailable);
	n += snprintf(buff + n, bufsiz - n, "max_time_ydb_lock_held           %"PRIu64"\n", engstat.max_time_ydb_lock_held);
	n += snprintf(buff + n, bufsiz - n, "total_time_ydb_lock_held         %"PRIu64"\n", engstat.total_time_ydb_lock_held);
	n += snprintf(buff + n, bufsiz - n, "checkpoint_period                %d \n", engstat.checkpoint_period);
	n += snprintf(buff + n, bufsiz - n, "checkpoint_footprint             %d \n", engstat.checkpoint_footprint);
	n += snprintf(buff + n, bufsiz - n, "checkpoint_time_begin            %s \n", engstat.checkpoint_time_begin);
	n += snprintf(buff + n, bufsiz - n, "checkpoint_time_begin_complete   %s \n", engstat.checkpoint_time_begin_complete);
	n += snprintf(buff + n, bufsiz - n, "checkpoint_time_end              %s \n", engstat.checkpoint_time_end);
	n += snprintf(buff + n, bufsiz - n, "checkpoint_last_lsn              %"PRIu64"\n", engstat.checkpoint_last_lsn);
	n += snprintf(buff + n, bufsiz - n, "checkpoint_count                 %"PRIu32"\n", engstat.checkpoint_count);
	n += snprintf(buff + n, bufsiz - n, "checkpoint_count_fail            %"PRIu32"\n", engstat.checkpoint_count_fail);
	n += snprintf(buff + n, bufsiz - n, "txn_begin                        %"PRIu64"\n", engstat.txn_begin);
	n += snprintf(buff + n, bufsiz - n, "txn_commit                       %"PRIu64"\n", engstat.txn_commit);
	n += snprintf(buff + n, bufsiz - n, "txn_abort                        %"PRIu64"\n", engstat.txn_abort);
	n += snprintf(buff + n, bufsiz - n, "txn_close                        %"PRIu64"\n", engstat.txn_close);
	n += snprintf(buff + n, bufsiz - n, "txn_oldest_live                  %"PRIu64"\n", engstat.txn_oldest_live);
	n += snprintf(buff + n, bufsiz - n, "next_lsn                         %"PRIu64"\n", engstat.next_lsn);
	n += snprintf(buff + n, bufsiz - n, "cachetable_lock_taken            %"PRIu64"\n", engstat.cachetable_lock_taken);
	n += snprintf(buff + n, bufsiz - n, "cachetable_lock_released         %"PRIu64"\n", engstat.cachetable_lock_released);
	n += snprintf(buff + n, bufsiz - n, "cachetable_hit                   %"PRIu64"\n", engstat.cachetable_hit);
	n += snprintf(buff + n, bufsiz - n, "cachetable_miss                  %"PRIu64"\n", engstat.cachetable_miss);
	n += snprintf(buff + n, bufsiz - n, "cachetable_misstime              %"PRIu64"\n", engstat.cachetable_misstime);
	n += snprintf(buff + n, bufsiz - n, "cachetable_waittime              %"PRIu64"\n", engstat.cachetable_waittime);
	n += snprintf(buff + n, bufsiz - n, "cachetable_wait_reading          %"PRIu64"\n", engstat.cachetable_wait_reading);
	n += snprintf(buff + n, bufsiz - n, "cachetable_wait_writing          %"PRIu64"\n", engstat.cachetable_wait_writing);
	n += snprintf(buff + n, bufsiz - n, "puts                             %"PRIu64"\n", engstat.puts);
	n += snprintf(buff + n, bufsiz - n, "prefetches                       %"PRIu64"\n", engstat.prefetches);
	n += snprintf(buff + n, bufsiz - n, "maybe_get_and_pins               %"PRIu64"\n", engstat.maybe_get_and_pins);
	n += snprintf(buff + n, bufsiz - n, "maybe_get_and_pin_hits           %"PRIu64"\n", engstat.maybe_get_and_pin_hits);
	n += snprintf(buff + n, bufsiz - n, "cachetable_size_current          %"PRId64"\n", engstat.cachetable_size_current);
	n += snprintf(buff + n, bufsiz - n, "cachetable_size_limit            %"PRId64"\n", engstat.cachetable_size_limit);
	n += snprintf(buff + n, bufsiz - n, "cachetable_size_writing          %"PRId64"\n", engstat.cachetable_size_writing);
	n += snprintf(buff + n, bufsiz - n, "get_and_pin_footprint            %"PRId64"\n", engstat.get_and_pin_footprint);
	n += snprintf(buff + n, bufsiz - n, "local_checkpoint                 %"PRId64"\n", engstat.local_checkpoint);
	n += snprintf(buff + n, bufsiz - n, "local_checkpoint_files           %"PRId64"\n", engstat.local_checkpoint_files);
	n += snprintf(buff + n, bufsiz - n, "local_checkpoint_during_checkpoint  %"PRId64"\n", engstat.local_checkpoint_during_checkpoint);
	n += snprintf(buff + n, bufsiz - n, "range_locks_max                  %"PRIu32"\n", engstat.range_locks_max);
	n += snprintf(buff + n, bufsiz - n, "range_locks_curr                 %"PRIu32"\n", engstat.range_locks_curr);
	n += snprintf(buff + n, bufsiz - n, "range_locks_max_memory           %"PRIu64"\n", engstat.range_locks_max_memory);
	n += snprintf(buff + n, bufsiz - n, "range_locks_curr_memory          %"PRIu64"\n", engstat.range_locks_curr_memory);
	n += snprintf(buff + n, bufsiz - n, "range_locks_escalation_successes %"PRIu32"\n", engstat.range_lock_escalation_successes);
	n += snprintf(buff + n, bufsiz - n, "range_locks_escalation_failures  %"PRIu32"\n", engstat.range_lock_escalation_failures);
	n += snprintf(buff + n, bufsiz - n, "range_read_locks                 %"PRIu64"\n", engstat.range_read_locks);
	n += snprintf(buff + n, bufsiz - n, "range_read_locks_fail            %"PRIu64"\n", engstat.range_read_locks_fail);
	n += snprintf(buff + n, bufsiz - n, "range_out_of_read_locks          %"PRIu64"\n", engstat.range_out_of_read_locks);
	n += snprintf(buff + n, bufsiz - n, "range_write_locks                %"PRIu64"\n", engstat.range_write_locks);
	n += snprintf(buff + n, bufsiz - n, "range_write_locks_fail           %"PRIu64"\n", engstat.range_write_locks_fail);
	n += snprintf(buff + n, bufsiz - n, "range_out_of_write_locks         %"PRIu64"\n", engstat.range_out_of_write_locks);
	n += snprintf(buff + n, bufsiz - n, "inserts                          %"PRIu64"\n", engstat.inserts);
	n += snprintf(buff + n, bufsiz - n, "inserts_fail                     %"PRIu64"\n", engstat.inserts_fail);
	n += snprintf(buff + n, bufsiz - n, "deletes                          %"PRIu64"\n", engstat.deletes);
	n += snprintf(buff + n, bufsiz - n, "deletes_fail                     %"PRIu64"\n", engstat.deletes_fail);
2008 2009 2010 2011 2012 2013 2014 2015
	n += snprintf(buff + n, bufsiz - n, "updates                          %"PRIu64"\n", engstat.updates);
	n += snprintf(buff + n, bufsiz - n, "updates_fail                     %"PRIu64"\n", engstat.updates_fail);
	n += snprintf(buff + n, bufsiz - n, "multi_inserts                    %"PRIu64"\n", engstat.multi_inserts);
	n += snprintf(buff + n, bufsiz - n, "multi_inserts_fail               %"PRIu64"\n", engstat.multi_inserts_fail);
	n += snprintf(buff + n, bufsiz - n, "multi_deletes                    %"PRIu64"\n", engstat.multi_deletes);
	n += snprintf(buff + n, bufsiz - n, "multi_deletes_fail               %"PRIu64"\n", engstat.multi_deletes_fail);
	n += snprintf(buff + n, bufsiz - n, "multi_updates                    %"PRIu64"\n", engstat.multi_updates);
	n += snprintf(buff + n, bufsiz - n, "multi_updates_fail               %"PRIu64"\n", engstat.multi_updates_fail);
2016 2017 2018 2019 2020 2021 2022
	n += snprintf(buff + n, bufsiz - n, "point_queries                    %"PRIu64"\n", engstat.point_queries);
	n += snprintf(buff + n, bufsiz - n, "sequential_queries               %"PRIu64"\n", engstat.sequential_queries);
	n += snprintf(buff + n, bufsiz - n, "fsync_count                      %"PRIu64"\n", engstat.fsync_count);
	n += snprintf(buff + n, bufsiz - n, "fsync_time                       %"PRIu64"\n", engstat.fsync_time);
	n += snprintf(buff + n, bufsiz - n, "logger ilock count               %"PRIu64"\n", engstat.logger_ilock_ctr);
	n += snprintf(buff + n, bufsiz - n, "logger olock count               %"PRIu64"\n", engstat.logger_olock_ctr);
	n += snprintf(buff + n, bufsiz - n, "logger swap count                %"PRIu64"\n", engstat.logger_swap_ctr);
2023 2024
	n += snprintf(buff + n, bufsiz - n, "logger panic                     %"PRIu64"\n", engstat.logger_panic);
	n += snprintf(buff + n, bufsiz - n, "logger panic_errno               %"PRIu64"\n", engstat.logger_panic_errno);
2025 2026 2027 2028 2029 2030
	n += snprintf(buff + n, bufsiz - n, "enospc_most_recent               %s \n", engstat.enospc_most_recent);
	n += snprintf(buff + n, bufsiz - n, "enospc threads blocked           %"PRIu64"\n", engstat.enospc_threads_blocked);
	n += snprintf(buff + n, bufsiz - n, "enospc count                     %"PRIu64"\n", engstat.enospc_ctr);
	n += snprintf(buff + n, bufsiz - n, "enospc redzone ctr               %"PRIu64"\n", engstat.enospc_redzone_ctr);
	n += snprintf(buff + n, bufsiz - n, "enospc state                     %"PRIu64"\n", engstat.enospc_state);
	n += snprintf(buff + n, bufsiz - n, "loader_create                    %"PRIu64"\n", engstat.loader_create);
2031
	n += snprintf(buff + n, bufsiz - n, "loader_create_fail               %"PRIu64"\n", engstat.loader_create_fail);
2032 2033 2034 2035 2036 2037 2038 2039
	n += snprintf(buff + n, bufsiz - n, "loader_put                       %"PRIu64"\n", engstat.loader_put);
	n += snprintf(buff + n, bufsiz - n, "loader_close                     %"PRIu64"\n", engstat.loader_close);
	n += snprintf(buff + n, bufsiz - n, "loader_close_fail                %"PRIu64"\n", engstat.loader_close_fail);
	n += snprintf(buff + n, bufsiz - n, "loader_abort                     %"PRIu64"\n", engstat.loader_abort);
	n += snprintf(buff + n, bufsiz - n, "loader_current                   %"PRIu32"\n", engstat.loader_current);
	n += snprintf(buff + n, bufsiz - n, "loader_max                       %"PRIu32"\n", engstat.loader_max);
	n += snprintf(buff + n, bufsiz - n, "logsuppress                      %"PRIu64"\n", engstat.logsuppress);
	n += snprintf(buff + n, bufsiz - n, "logsuppressfail                  %"PRIu64"\n", engstat.logsuppressfail);
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	n += snprintf(buff + n, bufsiz - n, "indexer_create                   %"PRIu64"\n", engstat.indexer_create);
	n += snprintf(buff + n, bufsiz - n, "indexer_create_fail              %"PRIu64"\n", engstat.indexer_create_fail);
	n += snprintf(buff + n, bufsiz - n, "indexer_build                    %"PRIu64"\n", engstat.indexer_build);
	n += snprintf(buff + n, bufsiz - n, "indexer_build_fail               %"PRIu64"\n", engstat.indexer_build_fail);
	n += snprintf(buff + n, bufsiz - n, "indexer_close                    %"PRIu64"\n", engstat.indexer_close);
	n += snprintf(buff + n, bufsiz - n, "indexer_close_fail               %"PRIu64"\n", engstat.indexer_close_fail);
	n += snprintf(buff + n, bufsiz - n, "indexer_abort                    %"PRIu64"\n", engstat.indexer_abort);
	n += snprintf(buff + n, bufsiz - n, "indexer_current                  %"PRIu32"\n", engstat.indexer_current);
	n += snprintf(buff + n, bufsiz - n, "indexer_max                      %"PRIu32"\n", engstat.indexer_max);
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	n += snprintf(buff + n, bufsiz - n, "upgrade_env_status               %"PRIu64"\n", engstat.upgrade_env_status);
	n += snprintf(buff + n, bufsiz - n, "upgrade_header                   %"PRIu64"\n", engstat.upgrade_header);
	n += snprintf(buff + n, bufsiz - n, "upgrade_nonleaf                  %"PRIu64"\n", engstat.upgrade_nonleaf);
	n += snprintf(buff + n, bufsiz - n, "upgrade_leaf                     %"PRIu64"\n", engstat.upgrade_leaf);
	n += snprintf(buff + n, bufsiz - n, "original_ver                     %"PRIu64"\n", engstat.original_ver);
	n += snprintf(buff + n, bufsiz - n, "ver_at_startup                   %"PRIu64"\n", engstat.ver_at_startup);
	n += snprintf(buff + n, bufsiz - n, "last_lsn_v12                     %"PRIu64"\n", engstat.last_lsn_v12);
	n += snprintf(buff + n, bufsiz - n, "upgrade_v13_time                 %s \n", engstat.upgrade_v13_time);
    }
2058 2059 2060
    if (n > bufsiz) {
	char * errmsg = "BUFFER TOO SMALL\n";
	int len = strlen(errmsg) + 1;
2061
	(void) snprintf(buff + (bufsiz - 1) - len, len, "%s", errmsg);
2062 2063 2064 2065 2066
    }

    return r;
}

2067 2068 2069 2070 2071 2072 2073 2074 2075
static int toku_maybe_get_engine_status_text (char* buff, int buffsize);

// assign value to global pointer so that other files can access via tentative definition if linked to this library (.so)
int (*toku_maybe_get_engine_status_text_p)(char* buff, int buffsize) = toku_maybe_get_engine_status_text;

// intended for use by toku_assert logic, when env is not known
static int 
toku_maybe_get_engine_status_text (char * buff, int buffsize) {
    DB_ENV * env = most_recent_env;
2076 2077 2078 2079 2080 2081 2082 2083
    int r;
    if (engine_status_enable) {
	r = env_get_engine_status_text(env, buff, buffsize);
    }
    else {
	r = ENODATA;
	snprintf(buff, buffsize, "Engine status not available: disabled by user.  This should only happen in test programs.\n");
    }
2084 2085 2086 2087 2088
    return r;
}



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2089 2090
static int locked_txn_begin(DB_ENV * env, DB_TXN * stxn, DB_TXN ** txn, u_int32_t flags);

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static int toku_db_lt_panic(DB* db, int r);

static toku_dbt_cmp toku_db_get_compare_fun(DB* db);

2095 2096
static int 
toku_env_create(DB_ENV ** envp, u_int32_t flags) {
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    int r = ENOSYS;
    DB_ENV* result = NULL;

2100 2101
    engine_status_enable = 1;

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    if (flags!=0)    { r = EINVAL; goto cleanup; }
    MALLOC(result);
    if (result == 0) { r = ENOMEM; goto cleanup; }
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2105
    memset(result, 0, sizeof *result);
2106
    result->err = (void (*)(const DB_ENV * env, int error, const char *fmt, ...)) toku_locked_env_err;
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#define SENV(name) result->name = locked_env_ ## name
    SENV(dbremove);
    SENV(dbrename);
    SENV(set_default_bt_compare);
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    SENV(set_generate_row_callback_for_put);
    SENV(set_generate_row_callback_for_del);
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    SENV(put_multiple);
    SENV(del_multiple);
2115
    SENV(update_multiple);
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    SENV(checkpointing_set_period);
    SENV(checkpointing_get_period);
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    result->checkpointing_postpone = env_checkpointing_postpone;
    result->checkpointing_resume = env_checkpointing_resume;
    result->checkpointing_begin_atomic_operation = env_checkpointing_begin_atomic_operation;
    result->checkpointing_end_atomic_operation = env_checkpointing_end_atomic_operation;
2122
    result->get_engine_status = env_get_engine_status;
2123
    result->get_engine_status_text = env_get_engine_status_text;
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    result->get_iname = env_get_iname;
    SENV(open);
    SENV(close);
2127
    result->txn_checkpoint = toku_env_txn_checkpoint;
2128
    SENV(log_flush);
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    result->set_errcall = toku_env_set_errcall;
    result->set_errfile = toku_env_set_errfile;
    result->set_errpfx = toku_env_set_errpfx;
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    //SENV(set_noticecall);
    SENV(set_flags);
    SENV(set_data_dir);
    SENV(set_tmp_dir);
    SENV(set_verbose);
    SENV(set_lg_bsize);
    SENV(set_lg_dir);
    SENV(set_lg_max);
    SENV(get_lg_max);
    SENV(set_lk_max_locks);
    SENV(get_lk_max_locks);
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    SENV(set_lk_max_memory);
    SENV(get_lk_max_memory);
2145
    SENV(set_cachesize);
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#if DB_VERSION_MAJOR == 4 && DB_VERSION_MINOR >= 3
2147
    SENV(get_cachesize);
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#endif
2149
    SENV(set_lk_detect);
2150
#if DB_VERSION_MAJOR == 4 && DB_VERSION_MINOR <= 4
2151
    SENV(set_lk_max);
2152
#endif
2153 2154
    SENV(log_archive);
    SENV(txn_stat);
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2155
    result->txn_begin = locked_txn_begin;
2156
    SENV(set_redzone);
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    SENV(create_indexer);
    // note : create_loader should use SENV
2159
    result->create_loader = toku_loader_create_loader;
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#undef SENV
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2162
    MALLOC(result->i);
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    if (result->i == 0) { r = ENOMEM; goto cleanup; }
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    memset(result->i, 0, sizeof *result->i);
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    result->i->envdir_lockfd  = -1;
    result->i->datadir_lockfd = -1;
    result->i->logdir_lockfd  = -1;
    result->i->tmpdir_lockfd  = -1;
2169
    env_init_open_txn(result);
2170
    env_fs_init(result);
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2172 2173
    r = toku_ltm_create(&result->i->ltm,
                        __toku_env_default_max_locks, __toku_env_default_max_lock_memory,
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                         toku_db_lt_panic, 
2175
                         toku_db_get_compare_fun,
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                         toku_malloc, toku_free, toku_realloc);
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    if (r!=0) { goto cleanup; }
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2179
    {
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	r = toku_logger_create(&result->i->logger);
	if (r!=0) { goto cleanup; }
2182 2183
	assert(result->i->logger);
    }
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    {
        r = toku_omt_create(&result->i->open_dbs);
        if (r!=0) goto cleanup;
        assert(result->i->open_dbs);
    }
2189

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    *envp = result;
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    r = 0;
cleanup:
    if (r!=0) {
        if (result) {
            if (result->i) {
                if (result->i->ltm) {
                    toku_ltm_close(result->i->ltm);
                }
2199 2200
                if (result->i->open_dbs)
                    toku_omt_destroy(&result->i->open_dbs);
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                toku_free(result->i);
            }
            toku_free(result);
        }
    }
    return r;
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}

2209 2210
int 
DB_ENV_CREATE_FUN (DB_ENV ** envp, u_int32_t flags) {
2211 2212 2213 2214
    toku_ydb_lock(); 
    int r = toku_env_create(envp, flags); 
    toku_ydb_unlock(); 
    return r;
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}

2217 2218
static int 
toku_txn_release_locks(DB_TXN* txn) {
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    assert(txn);
2220
    toku_lth* lth = db_txn_struct_i(txn)->lth;
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    int r = ENOSYS;
    int first_error = 0;
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    if (lth) {
        toku_lth_start_scan(lth);
        toku_lock_tree* next = toku_lth_next(lth);
        while (next) {
2228
            r = toku_lt_unlock(next, toku_txn_get_txnid(db_txn_struct_i(txn)->tokutxn));
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            if (!first_error && r!=0) { first_error = r; }
            if (r == 0) {
                r = toku_lt_remove_ref(next);
                if (!first_error && r!=0) { first_error = r; }
            }
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            next = toku_lth_next(lth);
        }
        toku_lth_close(lth);
2237
        db_txn_struct_i(txn)->lth = NULL;
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    }
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    r = first_error;

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    return r;
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}

2244 2245
// Yield the lock so someone else can work, and then reacquire the lock.
// Useful while processing commit or rollback logs, to allow others to access the system.
2246 2247
static void 
ydb_yield (voidfp f, void *fv, void *UU(v)) {
2248
    toku_ydb_unlock(); 
2249
    if (f) f(fv);
2250 2251 2252
    toku_ydb_lock();
}

2253 2254 2255
static int 
toku_txn_commit(DB_TXN * txn, u_int32_t flags,
                TXN_PROGRESS_POLL_FUNCTION poll, void* poll_extra) {
2256
    if (!txn) return EINVAL;
2257
    HANDLE_PANICKED_ENV(txn->mgrp);
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    //Recursively kill off children
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    if (db_txn_struct_i(txn)->child) {
        //commit of child sets the child pointer to NULL
2261
        int r_child = toku_txn_commit(db_txn_struct_i(txn)->child, flags, NULL, NULL);
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        if (r_child !=0 && !toku_env_is_panicked(txn->mgrp)) {
            txn->mgrp->i->is_panicked = r_child;
            txn->mgrp->i->panic_string = toku_strdup("Recursive child commit failed during parent commit.\n");
        }
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        //In a panicked env, the child may not be removed from the list.
        HANDLE_PANICKED_ENV(txn->mgrp);
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    }
2269
    assert(!db_txn_struct_i(txn)->child);
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    //Remove from parent
    if (txn->parent) {
2272 2273
        assert(db_txn_struct_i(txn->parent)->child == txn);
        db_txn_struct_i(txn->parent)->child=NULL;
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    }
2275
    env_remove_open_txn(txn->mgrp, txn);
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    //toku_ydb_notef("flags=%d\n", flags);
2277 2278 2279 2280
    if (flags & DB_TXN_SYNC) {
        toku_txn_force_fsync_on_commit(db_txn_struct_i(txn)->tokutxn);
        flags &= ~DB_TXN_SYNC;
    }
2281
    int nosync = (flags & DB_TXN_NOSYNC)!=0 || (db_txn_struct_i(txn)->flags&DB_TXN_NOSYNC);
2282
    flags &= ~DB_TXN_NOSYNC;
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    int r;
2285
    if (flags!=0)
2286 2287
	// frees the tokutxn
	// Calls ydb_yield(NULL) occasionally
2288
        //r = toku_logger_abort(db_txn_struct_i(txn)->tokutxn, ydb_yield, NULL);
2289
        r = toku_txn_abort_txn(db_txn_struct_i(txn)->tokutxn, ydb_yield, NULL, poll, poll_extra);
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    else
2291 2292
	// frees the tokutxn
	// Calls ydb_yield(NULL) occasionally
2293
        //r = toku_logger_commit(db_txn_struct_i(txn)->tokutxn, nosync, ydb_yield, NULL);
2294
        r = toku_txn_commit_txn(db_txn_struct_i(txn)->tokutxn, nosync, ydb_yield, NULL,
2295
				poll, poll_extra);
2296

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    if (r!=0 && !toku_env_is_panicked(txn->mgrp)) {
        txn->mgrp->i->is_panicked = r;
        txn->mgrp->i->panic_string = toku_strdup("Error during commit.\n");
    }
    //If panicked, we're done.
    HANDLE_PANICKED_ENV(txn->mgrp);
    assert(r==0);

2305
    // Close the logger after releasing the locks
2306
    r = toku_txn_release_locks(txn);
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    //toku_logger_txn_close(db_txn_struct_i(txn)->tokutxn);
    toku_txn_close_txn(db_txn_struct_i(txn)->tokutxn);
2309
    // the toxutxn is freed, and we must free the rest. */
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2311 2312 2313
    //Promote list to parent (dbs that must close before abort)
    if (txn->parent) {
        //Combine lists.
2314 2315 2316
        while (!toku_list_empty(&db_txn_struct_i(txn)->dbs_that_must_close_before_abort)) {
            struct toku_list *list = toku_list_pop(&db_txn_struct_i(txn)->dbs_that_must_close_before_abort);
            toku_list_push(&db_txn_struct_i(txn->parent)->dbs_that_must_close_before_abort, list);
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        }
    }
    else {
        //Empty the list
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        while (!toku_list_empty(&db_txn_struct_i(txn)->dbs_that_must_close_before_abort)) {
            toku_list_pop(&db_txn_struct_i(txn)->dbs_that_must_close_before_abort);
2323 2324 2325
        }
    }

2326
    // The txn is no good after the commit even if the commit fails, so free it up.
2327 2328 2329
#if !TOKUDB_NATIVE_H
    toku_free(db_txn_struct_i(txn));
#endif
2330
    toku_free(txn);    txn = NULL;
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    if (flags!=0) return EINVAL;
2332
    return r;
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}

2335 2336
static u_int32_t 
toku_txn_id(DB_TXN * txn) {
2337
    HANDLE_PANICKED_ENV(txn->mgrp);
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    toku_ydb_barf();
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    abort();
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    return -1;
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}

2343 2344 2345
static int 
toku_txn_abort(DB_TXN * txn,
               TXN_PROGRESS_POLL_FUNCTION poll, void* poll_extra) {
2346
    HANDLE_PANICKED_ENV(txn->mgrp);
2347
    //Recursively kill off children (abort or commit are both correct, commit is cheaper)
2348 2349
    if (db_txn_struct_i(txn)->child) {
        //commit of child sets the child pointer to NULL
2350
        int r_child = toku_txn_commit(db_txn_struct_i(txn)->child, DB_TXN_NOSYNC, NULL, NULL);
2351 2352 2353 2354
        if (r_child !=0 && !toku_env_is_panicked(txn->mgrp)) {
            txn->mgrp->i->is_panicked = r_child;
            txn->mgrp->i->panic_string = toku_strdup("Recursive child commit failed during parent abort.\n");
        }
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        //In a panicked env, the child may not be removed from the list.
        HANDLE_PANICKED_ENV(txn->mgrp);
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    }
2358
    assert(!db_txn_struct_i(txn)->child);
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    //Remove from parent
    if (txn->parent) {
2361 2362
        assert(db_txn_struct_i(txn->parent)->child == txn);
        db_txn_struct_i(txn->parent)->child=NULL;
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    }
2364
    env_remove_open_txn(txn->mgrp, txn);
2365 2366

    //All dbs that must close before abort, must now be closed
2367
    assert(toku_list_empty(&db_txn_struct_i(txn)->dbs_that_must_close_before_abort));
2368

2369
    //int r = toku_logger_abort(db_txn_struct_i(txn)->tokutxn, ydb_yield, NULL);
2370
    int r = toku_txn_abort_txn(db_txn_struct_i(txn)->tokutxn, ydb_yield, NULL, poll, poll_extra);
2371 2372 2373 2374 2375 2376 2377
    if (r!=0 && !toku_env_is_panicked(txn->mgrp)) {
        txn->mgrp->i->is_panicked = r;
        txn->mgrp->i->panic_string = toku_strdup("Error during abort.\n");
    }
    HANDLE_PANICKED_ENV(txn->mgrp);
    assert(r==0);
    r = toku_txn_release_locks(txn);
2378 2379
    //toku_logger_txn_close(db_txn_struct_i(txn)->tokutxn);
    toku_txn_close_txn(db_txn_struct_i(txn)->tokutxn);
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2381 2382 2383
#if !TOKUDB_NATIVE_H
    toku_free(db_txn_struct_i(txn));
#endif
2384
    toku_free(txn);
2385
    return r;
2386 2387
}

2388 2389
static int 
locked_txn_begin(DB_ENV *env, DB_TXN * stxn, DB_TXN ** txn, u_int32_t flags) {
2390
    toku_ydb_lock(); int r = toku_txn_begin(env, stxn, txn, flags, 0); toku_ydb_unlock(); return r;
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}

2393 2394
static u_int32_t 
locked_txn_id(DB_TXN *txn) {
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    toku_ydb_lock(); u_int32_t r = toku_txn_id(txn); toku_ydb_unlock(); return r;
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}

2398 2399
static int 
toku_txn_stat (DB_TXN *txn, struct txn_stat **txn_stat) {
2400
    XMALLOC(*txn_stat);
2401
    return toku_logger_txn_rollback_raw_count(db_txn_struct_i(txn)->tokutxn, &(*txn_stat)->rollback_raw_count);
2402 2403
}

2404 2405
static int 
locked_txn_stat (DB_TXN *txn, struct txn_stat **txn_stat) {
2406 2407 2408
    toku_ydb_lock(); u_int32_t r = toku_txn_stat(txn, txn_stat); toku_ydb_unlock(); return r;
}

2409 2410 2411
static int 
locked_txn_commit_with_progress(DB_TXN *txn, u_int32_t flags,
                                TXN_PROGRESS_POLL_FUNCTION poll, void* poll_extra) {
2412
    toku_multi_operation_client_lock(); //Cannot checkpoint during a commit.
2413
    toku_ydb_lock(); int r = toku_txn_commit(txn, flags, poll, poll_extra); toku_ydb_unlock();
2414
    toku_multi_operation_client_unlock(); //Cannot checkpoint during a commit.
2415
    return r;
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}

2418 2419 2420
static int 
locked_txn_abort_with_progress(DB_TXN *txn,
                               TXN_PROGRESS_POLL_FUNCTION poll, void* poll_extra) {
2421
    toku_multi_operation_client_lock(); //Cannot checkpoint during an abort.
2422
    toku_ydb_lock(); int r = toku_txn_abort(txn, poll, poll_extra); toku_ydb_unlock();
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    toku_multi_operation_client_unlock(); //Cannot checkpoint during an abort.
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    return r;
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}

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static int 
locked_txn_commit(DB_TXN *txn, u_int32_t flags) {
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    int r;
    r = locked_txn_commit_with_progress(txn, flags, NULL, NULL);
    return r;
}

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static int 
locked_txn_abort(DB_TXN *txn) {
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    int r;
    r = locked_txn_abort_with_progress(txn, NULL, NULL);
    return r;
}

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static int 
toku_txn_begin(DB_ENV *env, DB_TXN * stxn, DB_TXN ** txn, u_int32_t flags, int internal) {
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    HANDLE_PANICKED_ENV(env);
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    HANDLE_ILLEGAL_WORKING_PARENT_TXN(env, stxn); //Cannot create child while child already exists.
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    if (!toku_logger_is_open(env->i->logger)) return toku_ydb_do_error(env, EINVAL, "Environment does not have logging enabled\n");
    if (!(env->i->open_flags & DB_INIT_TXN))  return toku_ydb_do_error(env, EINVAL, "Environment does not have transactions enabled\n");
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    u_int32_t txn_flags = 0;
    txn_flags |= DB_TXN_NOWAIT; //We do not support blocking locks.
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    TOKU_ISOLATION child_isolation = 0;
    u_int32_t iso_flags = flags & DB_ISOLATION_FLAGS;
    if (!(iso_flags == 0 || 
          iso_flags == DB_TXN_SNAPSHOT || 
          iso_flags == DB_READ_COMMITTED || 
          iso_flags == DB_READ_UNCOMMITTED || 
          iso_flags == DB_SERIALIZABLE || 
          iso_flags == DB_INHERIT_ISOLATION)
       ) 
    {
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        return toku_ydb_do_error(
            env, 
            EINVAL, 
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            "Invalid isolation flags set\n"
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            );
    }
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    flags &= ~iso_flags;

    if (internal && stxn) {
        child_isolation = db_txn_struct_i(stxn)->iso;
    }
    else {
        switch (iso_flags) {
            case (DB_INHERIT_ISOLATION):
                if (stxn) {
                    child_isolation = db_txn_struct_i(stxn)->iso;
                }
                else {
                    return toku_ydb_do_error(
                        env, 
                        EINVAL, 
                        "Cannot set DB_INHERIT_ISOLATION when no parent exists\n"
                        );                    
                }
                break;
            case (DB_READ_COMMITTED):
                child_isolation = TOKU_ISO_READ_COMMITTED;
                break;
            case (DB_READ_UNCOMMITTED):
                child_isolation = TOKU_ISO_READ_UNCOMMITTED;
                break;
            case (DB_TXN_SNAPSHOT):
                child_isolation = TOKU_ISO_SNAPSHOT;
                break;
            case (DB_SERIALIZABLE):
            case (0):
                child_isolation = TOKU_ISO_SERIALIZABLE;
                break;
            default:
                assert(FALSE); // error path is above, so this should not happen
                break;
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        }
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    }
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    if (stxn && child_isolation != db_txn_struct_i(stxn)->iso) {
        return toku_ydb_do_error(
            env, 
            EINVAL, 
            "Cannot set isolation level of transaction to something different \
                isolation level\n"
            );   
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    }
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    if (flags&DB_TXN_NOWAIT) {
        txn_flags |=  DB_TXN_NOWAIT;
        flags     &= ~DB_TXN_NOWAIT;
    }
    if (flags&DB_TXN_NOSYNC) {
        txn_flags |=  DB_TXN_NOSYNC;
        flags     &= ~DB_TXN_NOSYNC;
    }
    if (flags!=0) return toku_ydb_do_error(env, EINVAL, "Invalid flags passed to DB_ENV->txn_begin\n");

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    size_t result_size = sizeof(DB_TXN)+sizeof(struct __toku_db_txn_internal); // the internal stuff is stuck on the end.
    DB_TXN *result = toku_malloc(result_size);
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    if (result == 0)
        return ENOMEM;
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    memset(result, 0, result_size);
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    //toku_ydb_notef("parent=%p flags=0x%x\n", stxn, flags);
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    result->mgrp = env;
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#define STXN(name) result->name = locked_txn_ ## name
    STXN(abort);
    STXN(commit);
    STXN(abort_with_progress);
    STXN(commit_with_progress);
    STXN(id);
#undef STXN
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    result->txn_stat = locked_txn_stat;
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    result->parent = stxn;
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#if !TOKUDB_NATIVE_H
    MALLOC(db_txn_struct_i(result));
    if (!db_txn_struct_i(result)) {
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        toku_free(result);
        return ENOMEM;
    }
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#endif
    memset(db_txn_struct_i(result), 0, sizeof *db_txn_struct_i(result));
    db_txn_struct_i(result)->flags = txn_flags;
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    db_txn_struct_i(result)->iso = child_isolation;
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    toku_list_init(&db_txn_struct_i(result)->dbs_that_must_close_before_abort);
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    int r;
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    if (env->i->open_flags & DB_INIT_LOCK && !stxn) {
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        r = toku_lth_create(&db_txn_struct_i(result)->lth,
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                            toku_malloc, toku_free, toku_realloc);
        if (r!=0) {
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#if !TOKUDB_NATIVE_H
            toku_free(db_txn_struct_i(result));
#endif
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            toku_free(result);
            return r;
        }
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    }
    
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    //r = toku_logger_txn_begin(stxn ? db_txn_struct_i(stxn)->tokutxn : 0, &db_txn_struct_i(result)->tokutxn, env->i->logger);
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    TXN_SNAPSHOT_TYPE snapshot_type;
    switch(db_txn_struct_i(result)->iso){
        case(TOKU_ISO_SNAPSHOT):
        {
            snapshot_type = TXN_SNAPSHOT_ROOT;
            break;
        }
        case(TOKU_ISO_READ_COMMITTED):
        {
            snapshot_type = TXN_SNAPSHOT_CHILD;
            break;
        }
        default:
        {
            snapshot_type = TXN_SNAPSHOT_NONE;
            break;
        }
    }
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    r = toku_txn_begin_txn(result,		   
			   stxn ? db_txn_struct_i(stxn)->tokutxn : 0, 
			   &db_txn_struct_i(result)->tokutxn, 
			   env->i->logger,
			   snapshot_type
			   );
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    if (r != 0)
        return r;
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    //Add to the list of children for the parent.
    if (result->parent) {
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        assert(!db_txn_struct_i(result->parent)->child);
        db_txn_struct_i(result->parent)->child = result;
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    }
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    env_add_open_txn(env, result);
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    *txn = result;
    return 0;
}

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int 
log_compare(const DB_LSN * a, const DB_LSN * b) {
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    toku_ydb_lock();
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    fprintf(stderr, "%s:%d log_compare(%p,%p)\n", __FILE__, __LINE__, a, b);
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    assert(0);
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    toku_ydb_unlock();
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    return 0;
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}

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static void env_note_zombie_db_closed(DB_ENV *env, DB *db);

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static int
db_close_before_brt(DB *db, u_int32_t UU(flags)) {
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    if (db_opened(db) && db->i->dname) {
        // internal (non-user) dictionary has no dname
        env_note_zombie_db_closed(db->dbenv, db);  // tell env that this db is no longer a zombie (it is completely closed)
    }
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    char *error_string = 0;
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    int r1 = toku_close_brt(db->i->brt, &error_string);
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    if (r1) {
	db->dbenv->i->is_panicked = r1; // Panicking the whole environment may be overkill, but I'm not sure what else to do.
	db->dbenv->i->panic_string = error_string;
	if (error_string) {
	    toku_ydb_do_error(db->dbenv, r1, "%s\n", error_string);
	} else {
	    toku_ydb_do_error(db->dbenv, r1, "Closing file\n");
	}
	error_string=0;
    }
    assert(error_string==0);
    int r2 = 0;
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    if (db->i->lt) {
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        toku_lt_remove_db_ref(db->i->lt, db);
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    }
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    // printf("%s:%d %d=__toku_db_close(%p)\n", __FILE__, __LINE__, r, db);
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    // Even if panicked, let's close as much as we can.
    int is_panicked = toku_env_is_panicked(db->dbenv); 
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    toku_sdbt_cleanup(&db->i->skey);
    toku_sdbt_cleanup(&db->i->sval);
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    if (db->i->dname) toku_free(db->i->dname);
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    toku_free(db->i);
    toku_free(db);
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    if (r1) return r1;
    if (r2) return r2;
    if (is_panicked) return EINVAL;
    return 0;
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}

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// return 0 if v and dbv refer to same db (including same dname)
// return <0 if v is earlier in omt than dbv
// return >0 if v is later in omt than dbv
static int
find_db_by_db (OMTVALUE v, void *dbv) {
    DB *db = v;            // DB* that is stored in the omt
    DB *dbfind = dbv;      // extra, to be compared to v
    int cmp;
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    const char *dname     = db->i->dname;
    const char *dnamefind = dbfind->i->dname;
    cmp = strcmp(dname, dnamefind);
    if (cmp != 0) return cmp;
    int is_zombie     = db->i->is_zombie != 0;
    int is_zombiefind = dbfind->i->is_zombie != 0;
    cmp = is_zombie - is_zombiefind;
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    if (cmp != 0) return cmp;
    if (db < dbfind) return -1;
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    if (db > dbfind) return  1;
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    return 0;
}

// Tell env that there is a new db handle (with non-unique dname in db->i-dname)
static void
env_note_db_opened(DB_ENV *env, DB *db) {
    assert(db->i->dname);  // internal (non-user) dictionary has no dname
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    assert(!db->i->is_zombie);
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    int r;
    OMTVALUE dbv;
    uint32_t idx;
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    env->i->num_open_dbs++;
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    r = toku_omt_find_zero(env->i->open_dbs, find_db_by_db, db, &dbv, &idx, NULL);
    assert(r==DB_NOTFOUND); //Must not already be there.
    r = toku_omt_insert_at(env->i->open_dbs, db, idx);
    assert(r==0);
}

static void
env_note_db_closed(DB_ENV *env, DB *db) {
    assert(db->i->dname);
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    assert(!db->i->is_zombie);
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    assert(env->i->num_open_dbs);
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    int r;
    OMTVALUE dbv;
    uint32_t idx;
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    env->i->num_open_dbs--;
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    r = toku_omt_find_zero(env->i->open_dbs, find_db_by_db, db, &dbv, &idx, NULL);
    assert(r==0); //Must already be there.
    assert((DB*)dbv == db);
    r = toku_omt_delete_at(env->i->open_dbs, idx);
    assert(r==0);
}

// Tell env that there is a new db handle (with non-unique dname in db->i-dname)
static void
env_note_zombie_db(DB_ENV *env, DB *db) {
    assert(db->i->dname);  // internal (non-user) dictionary has no dname
    assert(db->i->is_zombie);
    int r;
    OMTVALUE dbv;
    uint32_t idx;
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    env->i->num_zombie_dbs++;
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    r = toku_omt_find_zero(env->i->open_dbs, find_db_by_db, db, &dbv, &idx, NULL);
    assert(r==DB_NOTFOUND); //Must not already be there.
    r = toku_omt_insert_at(env->i->open_dbs, db, idx);
    assert(r==0);
}

static void
env_note_zombie_db_closed(DB_ENV *env, DB *db) {
    assert(db->i->dname);
    assert(db->i->is_zombie);
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    assert(env->i->num_zombie_dbs);
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    int r;
    OMTVALUE dbv;
    uint32_t idx;
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    env->i->num_zombie_dbs--;
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    r = toku_omt_find_zero(env->i->open_dbs, find_db_by_db, db, &dbv, &idx, NULL);
    assert(r==0); //Must already be there.
    assert((DB*)dbv == db);
    r = toku_omt_delete_at(env->i->open_dbs, idx);
    assert(r==0);
}

static int
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find_zombie_db_by_dname (OMTVALUE v, void *dnamev) {
    DB *db = v;            // DB* that is stored in the omt
    int cmp;
    const char *dname     = db->i->dname;
    const char *dnamefind = dnamev;
    cmp = strcmp(dname, dnamefind);
    if (cmp != 0) return cmp;
    int is_zombie     = db->i->is_zombie != 0;
    int is_zombiefind = 1;
    cmp = is_zombie - is_zombiefind;
    return cmp;
}

static int
find_open_db_by_dname (OMTVALUE v, void *dnamev) {
    DB *db = v;            // DB* that is stored in the omt
    int cmp;
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    const char *dname     = db->i->dname;
    const char *dnamefind = dnamev;
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    cmp = strcmp(dname, dnamefind);
    if (cmp != 0) return cmp;
    int is_zombie     = db->i->is_zombie != 0;
    int is_zombiefind = 0;
    cmp = is_zombie - is_zombiefind;
    return cmp;
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}

// return true if there is any db open with the given dname
static BOOL
env_is_db_with_dname_open(DB_ENV *env, const char *dname) {
    int r;
    BOOL rval;
    OMTVALUE dbv;
    uint32_t idx;
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    r = toku_omt_find_zero(env->i->open_dbs, find_open_db_by_dname, (void*)dname, &dbv, &idx, NULL);
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    if (r==0) {
        DB *db = dbv;
        assert(strcmp(dname, db->i->dname) == 0);
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        assert(!db->i->is_zombie);
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        rval = TRUE;
    }
    else {
        assert(r==DB_NOTFOUND);
        rval = FALSE;
    }
    return rval;
}

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// return true if there is any db open with the given dname
static DB*
env_get_zombie_db_with_dname(DB_ENV *env, const char *dname) {
    int r;
    DB* rval;
    OMTVALUE dbv;
    uint32_t idx;
    r = toku_omt_find_zero(env->i->open_dbs, find_zombie_db_by_dname, (void*)dname, &dbv, &idx, NULL);
    if (r==0) {
        DB *db = dbv;
        assert(db);
        assert(strcmp(dname, db->i->dname) == 0);
        assert(db->i->is_zombie);
        rval = db;
    }
    else {
        assert(r==DB_NOTFOUND);
        rval = NULL;
    }
    return rval;
}

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void
toku_db_add_ref(DB *db) {
    db->i->refs++;
}

void
toku_db_release_ref(DB *db){
    db->i->refs--;
}

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//DB->close()
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static int 
toku_db_close(DB * db, u_int32_t flags) {
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    int r = 0;
    if (db->i->refs != 1) {
        r = EBUSY;
    } else {
        db->i->refs = 0;
        if (db_opened(db) && db->i->dname) {
            // internal (non-user) dictionary has no dname
            env_note_db_closed(db->dbenv, db);  // tell env that this db is no longer in use by the user of this api (user-closed, may still be in use by fractal tree internals)
            db->i->is_zombie = TRUE;
            env_note_zombie_db(db->dbenv, db);  // tell env that this db is a zombie
        }
        //Remove from transaction's list of 'must close' if necessary.
        if (!toku_list_empty(&db->i->dbs_that_must_close_before_abort))
            toku_list_remove(&db->i->dbs_that_must_close_before_abort);
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        r = toku_brt_db_delay_closed(db->i->brt, db, db_close_before_brt, flags);
    }
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    return r;
}


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//Get the main portion of a cursor flag (excluding the bitwise or'd components).
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static int 
get_main_cursor_flag(u_int32_t flags) {
2841
    return flags & DB_OPFLAGS_MASK;
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}

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static int 
get_nonmain_cursor_flags(u_int32_t flags) {
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    return flags & ~(DB_OPFLAGS_MASK);
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}

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static inline BOOL 
toku_c_uninitialized(DBC* c) {
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    return toku_brt_cursor_uninitialized(dbc_struct_i(c)->c);
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}            
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typedef struct query_context_wrapped_t {
    DBT               *key;
    DBT               *val;
    struct simple_dbt *skey;
    struct simple_dbt *sval;
} *QUERY_CONTEXT_WRAPPED, QUERY_CONTEXT_WRAPPED_S;

static inline void
query_context_wrapped_init(QUERY_CONTEXT_WRAPPED context, DBC *c, DBT *key, DBT *val) {
    context->key  = key;
    context->val  = val;
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    context->skey = dbc_struct_i(c)->skey;
    context->sval = dbc_struct_i(c)->sval;
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}

static int
c_get_wrapper_callback(DBT const *key, DBT const *val, void *extra) {
    QUERY_CONTEXT_WRAPPED context = extra;
    int r;
              r = toku_dbt_set(key->size, key->data, context->key, context->skey);
    if (r==0) r = toku_dbt_set(val->size, val->data, context->val, context->sval);
    return r;
}

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static int 
toku_c_get_current_unconditional(DBC* c, u_int32_t flags, DBT* key, DBT* val) {
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    int r;
    QUERY_CONTEXT_WRAPPED_S context; 
    query_context_wrapped_init(&context, c, key, val);
    r = toku_c_getf_current_binding(c, flags, c_get_wrapper_callback, &context);
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    return r;
}

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static inline void 
toku_swap_flag(u_int32_t* flag, u_int32_t* get_flag, u_int32_t new_flag) {
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    *flag    -= *get_flag;
    *get_flag =  new_flag;
    *flag    += *get_flag;
}

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/*
    Used for partial implementation of nested transactions.
    Work is done by children as normal, but all locking is done by the
    root of the nested txn tree.
    This may hold extra locks, and will not work as expected when
    a node has two non-completed txns at any time.
*/
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static inline DB_TXN* 
toku_txn_ancestor(DB_TXN* txn) {
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    while (txn && txn->parent) txn = txn->parent;
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    return txn;
}

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static int toku_txn_add_lt(DB_TXN* txn, toku_lock_tree* lt);

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/* c_get has many subfunctions with lots of parameters
 * this structure exists to simplify it. */
typedef struct {
    DBC*        c;                  // The cursor
    DB*         db;                 // db the cursor is iterating over
    DB_TXN*     txn_anc;            // The (root) ancestor of the transaction
    TXNID       id_anc;
    DBT         tmp_key;            // Temporary key to protect out param
    DBT         tmp_val;            // Temporary val to protect out param
    u_int32_t   flag;               // The c_get flag
    u_int32_t   op;                 // The operation portion of the c_get flag
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    u_int32_t   lock_flags;         // The prelock flags.
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    BOOL        cursor_is_write;    // Whether op can change position of cursor
    BOOL        key_is_read;        
    BOOL        key_is_write;
    BOOL        val_is_read;
    BOOL        val_is_write;
    BOOL        duplicates;
    BOOL        tmp_key_malloced;
    BOOL        tmp_val_malloced;
} C_GET_VARS;

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static inline u_int32_t 
get_prelocked_flags(u_int32_t flags) {
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    u_int32_t lock_flags = flags & (DB_PRELOCKED | DB_PRELOCKED_WRITE);
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    return lock_flags;
}
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static inline u_int32_t 
get_cursor_prelocked_flags(u_int32_t flags, DBC* dbc) {
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    u_int32_t lock_flags = flags & (DB_PRELOCKED | DB_PRELOCKED_WRITE);

    //DB_READ_UNCOMMITTED and DB_READ_COMMITTED transactions 'own' all read locks for user-data dictionaries.
    if (dbc_struct_i(dbc)->iso != TOKU_ISO_SERIALIZABLE)
    {
        lock_flags |= DB_PRELOCKED;
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    }
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    return lock_flags;
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}

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static int
toku_c_get(DBC* c, DBT* key, DBT* val, u_int32_t flag) {
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    //This function exists for legacy (test compatibility) purposes/parity with bdb.
    HANDLE_PANICKED_DB(c->dbp);
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
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    u_int32_t main_flag       = get_main_cursor_flag(flag);
    u_int32_t remaining_flags = get_nonmain_cursor_flags(flag);
    int r;
    QUERY_CONTEXT_WRAPPED_S context;
    //Passing in NULL for a key or val means that it is NOT an output.
    //    Both key and val are output:
    //        query_context_wrapped_init(&context, c, key,  val);
    //    Val is output, key is not:
    //            query_context_wrapped_init(&context, c, NULL, val);
    //    Neither key nor val are output:
    //	    query_context_wrapped_init(&context, c, NULL, NULL); // Used for DB_GET_BOTH
    switch (main_flag) {
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        case (DB_FIRST):
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            query_context_wrapped_init(&context, c, key,  val);
            r = toku_c_getf_first(c, remaining_flags, c_get_wrapper_callback, &context);
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            break;
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        case (DB_LAST):
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            query_context_wrapped_init(&context, c, key,  val);
            r = toku_c_getf_last(c, remaining_flags, c_get_wrapper_callback, &context);
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            break;
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        case (DB_NEXT):
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        case (DB_NEXT_NODUP):
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            query_context_wrapped_init(&context, c, key,  val);
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            r = toku_c_getf_next(c, remaining_flags, c_get_wrapper_callback, &context);
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            break;
        case (DB_PREV):
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        case (DB_PREV_NODUP):
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            query_context_wrapped_init(&context, c, key,  val);
            r = toku_c_getf_prev(c, remaining_flags, c_get_wrapper_callback, &context);
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            break;
#ifdef DB_PREV_DUP
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        case (DB_PREV_DUP):
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            query_context_wrapped_init(&context, c, key,  val);
            r = toku_c_getf_prev_dup(c, remaining_flags, c_get_wrapper_callback, &context);
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            break;
#endif
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        case (DB_CURRENT):
            query_context_wrapped_init(&context, c, key,  val);
            r = toku_c_getf_current(c, remaining_flags, c_get_wrapper_callback, &context);
            break;
        case (DB_CURRENT_BINDING):
            query_context_wrapped_init(&context, c, key,  val);
            r = toku_c_getf_current_binding(c, remaining_flags, c_get_wrapper_callback, &context);
            break;

        case (DB_SET):
            query_context_wrapped_init(&context, c, NULL, val);
            r = toku_c_getf_set(c, remaining_flags, key, c_get_wrapper_callback, &context);
            break;
        case (DB_SET_RANGE):
            query_context_wrapped_init(&context, c, key,  val);
            r = toku_c_getf_set_range(c, remaining_flags, key, c_get_wrapper_callback, &context);
            break;
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        case (DB_SET_RANGE_REVERSE):
            query_context_wrapped_init(&context, c, key,  val);
            r = toku_c_getf_set_range_reverse(c, remaining_flags, key, c_get_wrapper_callback, &context);
            break;
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        default:
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            r = EINVAL;
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            break;
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    }
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    return r;
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}

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static int 
locked_c_getf_first(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_first(c, flag, f, extra); toku_ydb_unlock(); return r;
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}

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static int 
locked_c_getf_last(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_last(c, flag, f, extra); toku_ydb_unlock(); return r;
}
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static int 
locked_c_getf_next(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_next(c, flag, f, extra); toku_ydb_unlock(); return r;
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}

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static int 
locked_c_getf_prev(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_prev(c, flag, f, extra); toku_ydb_unlock(); return r;
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}

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static int 
locked_c_getf_current(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_current(c, flag, f, extra); toku_ydb_unlock(); return r;
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}

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static int 
locked_c_getf_current_binding(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_current_binding(c, flag, f, extra); toku_ydb_unlock(); return r;
}
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static int 
locked_c_getf_set(DBC *c, u_int32_t flag, DBT * key, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_set(c, flag, key, f, extra); toku_ydb_unlock(); return r;
}
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static int 
locked_c_getf_set_range(DBC *c, u_int32_t flag, DBT * key, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_set_range(c, flag, key, f, extra); toku_ydb_unlock(); return r;
}
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static int 
locked_c_getf_set_range_reverse(DBC *c, u_int32_t flag, DBT * key, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock();  int r = toku_c_getf_set_range_reverse(c, flag, key, f, extra); toku_ydb_unlock(); return r;
}

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typedef struct {
    BOOL            is_read_lock;
    DB_TXN         *txn;
    DB             *db;
    toku_lock_tree *lt;
    DBT const      *left_key;
    DBT const      *right_key;
} *RANGE_LOCK_REQUEST, RANGE_LOCK_REQUEST_S;
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static void
range_lock_request_init(RANGE_LOCK_REQUEST request,
                        BOOL       is_read_lock,
                        DB_TXN    *txn,
                        DB        *db,
                        DBT const *left_key,
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                        DBT const *right_key) {
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    request->is_read_lock = is_read_lock;
    request->txn = txn;
    request->db = db;
    request->lt = db->i->lt;
    request->left_key = left_key;
    request->right_key = right_key;
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}

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static void
read_lock_request_init(RANGE_LOCK_REQUEST request,
                       DB_TXN    *txn,
                       DB        *db,
                       DBT const *left_key,
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                       DBT const *right_key) {
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    range_lock_request_init(request, TRUE, txn, db,
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                            left_key, right_key);
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}

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static void
write_lock_request_init(RANGE_LOCK_REQUEST request,
                        DB_TXN    *txn,
                        DB        *db,
                        DBT const *left_key,
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                        DBT const *right_key) {
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    range_lock_request_init(request, FALSE, txn, db,
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                            left_key, right_key);
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}

static int
grab_range_lock(RANGE_LOCK_REQUEST request) {
    int r;
    //TODO: (Multithreading) Grab lock protecting lock tree
    DB_TXN *txn_anc = toku_txn_ancestor(request->txn);
    r = toku_txn_add_lt(txn_anc, request->lt);
    if (r==0) {
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        TXNID txn_anc_id = toku_txn_get_txnid(db_txn_struct_i(txn_anc)->tokutxn);
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        if (request->is_read_lock)
            r = toku_lt_acquire_range_read_lock(request->lt, request->db, txn_anc_id,
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                                                request->left_key, request->right_key);
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        else 
            r = toku_lt_acquire_range_write_lock(request->lt, request->db, txn_anc_id,
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                                                 request->left_key, request->right_key);
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    }
    //TODO: (Multithreading) Release lock protecting lock tree
    return r;
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}

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int
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toku_grab_read_lock_on_directory (DB* db, DB_TXN * txn) {
    RANGE_LOCK_REQUEST_S request;
    char *   dname = db->i->dname;
    DBT key_in_directory;
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    // bad hack because some environment dictionaries do not have a dname
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    if (!dname || (db->dbenv->i->directory->i->lt == NULL))
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        return 0;
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    toku_fill_dbt(&key_in_directory, dname, strlen(dname)+1);
    //Left end of range == right end of range (point lock)
    read_lock_request_init(
        &request, 
        txn, 
        db->dbenv->i->directory,
        &key_in_directory,
        &key_in_directory
        );
    int r = grab_range_lock(&request);
    return r;
}

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//This is the user level callback function given to ydb layer functions like
//toku_c_getf_first
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typedef struct __toku_is_write_op {
    BOOL is_write_op;
} WRITE_OP;

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typedef struct query_context_base_t {
    BRT_CURSOR  c;
    DB_TXN     *txn;
    DB         *db;
    void       *f_extra;
    int         r_user_callback;
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    BOOL        do_locking;
    BOOL        is_write_op;
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} *QUERY_CONTEXT_BASE, QUERY_CONTEXT_BASE_S;
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typedef struct query_context_t {
    QUERY_CONTEXT_BASE_S  base;
    YDB_CALLBACK_FUNCTION f;
} *QUERY_CONTEXT, QUERY_CONTEXT_S;
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typedef struct query_context_with_input_t {
    QUERY_CONTEXT_BASE_S  base;
    YDB_CALLBACK_FUNCTION f;
    DBT                  *input_key;
    DBT                  *input_val;
} *QUERY_CONTEXT_WITH_INPUT, QUERY_CONTEXT_WITH_INPUT_S;
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static void
3183
query_context_base_init(QUERY_CONTEXT_BASE context, DBC *c, u_int32_t flag, WRITE_OP is_write_op, void *extra) {
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    context->c       = dbc_struct_i(c)->c;
    context->txn     = dbc_struct_i(c)->txn;
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    context->db      = c->dbp;
    context->f_extra = extra;
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    context->is_write_op = is_write_op.is_write_op;
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    u_int32_t lock_flags = get_cursor_prelocked_flags(flag, c);
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    flag &= ~lock_flags;
3191
    if (context->is_write_op) lock_flags &= DB_PRELOCKED_WRITE; // Only care about whether already locked for write
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    assert(flag==0);
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    context->do_locking = (BOOL)(context->db->i->lt!=NULL && !lock_flags);
3194
    context->r_user_callback = 0;
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}

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static void
query_context_init(QUERY_CONTEXT context, DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
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    WRITE_OP is_write = {FALSE};
    query_context_base_init(&context->base, c, flag, is_write, extra);
    context->f = f;
}

static void
query_context_init_write_op(QUERY_CONTEXT context, DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
    WRITE_OP is_write = {TRUE};
    query_context_base_init(&context->base, c, flag, is_write, extra);
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    context->f = f;
}
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static void
query_context_with_input_init(QUERY_CONTEXT_WITH_INPUT context, DBC *c, u_int32_t flag, DBT *key, DBT *val, YDB_CALLBACK_FUNCTION f, void *extra) {
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    WRITE_OP is_write = {FALSE};
    query_context_base_init(&context->base, c, flag, is_write, extra);
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    context->f         = f;
    context->input_key = key;
    context->input_val = val;
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}

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static int c_del_callback(DBT const *key, DBT const *val, void *extra);

//Delete whatever the cursor is pointing at.
static int
toku_c_del(DBC * c, u_int32_t flags) {
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    HANDLE_PANICKED_DB(c->dbp);
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    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
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    u_int32_t unchecked_flags = flags;
    //DB_DELETE_ANY means delete regardless of whether it exists in the db.
    u_int32_t flag_for_brt = flags&DB_DELETE_ANY;
    unchecked_flags &= ~flag_for_brt;
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    u_int32_t lock_flags = get_cursor_prelocked_flags(flags, c);
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    unchecked_flags &= ~lock_flags;
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    BOOL do_locking = (BOOL)(c->dbp->i->lt && !(lock_flags&DB_PRELOCKED_WRITE));
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    int r = 0;
    if (unchecked_flags!=0) r = EINVAL;
    else {
        if (do_locking) {
            QUERY_CONTEXT_S context;
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            query_context_init_write_op(&context, c, lock_flags, NULL, NULL);
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            //We do not need a read lock, we must already have it.
            r = toku_c_getf_current_binding(c, DB_PRELOCKED, c_del_callback, &context);
        }
        if (r==0) {
            //Do the actual delete.
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            TOKUTXN txn = dbc_struct_i(c)->txn ? db_txn_struct_i(dbc_struct_i(c)->txn)->tokutxn : 0;
            r = toku_brt_cursor_delete(dbc_struct_i(c)->c, flag_for_brt, txn);
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        }
    }
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    return r;
}
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//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_del_callback(DBT const *key, DBT const *val, void *extra) {
    QUERY_CONTEXT_WITH_INPUT super_context = extra;
    QUERY_CONTEXT_BASE       context       = &super_context->base;
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    int r;
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    assert(context->do_locking);
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    assert(context->is_write_op);
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    assert(key!=NULL);
    assert(val!=NULL);
    //Lock:
    //  left(key,val)==right(key,val) == (key, val);
    RANGE_LOCK_REQUEST_S request;
    write_lock_request_init(&request, context->txn, context->db,
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                            key, key);
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    r = grab_range_lock(&request);

    //Give brt-layer an error (if any) to return from toku_c_getf_current_binding
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    return r;
}

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static int c_getf_first_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra);

static int
toku_c_getf_first(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
    HANDLE_PANICKED_DB(c->dbp);
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    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
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    num_point_queries++;   // accountability
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    QUERY_CONTEXT_S context; //Describes the context of this query.
    query_context_init(&context, c, flag, f, extra); 
    //toku_brt_cursor_first will call c_getf_first_callback(..., context) (if query is successful)
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    int r = toku_brt_cursor_first(dbc_struct_i(c)->c, c_getf_first_callback, &context);
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    if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
    return r;
}

//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_getf_first_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra) {
    QUERY_CONTEXT      super_context = extra;
    QUERY_CONTEXT_BASE context       = &super_context->base;

    int r;

    DBT found_key;
    DBT found_val;
    toku_fill_dbt(&found_key, key, keylen);
    toku_fill_dbt(&found_val, val, vallen);

    if (context->do_locking) {
        RANGE_LOCK_REQUEST_S request;
        if (key!=NULL) {
            read_lock_request_init(&request, context->txn, context->db,
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                                   toku_lt_neg_infinity, &found_key);
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        }
        else {
            read_lock_request_init(&request, context->txn, context->db,
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                                   toku_lt_neg_infinity, toku_lt_infinity);
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        }
        r = grab_range_lock(&request);
    }
    else r = 0;

    //Call application-layer callback if found and locks were successfully obtained.
    if (r==0 && key!=NULL) {
        context->r_user_callback = super_context->f(&found_key, &found_val, context->f_extra);
        if (context->r_user_callback) r = TOKUDB_USER_CALLBACK_ERROR;
    }

    //Give brt-layer an error (if any) to return from toku_brt_cursor_first
    return r;
}

static int c_getf_last_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra);

static int
toku_c_getf_last(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
    HANDLE_PANICKED_DB(c->dbp);
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    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
3335
    num_point_queries++;   // accountability
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    QUERY_CONTEXT_S context; //Describes the context of this query.
    query_context_init(&context, c, flag, f, extra); 
    //toku_brt_cursor_last will call c_getf_last_callback(..., context) (if query is successful)
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    int r = toku_brt_cursor_last(dbc_struct_i(c)->c, c_getf_last_callback, &context);
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    if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
    return r;
}

//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_getf_last_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra) {
    QUERY_CONTEXT      super_context = extra;
    QUERY_CONTEXT_BASE context       = &super_context->base;

    int r;

    DBT found_key;
    DBT found_val;
    toku_fill_dbt(&found_key, key, keylen);
    toku_fill_dbt(&found_val, val, vallen);

    if (context->do_locking) {
        RANGE_LOCK_REQUEST_S request;
        if (key!=NULL) {
            read_lock_request_init(&request, context->txn, context->db,
3361
                                   &found_key,           toku_lt_infinity);
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        }
        else {
            read_lock_request_init(&request, context->txn, context->db,
3365
                                   toku_lt_neg_infinity, toku_lt_infinity);
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        }
        r = grab_range_lock(&request);
    }
    else r = 0;

    //Call application-layer callback if found and locks were successfully obtained.
    if (r==0 && key!=NULL) {
        context->r_user_callback = super_context->f(&found_key, &found_val, context->f_extra);
        if (context->r_user_callback) r = TOKUDB_USER_CALLBACK_ERROR;
    }

    //Give brt-layer an error (if any) to return from toku_brt_cursor_last
    return r;
}

static int c_getf_next_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra);

static int
toku_c_getf_next(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
    int r;
    HANDLE_PANICKED_DB(c->dbp);
3387
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
3388
    if (toku_c_uninitialized(c)) r = toku_c_getf_first(c, flag, f, extra);
3389 3390
    else {
        QUERY_CONTEXT_S context; //Describes the context of this query.
3391
        num_sequential_queries++;   // accountability
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        query_context_init(&context, c, flag, f, extra); 
        //toku_brt_cursor_next will call c_getf_next_callback(..., context) (if query is successful)
3394
        r = toku_brt_cursor_next(dbc_struct_i(c)->c, c_getf_next_callback, &context);
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        if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
    }
    return r;
}

//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_getf_next_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra) {
    QUERY_CONTEXT      super_context = extra;
    QUERY_CONTEXT_BASE context       = &super_context->base;

    int r;

    DBT found_key;
    DBT found_val;
    toku_fill_dbt(&found_key, key, keylen);
    toku_fill_dbt(&found_val, val, vallen);

    if (context->do_locking) {
        RANGE_LOCK_REQUEST_S request;
        const DBT *prevkey;
        const DBT *prevval;
        const DBT *right_key = key==NULL ? toku_lt_infinity : &found_key;

        toku_brt_cursor_peek(context->c, &prevkey, &prevval);
        read_lock_request_init(&request, context->txn, context->db,
3421 3422
                               prevkey,
                               right_key);
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        r = grab_range_lock(&request);
    }
    else r = 0;

    //Call application-layer callback if found and locks were successfully obtained.
    if (r==0 && key!=NULL) {
        context->r_user_callback = super_context->f(&found_key, &found_val, context->f_extra);
        if (context->r_user_callback) r = TOKUDB_USER_CALLBACK_ERROR;
    }

    //Give brt-layer an error (if any) to return from toku_brt_cursor_next
    return r;
}

static int c_getf_prev_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra);

static int
toku_c_getf_prev(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
    int r;
    HANDLE_PANICKED_DB(c->dbp);
3443
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
3444
    if (toku_c_uninitialized(c)) r = toku_c_getf_last(c, flag, f, extra);
3445 3446
    else {
        QUERY_CONTEXT_S context; //Describes the context of this query.
3447
        num_sequential_queries++;   // accountability
3448 3449
        query_context_init(&context, c, flag, f, extra); 
        //toku_brt_cursor_prev will call c_getf_prev_callback(..., context) (if query is successful)
3450
        r = toku_brt_cursor_prev(dbc_struct_i(c)->c, c_getf_prev_callback, &context);
3451
        if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
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    }
    return r;
}

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//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_getf_prev_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra) {
    QUERY_CONTEXT      super_context = extra;
    QUERY_CONTEXT_BASE context       = &super_context->base;

    int r;

    DBT found_key;
    DBT found_val;
    toku_fill_dbt(&found_key, key, keylen);
    toku_fill_dbt(&found_val, val, vallen);

    if (context->do_locking) {
        RANGE_LOCK_REQUEST_S request;
        const DBT *prevkey;
        const DBT *prevval;
        const DBT *left_key = key==NULL ? toku_lt_neg_infinity : &found_key;

        toku_brt_cursor_peek(context->c, &prevkey, &prevval);
        read_lock_request_init(&request, context->txn, context->db,
3477 3478
                               left_key,
                               prevkey);
3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490
        r = grab_range_lock(&request);
    }
    else r = 0;

    //Call application-layer callback if found and locks were successfully obtained.
    if (r==0 && key!=NULL) {
        context->r_user_callback = super_context->f(&found_key, &found_val, context->f_extra);
        if (context->r_user_callback) r = TOKUDB_USER_CALLBACK_ERROR;
    }

    //Give brt-layer an error (if any) to return from toku_brt_cursor_prev
    return r;
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}

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static int c_getf_current_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra);

static int
toku_c_getf_current(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
    HANDLE_PANICKED_DB(c->dbp);
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    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
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    QUERY_CONTEXT_S context; //Describes the context of this query.
3501
    num_sequential_queries++;   // accountability
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    query_context_init(&context, c, flag, f, extra); 
    //toku_brt_cursor_current will call c_getf_current_callback(..., context) (if query is successful)
3504
    int r = toku_brt_cursor_current(dbc_struct_i(c)->c, DB_CURRENT, c_getf_current_callback, &context);
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    if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
    return r;
}

//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_getf_current_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra) {
    QUERY_CONTEXT      super_context = extra;
    QUERY_CONTEXT_BASE context       = &super_context->base;

    DBT found_key;
    DBT found_val;
    toku_fill_dbt(&found_key, key, keylen);
    toku_fill_dbt(&found_val, val, vallen);

    int r=0;
    //Call application-layer callback if found.
    if (key!=NULL) {
        context->r_user_callback = super_context->f(&found_key, &found_val, context->f_extra);
        if (context->r_user_callback) r = TOKUDB_USER_CALLBACK_ERROR;
    }

    //Give brt-layer an error (if any) to return from toku_brt_cursor_current
    return r;
}

static int
toku_c_getf_current_binding(DBC *c, u_int32_t flag, YDB_CALLBACK_FUNCTION f, void *extra) {
    HANDLE_PANICKED_DB(c->dbp);
3534
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
3535 3536

    QUERY_CONTEXT_S context; //Describes the context of this query.
3537
    num_sequential_queries++;   // accountability
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    query_context_init(&context, c, flag, f, extra); 
    //toku_brt_cursor_current will call c_getf_current_callback(..., context) (if query is successful)
3540
    int r = toku_brt_cursor_current(dbc_struct_i(c)->c, DB_CURRENT_BINDING, c_getf_current_callback, &context);
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    if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
    return r;
}

static int c_getf_set_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra);

static int
toku_c_getf_set(DBC *c, u_int32_t flag, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra) {
    HANDLE_PANICKED_DB(c->dbp);
3550
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
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    QUERY_CONTEXT_WITH_INPUT_S context; //Describes the context of this query.
3553
    num_point_queries++;   // accountability
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    query_context_with_input_init(&context, c, flag, key, NULL, f, extra); 
    //toku_brt_cursor_set will call c_getf_set_callback(..., context) (if query is successful)
3556
    int r = toku_brt_cursor_set(dbc_struct_i(c)->c, key, c_getf_set_callback, &context);
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    if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
    return r;
}

//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_getf_set_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra) {
    QUERY_CONTEXT_WITH_INPUT super_context = extra;
    QUERY_CONTEXT_BASE       context       = &super_context->base;

    int r;

    DBT found_key;
    DBT found_val;
    toku_fill_dbt(&found_key, key, keylen);
    toku_fill_dbt(&found_val, val, vallen);

    //Lock:
    //  left(key,val)  = (input_key, -infinity)
    //  right(key,val) = (input_key, found ? found_val : infinity)
    if (context->do_locking) {
        RANGE_LOCK_REQUEST_S request;
        if (key!=NULL) {
            read_lock_request_init(&request, context->txn, context->db,
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                                   super_context->input_key,
                                   super_context->input_key);
3583 3584 3585
        }
        else {
            read_lock_request_init(&request, context->txn, context->db,
3586 3587
                                   super_context->input_key,
                                   super_context->input_key);
3588 3589 3590 3591 3592 3593 3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607
        }
        r = grab_range_lock(&request);
    }
    else r = 0;

    //Call application-layer callback if found and locks were successfully obtained.
    if (r==0 && key!=NULL) {
        context->r_user_callback = super_context->f(&found_key, &found_val, context->f_extra);
        if (context->r_user_callback) r = TOKUDB_USER_CALLBACK_ERROR;
    }

    //Give brt-layer an error (if any) to return from toku_brt_cursor_set
    return r;
}

static int c_getf_set_range_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra);

static int
toku_c_getf_set_range(DBC *c, u_int32_t flag, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra) {
    HANDLE_PANICKED_DB(c->dbp);
3608
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
3609 3610

    QUERY_CONTEXT_WITH_INPUT_S context; //Describes the context of this query.
3611
    num_point_queries++;   // accountability
3612 3613
    query_context_with_input_init(&context, c, flag, key, NULL, f, extra); 
    //toku_brt_cursor_set_range will call c_getf_set_range_callback(..., context) (if query is successful)
3614
    int r = toku_brt_cursor_set_range(dbc_struct_i(c)->c, key, c_getf_set_range_callback, &context);
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    if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
    return r;
}

//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_getf_set_range_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra) {
    QUERY_CONTEXT_WITH_INPUT super_context = extra;
    QUERY_CONTEXT_BASE       context       = &super_context->base;

    int r;

    DBT found_key;
    DBT found_val;
    toku_fill_dbt(&found_key, key, keylen);
    toku_fill_dbt(&found_val, val, vallen);

    //Lock:
    //  left(key,val)  = (input_key, -infinity)
    //  right(key) = found ? found_key : infinity
    //  right(val) = found ? found_val : infinity
    if (context->do_locking) {
        RANGE_LOCK_REQUEST_S request;
        if (key!=NULL) {
            read_lock_request_init(&request, context->txn, context->db,
3640 3641
                                   super_context->input_key,
                                   &found_key);
3642 3643 3644
        }
        else {
            read_lock_request_init(&request, context->txn, context->db,
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                                   super_context->input_key,
                                   toku_lt_infinity);
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        }
        r = grab_range_lock(&request);
    }
    else r = 0;

    //Call application-layer callback if found and locks were successfully obtained.
    if (r==0 && key!=NULL) {
        context->r_user_callback = super_context->f(&found_key, &found_val, context->f_extra);
        if (context->r_user_callback) r = TOKUDB_USER_CALLBACK_ERROR;
    }

    //Give brt-layer an error (if any) to return from toku_brt_cursor_set_range
    return r;
}

3662 3663 3664 3665 3666 3667 3668 3669
static int c_getf_set_range_reverse_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra);

static int
toku_c_getf_set_range_reverse(DBC *c, u_int32_t flag, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra) {
    HANDLE_PANICKED_DB(c->dbp);
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);

    QUERY_CONTEXT_WITH_INPUT_S context; //Describes the context of this query.
3670
    num_point_queries++;   // accountability
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    query_context_with_input_init(&context, c, flag, key, NULL, f, extra); 
    //toku_brt_cursor_set_range_reverse will call c_getf_set_range_reverse_callback(..., context) (if query is successful)
3673
    int r = toku_brt_cursor_set_range_reverse(dbc_struct_i(c)->c, key, c_getf_set_range_reverse_callback, &context);
3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694 3695 3696 3697 3698
    if (r == TOKUDB_USER_CALLBACK_ERROR) r = context.base.r_user_callback;
    return r;
}

//result is the result of the query (i.e. 0 means found, DB_NOTFOUND, etc..)
static int
c_getf_set_range_reverse_callback(ITEMLEN keylen, bytevec key, ITEMLEN vallen, bytevec val, void *extra) {
    QUERY_CONTEXT_WITH_INPUT super_context = extra;
    QUERY_CONTEXT_BASE       context       = &super_context->base;

    int r;

    DBT found_key;
    DBT found_val;
    toku_fill_dbt(&found_key, key, keylen);
    toku_fill_dbt(&found_val, val, vallen);

    //Lock:
    //  left(key) = found ? found_key : -infinity
    //  left(val) = found ? found_val : -infinity
    //  right(key,val)  = (input_key, infinity)
    if (context->do_locking) {
        RANGE_LOCK_REQUEST_S request;
        if (key!=NULL) {
            read_lock_request_init(&request, context->txn, context->db,
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                                   &found_key,
                                   super_context->input_key);
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        }
        else {
            read_lock_request_init(&request, context->txn, context->db,
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                                   toku_lt_neg_infinity,
                                   super_context->input_key);
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        }
        r = grab_range_lock(&request);
    }
    else r = 0;

    //Call application-layer callback if found and locks were successfully obtained.
    if (r==0 && key!=NULL) {
        context->r_user_callback = super_context->f(&found_key, &found_val, context->f_extra);
        if (context->r_user_callback) r = TOKUDB_USER_CALLBACK_ERROR;
    }

    //Give brt-layer an error (if any) to return from toku_brt_cursor_set_range_reverse
    return r;
}

3721
static int toku_c_close(DBC * c) {
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    HANDLE_PANICKED_DB(c->dbp);
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(c);
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    int r = toku_brt_cursor_close(dbc_struct_i(c)->c);
    toku_sdbt_cleanup(&dbc_struct_i(c)->skey_s);
    toku_sdbt_cleanup(&dbc_struct_i(c)->sval_s);
#if !TOKUDB_NATIVE_H
    toku_free(dbc_struct_i(c));
#endif
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    toku_free(c);
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    return r;
}

3734 3735
static inline int 
keyeq(DBC *c, DBT *a, DBT *b) {
3736 3737 3738 3739
    DB *db = c->dbp;
    return db->i->brt->compare_fun(db, a, b) == 0;
}

3740 3741 3742 3743
// Return the number of entries whose key matches the key currently 
// pointed to by the brt cursor.  
static int 
toku_c_count(DBC *cursor, db_recno_t *count, u_int32_t flags) {
3744 3745
    HANDLE_PANICKED_DB(cursor->dbp);
    HANDLE_CURSOR_ILLEGAL_WORKING_PARENT_TXN(cursor);
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    int r;
    DBC *count_cursor = 0;
3748
    DBT currentkey;
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3750
    init_dbt_realloc(&currentkey);
3751
    u_int32_t lock_flags = get_cursor_prelocked_flags(flags, cursor);
3752
    flags &= ~lock_flags;
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    if (flags != 0) {
        r = EINVAL; goto finish;
    }

3757
    r = toku_c_get_current_unconditional(cursor, lock_flags, &currentkey, NULL);
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    if (r != 0) goto finish;
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    //TODO: Optimization
    //if (do_locking) {
    //   do a lock from currentkey,-infinity to currentkey,infinity
    //   lock_flags |= DB_PRELOCKED
    //}
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3766
    r = toku_db_cursor(cursor->dbp, dbc_struct_i(cursor)->txn, &count_cursor, 0, 0);
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    if (r != 0) goto finish;

3769
    r = toku_c_getf_set(count_cursor, lock_flags, &currentkey, ydb_getf_do_nothing, NULL);
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    if (r==0) {
	*count = 1; // there is a key, so the count is one (since we don't have DUP dbs anymore, the only answers are 0 or 1.
    } else {
	*count = 0;
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    }
3775
    r = 0;
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finish:
    if (currentkey.data) toku_free(currentkey.data);
    if (count_cursor) {
        int rr = toku_c_close(count_cursor); assert(rr == 0);
    }
    return r;
}

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///////////
//db_getf_XXX is equivalent to c_getf_XXX, without a persistent cursor
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3788 3789
static int
db_getf_set(DB *db, DB_TXN *txn, u_int32_t flags, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra) {
3790 3791
    HANDLE_PANICKED_DB(db);
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
3792
    DBC *c;
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    uint32_t iso_flags = flags & DB_ISOLATION_FLAGS;
    flags &= ~DB_ISOLATION_FLAGS;
    int r = toku_db_cursor(db, txn, &c, iso_flags, 1);
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    if (r==0) {
        r = toku_c_getf_set(c, flags, key, f, extra);
        int r2 = toku_c_close(c);
        if (r==0) r = r2;
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    }
3801
    return r;
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}

3804
////////////
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3806 3807 3808 3809 3810 3811 3812 3813 3814
static int 
get_point_lock(DB *db, DB_TXN *txn, const DBT *key) {
    RANGE_LOCK_REQUEST_S request;
    //Left end of range == right end of range (point lock)
    write_lock_request_init(&request, txn, db, key, key);
    int r = grab_range_lock(&request);
    return r;
}

3815 3816
static int
toku_db_del(DB *db, DB_TXN *txn, DBT *key, u_int32_t flags) {
3817
    HANDLE_PANICKED_DB(db);
3818
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
3819

3820 3821
    u_int32_t unchecked_flags = flags;
    //DB_DELETE_ANY means delete regardless of whether it exists in the db.
3822
    BOOL error_if_missing = (BOOL)(!(flags&DB_DELETE_ANY));
3823
    unchecked_flags &= ~DB_DELETE_ANY;
3824
    u_int32_t lock_flags = get_prelocked_flags(flags);
3825
    unchecked_flags &= ~lock_flags;
3826
    BOOL do_locking = (BOOL)(db->i->lt && !(lock_flags&DB_PRELOCKED_WRITE));
3827

3828
    int r = 0;
3829 3830 3831 3832 3833
    if (unchecked_flags!=0) 
        r = EINVAL;

    if (r == 0) {
        r = toku_grab_read_lock_on_directory(db, txn);
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Zardosht Kasheff committed
3834
    }
3835
    if (r == 0 && error_if_missing) {
3836
        //Check if the key exists in the db.
3837
        r = db_getf_set(db, txn, lock_flags|DB_SERIALIZABLE, key, ydb_getf_do_nothing, NULL);
3838
    }
3839
    if (r == 0 && do_locking) {
3840
        //Do locking if necessary.
3841
        r = get_point_lock(db, txn, key);
3842
    }
3843
    if (r == 0) {
3844
        //Do the actual deleting.
3845
        r = toku_brt_delete(db->i->brt, key, txn ? db_txn_struct_i(txn)->tokutxn : 0);
3846
    }
3847

3848 3849 3850
    if (r == 0) 
        num_deletes++;       // accountability 
    else
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Zardosht Kasheff committed
3851
        num_deletes_fail++;
3852 3853 3854 3855 3856 3857 3858 3859 3860 3861 3862

    return r;
}

static int
log_del_single(DB_TXN *txn, BRT brt, const DBT *key) {
    TOKUTXN ttxn = db_txn_struct_i(txn)->tokutxn;
    int r = toku_brt_log_del(ttxn, brt, key);
    return r;
}

3863 3864 3865 3866 3867 3868 3869 3870
static uint32_t
sum_size(uint32_t num_keys, DBT keys[], uint32_t overhead) {
    uint32_t sum = 0;
    for (uint32_t i = 0; i < num_keys; i++) 
        sum += keys[i].size + overhead;
    return sum;
}

3871
static int
3872
log_del_multiple(DB_TXN *txn, DB *src_db, const DBT *key, const DBT *val, uint32_t num_dbs, BRT brts[], DBT keys[]) {
3873 3874 3875 3876
    int r = 0;
    if (num_dbs > 0) {
        TOKUTXN ttxn = db_txn_struct_i(txn)->tokutxn;
        BRT src_brt  = src_db ? src_db->i->brt : NULL;
3877 3878 3879 3880 3881 3882 3883 3884 3885
        const uint32_t log_entry_overhead = 24; // rough approximation of the log entry overhead for deletes
        uint32_t del_multiple_size = key->size + val->size + log_entry_overhead;
        uint32_t del_single_sizes = sum_size(num_dbs, keys, log_entry_overhead);
        if (del_single_sizes < del_multiple_size) {
            for (uint32_t i = 0; r == 0 && i < num_dbs; i++)
                r = log_del_single(txn, brts[i], &keys[i]);
        } else {
            r = toku_brt_log_del_multiple(ttxn, src_brt, brts, num_dbs, key, val);
        }
3886 3887 3888 3889
    }
    return r;
}

3890 3891 3892 3893 3894 3895 3896 3897 3898
static uint32_t 
lookup_src_db(uint32_t num_dbs, DB *db_array[], DB *src_db) {
    uint32_t which_db;
    for (which_db = 0; which_db < num_dbs; which_db++) 
        if (db_array[which_db] == src_db)
            break;
    return which_db;
}

3899
static int
3900 3901
do_del_multiple(DB_TXN *txn, uint32_t num_dbs, DB *db_array[], DBT keys[], DB *src_db, const DBT *src_key) {
    src_db = src_db; src_key = src_key;
3902 3903 3904 3905
    int r = 0;
    TOKUTXN ttxn = db_txn_struct_i(txn)->tokutxn;
    for (uint32_t which_db = 0; r == 0 && which_db < num_dbs; which_db++) {
        DB *db = db_array[which_db];
3906 3907 3908

        // if db is being indexed by an indexer, then insert a delete message into the db if the src key is to the left or equal to the 
        // indexers cursor.  we have to get the src_db from the indexer and find it in the db_array.
3909 3910
	int do_delete = TRUE;
	DB_INDEXER *indexer = toku_db_get_indexer(db);
3911
	if (indexer) { // if this db is the index under construction
3912 3913 3914 3915 3916 3917 3918 3919 3920 3921 3922
            DB *indexer_src_db = toku_indexer_get_src_db(indexer);
            invariant(indexer_src_db != NULL);
            const DBT *indexer_src_key;
            if (src_db == indexer_src_db)
                indexer_src_key = src_key;
            else {
                uint32_t which_src_db = lookup_src_db(num_dbs, db_array, indexer_src_db);
                invariant(which_src_db < num_dbs);
                indexer_src_key = &keys[which_src_db];
            }
            do_delete = !toku_indexer_is_key_right_of_le_cursor(indexer, indexer_src_db, indexer_src_key);
3923 3924 3925 3926
        }
	if (r == 0 && do_delete) {
            r = toku_brt_maybe_delete(db->i->brt, &keys[which_db], ttxn, FALSE, ZERO_LSN, FALSE);
        }
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3927
    }
3928
    return r;
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3929 3930
}

3931
static int
3932 3933 3934 3935
env_del_multiple(
    DB_ENV *env, 
    DB *src_db, 
    DB_TXN *txn, 
3936 3937
    const DBT *src_key, 
    const DBT *src_val, 
3938 3939 3940
    uint32_t num_dbs, 
    DB **db_array, 
    DBT *keys, 
3941
    uint32_t *flags_array) 
3942
{
3943
    int r;
3944
    DBT del_keys[num_dbs];
3945 3946 3947 3948

    HANDLE_PANICKED_ENV(env);

    if (!txn) {
3949 3950 3951
        r = EINVAL;
        goto cleanup;
    }
3952
    if (!env->i->generate_row_for_del) {
3953 3954 3955 3956
        r = EINVAL;
        goto cleanup;
    }

3957 3958 3959 3960 3961 3962 3963 3964
    HANDLE_ILLEGAL_WORKING_PARENT_TXN(env, txn);

    {
    uint32_t lock_flags[num_dbs];
    uint32_t remaining_flags[num_dbs];
    BRT brts[num_dbs];

    for (uint32_t which_db = 0; which_db < num_dbs; which_db++) {
3965
        DB *db = db_array[which_db];
3966

3967
        if (db == src_db) {
3968
            del_keys[which_db] = *src_key;
3969 3970
        }
        else {
3971
        //Generate the key
3972
            r = env->i->generate_row_for_del(db, src_db, &keys[which_db], src_key, src_val);
3973 3974 3975
            if (r != 0) goto cleanup;
            del_keys[which_db] = keys[which_db];
        }
3976
        lock_flags[which_db] = get_prelocked_flags(flags_array[which_db]);
3977
        remaining_flags[which_db] = flags_array[which_db] & ~lock_flags[which_db];
3978 3979 3980 3981 3982 3983 3984 3985

        if (remaining_flags[which_db] & ~DB_DELETE_ANY) {
            r = EINVAL;
            goto cleanup;
        }
        BOOL error_if_missing = (BOOL)(!(remaining_flags[which_db]&DB_DELETE_ANY));
        if (error_if_missing) {
            //Check if the key exists in the db.
3986
            r = db_getf_set(db, txn, lock_flags[which_db]|DB_SERIALIZABLE, &del_keys[which_db], ydb_getf_do_nothing, NULL);
3987
            if (r != 0) goto cleanup;
3988 3989 3990
        }

        //Do locking if necessary.
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3991
        r = toku_grab_read_lock_on_directory(db, txn);
3992 3993
        if (r != 0) goto cleanup;

3994 3995
        if (db->i->lt && !(lock_flags[which_db] & DB_PRELOCKED_WRITE)) {
            //Needs locking
3996
            r = get_point_lock(db, txn, &del_keys[which_db]);
3997
            if (r != 0) goto cleanup;
3998 3999 4000
        }
        brts[which_db] = db->i->brt;
    }
4001 4002

    if (num_dbs == 1)
4003
        r = log_del_single(txn, brts[0], &del_keys[0]);
4004
    else
4005
        r = log_del_multiple(txn, src_db, src_key, src_val, num_dbs, brts, del_keys);
4006 4007

    if (r == 0) 
4008
        r = do_del_multiple(txn, num_dbs, db_array, del_keys, src_db, src_key);
4009 4010 4011
    }

cleanup:
4012 4013 4014 4015
    if (r == 0)
        num_multi_deletes += num_dbs;
    else
        num_multi_deletes_fail += num_dbs;
4016 4017 4018 4019
    return r;
}


4020 4021
static int 
locked_c_get(DBC * c, DBT * key, DBT * data, u_int32_t flag) {
4022 4023 4024 4025
    //{ unsigned int i; printf("cget flags=%d keylen=%d key={", flag, key->size); for(i=0; i<key->size; i++) printf("%d,", ((char*)key->data)[i]); printf("} datalen=%d data={", data->size); for(i=0; i<data->size; i++) printf("%d,", ((char*)data->data)[i]); printf("}\n"); }
    toku_ydb_lock(); int r = toku_c_get(c, key, data, flag); toku_ydb_unlock();
    //{ unsigned int i; printf("cgot r=%d keylen=%d key={", r, key->size); for(i=0; i<key->size; i++) printf("%d,", ((char*)key->data)[i]); printf("} datalen=%d data={", data->size); for(i=0; i<data->size; i++) printf("%d,", ((char*)data->data)[i]); printf("}\n"); }
    return r;
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4026 4027
}

4028 4029
static int 
locked_c_close(DBC * c) {
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4030
    toku_ydb_lock(); int r = toku_c_close(c); toku_ydb_unlock(); return r;
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4031 4032
}

4033 4034
static int 
locked_c_count(DBC *cursor, db_recno_t *count, u_int32_t flags) {
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4035
    toku_ydb_lock(); int r = toku_c_count(cursor, count, flags); toku_ydb_unlock(); return r;
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4036 4037
}

4038 4039
static int 
locked_c_del(DBC * c, u_int32_t flags) {
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4040
    toku_ydb_lock(); int r = toku_c_del(c, flags); toku_ydb_unlock(); return r;
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4041 4042
}

4043 4044
static int locked_c_pre_acquire_read_lock(DBC *dbc, const DBT *key_left, const DBT *key_right);

4045 4046
static int 
toku_db_cursor(DB * db, DB_TXN * txn, DBC ** c, u_int32_t flags, int is_temporary_cursor) {
4047
    HANDLE_PANICKED_DB(db);
4048
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
4049
    DB_ENV* env = db->dbenv;
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Zardosht Kasheff committed
4050
    int r;
4051
    size_t result_size = sizeof(DBC)+sizeof(struct __toku_dbc_internal); // internal stuff stuck on the end
4052 4053 4054 4055 4056 4057 4058 4059 4060 4061 4062
    if (!(flags == 0 || 
          flags == DB_SERIALIZABLE || 
          flags == DB_INHERIT_ISOLATION)
       ) 
    {
        return toku_ydb_do_error(
            env, 
            EINVAL, 
            "Invalid isolation flags set for toku_db_cursor\n"
            );
    }
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4063 4064 4065 4066 4067
    r = toku_grab_read_lock_on_directory(db, txn);
    if (r != 0) {
        return r;
    }
    
4068
    DBC *result = toku_malloc(result_size);
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4069 4070
    if (result == 0)
        return ENOMEM;
4071
    memset(result, 0, result_size);
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4072 4073 4074 4075 4076
#define SCRS(name) result->name = locked_ ## name
    SCRS(c_get);
    SCRS(c_close);
    SCRS(c_del);
    SCRS(c_count);
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4077 4078
    SCRS(c_getf_first);
    SCRS(c_getf_last);
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Yoni Fogel committed
4079
    SCRS(c_getf_next);
4080 4081 4082 4083 4084
    SCRS(c_getf_prev);
    SCRS(c_getf_current);
    SCRS(c_getf_current_binding);
    SCRS(c_getf_set);
    SCRS(c_getf_set_range);
4085
    SCRS(c_getf_set_range_reverse);
4086
    SCRS(c_pre_acquire_read_lock);
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4087
#undef SCRS
4088 4089 4090

#if !TOKUDB_NATIVE_H
    MALLOC(result->i); // otherwise it is allocated as part of result->ii
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up  
Bradley C. Kuszmaul committed
4091
    assert(result->i);
4092
#endif
4093
    result->dbp = db;
4094 4095 4096
    dbc_struct_i(result)->txn = txn;
    dbc_struct_i(result)->skey_s = (struct simple_dbt){0,0};
    dbc_struct_i(result)->sval_s = (struct simple_dbt){0,0};
4097
    if (is_temporary_cursor) {
4098 4099
	dbc_struct_i(result)->skey = &db->i->skey;
	dbc_struct_i(result)->sval = &db->i->sval;
4100
    } else {
4101 4102
	dbc_struct_i(result)->skey = &dbc_struct_i(result)->skey_s;
	dbc_struct_i(result)->sval = &dbc_struct_i(result)->sval_s;
4103
    }
4104 4105 4106 4107 4108 4109 4110 4111 4112
    switch(flags) {
        case (DB_SERIALIZABLE):
            dbc_struct_i(result)->iso = TOKU_ISO_SERIALIZABLE;
            break;
        default:
            dbc_struct_i(result)->iso = txn ? db_txn_struct_i(txn)->iso : TOKU_ISO_SERIALIZABLE;
            break;
    }
    BOOL is_snapshot_read = FALSE;
4113
    if (txn) {
4114 4115
        is_snapshot_read = (dbc_struct_i(result)->iso == TOKU_ISO_READ_COMMITTED || 
                            dbc_struct_i(result)->iso == TOKU_ISO_SNAPSHOT);
4116
    }
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4117
    r = toku_brt_cursor(
4118
        db->i->brt, 
4119 4120 4121
        &dbc_struct_i(result)->c,
        txn ? db_txn_struct_i(txn)->tokutxn : NULL,
        is_snapshot_read
4122
        );
4123 4124 4125 4126 4127 4128 4129 4130 4131 4132 4133
    assert(r == 0 || r == TOKUDB_MVCC_DICTIONARY_TOO_NEW);
    if (r == 0) {
        *c = result;
    }
    else {
#if !TOKUDB_NATIVE_H
        toku_free(result->i); // otherwise it is allocated as part of result->ii
#endif
        toku_free(result);
    }
    return r;
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Rename  
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4134 4135
}

4136 4137
static inline int 
db_thread_need_flags(DBT *dbt) {
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4138 4139 4140
    return (dbt->flags & (DB_DBT_MALLOC+DB_DBT_REALLOC+DB_DBT_USERMEM)) == 0;
}

4141 4142
static int 
toku_db_get (DB * db, DB_TXN * txn, DBT * key, DBT * data, u_int32_t flags) {
4143
    HANDLE_PANICKED_DB(db);
4144
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
Yoni Fogel's avatar
Yoni Fogel committed
4145
    int r;
4146
    u_int32_t iso_flags = flags & DB_ISOLATION_FLAGS;
4147

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Rich Prohaska committed
4148
    if ((db->i->open_flags & DB_THREAD) && db_thread_need_flags(data))
4149 4150
        return EINVAL;

4151
    u_int32_t lock_flags = flags & (DB_PRELOCKED | DB_PRELOCKED_WRITE);
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Yoni Fogel committed
4152
    flags &= ~lock_flags;
4153
    flags &= ~DB_ISOLATION_FLAGS;
4154 4155 4156
    // And DB_GET_BOTH is no longer supported. #2862.
    if (flags != 0) return EINVAL;

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4157 4158

    DBC *dbc;
4159
    r = toku_db_cursor(db, txn, &dbc, iso_flags, 1);
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4160
    if (r!=0) return r;
4161
    u_int32_t c_get_flags = DB_SET;
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4162
    r = toku_c_get(dbc, key, data, c_get_flags | lock_flags);
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4163 4164
    int r2 = toku_c_close(dbc);
    return r ? r : r2;
4165 4166
}

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4167
#if 0
4168 4169
static int 
toku_db_key_range(DB * db, DB_TXN * txn, DBT * dbt, DB_KEY_RANGE * kr, u_int32_t flags) {
4170
    HANDLE_PANICKED_DB(db);
4171
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
4172
    txn=txn; dbt=dbt; kr=kr; flags=flags;
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4173
    toku_ydb_barf();
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4174
    abort();
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4175
}
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4176
#endif
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4177

4178 4179
static int 
toku_db_lt_panic(DB* db, int r) {
4180
    assert(r!=0);
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4181 4182
    assert(db && db->i && db->dbenv && db->dbenv->i);
    DB_ENV* env = db->dbenv;
4183 4184 4185 4186 4187
    env->i->is_panicked = r;

    if (r < 0) env->i->panic_string = toku_strdup(toku_lt_strerror((TOKU_LT_ERROR)r));
    else       env->i->panic_string = toku_strdup("Error in locktree.\n");

4188
    return toku_ydb_do_error(env, r, "%s", env->i->panic_string);
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4189 4190
}

4191 4192
static int 
toku_txn_add_lt(DB_TXN* txn, toku_lock_tree* lt) {
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4193
    int r = ENOSYS;
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4194
    assert(txn && lt);
4195
    toku_lth* lth = db_txn_struct_i(txn)->lth;
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4196 4197 4198 4199 4200
    assert(lth);

    toku_lock_tree* find = toku_lth_find(lth, lt);
    if (find) {
        assert(find == lt);
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4201 4202
        r = 0;
        goto cleanup;
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4203
    }
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4204 4205 4206 4207 4208 4209
    r = toku_lth_insert(lth, lt);
    if (r != 0) { goto cleanup; }
    
    toku_lt_add_ref(lt);
    r = 0;
cleanup:
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4210 4211 4212
    return r;
}

4213 4214
static toku_dbt_cmp 
toku_db_get_compare_fun(DB* db) {
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4215 4216
    return db->i->brt->compare_fun;
}
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4217

4218
/***** TODO 2216 delete this 
4219 4220
static int 
toku_db_fd(DB *db, int *fdp) {
4221 4222 4223 4224
    HANDLE_PANICKED_DB(db);
    if (!db_opened(db)) return EINVAL;
    return toku_brt_get_fd(db->i->brt, fdp);
}
4225
*******/
4226

4227 4228 4229 4230 4231
static int
db_open_subdb(DB * db, DB_TXN * txn, const char *fname, const char *dbname, DBTYPE dbtype, u_int32_t flags, int mode) {
    int r;
    if (!fname || !dbname) r = EINVAL;
    else {
4232 4233 4234 4235 4236 4237
        char subdb_full_name[strlen(fname) + sizeof("/") + strlen(dbname)];
        int bytes = snprintf(subdb_full_name, sizeof(subdb_full_name), "%s/%s", fname, dbname);
        assert(bytes==(int)sizeof(subdb_full_name)-1);
        const char *null_subdbname = NULL;
        r = toku_db_open(db, txn, subdb_full_name, null_subdbname, dbtype, flags, mode);
    }
4238 4239
    return r;
}
4240

4241 4242 4243 4244 4245 4246 4247 4248
static void
create_iname_hint(const char *dname, char *hint) {
    //Requires: size of hint array must be > strlen(dname)
    //Copy alphanumeric characters only.
    //Replace strings of non-alphanumeric characters with a single underscore.
    BOOL underscored = FALSE;
    while (*dname) {
        if (isalnum(*dname)) {
4249 4250
            char c = *dname++;
            *hint++ = c;
4251 4252 4253 4254 4255 4256 4257
            underscored = FALSE;
        }
        else {
            if (!underscored)
                *hint++ = '_';
            dname++;
            underscored = TRUE;
4258 4259
        }
    }
4260 4261 4262
    *hint = '\0';
}

4263 4264 4265

// n >= 0 means to include "_L_" with hex value of n in iname
// (intended for use by loader, which will create many inames using one txnid).
4266
static char *
4267 4268
create_iname(DB_ENV *env, u_int64_t id, char *hint, int n) {
    int bytes;
4269
    char inamebase[strlen(hint) +
4270 4271 4272 4273 4274
		   8 +  // hex file format version
		   16 + // hex id (normally the txnid)
		   8  + // hex value of n if non-neg
		   sizeof("_L___.tokudb")]; // extra pieces
    if (n < 0)
4275 4276 4277
	bytes = snprintf(inamebase, sizeof(inamebase),
                         "%s_%"PRIx64"_%"PRIx32            ".tokudb",
                         hint, id, BRT_LAYOUT_VERSION);
4278
    else
4279 4280 4281
	bytes = snprintf(inamebase, sizeof(inamebase),
                         "%s_%"PRIx64"_%"PRIx32"_L_%"PRIx32".tokudb",
                         hint, id, BRT_LAYOUT_VERSION, n);
4282 4283 4284 4285
    assert(bytes>0);
    assert(bytes<=(int)sizeof(inamebase)-1);
    char *rval;
    if (env->i->data_dir)
Yoni Fogel's avatar
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4286
        rval = toku_construct_full_name(2, env->i->data_dir, inamebase);
4287
    else
Yoni Fogel's avatar
Yoni Fogel committed
4288
        rval = toku_construct_full_name(1, inamebase);
4289 4290
    assert(rval);
    return rval;
4291 4292
}

4293 4294 4295 4296 4297 4298 4299 4300 4301 4302 4303 4304 4305

static int db_open_iname(DB * db, DB_TXN * txn, const char *iname, u_int32_t flags, int mode);


// inames are created here.
// algorithm:
//  begin txn
//  convert dname to iname (possibly creating new iname)
//  open file (toku_brt_open() will handle logging)
//  close txn
//  if created a new iname, take full range lock
static int 
toku_db_open(DB * db, DB_TXN * txn, const char *fname, const char *dbname, DBTYPE dbtype, u_int32_t flags, int mode) {
4306
    HANDLE_PANICKED_DB(db);
4307
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
4308
    if (dbname!=NULL) 
4309
        return db_open_subdb(db, txn, fname, dbname, dbtype, flags, mode);
4310

4311
    // at this point fname is the dname
4312 4313
    //This code ONLY supports single-db files.
    assert(dbname==NULL);
4314
    const char * dname = fname;  // db_open_subdb() converts (fname, dbname) to dname
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Rename  
Bradley C. Kuszmaul committed
4315

4316 4317 4318
    ////////////////////////////// do some level of parameter checking.
    u_int32_t unused_flags = flags;
    int using_txns = db->dbenv->i->open_flags & DB_INIT_TXN;
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Rename  
Bradley C. Kuszmaul committed
4319
    int r;
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Yoni Fogel committed
4320
    if (dbtype!=DB_BTREE && dbtype!=DB_UNKNOWN) return EINVAL;
4321 4322 4323
    int is_db_excl    = flags & DB_EXCL;    unused_flags&=~DB_EXCL;
    int is_db_create  = flags & DB_CREATE;  unused_flags&=~DB_CREATE;

4324
    //We support READ_UNCOMMITTED and READ_COMMITTED whether or not the flag is provided.
4325
                                            unused_flags&=~DB_READ_UNCOMMITTED;
4326
                                            unused_flags&=~DB_READ_COMMITTED;
4327
                                            unused_flags&=~DB_SERIALIZABLE;
4328 4329 4330 4331 4332 4333 4334 4335 4336 4337 4338 4339 4340 4341 4342 4343 4344 4345
    if (unused_flags & ~DB_THREAD) return EINVAL; // unknown flags

    if (is_db_excl && !is_db_create) return EINVAL;
    if (dbtype==DB_UNKNOWN && is_db_excl) return EINVAL;

    /* tokudb supports no duplicates and sorted duplicates only */
    unsigned int tflags;
    r = toku_brt_get_flags(db->i->brt, &tflags);
    if (r != 0) 
        return r;

    if (db_opened(db))
        return EINVAL;              /* It was already open. */
    //////////////////////////////

    DB_TXN *child = NULL;
    // begin child (unless transactionless)
    if (using_txns) {
4346 4347
        r = toku_txn_begin(db->dbenv, txn, &child, DB_TXN_NOSYNC, 1);
        assert(r==0);
4348 4349 4350 4351 4352 4353
    }

    // convert dname to iname
    //  - look up dname, get iname
    //  - if dname does not exist, create iname and make entry in directory
    DBT dname_dbt;  // holds dname
4354
    DBT iname_dbt;  // holds iname_in_env
4355 4356
    toku_fill_dbt(&dname_dbt, dname, strlen(dname)+1);
    init_dbt_realloc(&iname_dbt);  // sets iname_dbt.data = NULL
4357
    r = toku_db_get(db->dbenv->i->directory, child, &dname_dbt, &iname_dbt, DB_SERIALIZABLE);  // allocates memory for iname
4358 4359 4360 4361 4362 4363 4364
    char *iname = iname_dbt.data;
    if (r==DB_NOTFOUND && !is_db_create)
        r = ENOENT;
    else if (r==0 && is_db_excl) {
        r = EEXIST;
    }
    else if (r==DB_NOTFOUND) {
4365
        char hint[strlen(dname) + 1];
4366

4367 4368 4369 4370 4371 4372 4373
        // create iname and make entry in directory
        u_int64_t id = 0;

        if (using_txns) {
            id = toku_txn_get_txnid(db_txn_struct_i(child)->tokutxn);
        }
        create_iname_hint(dname, hint);
4374
        iname = create_iname(db->dbenv, id, hint, -1);  // allocated memory for iname
4375 4376 4377 4378 4379 4380
        toku_fill_dbt(&iname_dbt, iname, strlen(iname) + 1);
        r = toku_db_put(db->dbenv->i->directory, child, &dname_dbt, &iname_dbt, DB_YESOVERWRITE);  // DB_YESOVERWRITE for performance only, avoid unnecessary query
    }

    // we now have an iname
    if (r == 0) {
4381
        r = db_open_iname(db, child, iname, flags, mode);
4382 4383 4384 4385 4386 4387 4388 4389 4390 4391
        if (r==0) {
            db->i->dname = toku_xstrdup(dname);
            env_note_db_opened(db->dbenv, db);  // tell env that a new db handle is open (using dname)
        }
    }

    // free string holding iname
    if (iname) toku_free(iname);

    if (using_txns) {
4392 4393 4394 4395 4396 4397 4398 4399 4400
        // close txn
        if (r == 0) {  // commit
            r = toku_txn_commit(child, DB_TXN_NOSYNC, NULL, NULL);
            assert(r==0);  // TODO panic
        }
        else {         // abort
            int r2 = toku_txn_abort(child, NULL, NULL);
            assert(r2==0);  // TODO panic
        }
4401 4402 4403 4404 4405 4406
    }

    return r;
}

static int 
4407
db_open_iname(DB * db, DB_TXN * txn, const char *iname_in_env, u_int32_t flags, int mode) {
4408 4409 4410 4411 4412 4413 4414 4415 4416 4417 4418
    int r;

    //Set comparison functions if not yet set.
    if (!db->i->key_compare_was_set && db->dbenv->i->bt_compare) {
        r = toku_brt_set_bt_compare(db->i->brt, db->dbenv->i->bt_compare);
        assert(r==0);
        db->i->key_compare_was_set = TRUE;
    }
    BOOL need_locktree = (BOOL)((db->dbenv->i->open_flags & DB_INIT_LOCK) &&
                                (db->dbenv->i->open_flags & DB_INIT_TXN));

4419 4420
    int is_db_excl    = flags & DB_EXCL;    flags&=~DB_EXCL;
    int is_db_create  = flags & DB_CREATE;  flags&=~DB_CREATE;
4421
    //We support READ_UNCOMMITTED and READ_COMMITTED whether or not the flag is provided.
4422
                                            flags&=~DB_READ_UNCOMMITTED;
4423
                                            flags&=~DB_READ_COMMITTED;
4424
                                            flags&=~DB_SERIALIZABLE;
4425
    if (flags & ~DB_THREAD) return EINVAL; // unknown flags
4426 4427

    if (is_db_excl && !is_db_create) return EINVAL;
4428

4429 4430 4431 4432 4433 4434
    /* tokudb supports no duplicates and sorted duplicates only */
    unsigned int tflags;
    r = toku_brt_get_flags(db->i->brt, &tflags);
    if (r != 0) 
        return r;

4435
    if (db_opened(db))
4436
        return EINVAL;              /* It was already open. */
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4437
    
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Bradley C. Kuszmaul committed
4438 4439
    db->i->open_flags = flags;
    db->i->open_mode = mode;
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4440

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4441
    r = toku_brt_open(db->i->brt, iname_in_env,
4442
		      is_db_create, is_db_excl,
4443
		      db->dbenv->i->cachetable,
4444
		      txn ? db_txn_struct_i(txn)->tokutxn : NULL_TXN,
4445
		      db);
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up  
Bradley C. Kuszmaul committed
4446 4447 4448
    if (r != 0)
        goto error_cleanup;

4449
    db->i->opened = 1;
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Yoni Fogel committed
4450
    if (need_locktree) {
4451
	db->i->dict_id = toku_brt_get_dictionary_id(db->i->brt);
4452
        r = toku_ltm_get_lt(db->dbenv->i->ltm, &db->i->lt, db->i->dict_id, db);
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Yoni Fogel committed
4453
        if (r!=0) { goto error_cleanup; }
Yoni Fogel's avatar
Yoni Fogel committed
4454
    }
4455 4456 4457
    //Add to transaction's list of 'must close' if necessary.
    if (txn) {
        //Do last so we don't have to undo.
4458
        toku_list_push(&db_txn_struct_i(txn)->dbs_that_must_close_before_abort,
4459 4460
                  &db->i->dbs_that_must_close_before_abort);
    }
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4461

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Rename  
Bradley C. Kuszmaul committed
4462
    return 0;
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4463 4464
 
error_cleanup:
4465
    db->i->dict_id = DICTIONARY_ID_NONE;
4466
    db->i->opened = 0;
Yoni Fogel's avatar
Yoni Fogel committed
4467
    if (db->i->lt) {
4468
        toku_lt_remove_db_ref(db->i->lt, db);
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Yoni Fogel committed
4469 4470
        db->i->lt = NULL;
    }
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Bradley C. Kuszmaul committed
4471
    return r;
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Rename  
Bradley C. Kuszmaul committed
4472
}
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4473

4474 4475 4476 4477 4478
//Return 0 if proposed pair do not violate size constraints of DB
//(insertion is legal)
//Return non zero otherwise.
static int
db_put_check_size_constraints(DB *db, DBT *key, DBT *val) {
4479
    int r;
4480

4481
    //Check limits on size of key and val.
4482
    unsigned int nodesize;
4483
    r = toku_brt_get_nodesize(db->i->brt, &nodesize); assert(r == 0);
4484

4485 4486 4487 4488 4489 4490
    u_int32_t limit = nodesize / BRT_FANOUT;
    if (key->size > limit)
	r = toku_ydb_do_error(db->dbenv, EINVAL, "The largest key allowed is %u bytes", limit);
    else if (val->size > nodesize)
	r = toku_ydb_do_error(db->dbenv, EINVAL, "The largest value allowed is %u bytes", nodesize);
    
4491 4492 4493
    return r;
}

4494 4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505 4506 4507 4508 4509 4510 4511 4512 4513 4514
//Return 0 if supported.
//Return ERANGE if out of range.
static int
db_row_size_supported(DB *db, u_int32_t size) {
    DBT key, val;

    toku_fill_dbt(&key, NULL, size);
    toku_fill_dbt(&val, NULL, 0);
    int r = db_put_check_size_constraints(db, &key, &val);
    if (r!=0) r = ERANGE;
    return r;
}

static int
locked_db_row_size_supported(DB *db, u_int32_t size) {
    toku_ydb_lock();
    int r = db_row_size_supported(db, size);
    toku_ydb_unlock();
    return r;
}

4515 4516
//Return 0 if insert is legal
static int
4517
db_put_check_overwrite_constraint(DB *db, DB_TXN *txn, DBT *key,
4518 4519 4520 4521 4522 4523 4524 4525
                                  u_int32_t lock_flags, u_int32_t overwrite_flag) {
    int r;

    //DB_YESOVERWRITE does not impose constraints.
    if (overwrite_flag==DB_YESOVERWRITE) r = 0;
    else if (overwrite_flag==DB_NOOVERWRITE) {
        //Check if (key,anything) exists in dictionary.
        //If exists, fail.  Otherwise, do insert.
4526
        r = db_getf_set(db, txn, lock_flags|DB_SERIALIZABLE, key, ydb_getf_do_nothing, NULL);
4527 4528 4529 4530 4531 4532 4533
        if (r==DB_NOTFOUND) r = 0;
        else if (r==0)      r = DB_KEYEXIST;
        //Any other error is passed through.
    }
    else if (overwrite_flag==0) {
        //in a nodup db:   overwrite_flag==0 is an alias for DB_YESOVERWRITE
        //in a dupsort db: overwrite_flag==0 is an error
4534
	r = 0;
4535
    }
4536 4537 4538
    else if (overwrite_flag==DB_NOOVERWRITE_NO_ERROR) {
        r = 0;
    }
4539 4540 4541
    else {
        //Other flags are not (yet) supported.
        r = EINVAL;
4542 4543 4544 4545
    }
    return r;
}

4546 4547
static int
toku_db_put(DB *db, DB_TXN *txn, DBT *key, DBT *val, u_int32_t flags) {
4548
    HANDLE_PANICKED_DB(db);
4549
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
4550 4551
    int r;

4552
    u_int32_t lock_flags = get_prelocked_flags(flags);
4553
    flags &= ~lock_flags;
4554

Zardosht Kasheff's avatar
Zardosht Kasheff committed
4555
    r = toku_grab_read_lock_on_directory(db, txn);
4556

4557 4558 4559
    if (r == 0)
        r = db_put_check_size_constraints(db, key, val);
    if (r == 0) {
4560
        //Do any checking required by the flags.
4561
        r = db_put_check_overwrite_constraint(db, txn, key, lock_flags, flags);
4562
    }
4563 4564
    BOOL do_locking = (BOOL)(db->i->lt && !(lock_flags&DB_PRELOCKED_WRITE));
    if (r == 0 && do_locking) {
4565
        //Do locking if necessary.
4566
        r = get_point_lock(db, txn, key);
4567
    }
4568
    if (r == 0) {
4569
        //Insert into the brt.
4570 4571 4572 4573 4574
        TOKUTXN ttxn = txn ? db_txn_struct_i(txn)->tokutxn : NULL;
        enum brt_msg_type type = BRT_INSERT;
        if (flags==DB_NOOVERWRITE_NO_ERROR)
            type = BRT_INSERT_NO_OVERWRITE;
        r = toku_brt_maybe_insert(db->i->brt, key, val, ttxn, FALSE, ZERO_LSN, TRUE, type);
4575
    }
4576

4577 4578 4579
    if (r == 0)
	num_inserts++;
    else
Zardosht Kasheff's avatar
Zardosht Kasheff committed
4580
        num_inserts_fail++;
4581 4582 4583 4584 4585 4586 4587 4588 4589 4590 4591 4592 4593 4594 4595 4596 4597 4598 4599 4600 4601 4602 4603

    return r;
}

static int
log_put_single(DB_TXN *txn, BRT brt, const DBT *key, const DBT *val) {
    TOKUTXN ttxn = db_txn_struct_i(txn)->tokutxn;
    int r = toku_brt_log_put(ttxn, brt, key, val);
    return r;
}

static int
log_put_multiple(DB_TXN *txn, DB *src_db, const DBT *src_key, const DBT *src_val, uint32_t num_dbs, BRT brts[]) {
    int r = 0;
    if (num_dbs > 0) {
        TOKUTXN ttxn = db_txn_struct_i(txn)->tokutxn;
        BRT src_brt  = src_db ? src_db->i->brt : NULL;
        r = toku_brt_log_put_multiple(ttxn, src_brt, brts, num_dbs, src_key, src_val);
    }
    return r;
}

static int
4604
do_put_multiple(DB_TXN *txn, uint32_t num_dbs, DB *db_array[], DBT keys[], DBT vals[], DB *src_db, const DBT *src_key) {
4605 4606 4607 4608
    int r = 0;
    TOKUTXN ttxn = db_txn_struct_i(txn)->tokutxn;
    for (uint32_t which_db = 0; r == 0 && which_db < num_dbs; which_db++) {
        DB *db = db_array[which_db];
4609 4610 4611

        // if db is being indexed by an indexer, then put into that db if the src key is to the left or equal to the 
        // indexers cursor.  we have to get the src_db from the indexer and find it in the db_array.
4612 4613
	int do_put = TRUE;
	DB_INDEXER *indexer = toku_db_get_indexer(db);
4614
	if (indexer) { // if this db is the index under construction
4615 4616 4617 4618 4619 4620 4621 4622 4623 4624
            DB *indexer_src_db = toku_indexer_get_src_db(indexer);
            invariant(indexer_src_db != NULL);
            const DBT *indexer_src_key;
            if (src_db == indexer_src_db)
                indexer_src_key = src_key;
            else {
                uint32_t which_src_db = lookup_src_db(num_dbs, db_array, indexer_src_db);
                invariant(which_src_db < num_dbs);
                indexer_src_key = &keys[which_src_db];
            }
4625
            do_put = !toku_indexer_is_key_right_of_le_cursor(indexer, indexer_src_db, indexer_src_key);
4626 4627 4628 4629
        }
        if (r == 0 && do_put) {
            r = toku_brt_maybe_insert(db->i->brt, &keys[which_db], &vals[which_db], ttxn, FALSE, ZERO_LSN, FALSE, BRT_INSERT);
        }
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Zardosht Kasheff committed
4630
    }
4631
    return r;
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Rename  
Bradley C. Kuszmaul committed
4632
}
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Bradley C. Kuszmaul committed
4633

4634
static int
4635 4636 4637 4638
env_put_multiple(
    DB_ENV *env, 
    DB *src_db, 
    DB_TXN *txn, 
4639 4640
    const DBT *src_key, 
    const DBT *src_val, 
4641 4642 4643 4644
    uint32_t num_dbs, 
    DB **db_array, 
    DBT *keys, 
    DBT *vals, 
4645
    uint32_t *flags_array) 
4646
{
4647
    int r;
4648 4649
    DBT put_keys[num_dbs];
    DBT put_vals[num_dbs];
4650 4651 4652 4653

    HANDLE_PANICKED_ENV(env);

    {
4654 4655 4656
    uint32_t lock_flags[num_dbs];
    uint32_t remaining_flags[num_dbs];
    BRT brts[num_dbs];
4657

4658 4659 4660 4661
    if (!txn || !num_dbs) {
        r = EINVAL;
        goto cleanup;
    }
4662
    if (!env->i->generate_row_for_put) {
4663 4664 4665 4666
        r = EINVAL;
        goto cleanup;
    }

4667 4668 4669
    HANDLE_ILLEGAL_WORKING_PARENT_TXN(env, txn);

    for (uint32_t which_db = 0; which_db < num_dbs; which_db++) {
4670
        DB *db = db_array[which_db];
4671

4672
        //Generate the row
4673
        if (db == src_db) {
4674 4675
            put_keys[which_db] = *src_key;
            put_vals[which_db] = *src_val;
4676 4677
        }
        else {
4678
            r = env->i->generate_row_for_put(db, src_db, &keys[which_db], &vals[which_db], src_key, src_val);
4679 4680 4681 4682
            if (r != 0) goto cleanup;
            put_keys[which_db] = keys[which_db];
            put_vals[which_db] = vals[which_db];            
        }
4683

4684
        lock_flags[which_db] = get_prelocked_flags(flags_array[which_db]);
4685
        remaining_flags[which_db] = flags_array[which_db] & ~lock_flags[which_db];
4686 4687

        // check size constraints
4688
        r = db_put_check_size_constraints(db, &put_keys[which_db], &put_vals[which_db]);
4689 4690
        if (r != 0) goto cleanup;

4691 4692
        //Check overwrite constraints
        r = db_put_check_overwrite_constraint(db, txn,
4693
                                              &put_keys[which_db],
4694
                                              lock_flags[which_db], remaining_flags[which_db]);
4695
        if (r != 0) goto cleanup;
4696 4697 4698 4699 4700
        if (remaining_flags[which_db] == DB_NOOVERWRITE_NO_ERROR) {
            //put_multiple does not support delaying the no error, since we would
            //have to log the flag in the put_multiple.
            r = EINVAL; goto cleanup;
        }
4701

4702
        //Do locking if necessary.
Zardosht Kasheff's avatar
Zardosht Kasheff committed
4703
        r = toku_grab_read_lock_on_directory(db, txn);
4704 4705
        if (r != 0) goto cleanup;

4706 4707
        if (db->i->lt && !(lock_flags[which_db] & DB_PRELOCKED_WRITE)) {
            //Needs locking
4708
            r = get_point_lock(db, txn, &put_keys[which_db]);
4709
            if (r != 0) goto cleanup;
4710 4711 4712
        }
        brts[which_db] = db->i->brt;
    }
4713 4714

    if (num_dbs == 1)
4715
        r = log_put_single(txn, brts[0], &put_keys[0], &put_vals[0]);
4716
    else
4717
        r = log_put_multiple(txn, src_db, src_key, src_val, num_dbs, brts);
4718 4719
    
    if (r == 0)
4720
        r = do_put_multiple(txn, num_dbs, db_array, put_keys, put_vals, src_db, src_key);
4721

4722 4723
    }

4724
cleanup:
4725
    if (r == 0)
4726
        num_multi_inserts += num_dbs;
4727
    else
4728
        num_multi_inserts_fail += num_dbs;
4729 4730 4731 4732 4733
    return r;
}

static int
env_update_multiple(DB_ENV *env, DB *src_db, DB_TXN *txn,                                
4734 4735 4736
                    DBT *old_src_key, DBT *old_src_data,
                    DBT *new_src_key, DBT *new_src_data,
                    uint32_t num_dbs, DB **db_array, uint32_t* flags_array, 
4737
                    uint32_t num_keys, DBT keys[], 
4738
                    uint32_t num_vals, DBT vals[]) {
4739 4740 4741 4742 4743 4744 4745 4746 4747 4748 4749 4750 4751 4752 4753 4754 4755 4756 4757 4758 4759 4760 4761 4762 4763 4764 4765
    int r = 0;

    HANDLE_PANICKED_ENV(env);

    if (!txn) {
        r = EINVAL;
        goto cleanup;
    }
    if (!env->i->generate_row_for_put) {
        r = EINVAL;
        goto cleanup;
    }

    HANDLE_ILLEGAL_WORKING_PARENT_TXN(env, txn);

    {
        uint32_t n_del_dbs = 0;
        DB *del_dbs[num_dbs];
        BRT del_brts[num_dbs];
        DBT del_keys[num_dbs];
        
        uint32_t n_put_dbs = 0;
        DB *put_dbs[num_dbs];
        BRT put_brts[num_dbs];
        DBT put_keys[num_dbs];
        DBT put_vals[num_dbs];

4766 4767 4768
        uint32_t lock_flags[num_dbs];
        uint32_t remaining_flags[num_dbs];

4769 4770
        for (uint32_t which_db = 0; which_db < num_dbs; which_db++) {
            DB *db = db_array[which_db];
4771 4772 4773 4774
            DBT curr_old_key, curr_new_key, curr_new_val;
            
            lock_flags[which_db] = get_prelocked_flags(flags_array[which_db]);
            remaining_flags[which_db] = flags_array[which_db] & ~lock_flags[which_db];
4775

4776 4777 4778
            // keys[0..num_dbs-1] are the new keys
            // keys[num_dbs..2*num_dbs-1] are the old keys
            // vals[0..num_dbs-1] are the new vals
4779

4780 4781
            // Generate the old key and val
            if (which_db + num_dbs >= num_keys) {
4782 4783
                r = ENOMEM; goto cleanup;
            }
4784 4785 4786 4787
            if (db == src_db) {
                curr_old_key = *old_src_key;
            }
            else {
4788
                r = env->i->generate_row_for_put(db, src_db, &keys[which_db + num_dbs], NULL, old_src_key, old_src_data);
4789 4790 4791
                if (r != 0) goto cleanup;
                curr_old_key = keys[which_db + num_dbs];
            }
4792
            // Generate the new key and val
4793 4794 4795
            if (which_db >= num_keys || which_db >= num_vals) {
                r = ENOMEM; goto cleanup;
            }
4796 4797 4798 4799 4800
            if (db == src_db) {
                curr_new_key = *new_src_key;
                curr_new_val = *new_src_data;
            }
            else {
4801
                r = env->i->generate_row_for_put(db, src_db, &keys[which_db], &vals[which_db], new_src_key, new_src_data);
4802 4803 4804 4805
                if (r != 0) goto cleanup;
                curr_new_key = keys[which_db];
                curr_new_val = vals[which_db];
            }
4806
            toku_dbt_cmp cmpfun = toku_db_get_compare_fun(db);
4807
            BOOL key_eq = cmpfun(db, &curr_old_key, &curr_new_key) == 0;
4808 4809 4810 4811
            if (!key_eq) {
                r = toku_grab_read_lock_on_directory(db, txn);
                if (r != 0) goto cleanup;

4812 4813 4814 4815 4816 4817 4818 4819 4820 4821 4822 4823 4824
                //Check overwrite constraints only in the case where 
                // the keys are not equal.
                // If the keys are equal, then we do not care of the flag is DB_NOOVERWRITE or DB_YESOVERWRITE
                r = db_put_check_overwrite_constraint(db, txn,
                                                      &curr_new_key,
                                                      lock_flags[which_db], remaining_flags[which_db]);
                if (r != 0) goto cleanup;
                if (remaining_flags[which_db] == DB_NOOVERWRITE_NO_ERROR) {
                    //update_multiple does not support delaying the no error, since we would
                    //have to log the flag in the put_multiple.
                    r = EINVAL; goto cleanup;
                }

4825
                // lock old key
4826 4827
                if (db->i->lt && !(lock_flags[which_db] & DB_PRELOCKED_WRITE)) {
                    r = get_point_lock(db, txn, &curr_old_key);
4828 4829 4830 4831
                    if (r != 0) goto cleanup;
                }
                del_dbs[n_del_dbs] = db;
                del_brts[n_del_dbs] = db->i->brt;
4832
                del_keys[n_del_dbs] = curr_old_key;
4833
                n_del_dbs++;
4834
                
4835 4836
            }

4837 4838 4839
            // we take a shortcut and avoid generating the old val
            // we assume that any new vals with size > 0 are different than the old val
            // if (!key_eq || !(dbt_cmp(&vals[which_db], &vals[which_db + num_dbs]) == 0)) {
4840 4841
            if (!key_eq || curr_new_val.size > 0) {
                r = db_put_check_size_constraints(db, &curr_new_key, &curr_new_val);
4842 4843 4844 4845 4846 4847 4848
                if (r != 0) goto cleanup;

                r = toku_grab_read_lock_on_directory(db, txn);
                if (r != 0) goto cleanup;

                // lock new key
                if (db->i->lt) {
4849
                    r = get_point_lock(db, txn, &curr_new_key);
4850 4851 4852 4853
                    if (r != 0) goto cleanup;
                }
                put_dbs[n_put_dbs] = db;
                put_brts[n_put_dbs] = db->i->brt;
4854 4855
                put_keys[n_put_dbs] = curr_new_key;
                put_vals[n_put_dbs] = curr_new_val;
4856 4857 4858 4859 4860 4861 4862 4863
                n_put_dbs++;
            }
        }

        if (r == 0 && n_del_dbs > 0) {
            if (n_del_dbs == 1)
                r = log_del_single(txn, del_brts[0], &del_keys[0]);
            else
4864
                r = log_del_multiple(txn, src_db, old_src_key, old_src_data, n_del_dbs, del_brts, del_keys);
4865 4866
            if (r == 0)
                r = do_del_multiple(txn, n_del_dbs, del_dbs, del_keys, src_db, old_src_key);
4867 4868 4869 4870 4871 4872 4873 4874
        }

        if (r == 0 && n_put_dbs > 0) {
            if (n_put_dbs == 1)
                r = log_put_single(txn, put_brts[0], &put_keys[0], &put_vals[0]);
            else
                r = log_put_multiple(txn, src_db, new_src_key, new_src_data, n_put_dbs, put_brts);
            if (r == 0)
4875
                r = do_put_multiple(txn, n_put_dbs, put_dbs, put_keys, put_vals, src_db, new_src_key);
4876 4877 4878 4879
        }
    }

cleanup:
4880 4881 4882 4883
    if (r == 0)
        num_multi_updates += num_dbs;
    else
        num_multi_updates_fail += num_dbs;
4884 4885 4886 4887
    return r;
}

static int toku_db_remove(DB * db, const char *fname, const char *dbname, u_int32_t flags);
4888 4889

//We do not (yet?) support deleting subdbs by deleting the enclosing 'fname'
4890
static int
4891 4892 4893 4894
env_dbremove_subdb(DB_ENV * env, DB_TXN * txn, const char *fname, const char *dbname, int32_t flags) {
    int r;
    if (!fname || !dbname) r = EINVAL;
    else {
4895 4896 4897 4898
        char subdb_full_name[strlen(fname) + sizeof("/") + strlen(dbname)];
        int bytes = snprintf(subdb_full_name, sizeof(subdb_full_name), "%s/%s", fname, dbname);
        assert(bytes==(int)sizeof(subdb_full_name)-1);
        const char *null_subdbname = NULL;
4899
        r = toku_env_dbremove(env, txn, subdb_full_name, null_subdbname, flags);
4900
    }
4901 4902
    return r;
}
4903

4904 4905 4906 4907

//Called during committing an fdelete ONLY IF you still have an fd AND it is not connected to /dev/null
//Called during aborting an fcreate (harmless to do, and definitely correct)
static void
4908
finalize_file_removal(DICTIONARY_ID dict_id, void * extra) {
4909 4910 4911
    toku_ltm *ltm = (toku_ltm*) extra;
    if (ltm) {
        //Poison the lock tree to prevent a future file from re-using it.
4912
        toku_ltm_invalidate_lt(ltm, dict_id);
4913 4914 4915
    }
}

4916
//static int toku_db_pre_acquire_table_lock(DB *db, DB_TXN *txn);
4917

4918 4919 4920 4921 4922 4923 4924 4925 4926 4927 4928 4929 4930 4931 4932 4933 4934 4935 4936 4937 4938 4939 4940 4941 4942 4943
static int
toku_env_dbremove(DB_ENV * env, DB_TXN *txn, const char *fname, const char *dbname, u_int32_t flags) {
    int r;
    HANDLE_PANICKED_ENV(env);
    HANDLE_ILLEGAL_WORKING_PARENT_TXN(env, txn);
    if (!env_opened(env)) return EINVAL;
    if (dbname!=NULL) 
        return env_dbremove_subdb(env, txn, fname, dbname, flags);
    // env_dbremove_subdb() converts (fname, dbname) to dname

    const char * dname = fname;
    assert(dbname == NULL);

    if (flags!=0) return EINVAL;
    if (env_is_db_with_dname_open(env, dname))
        return toku_ydb_do_error(env, EINVAL, "Cannot remove dictionary with an open handle.\n");
    
    DBT dname_dbt;  
    DBT iname_dbt;  
    toku_fill_dbt(&dname_dbt, dname, strlen(dname)+1);
    init_dbt_realloc(&iname_dbt);  // sets iname_dbt.data = NULL

    int using_txns = env->i->open_flags & DB_INIT_TXN;
    DB_TXN *child = NULL;
    // begin child (unless transactionless)
    if (using_txns) {
4944
	r = toku_txn_begin(env, txn, &child, DB_TXN_NOSYNC, 1);
4945 4946 4947 4948
	assert(r==0);
    }

    // get iname
4949
    r = toku_db_get(env->i->directory, child, &dname_dbt, &iname_dbt, DB_SERIALIZABLE);  // allocates memory for iname
4950 4951 4952 4953 4954 4955 4956 4957
    char *iname = iname_dbt.data;
    if (r==DB_NOTFOUND)
        r = ENOENT;
    else if (r==0) {
	// remove (dname,iname) from directory
	r = toku_db_del(env->i->directory, child, &dname_dbt, DB_DELETE_ANY);
	if (r == 0) {
            if (using_txns) {
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4958
                r = toku_brt_remove_on_commit(db_txn_struct_i(child)->tokutxn, &iname_dbt);
4959
		assert(r==0);
4960 4961 4962
                //Now that we have a writelock on dname, verify that there are still no handles open. (to prevent race conditions)
                if (r==0 && env_is_db_with_dname_open(env, dname))
                    r = toku_ydb_do_error(env, EINVAL, "Cannot remove dictionary with an open handle.\n");
4963 4964 4965
                if (r==0) {
                    DB* zombie = env_get_zombie_db_with_dname(env, dname);
                    if (zombie)
4966
                        r = toku_db_pre_acquire_table_lock(zombie, child, TRUE);
4967
                    if (r!=0 && r!=DB_LOCK_NOTGRANTED)
4968 4969
                        toku_ydb_do_error(env, r, "Cannot remove dictionary.\n");
                }
4970 4971
            }
            else {
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4972
                r = toku_brt_remove_now(env->i->cachetable, &iname_dbt);
4973 4974 4975 4976 4977 4978 4979 4980
		assert(r==0);
            }
	}
    }

    if (using_txns) {
	// close txn
	if (r == 0) {  // commit
4981
	    r = toku_txn_commit(child, DB_TXN_NOSYNC, NULL, NULL);
4982 4983 4984
	    assert(r==0);  // TODO panic
	}
	else {         // abort
4985
	    int r2 = toku_txn_abort(child, NULL, NULL);
4986 4987
	    assert(r2==0);  // TODO panic
	}
4988
    }
4989 4990

    if (iname) toku_free(iname);
4991
    return r;
4992

4993 4994
}

4995 4996 4997

static int
toku_db_remove(DB * db, const char *fname, const char *dbname, u_int32_t flags) {
4998
    HANDLE_PANICKED_DB(db);
4999 5000 5001 5002 5003 5004 5005 5006 5007 5008 5009 5010 5011 5012 5013 5014 5015 5016 5017 5018 5019
    DB_TXN *null_txn = NULL;
    int r  = toku_env_dbremove(db->dbenv, null_txn, fname, dbname, flags);
    int r2 = toku_db_close(db, 0);
    if (r==0) r = r2;
    return r;
}

static int
env_dbrename_subdb(DB_ENV *env, DB_TXN *txn, const char *fname, const char *dbname, const char *newname, u_int32_t flags) {
    int r;
    if (!fname || !dbname || !newname) r = EINVAL;
    else {
        char subdb_full_name[strlen(fname) + sizeof("/") + strlen(dbname)];
        {
            int bytes = snprintf(subdb_full_name, sizeof(subdb_full_name), "%s/%s", fname, dbname);
            assert(bytes==(int)sizeof(subdb_full_name)-1);
        }
        char new_full_name[strlen(fname) + sizeof("/") + strlen(dbname)];
        {
            int bytes = snprintf(new_full_name, sizeof(new_full_name), "%s/%s", fname, dbname);
            assert(bytes==(int)sizeof(new_full_name)-1);
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5020
        }
5021 5022
        const char *null_subdbname = NULL;
        r = toku_env_dbrename(env, txn, subdb_full_name, null_subdbname, new_full_name, flags);
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    }
5024 5025 5026 5027 5028 5029 5030 5031 5032 5033 5034 5035 5036 5037 5038 5039 5040 5041 5042 5043 5044 5045
    return r;
}


static int
toku_env_dbrename(DB_ENV *env, DB_TXN *txn, const char *fname, const char *dbname, const char *newname, u_int32_t flags) {
    int r;
    HANDLE_PANICKED_ENV(env);
    HANDLE_ILLEGAL_WORKING_PARENT_TXN(env, txn);
    if (!env_opened(env)) return EINVAL;
    if (dbname!=NULL) 
        return env_dbrename_subdb(env, txn, fname, dbname, newname, flags);
    // env_dbrename_subdb() converts (fname, dbname) to dname and (fname, newname) to newdname

    const char * dname = fname;
    assert(dbname == NULL);

    if (flags!=0) return EINVAL;
    if (env_is_db_with_dname_open(env, dname))
        return toku_ydb_do_error(env, EINVAL, "Cannot rename dictionary with an open handle.\n");
    if (env_is_db_with_dname_open(env, newname))
        return toku_ydb_do_error(env, EINVAL, "Cannot rename dictionary; Dictionary with target name has an open handle.\n");
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5046
    
5047 5048 5049 5050 5051 5052 5053 5054 5055 5056 5057
    DBT old_dname_dbt;  
    DBT new_dname_dbt;  
    DBT iname_dbt;  
    toku_fill_dbt(&old_dname_dbt, dname, strlen(dname)+1);
    toku_fill_dbt(&new_dname_dbt, newname, strlen(newname)+1);
    init_dbt_realloc(&iname_dbt);  // sets iname_dbt.data = NULL

    int using_txns = env->i->open_flags & DB_INIT_TXN;
    DB_TXN *child = NULL;
    // begin child (unless transactionless)
    if (using_txns) {
5058
	r = toku_txn_begin(env, txn, &child, DB_TXN_NOSYNC, 1);
5059 5060
	assert(r==0);
    }
5061

5062
    r = toku_db_get(env->i->directory, child, &old_dname_dbt, &iname_dbt, DB_SERIALIZABLE);  // allocates memory for iname
5063 5064 5065 5066 5067
    char *iname = iname_dbt.data;
    if (r==DB_NOTFOUND)
        r = ENOENT;
    else if (r==0) {
	// verify that newname does not already exist
5068
	r = db_getf_set(env->i->directory, child, DB_SERIALIZABLE, &new_dname_dbt, ydb_getf_do_nothing, NULL);
5069 5070 5071 5072 5073 5074 5075
	if (r == 0) 
	    r = EEXIST;
	else if (r == DB_NOTFOUND) {
	    // remove old (dname,iname) and insert (newname,iname) in directory
	    r = toku_db_del(env->i->directory, child, &old_dname_dbt, DB_DELETE_ANY);
	    if (r == 0)
		r = toku_db_put(env->i->directory, child, &new_dname_dbt, &iname_dbt, DB_YESOVERWRITE);
5076 5077 5078
            //Now that we have writelocks on both dnames, verify that there are still no handles open. (to prevent race conditions)
            if (r==0 && env_is_db_with_dname_open(env, dname))
                r = toku_ydb_do_error(env, EINVAL, "Cannot rename dictionary with an open handle.\n");
5079
            DB* zombie = NULL;
5080
            if (r==0) {
5081
                zombie = env_get_zombie_db_with_dname(env, dname);
5082
                if (zombie)
5083
                    r = toku_db_pre_acquire_table_lock(zombie, child, TRUE);
5084
                if (r!=0 && r!=DB_LOCK_NOTGRANTED)
5085 5086
                    toku_ydb_do_error(env, r, "Cannot rename dictionary.\n");
            }
5087 5088
            if (r==0 && env_is_db_with_dname_open(env, newname))
                r = toku_ydb_do_error(env, EINVAL, "Cannot rename dictionary; Dictionary with target name has an open handle.\n");
5089 5090 5091 5092 5093 5094
            if (r==0 && zombie) {
                //Update zombie in list if exists.
                env_note_zombie_db_closed(env, zombie);  // tell env that this db is no longer a zombie (it is completely closed)
                toku_free(zombie->i->dname);
                zombie->i->dname = toku_xstrdup(newname);
                env_note_zombie_db(env, zombie);  // tell env that this db is a zombie
5095
            }
5096 5097 5098 5099 5100 5101
	}
    }

    if (using_txns) {
	// close txn
	if (r == 0) {  // commit
5102
	    r = toku_txn_commit(child, DB_TXN_NOSYNC, NULL, NULL);
5103 5104 5105
	    assert(r==0);  // TODO panic
	}
	else {         // abort
5106
	    int r2 = toku_txn_abort(child, NULL, NULL);
5107 5108 5109 5110 5111 5112
	    assert(r2==0);  // TODO panic
	}
    }

    if (iname) toku_free(iname);
    return r;
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5113

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5114
}
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5116 5117
static int
toku_db_rename(DB * db, const char *fname, const char *dbname, const char *newname, u_int32_t flags) {
5118
    HANDLE_PANICKED_DB(db);
5119 5120 5121 5122 5123
    DB_TXN *null_txn = NULL;
    int r  = toku_env_dbrename(db->dbenv, null_txn, fname, dbname, newname, flags);
    int r2 = toku_db_close(db, 0);
    if (r==0) r = r2;
    return r;
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5124
}
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5126 5127
static int 
toku_db_set_descriptor(DB *db, u_int32_t version, const DBT* descriptor) {
5128 5129 5130 5131 5132
    HANDLE_PANICKED_DB(db);
    int r;
    if (db_opened(db)) return EINVAL;
    else if (!descriptor) r = EINVAL;
    else if (descriptor->size>0 && !descriptor->data) r = EINVAL;
5133
    else r = toku_brt_set_descriptor(db->i->brt, version, descriptor);
5134 5135 5136
    return r;
}

5137 5138
static int 
toku_db_set_flags(DB *db, u_int32_t flags) {
5139
    HANDLE_PANICKED_DB(db);
5140

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5141
    /* the following matches BDB */
5142 5143
    if (db_opened(db) && flags != 0) return EINVAL;

5144
    return 0;
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5145 5146
}

5147 5148
static int 
toku_db_get_flags(DB *db, u_int32_t *pflags) {
5149
    HANDLE_PANICKED_DB(db);
5150
    if (!pflags) return EINVAL;
5151
    *pflags = 0;
5152 5153 5154
    return 0;
}

5155 5156
static int 
toku_db_set_pagesize(DB *db, u_int32_t pagesize) {
5157
    HANDLE_PANICKED_DB(db);
5158
    int r = toku_brt_set_nodesize(db->i->brt, pagesize);
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    return r;
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5160
}
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5161

5162 5163
static int 
toku_db_stat64(DB * db, DB_TXN *txn, DB_BTREE_STAT64 *s) {
5164
    HANDLE_PANICKED_DB(db);
5165
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
5166 5167 5168 5169 5170 5171 5172 5173 5174
    struct brtstat64_s brtstat;
    int r = toku_brt_stat64(db->i->brt, db_txn_struct_i(txn)->tokutxn, &brtstat);
    if (r==0) {
	s->bt_nkeys = brtstat.nkeys;
	s->bt_ndata = brtstat.ndata;
	s->bt_dsize = brtstat.dsize;
	s->bt_fsize = brtstat.fsize;
    }
    return r;
5175
}
5176 5177 5178

static int 
locked_db_stat64 (DB *db, DB_TXN *txn, DB_BTREE_STAT64 *s) {
5179 5180 5181 5182
    toku_ydb_lock();
    int r = toku_db_stat64(db, txn, s);
    toku_ydb_unlock();
    return r;
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5183 5184
}

5185 5186
static int 
toku_db_key_range64(DB* db, DB_TXN* txn __attribute__((__unused__)), DBT* key, u_int64_t* less, u_int64_t* equal, u_int64_t* greater, int* is_exact) {
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5187
    HANDLE_PANICKED_DB(db);
5188
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
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    // note that toku_brt_keyrange does not have a txn param
    // this will be fixed later
    // temporarily, because the caller, locked_db_keyrange, 
    // has the ydb lock, we are ok
    int r = toku_brt_keyrange(db->i->brt, key, less, equal, greater);
    if (r != 0) { goto cleanup; }
    // temporarily set is_exact to 0 because brt_keyrange does not have this parameter
    *is_exact = 0;
cleanup:
    return r;
}

5202 5203
static int 
toku_c_pre_acquire_read_lock(DBC *dbc, const DBT *key_left, const DBT *key_right) {
5204 5205
    DB* db = dbc->dbp;
    DB_TXN* txn = dbc_struct_i(dbc)->txn;
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    HANDLE_PANICKED_DB(db);
    if (!db->i->lt || !txn) return EINVAL;
5208
    //READ_UNCOMMITTED and READ_COMMITTED transactions do not need read locks.
5209 5210 5211
    if (dbc_struct_i(dbc)->iso != TOKU_ISO_SERIALIZABLE) {
         return 0;
    }
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    int r;
5214 5215 5216
    {
	RANGE_LOCK_REQUEST_S request;
	read_lock_request_init(&request, txn, db,
5217 5218
			       key_left,
			       key_right);
5219 5220
        r = grab_range_lock(&request);
    }
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    return r;
}

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static int toku_db_pre_acquire_fileops_lock(DB *db, DB_TXN *txn) {
    RANGE_LOCK_REQUEST_S request;
    char *   dname = db->i->dname;
    DBT key_in_directory;
    //
    // bad hack because some environment dictionaries do not have a dname
    //
    if (!dname) {
        return 0;
    }
    toku_fill_dbt(&key_in_directory, dname, strlen(dname)+1);
    //Left end of range == right end of range (point lock)
    write_lock_request_init(
        &request, 
        txn, 
        db->dbenv->i->directory,
        &key_in_directory,
        &key_in_directory
        );
    int r = grab_range_lock(&request);
    return r;
}

5247 5248
//static int toku_db_pre_acquire_table_lock(DB *db, DB_TXN *txn) {
// needed by loader.c
5249 5250
int 
toku_db_pre_acquire_table_lock(DB *db, DB_TXN *txn, BOOL just_lock) {
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    HANDLE_PANICKED_DB(db);
    if (!db->i->lt || !txn) return EINVAL;

    int r;

5256
    {
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        RANGE_LOCK_REQUEST_S request;
        write_lock_request_init(
            &request, 
            txn, 
            db,
            toku_lt_neg_infinity,
            toku_lt_infinity
            );
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        r = grab_range_lock(&request);
    }

5268 5269
    if (r==0 && !just_lock &&
        !toku_brt_is_recovery_logging_suppressed(db->i->brt) &&
5270
        toku_brt_is_empty_fast(db->i->brt)
5271 5272 5273 5274 5275 5276
    ) {
        //Try to suppress both rollback and recovery logs
        DB_LOADER *loader;
        DB *dbs[1] = {db};
        uint32_t db_flags[1]  = {DB_NOOVERWRITE};
        uint32_t dbt_flags[1] = {0};
5277
        uint32_t loader_flags = DB_PRELOCKED_WRITE; //Don't recursively prelock
5278
        DB_ENV *env = db->dbenv;
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	DB_TXN *child = NULL;
	
	{
	    // begin child
	    int rt = toku_txn_begin(env, txn, &child, DB_TXN_NOSYNC, 1);
	    assert(rt==0);
	}
5286 5287

        toku_ydb_unlock(); //Cannot hold ydb lock when creating loader
5288 5289
	
        int r_loader = env->create_loader(env, child, &loader, NULL, 1, dbs, db_flags, dbt_flags, loader_flags);
5290
        if (r_loader==0) {
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            r_loader = loader->set_error_callback(loader, NULL, NULL);
            assert(r_loader==0);
            r_loader = loader->set_poll_function(loader, NULL, NULL);
            assert(r_loader==0);
5295
            // close the loader
5296 5297 5298 5299
            r_loader = loader->close(loader);
	    if (r_loader==0) {
		toku_brt_suppress_recovery_logs(db->i->brt, db_txn_struct_i(child)->tokutxn);
	    }
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        }
        else if (r_loader != DB_LOCK_NOTGRANTED) {
            //Lock not granted is not an error.
            //It just means we cannot use the loader optimization.
            assert(r==0);
            r = r_loader;
        }
5307 5308 5309
	if (r_loader == 0) { // commit
	    r = locked_txn_commit(child, 0);
	    assert(r==0);
5310
	    logsuppress++;
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	}
	else {  // abort
	    r = locked_txn_abort(child);
	    assert(r==0);
5315
	    logsuppressfail++;
5316
	}
5317
        toku_ydb_lock(); //Reaquire ydb lock.
5318 5319
    }

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    return r;
}
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5322

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//TODO: DB_AUTO_COMMIT.
//TODO: Nowait only conditionally?
//TODO: NOSYNC change to SYNC if DB_ENV has something in set_flags
5326 5327
static inline int 
toku_db_construct_autotxn(DB* db, DB_TXN **txn, BOOL* changed, BOOL force_auto_commit) {
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    assert(db && txn && changed);
    DB_ENV* env = db->dbenv;
    if (*txn || !(env->i->open_flags & DB_INIT_TXN)) {
        *changed = FALSE;
        return 0;
    }
5334
    BOOL nosync = (BOOL)(!force_auto_commit && !(env->i->open_flags & DB_AUTO_COMMIT));
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    u_int32_t txn_flags = DB_TXN_NOWAIT | (nosync ? DB_TXN_NOSYNC : 0);
5336
    int r = toku_txn_begin(env, NULL, txn, txn_flags, 1);
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    if (r!=0) return r;
    *changed = TRUE;
    return 0;
}

5342 5343
static inline int 
toku_db_destruct_autotxn(DB_TXN *txn, int r, BOOL changed) {
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    if (!changed) return r;
5345 5346
    if (r==0) return toku_txn_commit(txn, 0, NULL, NULL);
    toku_txn_abort(txn, NULL, NULL);
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    return r; 
}

5350 5351
static int 
locked_db_close(DB * db, u_int32_t flags) {
5352 5353 5354 5355
    toku_ydb_lock(); 
    int r = toku_db_close(db, flags); 
    toku_ydb_unlock(); 
    return r;
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}

5358 5359
static inline int 
autotxn_db_cursor(DB *db, DB_TXN *txn, DBC **c, u_int32_t flags) {
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    if (!txn && (db->dbenv->i->open_flags & DB_INIT_TXN)) {
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5361
        return toku_ydb_do_error(db->dbenv, EINVAL,
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              "Cursors in a transaction environment must have transactions.\n");
    }
5364
    return toku_db_cursor(db, txn, c, flags, 0);
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}

5367 5368
static int 
locked_db_cursor(DB *db, DB_TXN *txn, DBC **c, u_int32_t flags) {
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    toku_ydb_lock(); int r = autotxn_db_cursor(db, txn, c, flags); toku_ydb_unlock(); return r;
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}

5372 5373
static inline int 
autotxn_db_del(DB* db, DB_TXN* txn, DBT* key, u_int32_t flags) {
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    BOOL changed; int r;
    r = toku_db_construct_autotxn(db, &txn, &changed, FALSE);
    if (r!=0) return r;
    r = toku_db_del(db, txn, key, flags);
    return toku_db_destruct_autotxn(txn, r, changed);
}

5381 5382
static int 
locked_db_del(DB * db, DB_TXN * txn, DBT * key, u_int32_t flags) {
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    toku_ydb_lock(); int r = autotxn_db_del(db, txn, key, flags); toku_ydb_unlock(); return r;
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}

5386 5387
static inline int 
autotxn_db_get(DB* db, DB_TXN* txn, DBT* key, DBT* data, u_int32_t flags) {
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    BOOL changed; int r;
    r = toku_db_construct_autotxn(db, &txn, &changed, FALSE);
    if (r!=0) return r;
    r = toku_db_get(db, txn, key, data, flags);
    return toku_db_destruct_autotxn(txn, r, changed);
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}

5395 5396
static int 
locked_db_get (DB * db, DB_TXN * txn, DBT * key, DBT * data, u_int32_t flags) {
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    toku_ydb_lock(); int r = autotxn_db_get(db, txn, key, data, flags); toku_ydb_unlock(); return r;
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}

5400 5401
static inline int 
autotxn_db_getf_set (DB *db, DB_TXN *txn, u_int32_t flags, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra) {
5402 5403 5404 5405 5406 5407 5408
    BOOL changed; int r;
    r = toku_db_construct_autotxn(db, &txn, &changed, FALSE);
    if (r!=0) return r;
    r = db_getf_set(db, txn, flags, key, f, extra);
    return toku_db_destruct_autotxn(txn, r, changed);
}

5409 5410
static int 
locked_db_getf_set (DB *db, DB_TXN *txn, u_int32_t flags, DBT *key, YDB_CALLBACK_FUNCTION f, void *extra) {
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    toku_ydb_lock(); int r = autotxn_db_getf_set(db, txn, flags, key, f, extra); toku_ydb_unlock(); return r;
}

5414 5415
static int 
locked_c_pre_acquire_read_lock(DBC *dbc, const DBT *key_left, const DBT *key_right) {
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    toku_ydb_lock();
5417
    int r = toku_c_pre_acquire_read_lock(dbc, key_left, key_right);
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    toku_ydb_unlock();
    return r;
}

5422 5423
static int 
locked_db_pre_acquire_table_lock(DB *db, DB_TXN *txn) {
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    toku_ydb_lock();
5425
    int r = toku_db_pre_acquire_table_lock(db, txn, FALSE);
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    toku_ydb_unlock();
    return r;
}

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static int locked_db_pre_acquire_fileops_lock(DB *db, DB_TXN *txn) {
    toku_ydb_lock();
    int r = toku_db_pre_acquire_fileops_lock(db, txn);
    toku_ydb_unlock();
    return r;
}

5437 5438
// truncate a database
// effect: remove all of the rows from a database
5439 5440
static int 
toku_db_truncate(DB *db, DB_TXN *txn, u_int32_t *row_count, u_int32_t flags) {
5441
    HANDLE_PANICKED_DB(db);
5442
    HANDLE_DB_ILLEGAL_WORKING_PARENT_TXN(db, txn);
5443 5444
    int r;

5445 5446 5447 5448 5449 5450 5451
    u_int32_t unhandled_flags = flags;
    int ignore_cursors = 0;
    if (flags & DB_TRUNCATE_WITHCURSORS) {
        ignore_cursors = 1;
        unhandled_flags &= ~DB_TRUNCATE_WITHCURSORS;
    }

5452
    // dont support flags (yet)
5453
    if (unhandled_flags)
5454
        return EINVAL;
5455 5456
    // dont support cursors unless explicitly told to
    if (!ignore_cursors && toku_brt_get_cursor_count(db->i->brt) > 0)
5457 5458 5459 5460
        return EINVAL;

    // acquire a table lock
    if (txn) {
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        r = toku_db_pre_acquire_fileops_lock(db, txn);
        if (r != 0) {
            return r;
        }
5465
        r = toku_db_pre_acquire_table_lock(db, txn, TRUE);
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        if (r != 0) {
5467
            return r;
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        }
5469 5470 5471 5472
    }

    *row_count = 0;

5473
    r = toku_brt_truncate(db->i->brt);
5474 5475 5476 5477

    return r;
}

5478 5479
static inline int 
autotxn_db_open(DB* db, DB_TXN* txn, const char *fname, const char *dbname, DBTYPE dbtype, u_int32_t flags, int mode) {
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    BOOL changed; int r;
5481
    r = toku_db_construct_autotxn(db, &txn, &changed, (BOOL)((flags & DB_AUTO_COMMIT) != 0));
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    if (r!=0) return r;
    r = toku_db_open(db, txn, fname, dbname, dbtype, flags & ~DB_AUTO_COMMIT, mode);
    return toku_db_destruct_autotxn(txn, r, changed);
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}

5487 5488
static int 
locked_db_open(DB *db, DB_TXN *txn, const char *fname, const char *dbname, DBTYPE dbtype, u_int32_t flags, int mode) {
5489 5490 5491 5492
    toku_multi_operation_client_lock(); //Cannot begin checkpoint
    toku_ydb_lock(); int r = autotxn_db_open(db, txn, fname, dbname, dbtype, flags, mode); toku_ydb_unlock();
    toku_multi_operation_client_unlock(); //Can now begin checkpoint
    return r;
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}

5495 5496
static inline int 
autotxn_db_put(DB* db, DB_TXN* txn, DBT* key, DBT* data, u_int32_t flags) {
5497
    //{ unsigned i; printf("put %p keylen=%d key={", db, key->size); for(i=0; i<key->size; i++) printf("%d,", ((char*)key->data)[i]); printf("} datalen=%d data={", data->size); for(i=0; i<data->size; i++) printf("%d,", ((char*)data->data)[i]); printf("}\n"); }
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    BOOL changed; int r;
    r = toku_db_construct_autotxn(db, &txn, &changed, FALSE);
    if (r!=0) return r;
    r = toku_db_put(db, txn, key, data, flags);
    return toku_db_destruct_autotxn(txn, r, changed);
}

5505 5506
static int 
locked_db_put(DB * db, DB_TXN * txn, DBT * key, DBT * data, u_int32_t flags) {
5507 5508 5509 5510 5511 5512 5513
    int r = env_check_avail_fs_space(db->dbenv);
    if (r == 0) {
	toku_ydb_lock(); 
	r = autotxn_db_put(db, txn, key, data, flags); 
	toku_ydb_unlock(); 
    }
    return r;
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}

5516 5517
static int 
locked_db_remove(DB * db, const char *fname, const char *dbname, u_int32_t flags) {
5518
    toku_multi_operation_client_lock(); //Cannot begin checkpoint
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    toku_ydb_lock();
    int r = toku_db_remove(db, fname, dbname, flags);
    toku_ydb_unlock();
5522
    toku_multi_operation_client_unlock(); //Can now begin checkpoint
5523
    return r;
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}

5526 5527
static int 
locked_db_rename(DB * db, const char *namea, const char *nameb, const char *namec, u_int32_t flags) {
5528
    toku_multi_operation_client_lock(); //Cannot begin checkpoint
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    toku_ydb_lock();
    int r = toku_db_rename(db, namea, nameb, namec, flags);
    toku_ydb_unlock();
5532
    toku_multi_operation_client_unlock(); //Can now begin checkpoint
5533
    return r;
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}

5536 5537
static int 
locked_db_set_descriptor(DB *db, u_int32_t version, const DBT* descriptor) {
5538
    toku_ydb_lock();
5539
    int r = toku_db_set_descriptor(db, version, descriptor);
5540 5541
    toku_ydb_unlock();
    return r;
5542 5543
}

5544 5545
static void 
locked_db_set_errfile (DB *db, FILE *errfile) {
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    db->dbenv->set_errfile(db->dbenv, errfile);
}

5549 5550
static int 
locked_db_set_flags(DB *db, u_int32_t flags) {
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    toku_ydb_lock(); int r = toku_db_set_flags(db, flags); toku_ydb_unlock(); return r;
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}

5554 5555
static int 
locked_db_get_flags(DB *db, u_int32_t *flags) {
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    toku_ydb_lock(); int r = toku_db_get_flags(db, flags); toku_ydb_unlock(); return r;
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}

5559 5560
static int 
locked_db_set_pagesize(DB *db, u_int32_t pagesize) {
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    toku_ydb_lock(); int r = toku_db_set_pagesize(db, pagesize); toku_ydb_unlock(); return r;
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}

5564
// TODO 2216 delete this
5565 5566
static int 
locked_db_fd(DB * UU(db), int * UU(fdp)) {
5567 5568 5569 5570 5571
    //    toku_ydb_lock(); 
    // int r = toku_db_fd(db, fdp); 
    //    toku_ydb_unlock(); 
    //    return r;
    return 0;
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}

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static int locked_db_key_range64(DB* db, DB_TXN* txn, DBT* dbt, u_int64_t* less, u_int64_t* equal, u_int64_t* greater, int* is_exact) {
    toku_ydb_lock(); int r = toku_db_key_range64(db, txn, dbt, less, equal, greater, is_exact); toku_ydb_unlock(); return r;
}

static const DBT* toku_db_dbt_pos_infty(void) __attribute__((pure));
5580 5581
static const DBT*
toku_db_dbt_pos_infty(void) {
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    return toku_lt_infinity;
}

static const DBT* toku_db_dbt_neg_infty(void) __attribute__((pure));
5586 5587
static const DBT* 
toku_db_dbt_neg_infty(void) {
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5588
    return toku_lt_neg_infinity;
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}

5591 5592
static int 
locked_db_truncate(DB *db, DB_TXN *txn, u_int32_t *row_count, u_int32_t flags) {
5593 5594 5595 5596 5597 5598
    toku_checkpoint_safe_client_lock();
    toku_ydb_lock();
    int r = toku_db_truncate(db, txn, row_count, flags);
    toku_ydb_unlock();
    toku_checkpoint_safe_client_unlock();
    return r;
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}

5601 5602 5603 5604 5605 5606 5607
static int
toku_db_optimize(DB *db) {
    HANDLE_PANICKED_DB(db);
    int r = toku_brt_optimize(db->i->brt);
    return r;
}

5608 5609 5610
static int
toku_db_flatten(DB *db, DB_TXN *txn) {
    HANDLE_PANICKED_DB(db);
5611 5612
    TOKUTXN ttxn = txn ? db_txn_struct_i(txn)->tokutxn : NULL;
    int r = toku_brt_flatten(db->i->brt, ttxn);
5613 5614 5615
    return r;
}

5616 5617
static inline int 
autotxn_db_flatten(DB* db, DB_TXN* txn) {
5618 5619 5620 5621 5622 5623 5624 5625
    BOOL changed; int r;
    r = toku_db_construct_autotxn(db, &txn, &changed, FALSE);
    if (r!=0) return r;
    r = toku_db_flatten(db, txn);
    return toku_db_destruct_autotxn(txn, r, changed);
}


5626 5627
static int 
locked_db_flatten(DB *db, DB_TXN *txn) {
5628 5629 5630
    toku_ydb_lock(); int r = autotxn_db_flatten(db, txn); toku_ydb_unlock(); return r;
}

5631 5632
static int 
locked_db_optimize(DB *db) {
5633 5634 5635 5636 5637 5638
    toku_ydb_lock();
    int r = toku_db_optimize(db);
    toku_ydb_unlock();
    return r;
}

5639 5640 5641 5642 5643 5644 5645 5646 5647 5648 5649 5650 5651 5652 5653 5654 5655 5656 5657
static int
db_get_fragmentation(DB * db, TOKU_DB_FRAGMENTATION report) {
    HANDLE_PANICKED_DB(db);
    int r;
    if (!db_opened(db))
        r = toku_ydb_do_error(db->dbenv, EINVAL, "Fragmentation report available only on open DBs.\n");
    else
        r = toku_brt_get_fragmentation(db->i->brt, report);
    return r;
}

static int
locked_db_get_fragmentation(DB * db, TOKU_DB_FRAGMENTATION report) {
    toku_ydb_lock();
    int r = db_get_fragmentation(db, report);
    toku_ydb_unlock();
    return r;
}

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int 
toku_db_set_indexer(DB *db, DB_INDEXER * indexer) {
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    int r = 0;
    if ( db->i->indexer != NULL && indexer != NULL ) {
        // you are trying to overwrite a valid indexer
        r = EINVAL;
    }
    else {
        db->i->indexer = indexer;
    }
    return r;
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}

static int 
locked_db_set_indexer(DB *db, DB_INDEXER *indexer) {
    toku_ydb_lock(); int r = toku_db_set_indexer(db, indexer); toku_ydb_unlock(); return r;
}

DB_INDEXER *
toku_db_get_indexer(DB *db) {
    return db->i->indexer;
}

static void 
locked_db_get_indexer(DB *db, DB_INDEXER **indexer_ptr) {
    toku_ydb_lock(); *indexer_ptr = toku_db_get_indexer(db); toku_ydb_unlock();
}

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static int 
toku_db_create(DB ** db, DB_ENV * env, u_int32_t flags) {
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    int r;

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    if (flags || env == NULL) 
        return EINVAL;

    if (!env_opened(env))
        return EINVAL;
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    DB *MALLOC(result);
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    if (result == 0) {
        return ENOMEM;
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    }
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    memset(result, 0, sizeof *result);
    result->dbenv = env;
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#define SDB(name) result->name = locked_db_ ## name
    SDB(key_range64);
    SDB(close);
    SDB(cursor);
    SDB(del);
    SDB(get);
    //    SDB(key_range);
    SDB(open);
    SDB(put);
    SDB(remove);
    SDB(rename);
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    SDB(set_descriptor);
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    SDB(set_errfile);
    SDB(set_pagesize);
    SDB(set_flags);
    SDB(get_flags);
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    SDB(stat64);
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    SDB(fd);
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    SDB(pre_acquire_table_lock);
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    SDB(pre_acquire_fileops_lock);
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    SDB(truncate);
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    SDB(row_size_supported);
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    SDB(getf_set);
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    SDB(flatten);
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    SDB(optimize);
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    SDB(get_fragmentation);
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    SDB(set_indexer);
    SDB(get_indexer);
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#undef SDB
    result->dbt_pos_infty = toku_db_dbt_pos_infty;
    result->dbt_neg_infty = toku_db_dbt_neg_infty;
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    MALLOC(result->i);
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    if (result->i == 0) {
        toku_free(result);
        return ENOMEM;
    }
    memset(result->i, 0, sizeof *result->i);
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    result->i->dict_id = DICTIONARY_ID_NONE;
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    result->i->opened = 0;
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    result->i->open_flags = 0;
    result->i->open_mode = 0;
    result->i->brt = 0;
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    result->i->indexer = NULL;
    result->i->refs = 1;
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    toku_list_init(&result->i->dbs_that_must_close_before_abort);
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    r = toku_brt_create(&result->i->brt);
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    if (r != 0) {
        toku_free(result->i);
        toku_free(result);
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        return r;
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    }
    *db = result;
    return 0;
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}
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int 
DB_CREATE_FUN (DB ** db, DB_ENV * env, u_int32_t flags) {
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    toku_ydb_lock(); 
    int r = toku_db_create(db, env, flags); 
    toku_ydb_unlock(); 
    return r;
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}

/* need db_strerror_r for multiple threads */

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char *
db_strerror(int error) {
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    char *errorstr;
    if (error >= 0) {
        errorstr = strerror(error);
        if (errorstr)
            return errorstr;
    }
    
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    switch (error) {
        case DB_BADFORMAT:
            return "Database Bad Format (probably a corrupted database)";
        case DB_NOTFOUND:
            return "Not found";
        case TOKUDB_OUT_OF_LOCKS:
            return "Out of locks";
        case TOKUDB_DICTIONARY_TOO_OLD:
            return "Dictionary too old for this version of TokuDB";
        case TOKUDB_DICTIONARY_TOO_NEW:
            return "Dictionary too new for this version of TokuDB";
        case TOKUDB_CANCELED:
            return "User cancelled operation";
        case TOKUDB_NO_DATA:
            return "Ran out of data (not EOF)";
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    }
5792

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    static char unknown_result[100];    // Race condition if two threads call this at the same time. However even in a bad case, it should be some sort of null-terminated string.
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    errorstr = unknown_result;
    snprintf(errorstr, sizeof unknown_result, "Unknown error code: %d", error);
    return errorstr;
}

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const char *
db_version(int *major, int *minor, int *patch) {
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    if (major)
        *major = DB_VERSION_MAJOR;
    if (minor)
        *minor = DB_VERSION_MINOR;
    if (patch)
        *patch = DB_VERSION_PATCH;
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#if defined(TOKUDB_REVISION)
#define xstr(X) str(X)
#define str(X) #X
    return "tokudb " xstr(DB_VERSION_MAJOR) "." xstr(DB_VERSION_MINOR) "." xstr(DB_VERSION_PATCH) " build " xstr(TOKUDB_REVISION);
#else
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    return DB_VERSION_STRING;
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#endif
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}
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int 
db_env_set_func_fsync (int (*fsync_function)(int)) {
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    return toku_set_func_fsync(fsync_function);
}
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int 
db_env_set_func_pwrite (ssize_t (*pwrite_function)(int, const void *, size_t, toku_off_t)) {
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    return toku_set_func_pwrite(pwrite_function);
}
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int 
db_env_set_func_full_pwrite (ssize_t (*pwrite_function)(int, const void *, size_t, toku_off_t)) {
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    return toku_set_func_full_pwrite(pwrite_function);
}
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int 
db_env_set_func_write (ssize_t (*write_function)(int, const void *, size_t)) {
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    return toku_set_func_write(write_function);
}
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int 
db_env_set_func_full_write (ssize_t (*write_function)(int, const void *, size_t)) {
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    return toku_set_func_full_write(write_function);
}
5840

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int 
db_env_set_func_fdopen (FILE * (*fdopen_function)(int, const char *)) {
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    return toku_set_func_fdopen(fdopen_function);
}
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int 
db_env_set_func_fopen (FILE * (*fopen_function)(const char *, const char *)) {
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    return toku_set_func_fopen(fopen_function);
}
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int 
db_env_set_func_open (int (*open_function)(const char *, int, int)) {
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    return toku_set_func_open(open_function);
}
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int 
db_env_set_func_fclose (int (*fclose_function)(FILE*)) {
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    return toku_set_func_fclose(fclose_function);
}

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void 
db_env_set_func_loader_fwrite (size_t (*fwrite_fun)(const void*,size_t,size_t,FILE*)) {
    brtloader_set_os_fwrite(fwrite_fun);
}

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int 
db_env_set_func_malloc (void *(*f)(size_t)) {
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    return toku_set_func_malloc(f);
}
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int 
db_env_set_func_realloc (void *(*f)(void*, size_t)) {
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    return toku_set_func_realloc(f);
}
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int 
db_env_set_func_free (void (*f)(void*)) {
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    return toku_set_func_free(f);
}
5880

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// Got to call dlmalloc, or else it won't get included.
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void 
setup_dlmalloc (void) {
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    db_env_set_func_malloc(dlmalloc);
    db_env_set_func_realloc(dlrealloc);
    db_env_set_func_free(dlfree);
}
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// For test purposes only.
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// With this interface, all checkpoint users get the same callbacks and the same extras.
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void 
db_env_set_checkpoint_callback (void (*callback_f)(void*), void* extra) {
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    toku_checkpoint_safe_client_lock();
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    checkpoint_callback_f = callback_f;
    checkpoint_callback_extra = extra;
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    toku_checkpoint_safe_client_unlock();
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    //printf("set callback = %p, extra = %p\n", callback_f, extra);
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}
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void 
db_env_set_checkpoint_callback2 (void (*callback_f)(void*), void* extra) {
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    toku_checkpoint_safe_client_lock();
    checkpoint_callback2_f = callback_f;
    checkpoint_callback2_extra = extra;
    toku_checkpoint_safe_client_unlock();
    //printf("set callback2 = %p, extra2 = %p\n", callback2_f, extra2);
}
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void 
db_env_set_recover_callback (void (*callback_f)(void*), void* extra) {
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    toku_recover_set_callback(callback_f, extra);
}

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void 
db_env_set_recover_callback2 (void (*callback_f)(void*), void* extra) {
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    toku_recover_set_callback2(callback_f, extra);
}

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void 
db_env_set_loader_size_factor (uint32_t factor) {
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    toku_brtloader_set_size_factor(factor);
}

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void 
db_env_set_mvcc_garbage_collection_verification(u_int32_t verification_mode) {
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    garbage_collection_debug = (verification_mode != 0);
}
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// Purpose: allow test programs that expect to fail to suppress engine status output on failed assert.
void
db_env_enable_engine_status(uint32_t enable) {
    engine_status_enable = enable;
}
5934

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// HACK: To ensure toku_pthread_yield gets included in the .so
// non-static would require a prototype in a header
// static (since unused) would give a warning
// static + unused would not actually help toku_pthread_yield get in the .so
// static + used avoids all the warnings and makes sure toku_pthread_yield is in the .so
static void __attribute__((__used__))
include_toku_pthread_yield (void) {
    toku_pthread_yield();
}

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// For test purposes only, translate dname to iname
static int 
env_get_iname(DB_ENV* env, DBT* dname_dbt, DBT* iname_dbt) {
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    toku_ydb_lock();
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    DB *directory = env->i->directory;
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    int r = autotxn_db_get(directory, NULL, dname_dbt, iname_dbt, DB_SERIALIZABLE|DB_PRELOCKED); // allocates memory for iname
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    toku_ydb_unlock();
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    return r;
}

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/* Following functions (ydb_load_xxx()) are used by loader:
 */


// When the loader is created, it makes this call.
// For each dictionary to be loaded, replace old iname in directory
// with a newly generated iname.  This will also take a write lock
// on the directory entries.  The write lock will be released when
// the transaction of the loader is completed.
// If the transaction commits, the new inames are in place.
// If the transaction aborts, the old inames will be restored.
// The new inames are returned to the caller.  
// It is the caller's responsibility to free them.
// Return 0 on success (could fail if write lock not available).
int
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ydb_load_inames(DB_ENV * env, DB_TXN * txn, int N, DB * dbs[N], char * new_inames_in_env[N], LSN *load_lsn) {
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    int rval;
    int i;
    
    int using_txns = env->i->open_flags & DB_INIT_TXN;
    DB_TXN * child = NULL;
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    TXNID xid = 0;
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    DBT dname_dbt;  // holds dname
    DBT iname_dbt;  // holds new iname
    
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    for (i=0; i<N; i++) {
	new_inames_in_env[i] = NULL;
    }

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    // begin child (unless transactionless)
    if (using_txns) {
	rval = toku_txn_begin(env, txn, &child, DB_TXN_NOSYNC, 1);
	assert(rval == 0);
	xid = toku_txn_get_txnid(db_txn_struct_i(child)->tokutxn);
    }
    for (i = 0; i < N; i++) {
	char * dname = dbs[i]->i->dname;
	toku_fill_dbt(&dname_dbt, dname, strlen(dname)+1);
	// now create new iname
	char hint[strlen(dname) + 1];
	create_iname_hint(dname, hint);
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	char * new_iname = create_iname(env, xid, hint, i);               // allocates memory for iname_in_env
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	new_inames_in_env[i] = new_iname;
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        toku_fill_dbt(&iname_dbt, new_iname, strlen(new_iname) + 1);      // iname_in_env goes in directory
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        rval = toku_db_put(env->i->directory, child, &dname_dbt, &iname_dbt, DB_YESOVERWRITE);  // DB_YESOVERWRITE necessary
	if (rval) break;
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    }

    // Generate load log entries.
    if (!rval && using_txns) {
        TOKUTXN ttxn = db_txn_struct_i(txn)->tokutxn;
        int do_fsync = 0;
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        LSN *get_lsn = NULL;
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        for (i = 0; i < N; i++) {
            BRT brt  = dbs[i]->i->brt;
            //Fsync is necessary for the last one only.
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            if (i==N-1) {
                do_fsync = 1; //We only need a single fsync of logs.
                get_lsn  = load_lsn; //Set pointer to capture the last lsn.
            }
            rval = toku_brt_load(brt, ttxn, new_inames_in_env[i], do_fsync, get_lsn);
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            if (rval) break;
        }
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    }
	
    if (using_txns) {
	// close txn
	if (rval == 0) {  // all well so far, commit child
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	    rval = toku_txn_commit(child, DB_TXN_NOSYNC, NULL, NULL);
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	    assert(rval==0);
	}
	else {         // abort child
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	    int r2 = toku_txn_abort(child, NULL, NULL);
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	    assert(r2==0);
	    for (i=0; i<N; i++) {
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		if (new_inames_in_env[i]) {
		    toku_free(new_inames_in_env[i]);
		    new_inames_in_env[i] = NULL;
		}
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	    }
	}
    }

    return rval;
}

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int
6043
locked_ydb_load_inames(DB_ENV * env, DB_TXN * txn, int N, DB * dbs[N], char * new_inames_in_env[N], LSN *load_lsn) {
6044
    toku_ydb_lock();
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    int r = ydb_load_inames(env, txn, N, dbs, new_inames_in_env, load_lsn);
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    toku_ydb_unlock();
    return r;
}

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// TODO 2216:  Patch out this (dangerous) function when loader is working and 
//             we don't need to test the low-level redirect anymore.
// for use by test programs only, just a wrapper around brt call:
int
6054
toku_test_db_redirect_dictionary(DB * db, char * dname_of_new_file, DB_TXN *dbtxn) {
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    int r;
    DBT dname_dbt;
    DBT iname_dbt;
    char * new_iname_in_env;

    BRT brt = db->i->brt;
    TOKUTXN tokutxn = db_txn_struct_i(dbtxn)->tokutxn;

    toku_fill_dbt(&dname_dbt, dname_of_new_file, strlen(dname_of_new_file)+1);
    init_dbt_realloc(&iname_dbt);  // sets iname_dbt.data = NULL
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    r = toku_db_get(db->dbenv->i->directory, dbtxn, &dname_dbt, &iname_dbt, DB_SERIALIZABLE);  // allocates memory for iname
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    assert(r==0);
    new_iname_in_env = iname_dbt.data;

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    r = toku_dictionary_redirect(new_iname_in_env, brt, tokutxn);
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    toku_free(new_iname_in_env);
    return r;
}
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//Tets only function
uint64_t
toku_test_get_latest_lsn(DB_ENV *env) {
    LSN rval = ZERO_LSN;
    if (env && env->i->logger) {
        rval = toku_logger_last_lsn(env->i->logger);
    }
    return rval.lsn;
}

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int 
toku_test_get_checkpointing_user_data_status (void) {
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    return toku_cachetable_get_checkpointing_user_data_status();
}
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int
toku_grab_write_lock (DB* db, DBT* key, TOKUTXN tokutxn) {
    RANGE_LOCK_REQUEST_S request;
    DB_TXN * txn = toku_txn_get_container_db_txn(tokutxn);
    //Left end of range == right end of range (point lock)
    write_lock_request_init(&request, txn, db,
			    key,
			    key);
    int r = grab_range_lock(&request);
    return r;
}