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/* -*- Mode: C++; c-file-style: "gnu"; indent-tabs-mode:nil -*- */
/*
* Copyright (c) 2012 University of California, Los Angeles
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation;
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*
* Author: Alexander Afanasyev <alexander.afanasyev@ucla.edu>
* Zhenkai Zhu <zhenkai@cs.ucla.edu>
*/
#include "sqlite-helper.h"
// #include "sync-log.h"
#include <boost/make_shared.hpp>
#include <boost/ref.hpp>
// Other options: VP_md2, EVP_md5, EVP_sha, EVP_sha1, EVP_sha256, EVP_dss, EVP_dss1, EVP_mdc2, EVP_ripemd160
#define HASH_FUNCTION EVP_sha256
#include <boost/throw_exception.hpp>
typedef boost::error_info<struct tag_errmsg, std::string> errmsg_info_str;
// typedef boost::error_info<struct tag_errmsg, int> errmsg_info_int;
using namespace boost;
const std::string INIT_DATABASE = "\
PRAGMA foreign_keys = ON; \
\
CREATE TABLE \
SyncNodes( \
device_id INTEGER PRIMARY KEY AUTOINCREMENT, \
device_name TEXT NOT NULL, \
description TEXT, \
seq_no INTEGER NOT NULL, \
last_known_tdi TEXT, \
last_update TIMESTAMP \
); \
\
CREATE TRIGGER SyncNodesUpdater_trigger \
BEFORE INSERT ON SyncNodes \
FOR EACH ROW \
WHEN (SELECT device_id \
FROM SyncNodes \
WHERE device_name=NEW.device_name) \
IS NOT NULL \
BEGIN \
UPDATE SyncNodes \
SET seq_no=max(seq_no,NEW.seq_no) \
WHERE device_name=NEW.device_name; \
SELECT RAISE(IGNORE); \
END; \
\
CREATE INDEX SyncNodes_device_name ON SyncNodes (device_name); \
\
CREATE TABLE SyncLog( \
state_id INTEGER PRIMARY KEY AUTOINCREMENT, \
state_hash BLOB NOT NULL UNIQUE, \
last_update TIMESTAMP NOT NULL \
); \
\
CREATE TABLE \
SyncStateNodes( \
id INTEGER PRIMARY KEY AUTOINCREMENT, \
state_id INTEGER NOT NULL \
REFERENCES SyncLog (state_id) ON UPDATE CASCADE ON DELETE CASCADE, \
device_id INTEGER NOT NULL \
REFERENCES SyncNodes (device_id) ON UPDATE CASCADE ON DELETE CASCADE, \
seq_no INTEGER NOT NULL \
); \
\
CREATE INDEX SyncStateNodes_device_id ON SyncStateNodes (device_id); \
CREATE INDEX SyncStateNodes_state_id ON SyncStateNodes (state_id); \
CREATE INDEX SyncStateNodes_seq_no ON SyncStateNodes (seq_no); \
\
CREATE TRIGGER SyncLogGuard_trigger \
BEFORE INSERT ON SyncLog \
FOR EACH ROW \
WHEN (SELECT state_hash \
FROM SyncLog \
WHERE state_hash=NEW.state_hash) \
IS NOT NULL \
BEGIN \
DELETE FROM SyncLog WHERE state_hash=NEW.state_hash; \
END; \
";
DbHelper::DbHelper (const std::string &path)
{
int res = sqlite3_open((path+"chronoshare.db").c_str (), &m_db);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Cannot open/create dabatabase: [" + path + "chronoshare.db" + "]"));
}
res = sqlite3_create_function (m_db, "hash", 2, SQLITE_ANY, 0, 0,
DbHelper::hash_xStep, DbHelper::hash_xFinal);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Cannot create function ``hash''"));
}
res = sqlite3_create_function (m_db, "hash2str", 2, SQLITE_ANY, 0,
DbHelper::hash2str_Func,
0, 0);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Cannot create function ``hash''"));
}
res = sqlite3_create_function (m_db, "str2hash", 2, SQLITE_ANY, 0,
DbHelper::str2hash_Func,
0, 0);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Cannot create function ``hash''"));
}
// Alex: determine if tables initialized. if not, initialize... not sure what is the best way to go...
// for now, just attempt to create everything
char *errmsg = 0;
res = sqlite3_exec (m_db, INIT_DATABASE.c_str (), NULL, NULL, &errmsg);
if (res != SQLITE_OK && errmsg != 0)
{
std::cerr << "DEBUG: " << errmsg << std::endl;
sqlite3_free (errmsg);
}
}
DbHelper::~DbHelper ()
{
int res = sqlite3_close (m_db);
if (res != SQLITE_OK)
{
// complain
}
}
HashPtr
DbHelper::RememberStateInStateLog ()
{
int res = sqlite3_exec (m_db, "BEGIN TRANSACTION;", 0,0,0);
res += sqlite3_exec (m_db, "\
INSERT INTO SyncLog \
(state_hash, last_update) \
SELECT \
hash(device_name, seq_no), datetime('now') \
FROM SyncNodes \
ORDER BY device_name; \
", 0,0,0);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("1"));
}
sqlite3_int64 rowId = sqlite3_last_insert_rowid (m_db);
sqlite3_stmt *insertStmt;
res += sqlite3_prepare (m_db, "\
INSERT INTO SyncStateNodes \
(state_id, device_id, seq_no) \
SELECT ?, device_id, seq_no \
FROM SyncNodes; \
", -1, &insertStmt, 0);
res += sqlite3_bind_int64 (insertStmt, 1, rowId);
sqlite3_step (insertStmt);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("4"));
}
sqlite3_finalize (insertStmt);
sqlite3_stmt *getHashStmt;
res += sqlite3_prepare (m_db, "\
SELECT state_hash FROM SyncLog WHERE state_id = ?\
", -1, &getHashStmt, 0);
res += sqlite3_bind_int64 (getHashStmt, 1, rowId);
HashPtr retval;
int stepRes = sqlite3_step (getHashStmt);
if (stepRes == SQLITE_ROW)
{
retval = make_shared<Hash> (sqlite3_column_blob (getHashStmt, 0),
sqlite3_column_bytes (getHashStmt, 0));
}
sqlite3_finalize (getHashStmt);
res += sqlite3_exec (m_db, "COMMIT;", 0,0,0);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Some error with rememberStateInStateLog"));
}
return retval;
}
void
DbHelper::hash_xStep (sqlite3_context *context, int argc, sqlite3_value **argv)
{
if (argc != 2)
{
// _LOG_ERROR ("Wrong arguments are supplied for ``hash'' function");
sqlite3_result_error (context, "Wrong arguments are supplied for ``hash'' function", -1);
return;
}
if (sqlite3_value_type (argv[0]) != SQLITE_TEXT ||
sqlite3_value_type (argv[1]) != SQLITE_INTEGER)
{
// _LOG_ERROR ("Hash expects (text,integer) parameters");
sqlite3_result_error (context, "Hash expects (text,integer) parameters", -1);
return;
}
EVP_MD_CTX **hash_context = reinterpret_cast<EVP_MD_CTX **> (sqlite3_aggregate_context (context, sizeof (EVP_MD_CTX *)));
if (hash_context == 0)
{
sqlite3_result_error_nomem (context);
return;
}
if (*hash_context == 0)
{
*hash_context = EVP_MD_CTX_create ();
EVP_DigestInit_ex (*hash_context, HASH_FUNCTION (), 0);
}
int nameBytes = sqlite3_value_bytes (argv[0]);
const unsigned char *name = sqlite3_value_text (argv[0]);
sqlite3_int64 seqno = sqlite3_value_int64 (argv[1]);
EVP_DigestUpdate (*hash_context, name, nameBytes);
EVP_DigestUpdate (*hash_context, &seqno, sizeof(sqlite3_int64));
}
void
DbHelper::hash_xFinal (sqlite3_context *context)
{
EVP_MD_CTX **hash_context = reinterpret_cast<EVP_MD_CTX **> (sqlite3_aggregate_context (context, sizeof (EVP_MD_CTX *)));
if (hash_context == 0)
{
sqlite3_result_error_nomem (context);
return;
}
if (*hash_context == 0) // no rows
{
char charNullResult = 0;
sqlite3_result_blob (context, &charNullResult, 1, SQLITE_TRANSIENT); //SQLITE_TRANSIENT forces to make a copy
return;
}
unsigned char *hash = new unsigned char [EVP_MAX_MD_SIZE];
unsigned int hashLength = 0;
int ok = EVP_DigestFinal_ex (*hash_context,
hash, &hashLength);
sqlite3_result_blob (context, hash, hashLength, SQLITE_TRANSIENT); //SQLITE_TRANSIENT forces to make a copy
delete [] hash;
EVP_MD_CTX_destroy (*hash_context);
}
void
DbHelper::hash2str_Func (sqlite3_context *context, int argc, sqlite3_value **argv)
{
if (argc != 1 || sqlite3_value_type (argv[0]) != SQLITE_BLOB)
{
sqlite3_result_error (context, "Wrong arguments are supplied for ``hash2str'' function", -1);
return;
}
int hashBytes = sqlite3_value_bytes (argv[0]);
const void *hash = sqlite3_value_blob (argv[0]);
std::ostringstream os;
Hash tmpHash (hash, hashBytes);
os << tmpHash;
sqlite3_result_text (context, os.str ().c_str (), -1, SQLITE_TRANSIENT);
}
void
DbHelper::str2hash_Func (sqlite3_context *context, int argc, sqlite3_value **argv)
{
if (argc != 1 || sqlite3_value_type (argv[0]) != SQLITE_TEXT)
{
sqlite3_result_error (context, "Wrong arguments are supplied for ``str2hash'' function", -1);
return;
}
size_t hashTextBytes = sqlite3_value_bytes (argv[0]);
const unsigned char *hashText = sqlite3_value_text (argv[0]);
Hash hash (std::string (reinterpret_cast<const char*> (hashText), hashTextBytes));
sqlite3_result_blob (context, hash.GetHash (), hash.GetHashBytes (), SQLITE_TRANSIENT);
}
sqlite3_int64
DbHelper::LookupSyncLog (const std::string &stateHash)
{
Hash tmpHash (stateHash);
return LookupSyncLog (stateHash);
}
sqlite3_int64
DbHelper::LookupSyncLog (const Hash &stateHash)
{
sqlite3_stmt *stmt;
int res = sqlite3_prepare (m_db, "SELECT state_id FROM SyncLog WHERE state_hash = ?",
-1, &stmt, 0);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Cannot prepare statement"));
}
res = sqlite3_bind_blob (stmt, 1, stateHash.GetHash (), stateHash.GetHashBytes (), SQLITE_STATIC);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Cannot bind"));
}
sqlite3_int64 row = 0; // something bad
if (sqlite3_step (stmt) == SQLITE_ROW)
{
row = sqlite3_column_int64 (stmt, 0);
}
sqlite3_finalize (stmt);
return row;
}
void
DbHelper::UpdateDeviceSeqno (const std::string &name, uint64_t seqNo)
{
sqlite3_stmt *stmt;
// update is performed using trigger
int res = sqlite3_prepare (m_db, "INSERT INTO SyncNodes (device_name, seq_no) VALUES (?,?);",
-1, &stmt, 0);
res += sqlite3_bind_text (stmt, 1, name.c_str (), name.size (), SQLITE_STATIC);
res += sqlite3_bind_int64 (stmt, 2, seqNo);
sqlite3_step (stmt);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Some error with UpdateDeviceSeqno"));
}
sqlite3_finalize (stmt);
}
void
DbHelper::FindStateDifferences (const std::string &oldHash, const std::string &newHash)
{
Hash tmpOldHash (oldHash);
Hash tmpNewHash (newHash);
FindStateDifferences (tmpOldHash, tmpNewHash);
}
void
DbHelper::FindStateDifferences (const Hash &oldHash, const Hash &newHash)
{
sqlite3_stmt *stmt;
int res = sqlite3_prepare_v2 (m_db, "\
SELECT sn.device_name, s_old.seq_no, s_new.seq_no \
FROM (SELECT * \
FROM SyncStateNodes \
WHERE state_id=(SELECT state_id \
FROM SyncLog \
WHERE state_hash=:old_hash)) s_old \
LEFT JOIN (SELECT * \
FROM SyncStateNodes \
WHERE state_id=(SELECT state_id \
FROM SyncLog \
WHERE state_hash=:new_hash)) s_new \
\
ON s_old.device_id = s_new.device_id \
JOIN SyncNodes sn ON sn.device_id = s_old.device_id \
\
WHERE s_new.seq_no IS NULL OR \
s_old.seq_no != s_new.seq_no \
\
UNION ALL \
\
SELECT sn.device_name, s_old.seq_no, s_new.seq_no \
FROM (SELECT * \
FROM SyncStateNodes \
WHERE state_id=(SELECT state_id \
FROM SyncLog \
WHERE state_hash=:new_hash )) s_new \
LEFT JOIN (SELECT * \
FROM SyncStateNodes \
WHERE state_id=(SELECT state_id \
FROM SyncLog \
WHERE state_hash=:old_hash)) s_old \
\
ON s_old.device_id = s_new.device_id \
JOIN SyncNodes sn ON sn.device_id = s_new.device_id \
\
WHERE s_old.seq_no IS NULL \
", -1, &stmt, 0);
if (res != SQLITE_OK)
{
BOOST_THROW_EXCEPTION (Error::Db ()
<< errmsg_info_str ("Some error with FindStateDifferences"));
}
res += sqlite3_bind_blob (stmt, 1, oldHash.GetHash (), oldHash.GetHashBytes (), SQLITE_STATIC);
res += sqlite3_bind_blob (stmt, 2, newHash.GetHash (), newHash.GetHashBytes (), SQLITE_STATIC);
while (sqlite3_step (stmt) == SQLITE_ROW)
{
std::cout << sqlite3_column_text (stmt, 0) <<
": from " << sqlite3_column_int64 (stmt, 1) <<
" to " << sqlite3_column_int64 (stmt, 2) <<
std::endl;
}
sqlite3_finalize (stmt);
}