610 lines
11 KiB
C++
610 lines
11 KiB
C++
// vim: set ts=4 sw=4 tw=99 noet:
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//
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// AMX Mod X, based on AMX Mod by Aleksander Naszko ("OLO").
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// Copyright (C) The AMX Mod X Development Team.
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//
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// This software is licensed under the GNU General Public License, version 3 or higher.
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// Additional exceptions apply. For full license details, see LICENSE.txt or visit:
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// https://alliedmods.net/amxmodx-license
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//
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// MySQL Module
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//
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#include "amxxmodule.h"
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#include "mysql2_header.h"
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#include "threading.h"
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using namespace SourceMod;
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MainThreader g_Threader;
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ThreadWorker *g_pWorker = NULL;
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extern DLL_FUNCTIONS *g_pFunctionTable;
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IMutex *g_QueueLock = NULL;
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CStack<MysqlThread *> g_ThreadQueue;
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CStack<MysqlThread *> g_FreeThreads;
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float g_lasttime = 0.0f;
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void ShutdownThreading()
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{
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if (g_pWorker)
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{
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g_pWorker->Stop(true);
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delete g_pWorker;
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g_pWorker = NULL;
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}
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g_QueueLock->Lock();
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while (!g_ThreadQueue.empty())
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{
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delete g_ThreadQueue.front();
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g_ThreadQueue.pop();
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}
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while (!g_FreeThreads.empty())
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{
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delete g_FreeThreads.front();
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g_FreeThreads.pop();
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}
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g_QueueLock->Unlock();
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g_QueueLock->DestroyThis();
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FreeHandleTable();
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}
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//public QueryHandler(state, Handle:query, error[], errnum, data[], size)
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//native SQL_ThreadQuery(Handle:cn_tuple, const handler[], const query[], const data[]="", dataSize=0);
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static cell AMX_NATIVE_CALL SQL_ThreadQuery(AMX *amx, cell *params)
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{
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if (!g_pWorker)
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Thread worker was unable to start.");
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return 0;
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}
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SQL_Connection *cn = (SQL_Connection *)GetHandle(params[1], Handle_Connection);
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if (!cn)
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Invalid info tuple handle: %d", params[1]);
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return 0;
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}
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int len;
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const char *handler = MF_GetAmxString(amx, params[2], 0, &len);
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int fwd = MF_RegisterSPForwardByName(amx, handler, FP_CELL, FP_CELL, FP_STRING, FP_CELL, FP_ARRAY, FP_CELL, FP_CELL, FP_DONE);
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if (fwd < 1)
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{
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MF_LogError(amx, AMX_ERR_NATIVE, "Function not found: %s", handler);
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return 0;
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}
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MysqlThread *kmThread;
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g_QueueLock->Lock();
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if (g_FreeThreads.empty())
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{
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kmThread = new MysqlThread();
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}
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else
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{
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kmThread = g_FreeThreads.front();
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g_FreeThreads.pop();
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}
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g_QueueLock->Unlock();
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kmThread->SetInfo(cn->host, cn->user, cn->pass, cn->db, cn->port, cn->max_timeout);
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kmThread->SetForward(fwd);
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kmThread->SetQuery(MF_GetAmxString(amx, params[3], 1, &len));
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kmThread->SetCellData(MF_GetAmxAddr(amx, params[4]), (ucell)params[5]);
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kmThread->SetCharacterSet(cn->charset);
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g_pWorker->MakeThread(kmThread);
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return 1;
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}
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MysqlThread::MysqlThread()
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{
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m_fwd = 0;
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m_data = NULL;
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m_datalen = 0;
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m_maxdatalen = 0;
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}
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MysqlThread::~MysqlThread()
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{
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if (m_fwd)
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{
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MF_UnregisterSPForward(m_fwd);
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m_fwd = 0;
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}
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delete [] m_data;
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m_data = NULL;
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}
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void MysqlThread::SetCellData(cell data[], ucell len)
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{
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if (len > m_maxdatalen)
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{
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delete [] m_data;
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m_data = new cell[len];
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m_maxdatalen = len;
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}
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if (len)
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{
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m_datalen = len;
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memcpy(m_data, data, len*sizeof(cell));
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}
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}
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void MysqlThread::SetForward(int forward)
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{
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m_fwd = forward;
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}
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void MysqlThread::SetInfo(const char *host, const char *user, const char *pass, const char *db, int port, unsigned int max_timeout)
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{
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m_host = host;
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m_user = user;
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m_pass = pass;
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m_db = db;
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m_max_timeout = max_timeout;
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m_port = port;
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m_qrInfo.queue_time = gpGlobals->time;
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}
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void MysqlThread::SetCharacterSet(const char *charset)
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{
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m_charset = charset;
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}
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void MysqlThread::SetQuery(const char *query)
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{
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m_query = query;
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}
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void MysqlThread::RunThread(IThreadHandle *pHandle)
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{
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DatabaseInfo info;
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info.database = m_db.chars();
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info.pass = m_pass.chars();
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info.user = m_user.chars();
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info.host = m_host.chars();
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info.port = m_port;
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info.max_timeout = m_max_timeout;
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info.charset = m_charset.chars();
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float save_time = m_qrInfo.queue_time;
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memset(&m_qrInfo, 0, sizeof(m_qrInfo));
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m_qrInfo.queue_time = save_time;
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IDatabase *pDatabase = g_Mysql.Connect2(&info, &m_qrInfo.amxinfo.info.errorcode, m_qrInfo.amxinfo.error, 254);
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IQuery *pQuery = NULL;
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if (!pDatabase)
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{
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m_qrInfo.connect_success = false;
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m_qrInfo.query_success = false;
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}
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else
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{
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m_qrInfo.connect_success = true;
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pQuery = pDatabase->PrepareQuery(m_query.chars());
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if (!pQuery->Execute2(&m_qrInfo.amxinfo.info, m_qrInfo.amxinfo.error, 254))
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{
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m_qrInfo.query_success = false;
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}
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else
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{
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m_qrInfo.query_success = true;
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}
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}
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if (m_qrInfo.query_success && m_qrInfo.amxinfo.info.rs)
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{
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m_atomicResult.CopyFrom(m_qrInfo.amxinfo.info.rs);
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m_qrInfo.amxinfo.info.rs = &m_atomicResult;
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}
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if (pQuery)
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{
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pQuery->FreeHandle();
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pQuery = NULL;
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}
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m_qrInfo.amxinfo.pQuery = NULL;
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m_qrInfo.amxinfo.opt_ptr = new char[m_query.length() + 1];
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strcpy(m_qrInfo.amxinfo.opt_ptr, m_query.chars());
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if (pDatabase)
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{
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pDatabase->FreeHandle();
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pDatabase = NULL;
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}
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}
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void MysqlThread::Invalidate()
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{
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m_atomicResult.FreeHandle();
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}
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void MysqlThread::OnTerminate(IThreadHandle *pHandle, bool cancel)
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{
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if (cancel)
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{
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Invalidate();
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g_QueueLock->Lock();
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g_FreeThreads.push(this);
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g_QueueLock->Unlock();
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} else {
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g_QueueLock->Lock();
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g_ThreadQueue.push(this);
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g_QueueLock->Unlock();
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}
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}
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void NullFunc(void *ptr, unsigned int num)
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{
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}
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//public QueryHandler(state, Handle:query, error[], errnum, data[], size)
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void MysqlThread::Execute()
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{
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cell data_addr;
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if (m_datalen)
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{
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data_addr = MF_PrepareCellArray(m_data, m_datalen);
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}
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else
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{
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static cell tmpdata[1] = {0};
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data_addr = MF_PrepareCellArray(tmpdata, 1);
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}
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int state = 0;
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if (!m_qrInfo.connect_success)
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{
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state = -2;
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}
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else if (!m_qrInfo.query_success)
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{
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state = -1;
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}
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float diff = gpGlobals->time - m_qrInfo.queue_time;
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cell c_diff = amx_ftoc(diff);
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unsigned int hndl = MakeHandle(&m_qrInfo.amxinfo, Handle_Query, NullFunc);
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if (state != 0)
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{
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MF_ExecuteForward(m_fwd,
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(cell)state,
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(cell)hndl,
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m_qrInfo.amxinfo.error,
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m_qrInfo.amxinfo.info.errorcode,
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data_addr,
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m_datalen,
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c_diff);
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}
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else
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{
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MF_ExecuteForward(m_fwd,
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(cell)0,
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(cell)hndl,
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"",
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(cell)0,
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data_addr,
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m_datalen,
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c_diff);
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}
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FreeHandle(hndl);
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delete [] m_qrInfo.amxinfo.opt_ptr;
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m_qrInfo.amxinfo.opt_ptr = NULL;
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}
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/*****************
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* METAMOD STUFF *
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*****************/
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void OnPluginsLoaded()
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{
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if (g_pWorker)
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{
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return;
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}
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if (!g_QueueLock)
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{
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g_QueueLock = g_Threader.MakeMutex();
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}
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g_pWorker = new ThreadWorker(&g_Threader, 250);
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if (!g_pWorker->Start())
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{
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delete g_pWorker;
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g_pWorker = NULL;
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}
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g_pFunctionTable->pfnSpawn = NULL;
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g_lasttime = 0.0f;
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return;
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}
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void StartFrame()
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{
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if (g_pWorker && (g_lasttime < gpGlobals->time))
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{
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g_lasttime = gpGlobals->time + 0.05f;
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g_QueueLock->Lock();
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size_t remaining = g_ThreadQueue.size();
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if (remaining)
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{
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MysqlThread *kmThread;
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do
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{
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kmThread = g_ThreadQueue.front();
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g_ThreadQueue.pop();
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g_QueueLock->Unlock();
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kmThread->Execute();
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kmThread->Invalidate();
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g_FreeThreads.push(kmThread);
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g_QueueLock->Lock();
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} while (!g_ThreadQueue.empty());
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}
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g_QueueLock->Unlock();
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}
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RETURN_META(MRES_IGNORED);
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}
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void OnPluginsUnloading()
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{
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if (!g_pWorker)
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{
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return;
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}
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g_pWorker->Stop(false);
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delete g_pWorker;
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g_pWorker = NULL;
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g_QueueLock->Lock();
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size_t remaining = g_ThreadQueue.size();
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if (remaining)
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{
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MysqlThread *kmThread;
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do
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{
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kmThread = g_ThreadQueue.front();
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g_ThreadQueue.pop();
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g_QueueLock->Unlock();
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kmThread->Execute();
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kmThread->Invalidate();
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g_FreeThreads.push(kmThread);
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g_QueueLock->Lock();
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} while (!g_ThreadQueue.empty());
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}
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g_QueueLock->Unlock();
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}
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/***********************
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* ATOMIC RESULT STUFF *
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***********************/
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AtomicResult::AtomicResult()
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{
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m_IsFree = true;
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m_CurRow = 1;
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m_RowCount = 0;
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m_Table = NULL;
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m_AllocSize = 0;
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}
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AtomicResult::~AtomicResult()
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{
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if (!m_IsFree)
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{
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FreeHandle();
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}
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for (size_t i=0; i<=m_AllocSize; i++)
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{
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delete m_Table[i];
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}
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delete [] m_Table;
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m_Table = NULL;
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m_IsFree = true;
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}
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unsigned int AtomicResult::RowCount()
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{
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return m_RowCount;
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}
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bool AtomicResult::IsNull(unsigned int columnId)
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{
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return (GetString(columnId) == NULL);
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}
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unsigned int AtomicResult::FieldCount()
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{
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return m_FieldCount;
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}
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bool AtomicResult::FieldNameToNum(const char *name, unsigned int *columnId)
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{
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for (unsigned int i=0; i<m_FieldCount; i++)
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{
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assert(m_Table[i] != NULL);
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if (strcmp(m_Table[i]->chars(), name) == 0)
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{
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if (columnId)
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{
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*columnId = i;
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}
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return true;
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}
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}
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return false;
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}
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const char *AtomicResult::FieldNumToName(unsigned int num)
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{
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if (num >= m_FieldCount)
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return NULL;
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assert(m_Table[num] != NULL);
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return m_Table[num]->chars();
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}
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double AtomicResult::GetDouble(unsigned int columnId)
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{
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return atof(GetStringSafe(columnId));
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}
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float AtomicResult::GetFloat(unsigned int columnId)
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{
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return atof(GetStringSafe(columnId));
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}
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int AtomicResult::GetInt(unsigned int columnId)
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{
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return atoi(GetStringSafe(columnId));
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}
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const char *AtomicResult::GetRaw(unsigned int columnId, size_t *length)
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{
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//we don't support this yet...
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*length = 0;
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return "";
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}
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const char *AtomicResult::GetStringSafe(unsigned int columnId)
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{
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const char *str = GetString(columnId);
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return str ? str : "";
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}
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const char *AtomicResult::GetString(unsigned int columnId)
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{
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if (columnId >= m_FieldCount)
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return NULL;
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size_t idx = (m_CurRow * m_FieldCount) + columnId;
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assert(m_Table[idx] != NULL);
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return m_Table[idx]->chars();
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}
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IResultRow *AtomicResult::GetRow()
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{
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return static_cast<IResultRow *>(this);
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}
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bool AtomicResult::IsDone()
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{
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if (m_CurRow > m_RowCount)
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return true;
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return false;
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}
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void AtomicResult::NextRow()
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{
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m_CurRow++;
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}
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void AtomicResult::_InternalClear()
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{
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if (m_IsFree)
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return;
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m_IsFree = true;
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}
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void AtomicResult::FreeHandle()
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{
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_InternalClear();
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}
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void AtomicResult::CopyFrom(IResultSet *rs)
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{
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if (!m_IsFree)
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{
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_InternalClear();
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}
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m_IsFree = false;
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m_FieldCount = rs->FieldCount();
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m_RowCount = rs->RowCount();
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m_CurRow = 1;
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size_t newTotal = (m_RowCount * m_FieldCount) + m_FieldCount;
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if (newTotal > m_AllocSize)
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{
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ke::AString **table = new ke::AString *[newTotal];
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memset(table, 0, newTotal * sizeof(ke::AString *));
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if (m_Table)
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{
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memcpy(table, m_Table, m_AllocSize * sizeof(ke::AString *));
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delete [] m_Table;
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}
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m_Table = table;
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m_AllocSize = newTotal;
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}
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for (unsigned int i=0; i<m_FieldCount; i++)
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{
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if (m_Table[i])
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{
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*m_Table[i] = rs->FieldNumToName(i);
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} else {
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const char* string = rs->FieldNumToName(i);
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m_Table[i] = new ke::AString(string ? string : "");
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}
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}
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IResultRow *row;
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unsigned int idx = m_FieldCount;
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while (!rs->IsDone())
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{
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row = rs->GetRow();
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for (unsigned int i=0; i<m_FieldCount; i++,idx++)
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{
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if (m_Table[idx])
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{
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*m_Table[idx] = row->GetString(i);
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} else {
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const char* string = row->GetString(i);
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m_Table[idx] = new ke::AString(string ? string : "");
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}
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}
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rs->NextRow();
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}
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}
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void AtomicResult::Rewind()
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{
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m_CurRow = 1;
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}
|
|
|
|
bool AtomicResult::NextResultSet()
|
|
{
|
|
return false;
|
|
}
|
|
|
|
AMX_NATIVE_INFO g_ThreadSqlNatives[] =
|
|
{
|
|
{"SQL_ThreadQuery", SQL_ThreadQuery},
|
|
{NULL, NULL},
|
|
};
|
|
|