提交 cb5bc959 编写于 作者: H Haojun Liao

[TD-225]

......@@ -27,6 +27,7 @@ pipeline {
cd debug
cmake .. > /dev/null
make > /dev/null
make install > /dev/null
cd ${WKC}/tests
#./test-all.sh smoke
./test-all.sh pytest
......@@ -89,7 +90,6 @@ pipeline {
catchError(buildResult: 'SUCCESS', stageResult: 'FAILURE') {
sh '''
cd ${WKC}/tests/pytest
./crash_gen.sh --valgrind -p -t 10 -s 100 -b 4
./handle_crash_gen_val_log.sh
'''
}
......
......@@ -13,6 +13,7 @@ ELSEIF (TD_WINDOWS)
INSTALL(DIRECTORY ${TD_COMMUNITY_DIR}/src/connector/go DESTINATION connector)
INSTALL(DIRECTORY ${TD_COMMUNITY_DIR}/src/connector/nodejs DESTINATION connector)
INSTALL(DIRECTORY ${TD_COMMUNITY_DIR}/src/connector/python DESTINATION connector)
INSTALL(DIRECTORY ${TD_COMMUNITY_DIR}/src/connector/C\# DESTINATION connector)
INSTALL(DIRECTORY ${TD_COMMUNITY_DIR}/tests/examples DESTINATION .)
INSTALL(DIRECTORY ${TD_COMMUNITY_DIR}/packaging/cfg DESTINATION .)
INSTALL(FILES ${TD_COMMUNITY_DIR}/src/inc/taos.h DESTINATION include)
......
......@@ -34,7 +34,8 @@ TDengine是一个高效的存储、查询、分析时序大数据的平台,专
- [SQL写入](https://www.taosdata.com/cn/documentation20/insert/#SQL写入):使用SQL insert命令向一张或多张表写入单条或多条记录
- [Telegraf写入](https://www.taosdata.com/cn/documentation20/insert/#Telegraf直接写入):配置Telegraf, 不用任何代码,将采集数据直接写入
- [Prometheus写入](https://www.taosdata.com/cn/documentation20/insert/#Prometheus直接写入):配置Prometheus, 不用任何代码,将数据直接写入
- [EMQ X Broker](https://www.taosdata.com/cn/documentation20/insert/#EMQ-X-Broker直接写入):配置EMQ X,不用任何代码,就可将MQTT数据直接写入
- [EMQ X Broker](https://www.taosdata.com/cn/documentation20/insert/#EMQ-X-Broker直接写入):配置EMQ X,不用任何代码,就可将 MQTT 数据直接写入
- [HiveMQ Broker](https://www.taosdata.com/cn/documentation20/insert/#HiveMQ-Broker直接写入):通过 HiveMQ Extension,不用任何代码,就可将 MQTT 数据直接写入
## [高效查询数据](https://www.taosdata.com/cn/documentation20/queries)
......
......@@ -10,7 +10,7 @@ TDengine的模块之一是时序数据库。但除此之外,为减少研发的
* __硬件或云服务成本降至1/5__:由于超强性能,计算资源不到通用大数据方案的1/5;通过列式存储和先进的压缩算法,存储空间不到通用数据库的1/10。
* __全栈时序数据处理引擎__:将数据库、消息队列、缓存、流式计算等功能融为一体,应用无需再集成Kafka/Redis/HBase/Spark/HDFS等软件,大幅降低应用开发和维护的复杂度成本。
* __强大的分析功能__:无论是十年前还是一秒钟前的数据,指定时间范围即可查询。数据可在时间轴上或多个设备上进行聚合。即席查询可通过Shell, Python, R, Matlab随时进行。
* __与第三方工具无缝连接__:不用一行代码,即可与Telegraf, Grafana, EMQ, Prometheus, Matlab, R等集成。后续将支持OPC, Hadoop, Spark等, BI工具也将无缝连接。
* __与第三方工具无缝连接__:不用一行代码,即可与Telegraf, Grafana, EMQ, HiveMQ, Prometheus, Matlab, R等集成。后续将支持OPC, Hadoop, Spark等, BI工具也将无缝连接。
* __零运维成本、零学习成本__:安装集群简单快捷,无需分库分表,实时备份。类似标准SQL,支持RESTful, 支持Python/Java/C/C++/C#/Go/Node.js, 与MySQL相似,零学习成本。
采用TDengine,可将典型的物联网、车联网、工业互联网大数据平台的总拥有成本大幅降低。但需要指出的是,因充分利用了物联网时序数据的特点,它无法用来处理网络爬虫、微博、微信、电商、ERP、CRM等通用型数据。
......
......@@ -253,7 +253,7 @@ ALTER USER <user_name> PASS <'password'>;
修改用户密码, 为避免被转换为小写,密码需要用单引号引用,单引号为英文半角
```
ALTER USER <user_name> PRIVILEDGE <super|write|read>;
ALTER USER <user_name> PRIVILEGE <super|write|read>;
```
修改用户权限为:super/write/read,不需要添加单引号
......
......@@ -221,7 +221,7 @@ TDengine采用时间驱动缓存管理策略(First-In-First-Out,FIFO),
TDengine通过查询函数向用户提供毫秒级的数据获取能力。直接将最近到达的数据保存在缓存中,可以更加快速地响应用户针对最近一条或一批数据的查询分析,整体上提供更快的数据库查询响应能力。从这个意义上来说,**可通过设置合适的配置参数将TDengine作为数据缓存来使用,而不需要再部署Redis或其他额外的缓存系统**,可有效地简化系统架构,降低运维的成本。需要注意的是,TDengine重启以后系统的缓存将被清空,之前缓存的数据均会被批量写入磁盘,缓存的数据将不会像专门的Key-value缓存系统再将之前缓存的数据重新加载到缓存中。
每个vnode有自己独立的内存,而且由多个固定大小的内存块组成,不同vnode之间完全隔离。数据写入时,类似于日志的写法,数据被顺序追加写入内存,但每个vnode维护有自己的skip list,便于迅速查找。当一半以上的内存块写满时,启动落盘操作,而且后续写的操作在新的内存块进行。这样,一个vnode里有一半内存块是保留有最近的数据的,以达到缓存、快速查找的目的。一个vnode的内存块的个数由配置参数blocks决定,内存块的大小由配置参数cache决定。
每个vnode有自己独立的内存,而且由多个固定大小的内存块组成,不同vnode之间完全隔离。数据写入时,类似于日志的写法,数据被顺序追加写入内存,但每个vnode维护有自己的skip list,便于迅速查找。当三分之一以上的内存块写满时,启动落盘操作,而且后续写的操作在新的内存块进行。这样,一个vnode里有三分之一内存块是保留有最近的数据的,以达到缓存、快速查找的目的。一个vnode的内存块的个数由配置参数blocks决定,内存块的大小由配置参数cache决定。
### 持久化存储
TDengine采用数据驱动的方式让缓存中的数据写入硬盘进行持久化存储。当vnode中缓存的数据达到一定规模时,为了不阻塞后续数据的写入,TDengine也会拉起落盘线程将缓存的数据写入持久化存储。TDengine在数据落盘时会打开新的数据库日志文件,在落盘成功后则会删除老的数据库日志文件,避免日志文件无限制的增长。
......
# 高效写入数据
TDengine支持多种接口写入数据,包括SQL, Prometheus, Telegraf, EMQ MQTT Broker, CSV文件等,后续还将提供Kafka, OPC等接口。数据可以单条插入,也可以批量插入,可以插入一个数据采集点的数据,也可以同时插入多个数据采集点的数据。支持多线程插入,支持时间乱序数据插入,也支持历史数据插入。
TDengine支持多种接口写入数据,包括SQL, Prometheus, Telegraf, EMQ MQTT Broker, HiveMQ Broker, CSV文件等,后续还将提供Kafka, OPC等接口。数据可以单条插入,也可以批量插入,可以插入一个数据采集点的数据,也可以同时插入多个数据采集点的数据。支持多线程插入,支持时间乱序数据插入,也支持历史数据插入。
## SQL写入
......@@ -218,7 +218,15 @@ use telegraf;
select * from cpu;
```
## EMQ X Broker直接写入
MQTT是一流行的物联网数据传输协议,[EMQ](https://github.com/emqx/emqx)是一开源的MQTT Broker软件,无需任何代码,只需要在EMQ Dashboard里使用“规则”做简单配置,即可将MQTT的数据直接写入TDengine。EMQ X 支持通过 发送到 Web 服务 的方式保存数据到 TDEngine,也在企业版上提供原生的 TDEngine 驱动实现直接保存。详细使用方法请参考 [EMQ 官方文档](https://docs.emqx.io/broker/latest/cn/rule/rule-example.html#%E4%BF%9D%E5%AD%98%E6%95%B0%E6%8D%AE%E5%88%B0-tdengine)
MQTT是一流行的物联网数据传输协议,TDengine 可以很方便的接入 MQTT Broker 接受的数据并写入到 TDengine。
## EMQ Broker 直接写入
[EMQ](https://github.com/emqx/emqx)是一开源的MQTT Broker软件,无需任何代码,只需要在EMQ Dashboard里使用“规则”做简单配置,即可将MQTT的数据直接写入TDengine。EMQ X 支持通过 发送到 Web 服务 的方式保存数据到 TDengine,也在企业版上提供原生的 TDEngine 驱动实现直接保存。详细使用方法请参考 [EMQ 官方文档](https://docs.emqx.io/broker/latest/cn/rule/rule-example.html#%E4%BF%9D%E5%AD%98%E6%95%B0%E6%8D%AE%E5%88%B0-tdengine)
## HiveMQ Broker 直接写入
[HiveMQ](https://www.hivemq.com/) 是一个提供免费个人版和企业版的 MQTT 代理,主要用于企业和新兴的机器到机器M2M通讯和内部传输,满足可伸缩性、易管理和安全特性。HiveMQ 提供了开源的插件开发包。可以通过 HiveMQ extension - TDengine 保存数据到 TDengine。详细使用方法请参考 [HiveMQ extension - TDengine 说明文档](https://github.com/huskar-t/hivemq-tdengine-extension/blob/b62a26ecc164a310104df57691691b237e091c89/README.md)
......@@ -48,6 +48,7 @@ cp ${compile_dir}/../packaging/deb/taosd ${pkg_dir}${install_home_pat
cp ${compile_dir}/../packaging/tools/post.sh ${pkg_dir}${install_home_path}/script
cp ${compile_dir}/../packaging/tools/preun.sh ${pkg_dir}${install_home_path}/script
cp ${compile_dir}/build/bin/taosdemo ${pkg_dir}${install_home_path}/bin
#cp ${compile_dir}/build/bin/taosdump ${pkg_dir}${install_home_path}/bin
cp ${compile_dir}/build/bin/taosd ${pkg_dir}${install_home_path}/bin
cp ${compile_dir}/build/bin/taos ${pkg_dir}${install_home_path}/bin
cp ${compile_dir}/build/lib/${libfile} ${pkg_dir}${install_home_path}/driver
......
......@@ -58,6 +58,7 @@ cp %{_compiledir}/../packaging/tools/preun.sh %{buildroot}%{homepath}/scri
cp %{_compiledir}/build/bin/taos %{buildroot}%{homepath}/bin
cp %{_compiledir}/build/bin/taosd %{buildroot}%{homepath}/bin
cp %{_compiledir}/build/bin/taosdemo %{buildroot}%{homepath}/bin
#cp %{_compiledir}/build/bin/taosdump %{buildroot}%{homepath}/bin
cp %{_compiledir}/build/lib/${libfile} %{buildroot}%{homepath}/driver
cp %{_compiledir}/../src/inc/taos.h %{buildroot}%{homepath}/include
cp %{_compiledir}/../src/inc/taoserror.h %{buildroot}%{homepath}/include
......@@ -134,6 +135,7 @@ if [ $1 -eq 0 ];then
${csudo} rm -f ${bin_link_dir}/taos || :
${csudo} rm -f ${bin_link_dir}/taosd || :
${csudo} rm -f ${bin_link_dir}/taosdemo || :
#${csudo} rm -f ${bin_link_dir}/taosdump || :
${csudo} rm -f ${cfg_link_dir}/* || :
${csudo} rm -f ${inc_link_dir}/taos.h || :
${csudo} rm -f ${inc_link_dir}/taoserror.h || :
......
......@@ -45,6 +45,7 @@ if [ "$osType" != "Darwin" ]; then
strip ${build_dir}/bin/taos
bin_files="${build_dir}/bin/taos ${script_dir}/remove_client.sh"
else
#bin_files="${build_dir}/bin/taos ${build_dir}/bin/taosdump ${build_dir}/bin/taosdemo ${script_dir}/remove_client.sh ${script_dir}/set_core.sh"
bin_files="${build_dir}/bin/taos ${build_dir}/bin/taosdemo ${script_dir}/remove_client.sh ${script_dir}/set_core.sh"
fi
lib_files="${build_dir}/lib/libtaos.so.${version}"
......
......@@ -36,6 +36,7 @@ if [ "$pagMode" == "lite" ]; then
strip ${build_dir}/bin/taos
bin_files="${build_dir}/bin/taosd ${build_dir}/bin/taos ${script_dir}/remove.sh"
else
#bin_files="${build_dir}/bin/taosd ${build_dir}/bin/taos ${build_dir}/bin/taosdump ${build_dir}/bin/taosdemo ${build_dir}/bin/tarbitrator ${script_dir}/remove.sh ${script_dir}/set_core.sh"
bin_files="${build_dir}/bin/taosd ${build_dir}/bin/taos ${build_dir}/bin/taosdemo ${build_dir}/bin/tarbitrator ${script_dir}/remove.sh ${script_dir}/set_core.sh"
fi
......
......@@ -330,6 +330,7 @@ typedef struct STscObj {
char writeAuth : 1;
char superAuth : 1;
uint32_t connId;
uint64_t rid; // ref ID returned by taosAddRef
struct SSqlObj * pHb;
struct SSqlObj * sqlList;
struct SSqlStream *streamList;
......@@ -348,7 +349,7 @@ typedef struct SSqlObj {
void *signature;
pthread_t owner; // owner of sql object, by which it is executed
STscObj *pTscObj;
void *pRpcCtx;
int64_t rpcRid;
void (*fp)();
void (*fetchFp)();
void *param;
......
......@@ -2118,7 +2118,7 @@ static void copyTopBotRes(SQLFunctionCtx *pCtx, int32_t type) {
}
}
taosTFree(pData);
tfree(pData);
}
/*
......
......@@ -97,6 +97,9 @@ static void tscInitSqlContext(SSqlCmd *pCmd, SLocalReducer *pReducer, tOrderDesc
pCtx->param[2].i64Key = pQueryInfo->order.order;
pCtx->param[2].nType = TSDB_DATA_TYPE_BIGINT;
pCtx->param[1].i64Key = pQueryInfo->order.orderColId;
} else if (functionId == TSDB_FUNC_APERCT) {
pCtx->param[0].i64Key = pExpr->param[0].i64Key;
pCtx->param[0].nType = pExpr->param[0].nType;
}
pCtx->interBufBytes = pExpr->interBytes;
......@@ -224,7 +227,7 @@ void tscCreateLocalReducer(tExtMemBuffer **pMemBuffer, int32_t numOfBuffer, tOrd
if (ds == NULL) {
tscError("%p failed to create merge structure", pSql);
pRes->code = TSDB_CODE_TSC_OUT_OF_MEMORY;
taosTFree(pReducer);
tfree(pReducer);
return;
}
......@@ -251,7 +254,7 @@ void tscCreateLocalReducer(tExtMemBuffer **pMemBuffer, int32_t numOfBuffer, tOrd
if (ds->filePage.num == 0) { // no data in this flush, the index does not increase
tscDebug("%p flush data is empty, ignore %d flush record", pSql, idx);
taosTFree(ds);
tfree(ds);
continue;
}
......@@ -261,7 +264,7 @@ void tscCreateLocalReducer(tExtMemBuffer **pMemBuffer, int32_t numOfBuffer, tOrd
// no data actually, no need to merge result.
if (idx == 0) {
taosTFree(pReducer);
tfree(pReducer);
return;
}
......@@ -269,7 +272,7 @@ void tscCreateLocalReducer(tExtMemBuffer **pMemBuffer, int32_t numOfBuffer, tOrd
SCompareParam *param = malloc(sizeof(SCompareParam));
if (param == NULL) {
taosTFree(pReducer);
tfree(pReducer);
return;
}
......@@ -283,8 +286,8 @@ void tscCreateLocalReducer(tExtMemBuffer **pMemBuffer, int32_t numOfBuffer, tOrd
pRes->code = tLoserTreeCreate(&pReducer->pLoserTree, pReducer->numOfBuffer, param, treeComparator);
if (pReducer->pLoserTree == NULL || pRes->code != 0) {
taosTFree(param);
taosTFree(pReducer);
tfree(param);
tfree(pReducer);
return;
}
......@@ -327,14 +330,14 @@ void tscCreateLocalReducer(tExtMemBuffer **pMemBuffer, int32_t numOfBuffer, tOrd
if (pReducer->pTempBuffer == NULL || pReducer->discardData == NULL || pReducer->pResultBuf == NULL ||
/*pReducer->pBufForInterpo == NULL || */pReducer->pFinalRes == NULL || pReducer->prevRowOfInput == NULL) {
taosTFree(pReducer->pTempBuffer);
taosTFree(pReducer->discardData);
taosTFree(pReducer->pResultBuf);
taosTFree(pReducer->pFinalRes);
taosTFree(pReducer->prevRowOfInput);
taosTFree(pReducer->pLoserTree);
taosTFree(param);
taosTFree(pReducer);
tfree(pReducer->pTempBuffer);
tfree(pReducer->discardData);
tfree(pReducer->pResultBuf);
tfree(pReducer->pFinalRes);
tfree(pReducer->prevRowOfInput);
tfree(pReducer->pLoserTree);
tfree(param);
tfree(pReducer);
pRes->code = TSDB_CODE_TSC_OUT_OF_MEMORY;
return;
}
......@@ -492,33 +495,33 @@ void tscDestroyLocalReducer(SSqlObj *pSql) {
SQLFunctionCtx *pCtx = &pLocalReducer->pCtx[i];
tVariantDestroy(&pCtx->tag);
taosTFree(pCtx->resultInfo);
tfree(pCtx->resultInfo);
if (pCtx->tagInfo.pTagCtxList != NULL) {
taosTFree(pCtx->tagInfo.pTagCtxList);
tfree(pCtx->tagInfo.pTagCtxList);
}
}
taosTFree(pLocalReducer->pCtx);
tfree(pLocalReducer->pCtx);
}
taosTFree(pLocalReducer->prevRowOfInput);
tfree(pLocalReducer->prevRowOfInput);
taosTFree(pLocalReducer->pTempBuffer);
taosTFree(pLocalReducer->pResultBuf);
tfree(pLocalReducer->pTempBuffer);
tfree(pLocalReducer->pResultBuf);
if (pLocalReducer->pLoserTree) {
taosTFree(pLocalReducer->pLoserTree->param);
taosTFree(pLocalReducer->pLoserTree);
tfree(pLocalReducer->pLoserTree->param);
tfree(pLocalReducer->pLoserTree);
}
taosTFree(pLocalReducer->pFinalRes);
taosTFree(pLocalReducer->discardData);
tfree(pLocalReducer->pFinalRes);
tfree(pLocalReducer->discardData);
tscLocalReducerEnvDestroy(pLocalReducer->pExtMemBuffer, pLocalReducer->pDesc, pLocalReducer->resColModel,
pLocalReducer->numOfVnode);
for (int32_t i = 0; i < pLocalReducer->numOfBuffer; ++i) {
taosTFree(pLocalReducer->pLocalDataSrc[i]);
tfree(pLocalReducer->pLocalDataSrc[i]);
}
pLocalReducer->numOfBuffer = 0;
......@@ -585,7 +588,7 @@ static int32_t createOrderDescriptor(tOrderDescriptor **pOrderDesc, SSqlCmd *pCm
}
*pOrderDesc = tOrderDesCreate(orderColIndexList, numOfGroupByCols, pModel, pQueryInfo->order.order);
taosTFree(orderColIndexList);
tfree(orderColIndexList);
if (*pOrderDesc == NULL) {
return TSDB_CODE_TSC_OUT_OF_MEMORY;
......@@ -696,7 +699,7 @@ int32_t tscLocalReducerEnvCreate(SSqlObj *pSql, tExtMemBuffer ***pMemBuffer, tOr
if (createOrderDescriptor(pOrderDesc, pCmd, pModel) != TSDB_CODE_SUCCESS) {
pRes->code = TSDB_CODE_TSC_OUT_OF_MEMORY;
taosTFree(pSchema);
tfree(pSchema);
return pRes->code;
}
......@@ -733,7 +736,7 @@ int32_t tscLocalReducerEnvCreate(SSqlObj *pSql, tExtMemBuffer ***pMemBuffer, tOr
}
*pFinalModel = createColumnModel(pSchema, (int32_t)size, capacity);
taosTFree(pSchema);
tfree(pSchema);
return TSDB_CODE_SUCCESS;
}
......@@ -753,7 +756,7 @@ void tscLocalReducerEnvDestroy(tExtMemBuffer **pMemBuffer, tOrderDescriptor *pDe
pMemBuffer[i] = destoryExtMemBuffer(pMemBuffer[i]);
}
taosTFree(pMemBuffer);
tfree(pMemBuffer);
}
/**
......@@ -975,10 +978,10 @@ static void doFillResult(SSqlObj *pSql, SLocalReducer *pLocalReducer, bool doneO
pBeforeFillData->num = 0;
for (int32_t i = 0; i < pQueryInfo->fieldsInfo.numOfOutput; ++i) {
taosTFree(pResPages[i]);
tfree(pResPages[i]);
}
taosTFree(pResPages);
tfree(pResPages);
}
static void savePreviousRow(SLocalReducer *pLocalReducer, tFilePage *tmpBuffer) {
......
......@@ -1406,7 +1406,7 @@ static void parseFileSendDataBlock(void *param, TAOS_RES *tres, int code) {
assert(taos_errno(pSql) == code);
taos_free_result(pSql);
taosTFree(pSupporter);
tfree(pSupporter);
fclose(fp);
pParentSql->res.code = code;
......@@ -1445,7 +1445,7 @@ static void parseFileSendDataBlock(void *param, TAOS_RES *tres, int code) {
char *tokenBuf = calloc(1, 4096);
while ((readLen = taosGetline(&line, &n, fp)) != -1) {
while ((readLen = tgetline(&line, &n, fp)) != -1) {
if (('\r' == line[readLen - 1]) || ('\n' == line[readLen - 1])) {
line[--readLen] = 0;
}
......@@ -1470,7 +1470,7 @@ static void parseFileSendDataBlock(void *param, TAOS_RES *tres, int code) {
}
}
taosTFree(tokenBuf);
tfree(tokenBuf);
free(line);
if (count > 0) {
......@@ -1483,7 +1483,7 @@ static void parseFileSendDataBlock(void *param, TAOS_RES *tres, int code) {
} else {
taos_free_result(pSql);
taosTFree(pSupporter);
tfree(pSupporter);
fclose(fp);
pParentSql->fp = pParentSql->fetchFp;
......@@ -1513,7 +1513,7 @@ void tscProcessMultiVnodesImportFromFile(SSqlObj *pSql) {
pSql->res.code = TAOS_SYSTEM_ERROR(errno);
tscError("%p failed to open file %s to load data from file, code:%s", pSql, pCmd->payload, tstrerror(pSql->res.code));
taosTFree(pSupporter)
tfree(pSupporter)
tscQueueAsyncRes(pSql);
return;
......
......@@ -16,6 +16,7 @@
#define _BSD_SOURCE
#define _XOPEN_SOURCE 500
#define _DEFAULT_SOURCE
#define _GNU_SOURCE
#include "os.h"
#include "qAst.h"
......@@ -2089,7 +2090,7 @@ int32_t addExprAndResultField(SSqlCmd* pCmd, SQueryInfo* pQueryInfo, int32_t col
SColumnIndex index = {.tableIndex = j, .columnIndex = i};
char name[TSDB_COL_NAME_LEN] = {0};
SStrToken t = {.z = pSchema->name, .n = (uint32_t)strnlen(pSchema->name, TSDB_COL_NAME_LEN)};
SStrToken t = {.z = pSchema[i].name, .n = (uint32_t)strnlen(pSchema[i].name, TSDB_COL_NAME_LEN)};
setResultColName(name, pItem, cvtFunc.originFuncId, &t);
if (setExprInfoForFunctions(pCmd, pQueryInfo, &pSchema[index.columnIndex], cvtFunc, name, colIndex, &index, finalResult) != 0) {
......@@ -4014,7 +4015,7 @@ static int32_t setTableCondForSTableQuery(SSqlCmd* pCmd, SQueryInfo* pQueryInfo,
int32_t ret = setObjFullName(idBuf, account, &dbToken, &t, &xlen);
if (ret != TSDB_CODE_SUCCESS) {
taosStringBuilderDestroy(&sb1);
taosTFree(segments);
tfree(segments);
invalidSqlErrMsg(tscGetErrorMsgPayload(pCmd), msg);
return ret;
......@@ -4027,7 +4028,7 @@ static int32_t setTableCondForSTableQuery(SSqlCmd* pCmd, SQueryInfo* pQueryInfo,
pQueryInfo->tagCond.tbnameCond.cond = strdup(str);
taosStringBuilderDestroy(&sb1);
taosTFree(segments);
tfree(segments);
return TSDB_CODE_SUCCESS;
}
......@@ -5399,6 +5400,7 @@ static void setCreateDBOption(SCreateDbMsg* pMsg, SCreateDBInfo* pCreateDb) {
pMsg->replications = pCreateDb->replica;
pMsg->quorum = pCreateDb->quorum;
pMsg->ignoreExist = pCreateDb->ignoreExists;
pMsg->update = pCreateDb->update;
}
int32_t parseCreateDBOptions(SSqlCmd* pCmd, SCreateDBInfo* pCreateDbSql) {
......
......@@ -124,7 +124,7 @@ static void tscUpdateVgroupInfo(SSqlObj *pObj, SRpcEpSet *pEpSet) {
pVgroupInfo->inUse = pEpSet->inUse;
pVgroupInfo->numOfEps = pEpSet->numOfEps;
for (int32_t i = 0; i < pVgroupInfo->numOfEps; i++) {
taosTFree(pVgroupInfo->epAddr[i].fqdn);
tfree(pVgroupInfo->epAddr[i].fqdn);
pVgroupInfo->epAddr[i].fqdn = strndup(pEpSet->fqdn[i], tListLen(pEpSet->fqdn[i]));
pVgroupInfo->epAddr[i].port = pEpSet->port[i];
}
......@@ -182,27 +182,23 @@ void tscProcessHeartBeatRsp(void *param, TAOS_RES *tres, int code) {
int32_t waitingDuring = tsShellActivityTimer * 500;
tscDebug("%p send heartbeat in %dms", pSql, waitingDuring);
taosTmrReset(tscProcessActivityTimer, waitingDuring, pObj, tscTmr, &pObj->pTimer);
taosTmrReset(tscProcessActivityTimer, waitingDuring, (void *)pObj->rid, tscTmr, &pObj->pTimer);
} else {
tscDebug("%p start to close tscObj:%p, not send heartbeat again", pSql, pObj);
}
}
void tscProcessActivityTimer(void *handle, void *tmrId) {
STscObj *pObj = (STscObj *)handle;
int ret = taosAcquireRef(tscRefId, pObj);
if (ret < 0) {
tscTrace("%p failed to acquire TSC obj, reason:%s", pObj, tstrerror(ret));
return;
}
int64_t rid = (int64_t) handle;
STscObj *pObj = taosAcquireRef(tscRefId, rid);
if (pObj == NULL) return;
SSqlObj* pHB = pObj->pHb;
void** p = taosCacheAcquireByKey(tscObjCache, &pHB, sizeof(TSDB_CACHE_PTR_TYPE));
if (p == NULL) {
tscWarn("%p HB object has been released already", pHB);
taosReleaseRef(tscRefId, pObj);
taosReleaseRef(tscRefId, pObj->rid);
return;
}
......@@ -216,7 +212,7 @@ void tscProcessActivityTimer(void *handle, void *tmrId) {
tscError("%p failed to sent HB to server, reason:%s", pHB, tstrerror(code));
}
taosReleaseRef(tscRefId, pObj);
taosReleaseRef(tscRefId, rid);
}
int tscSendMsgToServer(SSqlObj *pSql) {
......@@ -241,7 +237,7 @@ int tscSendMsgToServer(SSqlObj *pSql) {
.pCont = pMsg,
.contLen = pSql->cmd.payloadLen,
.ahandle = pSql,
.handle = &pSql->pRpcCtx,
.handle = NULL,
.code = 0
};
......@@ -249,7 +245,7 @@ int tscSendMsgToServer(SSqlObj *pSql) {
// Otherwise, the pSql object may have been released already during the response function, which is
// processMsgFromServer function. In the meanwhile, the assignment of the rpc context to sql object will absolutely
// cause crash.
rpcSendRequest(pObj->pDnodeConn, &pSql->epSet, &rpcMsg);
pSql->rpcRid = rpcSendRequest(pObj->pDnodeConn, &pSql->epSet, &rpcMsg);
return TSDB_CODE_SUCCESS;
}
......@@ -269,7 +265,7 @@ void tscProcessMsgFromServer(SRpcMsg *rpcMsg, SRpcEpSet *pEpSet) {
SSqlCmd *pCmd = &pSql->cmd;
assert(*pSql->self == pSql);
pSql->pRpcCtx = NULL;
pSql->rpcRid = -1;
if (pObj->signature != pObj) {
tscDebug("%p DB connection is closed, cmd:%d pObj:%p signature:%p", pSql, pCmd->command, pObj, pObj->signature);
......@@ -1553,7 +1549,7 @@ int tscBuildMultiMeterMetaMsg(SSqlObj *pSql, SSqlInfo *pInfo) {
memcpy(pInfoMsg->tableIds, tmpData, pCmd->payloadLen);
}
taosTFree(tmpData);
tfree(tmpData);
pCmd->payloadLen += sizeof(SMgmtHead) + sizeof(SMultiTableInfoMsg);
pCmd->msgType = TSDB_MSG_TYPE_CM_TABLES_META;
......@@ -1960,7 +1956,7 @@ int tscProcessShowRsp(SSqlObj *pSql) {
pCmd->numOfCols = pQueryInfo->fieldsInfo.numOfOutput;
tscFieldInfoUpdateOffset(pQueryInfo);
taosTFree(pTableMeta);
tfree(pTableMeta);
return 0;
}
......@@ -1985,7 +1981,7 @@ static void createHBObj(STscObj* pObj) {
pSql->cmd.command = pQueryInfo->command;
if (TSDB_CODE_SUCCESS != tscAllocPayload(&(pSql->cmd), TSDB_DEFAULT_PAYLOAD_SIZE)) {
taosTFree(pSql);
tfree(pSql);
return;
}
......@@ -2025,7 +2021,7 @@ int tscProcessConnectRsp(SSqlObj *pSql) {
createHBObj(pObj);
//launch a timer to send heartbeat to maintain the connection and send status to mnode
taosTmrReset(tscProcessActivityTimer, tsShellActivityTimer * 500, pObj, tscTmr, &pObj->pTimer);
taosTmrReset(tscProcessActivityTimer, tsShellActivityTimer * 500, (void *)pObj->rid, tscTmr, &pObj->pTimer);
return 0;
}
......
......@@ -161,7 +161,7 @@ static SSqlObj *taosConnectImpl(const char *ip, const char *user, const char *pa
registerSqlObj(pSql);
tsInsertHeadSize = sizeof(SMsgDesc) + sizeof(SSubmitMsg);
taosAddRef(tscRefId, pObj);
pObj->rid = taosAddRef(tscRefId, pObj);
return pSql;
}
......@@ -279,9 +279,9 @@ void taos_close(TAOS *taos) {
SSqlObj* pHb = pObj->pHb;
if (pHb != NULL && atomic_val_compare_exchange_ptr(&pObj->pHb, pHb, 0) == pHb) {
if (pHb->pRpcCtx != NULL) { // wait for rsp from dnode
rpcCancelRequest(pHb->pRpcCtx);
pHb->pRpcCtx = NULL;
if (pHb->rpcRid > 0) { // wait for rsp from dnode
rpcCancelRequest(pHb->rpcRid);
pHb->rpcRid = -1;
}
tscDebug("%p HB is freed", pHb);
......@@ -298,7 +298,7 @@ void taos_close(TAOS *taos) {
tscDebug("%p all sqlObj are freed, free tscObj and close dnodeConn:%p", pObj, pObj->pDnodeConn);
taosRemoveRef(tscRefId, pObj);
taosRemoveRef(tscRefId, pObj->rid);
}
void waitForQueryRsp(void *param, TAOS_RES *tres, int code) {
......@@ -566,7 +566,7 @@ int taos_fetch_block(TAOS_RES *res, TAOS_ROW *rows) {
pRes->rspType = 0;
pSql->subState.numOfSub = 0;
taosTFree(pSql->pSubs);
tfree(pSql->pSubs);
assert(pSql->fp == NULL);
......@@ -748,9 +748,9 @@ static void tscKillSTableQuery(SSqlObj *pSql) {
assert(pSubObj->self == (SSqlObj**) p);
pSubObj->res.code = TSDB_CODE_TSC_QUERY_CANCELLED;
if (pSubObj->pRpcCtx != NULL) {
rpcCancelRequest(pSubObj->pRpcCtx);
pSubObj->pRpcCtx = NULL;
if (pSubObj->rpcRid > 0) {
rpcCancelRequest(pSubObj->rpcRid);
pSubObj->rpcRid = -1;
}
tscQueueAsyncRes(pSubObj);
......@@ -775,7 +775,7 @@ void taos_stop_query(TAOS_RES *res) {
SQueryInfo *pQueryInfo = tscGetQueryInfoDetail(pCmd, pCmd->clauseIndex);
if (tscIsTwoStageSTableQuery(pQueryInfo, 0)) {
assert(pSql->pRpcCtx == NULL);
assert(pSql->rpcRid <= 0);
tscKillSTableQuery(pSql);
} else {
if (pSql->cmd.command < TSDB_SQL_LOCAL) {
......@@ -784,9 +784,9 @@ void taos_stop_query(TAOS_RES *res) {
* reset and freed in the processMsgFromServer function, and causes the invalid
* write problem for rpcCancelRequest.
*/
if (pSql->pRpcCtx != NULL) {
rpcCancelRequest(pSql->pRpcCtx);
pSql->pRpcCtx = NULL;
if (pSql->rpcRid > 0) {
rpcCancelRequest(pSql->rpcRid);
pSql->rpcRid = -1;
}
tscQueueAsyncRes(pSql);
......@@ -894,7 +894,7 @@ int taos_validate_sql(TAOS *taos, const char *sql) {
if (sqlLen > tsMaxSQLStringLen) {
tscError("%p sql too long", pSql);
pRes->code = TSDB_CODE_TSC_INVALID_SQL;
taosTFree(pSql);
tfree(pSql);
return pRes->code;
}
......@@ -903,7 +903,7 @@ int taos_validate_sql(TAOS *taos, const char *sql) {
pRes->code = TSDB_CODE_TSC_OUT_OF_MEMORY;
tscError("%p failed to malloc sql string buffer", pSql);
tscDebug("%p Valid SQL result:%d, %s pObj:%p", pSql, pRes->code, taos_errstr(pSql), pObj);
taosTFree(pSql);
tfree(pSql);
return pRes->code;
}
......
......@@ -273,7 +273,7 @@ static void tscProcessStreamRetrieveResult(void *param, TAOS_RES *res, int numOf
taosCacheRelease(tscMetaCache, (void**)&(pTableMetaInfo->pTableMeta), false);
tscFreeSqlResult(pSql);
taosTFree(pSql->pSubs);
tfree(pSql->pSubs);
pSql->subState.numOfSub = 0;
pTableMetaInfo->vgroupList = tscVgroupInfoClear(pTableMetaInfo->vgroupList);
tscSetNextLaunchTimer(pStream, pSql);
......@@ -617,6 +617,6 @@ void taos_close_stream(TAOS_STREAM *handle) {
pStream->pSql = NULL;
taos_free_result(pSql);
taosTFree(pStream);
tfree(pStream);
}
}
......@@ -255,7 +255,7 @@ static void tscDestroyJoinSupporter(SJoinSupporter* pSupporter) {
pSupporter->pVgroupTables = NULL;
}
taosTFree(pSupporter->pIdTagList);
tfree(pSupporter->pIdTagList);
tscTagCondRelease(&pSupporter->tagCond);
free(pSupporter);
}
......@@ -308,7 +308,7 @@ static void filterVgroupTables(SQueryInfo* pQueryInfo, SArray* pVgroupTables) {
assert(taosArrayGetSize(pVgroupTables) > 0);
TSDB_QUERY_SET_TYPE(pQueryInfo->type, TSDB_QUERY_TYPE_MULTITABLE_QUERY);
taosTFree(list);
tfree(list);
}
static SArray* buildVgroupTableByResult(SQueryInfo* pQueryInfo, SArray* pVgroupTables) {
......@@ -335,7 +335,7 @@ static SArray* buildVgroupTableByResult(SQueryInfo* pQueryInfo, SArray* pVgroupT
taosArrayPush(pNew, &info);
}
taosTFree(list);
tfree(list);
TSDB_QUERY_SET_TYPE(pQueryInfo->type, TSDB_QUERY_TYPE_MULTITABLE_QUERY);
return pNew;
......@@ -1624,8 +1624,8 @@ static void doCleanupSubqueries(SSqlObj *pSql, int32_t numOfSubs) {
SRetrieveSupport* pSupport = pSub->param;
taosTFree(pSupport->localBuffer);
taosTFree(pSupport);
tfree(pSupport->localBuffer);
tfree(pSupport);
taos_free_result(pSub);
}
......@@ -1666,7 +1666,7 @@ int32_t tscHandleMasterSTableQuery(SSqlObj *pSql) {
if (ret != 0) {
pRes->code = TSDB_CODE_TSC_OUT_OF_MEMORY;
tscQueueAsyncRes(pSql);
taosTFree(pMemoryBuf);
tfree(pMemoryBuf);
return ret;
}
......@@ -1675,7 +1675,7 @@ int32_t tscHandleMasterSTableQuery(SSqlObj *pSql) {
tscDebug("%p retrieved query data from %d vnode(s)", pSql, pState->numOfSub);
if (pSql->pSubs == NULL) {
taosTFree(pSql->pSubs);
tfree(pSql->pSubs);
pRes->code = TSDB_CODE_TSC_OUT_OF_MEMORY;
tscLocalReducerEnvDestroy(pMemoryBuf, pDesc, pModel, pState->numOfSub);
......@@ -1700,7 +1700,7 @@ int32_t tscHandleMasterSTableQuery(SSqlObj *pSql) {
trs->localBuffer = (tFilePage *)calloc(1, nBufferSize + sizeof(tFilePage));
if (trs->localBuffer == NULL) {
tscError("%p failed to malloc buffer for local buffer, orderOfSub:%d, reason:%s", pSql, i, strerror(errno));
taosTFree(trs);
tfree(trs);
break;
}
......@@ -1711,8 +1711,8 @@ int32_t tscHandleMasterSTableQuery(SSqlObj *pSql) {
SSqlObj *pNew = tscCreateSTableSubquery(pSql, trs, NULL);
if (pNew == NULL) {
tscError("%p failed to malloc buffer for subObj, orderOfSub:%d, reason:%s", pSql, i, strerror(errno));
taosTFree(trs->localBuffer);
taosTFree(trs);
tfree(trs->localBuffer);
tfree(trs);
break;
}
......@@ -1766,8 +1766,8 @@ static void tscFreeRetrieveSup(SSqlObj *pSql) {
// SSqlObj *pParentSql = trsupport->pParentSql;
// assert(pSql == pParentSql->pSubs[index]);
taosTFree(trsupport->localBuffer);
taosTFree(trsupport);
tfree(trsupport->localBuffer);
tfree(trsupport);
}
static void tscRetrieveFromDnodeCallBack(void *param, TAOS_RES *tres, int numOfRows);
......@@ -2167,7 +2167,7 @@ static void multiVnodeInsertFinalize(void* param, TAOS_RES* tres, int numOfRows)
pParentObj->res.code = pSql->res.code;
}
taosTFree(pSupporter);
tfree(pSupporter);
if (atomic_sub_fetch_32(&pParentObj->subState.numOfRemain, 1) > 0) {
return;
......@@ -2442,7 +2442,7 @@ TAOS_ROW doSetResultRowData(SSqlObj *pSql, bool finalResult) {
assert(pRes->row >= 0 && pRes->row <= pRes->numOfRows);
if (pRes->row >= pRes->numOfRows) { // all the results has returned to invoker
taosTFree(pRes->tsrow);
tfree(pRes->tsrow);
return pRes->tsrow;
}
......
......@@ -36,7 +36,7 @@ void * tscTmr;
void * tscQhandle;
void * tscCheckDiskUsageTmr;
int tsInsertHeadSize;
int tscRefId;
int tscRefId = -1;
int tscNumOfThreads;
......
......@@ -242,7 +242,7 @@ void tscClearInterpInfo(SQueryInfo* pQueryInfo) {
}
pQueryInfo->fillType = TSDB_FILL_NONE;
taosTFree(pQueryInfo->fillVal);
tfree(pQueryInfo->fillVal);
}
int32_t tscCreateResPointerInfo(SSqlRes* pRes, SQueryInfo* pQueryInfo) {
......@@ -256,7 +256,7 @@ int32_t tscCreateResPointerInfo(SSqlRes* pRes, SQueryInfo* pQueryInfo) {
// not enough memory
if (pRes->tsrow == NULL || (pRes->buffer == NULL && pRes->numOfCols > 0)) {
taosTFree(pRes->tsrow);
tfree(pRes->tsrow);
pRes->code = TSDB_CODE_TSC_OUT_OF_MEMORY;
return pRes->code;
}
......@@ -268,24 +268,24 @@ int32_t tscCreateResPointerInfo(SSqlRes* pRes, SQueryInfo* pQueryInfo) {
static void tscDestroyResPointerInfo(SSqlRes* pRes) {
if (pRes->buffer != NULL) { // free all buffers containing the multibyte string
for (int i = 0; i < pRes->numOfCols; i++) {
taosTFree(pRes->buffer[i]);
tfree(pRes->buffer[i]);
}
pRes->numOfCols = 0;
}
taosTFree(pRes->pRsp);
tfree(pRes->pRsp);
taosTFree(pRes->tsrow);
taosTFree(pRes->length);
taosTFree(pRes->buffer);
tfree(pRes->tsrow);
tfree(pRes->length);
tfree(pRes->buffer);
taosTFree(pRes->pGroupRec);
taosTFree(pRes->pColumnIndex);
tfree(pRes->pGroupRec);
tfree(pRes->pColumnIndex);
if (pRes->pArithSup != NULL) {
taosTFree(pRes->pArithSup->data);
taosTFree(pRes->pArithSup);
tfree(pRes->pArithSup->data);
tfree(pRes->pArithSup);
}
pRes->data = NULL; // pRes->data points to the buffer of pRsp, no need to free
......@@ -302,11 +302,11 @@ static void tscFreeQueryInfo(SSqlCmd* pCmd, bool removeFromCache) {
freeQueryInfoImpl(pQueryInfo);
clearAllTableMetaInfo(pQueryInfo, (const char*)addr, removeFromCache);
taosTFree(pQueryInfo);
tfree(pQueryInfo);
}
pCmd->numOfClause = 0;
taosTFree(pCmd->pQueryInfo);
tfree(pCmd->pQueryInfo);
}
void tscResetSqlCmdObj(SSqlCmd* pCmd, bool removeFromCache) {
......@@ -373,7 +373,7 @@ void tscFreeRegisteredSqlObj(void *pSql) {
tscDebug("%p free sqlObj completed, tscObj:%p ref:%d", *p, pTscObj, ref);
if (ref == 0) {
tscDebug("%p all sqlObj freed, free tscObj:%p", *p, pTscObj);
taosRemoveRef(tscRefId, pTscObj);
taosRemoveRef(tscRefId, pTscObj->rid);
}
}
......@@ -384,14 +384,14 @@ void tscFreeTableMetaHelper(void *pTableMeta) {
assert(numOfEps >= 0 && numOfEps <= TSDB_MAX_REPLICA);
for(int32_t i = 0; i < numOfEps; ++i) {
taosTFree(p->vgroupInfo.epAddr[i].fqdn);
tfree(p->vgroupInfo.epAddr[i].fqdn);
}
int32_t numOfEps1 = p->corVgroupInfo.numOfEps;
assert(numOfEps1 >= 0 && numOfEps1 <= TSDB_MAX_REPLICA);
for(int32_t i = 0; i < numOfEps1; ++i) {
taosTFree(p->corVgroupInfo.epAddr[i].fqdn);
tfree(p->corVgroupInfo.epAddr[i].fqdn);
}
}
......@@ -415,9 +415,9 @@ void tscFreeSqlObj(SSqlObj* pSql) {
pSql->signature = NULL;
pSql->fp = NULL;
taosTFree(pSql->sqlstr);
tfree(pSql->sqlstr);
taosTFree(pSql->pSubs);
tfree(pSql->pSubs);
pSql->subState.numOfSub = 0;
pSql->self = 0;
......@@ -425,7 +425,7 @@ void tscFreeSqlObj(SSqlObj* pSql) {
tscResetSqlCmdObj(pCmd, false);
memset(pCmd->payload, 0, (size_t)pCmd->allocSize);
taosTFree(pCmd->payload);
tfree(pCmd->payload);
pCmd->allocSize = 0;
tsem_destroy(&pSql->rspSem);
......@@ -437,15 +437,15 @@ void tscDestroyDataBlock(STableDataBlocks* pDataBlock) {
return;
}
taosTFree(pDataBlock->pData);
taosTFree(pDataBlock->params);
tfree(pDataBlock->pData);
tfree(pDataBlock->params);
// free the refcount for metermeta
if (pDataBlock->pTableMeta != NULL) {
taosCacheRelease(tscMetaCache, (void**)&(pDataBlock->pTableMeta), false);
}
taosTFree(pDataBlock);
tfree(pDataBlock);
}
SParamInfo* tscAddParamToDataBlock(STableDataBlocks* pDataBlock, char type, uint8_t timePrec, int16_t bytes,
......@@ -720,7 +720,7 @@ int32_t tscMergeTableDataBlocks(SSqlObj* pSql, SArray* pTableDataBlockList) {
taosHashCleanup(pVnodeDataBlockHashList);
tscDestroyBlockArrayList(pVnodeDataBlockList);
taosTFree(dataBuf->pData);
tfree(dataBuf->pData);
return TSDB_CODE_TSC_OUT_OF_MEMORY;
}
......@@ -780,7 +780,7 @@ void tscCloseTscObj(void *param) {
pthread_mutex_destroy(&pObj->mutex);
tscDebug("%p DB connection is closed, dnodeConn:%p", pObj, p);
taosTFree(pObj);
tfree(pObj);
}
bool tscIsInsertData(char* sqlstr) {
......@@ -944,12 +944,12 @@ void tscFieldInfoClear(SFieldInfo* pFieldInfo) {
if (pInfo->pArithExprInfo != NULL) {
tExprTreeDestroy(&pInfo->pArithExprInfo->pExpr, NULL);
taosTFree(pInfo->pArithExprInfo);
tfree(pInfo->pArithExprInfo);
}
}
taosArrayDestroy(pFieldInfo->internalField);
taosTFree(pFieldInfo->final);
tfree(pFieldInfo->final);
memset(pFieldInfo, 0, sizeof(SFieldInfo));
}
......@@ -1065,7 +1065,7 @@ void* sqlExprDestroy(SSqlExpr* pExpr) {
tVariantDestroy(&pExpr->param[i]);
}
taosTFree(pExpr);
tfree(pExpr);
return NULL;
}
......@@ -1165,11 +1165,11 @@ SColumn* tscColumnListInsert(SArray* pColumnList, SColumnIndex* pColIndex) {
static void destroyFilterInfo(SColumnFilterInfo* pFilterInfo, int32_t numOfFilters) {
for(int32_t i = 0; i < numOfFilters; ++i) {
if (pFilterInfo[i].filterstr) {
taosTFree(pFilterInfo[i].pz);
tfree(pFilterInfo[i].pz);
}
}
taosTFree(pFilterInfo);
tfree(pFilterInfo);
}
SColumn* tscColumnClone(const SColumn* src) {
......@@ -1457,7 +1457,7 @@ void tscTagCondRelease(STagCond* pTagCond) {
size_t s = taosArrayGetSize(pTagCond->pCond);
for (int32_t i = 0; i < s; ++i) {
SCond* p = taosArrayGet(pTagCond->pCond, i);
taosTFree(p->cond);
tfree(p->cond);
}
taosArrayDestroy(pTagCond->pCond);
......@@ -1649,7 +1649,7 @@ static void freeQueryInfoImpl(SQueryInfo* pQueryInfo) {
pQueryInfo->tsBuf = tsBufDestroy(pQueryInfo->tsBuf);
taosTFree(pQueryInfo->fillVal);
tfree(pQueryInfo->fillVal);
}
void tscClearSubqueryInfo(SSqlCmd* pCmd) {
......@@ -1669,7 +1669,7 @@ void tscFreeVgroupTableInfo(SArray* pVgroupTables) {
SVgroupTableInfo* pInfo = taosArrayGet(pVgroupTables, i);
for(int32_t j = 0; j < pInfo->vgInfo.numOfEps; ++j) {
taosTFree(pInfo->vgInfo.epAddr[j].fqdn);
tfree(pInfo->vgInfo.epAddr[j].fqdn);
}
taosArrayDestroy(pInfo->itemList);
......@@ -1686,7 +1686,7 @@ void tscRemoveVgroupTableGroup(SArray* pVgroupTable, int32_t index) {
SVgroupTableInfo* pInfo = taosArrayGet(pVgroupTable, index);
for(int32_t j = 0; j < pInfo->vgInfo.numOfEps; ++j) {
taosTFree(pInfo->vgInfo.epAddr[j].fqdn);
tfree(pInfo->vgInfo.epAddr[j].fqdn);
}
taosArrayDestroy(pInfo->itemList);
......@@ -1734,7 +1734,7 @@ void clearAllTableMetaInfo(SQueryInfo* pQueryInfo, const char* address, bool rem
free(pTableMetaInfo);
}
taosTFree(pQueryInfo->pTableMetaInfo);
tfree(pQueryInfo->pTableMetaInfo);
}
STableMetaInfo* tscAddTableMetaInfo(SQueryInfo* pQueryInfo, const char* name, STableMeta* pTableMeta,
......@@ -2333,7 +2333,7 @@ void tscTryQueryNextClause(SSqlObj* pSql, __async_cb_func_t fp) {
pRes->numOfTotal = num;
taosTFree(pSql->pSubs);
tfree(pSql->pSubs);
pSql->subState.numOfSub = 0;
pSql->fp = fp;
......@@ -2458,11 +2458,11 @@ void* tscVgroupInfoClear(SVgroupsInfo *vgroupList) {
SVgroupInfo* pVgroupInfo = &vgroupList->vgroups[i];
for(int32_t j = 0; j < pVgroupInfo->numOfEps; ++j) {
taosTFree(pVgroupInfo->epAddr[j].fqdn);
tfree(pVgroupInfo->epAddr[j].fqdn);
}
}
taosTFree(vgroupList);
tfree(vgroupList);
return NULL;
}
......@@ -2470,7 +2470,7 @@ void tscSVgroupInfoCopy(SVgroupInfo* dst, const SVgroupInfo* src) {
dst->vgId = src->vgId;
dst->numOfEps = src->numOfEps;
for(int32_t i = 0; i < dst->numOfEps; ++i) {
taosTFree(dst->epAddr[i].fqdn);
tfree(dst->epAddr[i].fqdn);
dst->epAddr[i].port = src->epAddr[i].port;
dst->epAddr[i].fqdn = strdup(src->epAddr[i].fqdn);
}
......
......@@ -80,7 +80,7 @@ typedef struct {
#define schemaFLen(s) ((s)->flen)
#define schemaVLen(s) ((s)->vlen)
#define schemaColAt(s, i) ((s)->columns + i)
#define tdFreeSchema(s) taosTFree((s))
#define tdFreeSchema(s) tfree((s))
STSchema *tdDupSchema(STSchema *pSchema);
int tdEncodeSchema(void **buf, STSchema *pSchema);
......@@ -119,6 +119,33 @@ void tdResetTSchemaBuilder(STSchemaBuilder *pBuilder, int32_t version);
int tdAddColToSchema(STSchemaBuilder *pBuilder, int8_t type, int16_t colId, int16_t bytes);
STSchema *tdGetSchemaFromBuilder(STSchemaBuilder *pBuilder);
// ----------------- Semantic timestamp key definition
typedef uint64_t TKEY;
#define TKEY_INVALID UINT64_MAX
#define TKEY_NULL TKEY_INVALID
#define TKEY_NEGATIVE_FLAG (((TKEY)1) << 63)
#define TKEY_DELETE_FLAG (((TKEY)1) << 62)
#define TKEY_VALUE_FILTER (~(TKEY_NEGATIVE_FLAG | TKEY_DELETE_FLAG))
#define TKEY_IS_NEGATIVE(tkey) (((tkey)&TKEY_NEGATIVE_FLAG) != 0)
#define TKEY_IS_DELETED(tkey) (((tkey)&TKEY_DELETE_FLAG) != 0)
#define tdSetTKEYDeleted(tkey) ((tkey) | TKEY_DELETE_FLAG)
#define tdGetTKEY(key) (((TKEY)ABS(key)) | (TKEY_NEGATIVE_FLAG & (TKEY)(key)))
#define tdGetKey(tkey) (((TSKEY)((tkey)&TKEY_VALUE_FILTER)) * (TKEY_IS_NEGATIVE(tkey) ? -1 : 1))
static FORCE_INLINE int tkeyComparFn(const void *tkey1, const void *tkey2) {
TSKEY key1 = tdGetKey(*(TKEY *)tkey1);
TSKEY key2 = tdGetKey(*(TKEY *)tkey2);
if (key1 < key2) {
return -1;
} else if (key1 > key2) {
return 1;
} else {
return 0;
}
}
// ----------------- Data row structure
/* A data row, the format is like below:
......@@ -129,6 +156,8 @@ STSchema *tdGetSchemaFromBuilder(STSchemaBuilder *pBuilder);
* +----------+----------+---------------------------------+---------------------------------+
* | len | sversion | First part | Second part |
* +----------+----------+---------------------------------+---------------------------------+
*
* NOTE: timestamp in this row structure is TKEY instead of TSKEY
*/
typedef void *SDataRow;
......@@ -137,11 +166,13 @@ typedef void *SDataRow;
#define dataRowLen(r) (*(uint16_t *)(r))
#define dataRowVersion(r) *(int16_t *)POINTER_SHIFT(r, sizeof(int16_t))
#define dataRowTuple(r) POINTER_SHIFT(r, TD_DATA_ROW_HEAD_SIZE)
#define dataRowKey(r) (*(TSKEY *)(dataRowTuple(r)))
#define dataRowTKey(r) (*(TKEY *)(dataRowTuple(r)))
#define dataRowKey(r) tdGetKey(dataRowTKey(r))
#define dataRowSetLen(r, l) (dataRowLen(r) = (l))
#define dataRowSetVersion(r, v) (dataRowVersion(r) = (v))
#define dataRowCpy(dst, r) memcpy((dst), (r), dataRowLen(r))
#define dataRowMaxBytesFromSchema(s) (schemaTLen(s) + TD_DATA_ROW_HEAD_SIZE)
#define dataRowDeleted(r) TKEY_IS_DELETED(dataRowTKey(r))
SDataRow tdNewDataRowFromSchema(STSchema *pSchema);
void tdFreeDataRow(SDataRow row);
......@@ -154,16 +185,18 @@ static FORCE_INLINE int tdAppendColVal(SDataRow row, void *value, int8_t type, i
int32_t toffset = offset + TD_DATA_ROW_HEAD_SIZE;
char * ptr = (char *)POINTER_SHIFT(row, dataRowLen(row));
switch (type) {
case TSDB_DATA_TYPE_BINARY:
case TSDB_DATA_TYPE_NCHAR:
*(VarDataOffsetT *)POINTER_SHIFT(row, toffset) = dataRowLen(row);
memcpy(ptr, value, varDataTLen(value));
dataRowLen(row) += varDataTLen(value);
break;
default:
if (IS_VAR_DATA_TYPE(type)) {
*(VarDataOffsetT *)POINTER_SHIFT(row, toffset) = dataRowLen(row);
memcpy(ptr, value, varDataTLen(value));
dataRowLen(row) += varDataTLen(value);
} else {
if (offset == 0) {
ASSERT(type == TSDB_DATA_TYPE_TIMESTAMP);
TKEY tvalue = tdGetTKEY(*(TSKEY *)value);
memcpy(POINTER_SHIFT(row, toffset), (void *)(&tvalue), TYPE_BYTES[type]);
} else {
memcpy(POINTER_SHIFT(row, toffset), value, TYPE_BYTES[type]);
break;
}
}
return 0;
......@@ -171,12 +204,10 @@ static FORCE_INLINE int tdAppendColVal(SDataRow row, void *value, int8_t type, i
// NOTE: offset here including the header size
static FORCE_INLINE void *tdGetRowDataOfCol(SDataRow row, int8_t type, int32_t offset) {
switch (type) {
case TSDB_DATA_TYPE_BINARY:
case TSDB_DATA_TYPE_NCHAR:
return POINTER_SHIFT(row, *(VarDataOffsetT *)POINTER_SHIFT(row, offset));
default:
return POINTER_SHIFT(row, offset);
if (IS_VAR_DATA_TYPE(type)) {
return POINTER_SHIFT(row, *(VarDataOffsetT *)POINTER_SHIFT(row, offset));
} else {
return POINTER_SHIFT(row, offset);
}
}
......@@ -196,7 +227,6 @@ static FORCE_INLINE void dataColReset(SDataCol *pDataCol) { pDataCol->len = 0; }
void dataColInit(SDataCol *pDataCol, STColumn *pCol, void **pBuf, int maxPoints);
void dataColAppendVal(SDataCol *pCol, void *value, int numOfRows, int maxPoints);
void dataColPopPoints(SDataCol *pCol, int pointsToPop, int numOfRows);
void dataColSetOffset(SDataCol *pCol, int nEle);
bool isNEleNull(SDataCol *pCol, int nEle);
......@@ -204,28 +234,20 @@ void dataColSetNEleNull(SDataCol *pCol, int nEle, int maxPoints);
// Get the data pointer from a column-wised data
static FORCE_INLINE void *tdGetColDataOfRow(SDataCol *pCol, int row) {
switch (pCol->type) {
case TSDB_DATA_TYPE_BINARY:
case TSDB_DATA_TYPE_NCHAR:
return POINTER_SHIFT(pCol->pData, pCol->dataOff[row]);
break;
default:
return POINTER_SHIFT(pCol->pData, TYPE_BYTES[pCol->type] * row);
break;
if (IS_VAR_DATA_TYPE(pCol->type)) {
return POINTER_SHIFT(pCol->pData, pCol->dataOff[row]);
} else {
return POINTER_SHIFT(pCol->pData, TYPE_BYTES[pCol->type] * row);
}
}
static FORCE_INLINE int32_t dataColGetNEleLen(SDataCol *pDataCol, int rows) {
ASSERT(rows > 0);
switch (pDataCol->type) {
case TSDB_DATA_TYPE_BINARY:
case TSDB_DATA_TYPE_NCHAR:
return pDataCol->dataOff[rows - 1] + varDataTLen(tdGetColDataOfRow(pDataCol, rows - 1));
break;
default:
return TYPE_BYTES[pDataCol->type] * rows;
if (IS_VAR_DATA_TYPE(pDataCol->type)) {
return pDataCol->dataOff[rows - 1] + varDataTLen(tdGetColDataOfRow(pDataCol, rows - 1));
} else {
return TYPE_BYTES[pDataCol->type] * rows;
}
}
......@@ -243,9 +265,14 @@ typedef struct {
} SDataCols;
#define keyCol(pCols) (&((pCols)->cols[0])) // Key column
#define dataColsKeyAt(pCols, idx) ((TSKEY *)(keyCol(pCols)->pData))[(idx)]
#define dataColsKeyFirst(pCols) dataColsKeyAt(pCols, 0)
#define dataColsKeyLast(pCols) ((pCols->numOfRows == 0) ? 0 : dataColsKeyAt(pCols, (pCols)->numOfRows - 1))
#define dataColsTKeyAt(pCols, idx) ((TKEY *)(keyCol(pCols)->pData))[(idx)]
#define dataColsKeyAt(pCols, idx) tdGetKey(dataColsTKeyAt(pCols, idx))
#define dataColsTKeyFirst(pCols) (((pCols)->numOfRows == 0) ? TKEY_INVALID : dataColsTKeyAt(pCols, 0))
#define dataColsKeyFirst(pCols) (((pCols)->numOfRows == 0) ? TSDB_DATA_TIMESTAMP_NULL : dataColsKeyAt(pCols, 0))
#define dataColsTKeyLast(pCols) \
(((pCols)->numOfRows == 0) ? TKEY_INVALID : dataColsTKeyAt(pCols, (pCols)->numOfRows - 1))
#define dataColsKeyLast(pCols) \
(((pCols)->numOfRows == 0) ? TSDB_DATA_TIMESTAMP_NULL : dataColsKeyAt(pCols, (pCols)->numOfRows - 1))
SDataCols *tdNewDataCols(int maxRowSize, int maxCols, int maxRows);
void tdResetDataCols(SDataCols *pCols);
......@@ -253,10 +280,7 @@ int tdInitDataCols(SDataCols *pCols, STSchema *pSchema);
SDataCols *tdDupDataCols(SDataCols *pCols, bool keepData);
void tdFreeDataCols(SDataCols *pCols);
void tdAppendDataRowToDataCol(SDataRow row, STSchema *pSchema, SDataCols *pCols);
void tdPopDataColsPoints(SDataCols *pCols, int pointsToPop); //!!!!
int tdMergeDataCols(SDataCols *target, SDataCols *src, int rowsToMerge);
void tdMergeTwoDataCols(SDataCols *target, SDataCols *src1, int *iter1, int limit1, SDataCols *src2, int *iter2,
int limit2, int tRows);
// ----------------- K-V data row structure
/*
......@@ -284,7 +308,7 @@ typedef struct {
#define kvRowCpy(dst, r) memcpy((dst), (r), kvRowLen(r))
#define kvRowColVal(r, colIdx) POINTER_SHIFT(kvRowValues(r), (colIdx)->offset)
#define kvRowColIdxAt(r, i) (kvRowColIdx(r) + (i))
#define kvRowFree(r) taosTFree(r)
#define kvRowFree(r) tfree(r)
#define kvRowEnd(r) POINTER_SHIFT(r, kvRowLen(r))
SKVRow tdKVRowDup(SKVRow row);
......
......@@ -88,6 +88,7 @@ extern int16_t tsWAL;
extern int32_t tsFsyncPeriod;
extern int32_t tsReplications;
extern int32_t tsQuorum;
extern int32_t tsUpdate;
// balance
extern int32_t tsEnableBalance;
......
......@@ -18,6 +18,9 @@
#include "tcoding.h"
#include "wchar.h"
static void tdMergeTwoDataCols(SDataCols *target, SDataCols *src1, int *iter1, int limit1, SDataCols *src2, int *iter2,
int limit2, int tRows);
/**
* Duplicate the schema and return a new object
*/
......@@ -94,7 +97,7 @@ int tdInitTSchemaBuilder(STSchemaBuilder *pBuilder, int32_t version) {
void tdDestroyTSchemaBuilder(STSchemaBuilder *pBuilder) {
if (pBuilder) {
taosTFree(pBuilder->columns);
tfree(pBuilder->columns);
}
}
......@@ -202,7 +205,7 @@ void dataColInit(SDataCol *pDataCol, STColumn *pCol, void **pBuf, int maxPoints)
pDataCol->offset = colOffset(pCol) + TD_DATA_ROW_HEAD_SIZE;
pDataCol->len = 0;
if (pDataCol->type == TSDB_DATA_TYPE_BINARY || pDataCol->type == TSDB_DATA_TYPE_NCHAR) {
if (IS_VAR_DATA_TYPE(pDataCol->type)) {
pDataCol->dataOff = (VarDataOffsetT *)(*pBuf);
pDataCol->pData = POINTER_SHIFT(*pBuf, sizeof(VarDataOffsetT) * maxPoints);
pDataCol->spaceSize = pDataCol->bytes * maxPoints;
......@@ -215,60 +218,29 @@ void dataColInit(SDataCol *pDataCol, STColumn *pCol, void **pBuf, int maxPoints)
}
}
// value from timestamp should be TKEY here instead of TSKEY
void dataColAppendVal(SDataCol *pCol, void *value, int numOfRows, int maxPoints) {
ASSERT(pCol != NULL && value != NULL);
switch (pCol->type) {
case TSDB_DATA_TYPE_BINARY:
case TSDB_DATA_TYPE_NCHAR:
// set offset
pCol->dataOff[numOfRows] = pCol->len;
// Copy data
memcpy(POINTER_SHIFT(pCol->pData, pCol->len), value, varDataTLen(value));
// Update the length
pCol->len += varDataTLen(value);
break;
default:
ASSERT(pCol->len == TYPE_BYTES[pCol->type] * numOfRows);
memcpy(POINTER_SHIFT(pCol->pData, pCol->len), value, pCol->bytes);
pCol->len += pCol->bytes;
break;
}
}
void dataColPopPoints(SDataCol *pCol, int pointsToPop, int numOfRows) {
int pointsLeft = numOfRows - pointsToPop;
ASSERT(pointsLeft > 0);
if (pCol->type == TSDB_DATA_TYPE_BINARY || pCol->type == TSDB_DATA_TYPE_NCHAR) {
ASSERT(pCol->len > 0);
VarDataOffsetT toffset = pCol->dataOff[pointsToPop];
pCol->len = pCol->len - toffset;
ASSERT(pCol->len > 0);
memmove(pCol->pData, POINTER_SHIFT(pCol->pData, toffset), pCol->len);
dataColSetOffset(pCol, pointsLeft);
if (IS_VAR_DATA_TYPE(pCol->type)) {
// set offset
pCol->dataOff[numOfRows] = pCol->len;
// Copy data
memcpy(POINTER_SHIFT(pCol->pData, pCol->len), value, varDataTLen(value));
// Update the length
pCol->len += varDataTLen(value);
} else {
ASSERT(pCol->len == TYPE_BYTES[pCol->type] * numOfRows);
pCol->len = TYPE_BYTES[pCol->type] * pointsLeft;
memmove(pCol->pData, POINTER_SHIFT(pCol->pData, TYPE_BYTES[pCol->type] * pointsToPop), pCol->len);
memcpy(POINTER_SHIFT(pCol->pData, pCol->len), value, pCol->bytes);
pCol->len += pCol->bytes;
}
}
bool isNEleNull(SDataCol *pCol, int nEle) {
switch (pCol->type) {
case TSDB_DATA_TYPE_BINARY:
case TSDB_DATA_TYPE_NCHAR:
for (int i = 0; i < nEle; i++) {
if (!isNull(tdGetColDataOfRow(pCol, i), pCol->type)) return false;
}
return true;
default:
for (int i = 0; i < nEle; i++) {
if (!isNull(tdGetColDataOfRow(pCol, i), pCol->type)) return false;
}
return true;
for (int i = 0; i < nEle; i++) {
if (!isNull(tdGetColDataOfRow(pCol, i), pCol->type)) return false;
}
return true;
}
void dataColSetNullAt(SDataCol *pCol, int index) {
......@@ -367,8 +339,8 @@ int tdInitDataCols(SDataCols *pCols, STSchema *pSchema) {
void tdFreeDataCols(SDataCols *pCols) {
if (pCols) {
taosTFree(pCols->buf);
taosTFree(pCols->cols);
tfree(pCols->buf);
tfree(pCols->cols);
free(pCols);
}
}
......@@ -390,7 +362,7 @@ SDataCols *tdDupDataCols(SDataCols *pDataCols, bool keepData) {
pRet->cols[i].spaceSize = pDataCols->cols[i].spaceSize;
pRet->cols[i].pData = (void *)((char *)pRet->buf + ((char *)(pDataCols->cols[i].pData) - (char *)(pDataCols->buf)));
if (pRet->cols[i].type == TSDB_DATA_TYPE_BINARY || pRet->cols[i].type == TSDB_DATA_TYPE_NCHAR) {
if (IS_VAR_DATA_TYPE(pRet->cols[i].type)) {
ASSERT(pDataCols->cols[i].dataOff != NULL);
pRet->cols[i].dataOff =
(int32_t *)((char *)pRet->buf + ((char *)(pDataCols->cols[i].dataOff) - (char *)(pDataCols->buf)));
......@@ -400,7 +372,7 @@ SDataCols *tdDupDataCols(SDataCols *pDataCols, bool keepData) {
pRet->cols[i].len = pDataCols->cols[i].len;
if (pDataCols->cols[i].len > 0) {
memcpy(pRet->cols[i].pData, pDataCols->cols[i].pData, pDataCols->cols[i].len);
if (pRet->cols[i].type == TSDB_DATA_TYPE_BINARY || pRet->cols[i].type == TSDB_DATA_TYPE_NCHAR) {
if (IS_VAR_DATA_TYPE(pRet->cols[i].type)) {
memcpy(pRet->cols[i].dataOff, pDataCols->cols[i].dataOff, sizeof(VarDataOffsetT) * pDataCols->maxPoints);
}
}
......@@ -420,58 +392,54 @@ void tdResetDataCols(SDataCols *pCols) {
}
void tdAppendDataRowToDataCol(SDataRow row, STSchema *pSchema, SDataCols *pCols) {
ASSERT(dataColsKeyLast(pCols) < dataRowKey(row));
ASSERT(pCols->numOfRows == 0 || dataColsKeyLast(pCols) < dataRowKey(row));
int rcol = 0;
int dcol = 0;
while (dcol < pCols->numOfCols) {
SDataCol *pDataCol = &(pCols->cols[dcol]);
if (rcol >= schemaNCols(pSchema)) {
dataColSetNullAt(pDataCol, pCols->numOfRows);
dcol++;
continue;
if (dataRowDeleted(row)) {
for (; dcol < pCols->numOfCols; dcol++) {
SDataCol *pDataCol = &(pCols->cols[dcol]);
if (dcol == 0) {
dataColAppendVal(pDataCol, dataRowTuple(row), pCols->numOfRows, pCols->maxPoints);
} else {
dataColSetNullAt(pDataCol, pCols->numOfRows);
}
}
} else {
while (dcol < pCols->numOfCols) {
SDataCol *pDataCol = &(pCols->cols[dcol]);
if (rcol >= schemaNCols(pSchema)) {
dataColSetNullAt(pDataCol, pCols->numOfRows);
dcol++;
continue;
}
STColumn *pRowCol = schemaColAt(pSchema, rcol);
if (pRowCol->colId == pDataCol->colId) {
void *value = tdGetRowDataOfCol(row, pRowCol->type, pRowCol->offset+TD_DATA_ROW_HEAD_SIZE);
dataColAppendVal(pDataCol, value, pCols->numOfRows, pCols->maxPoints);
dcol++;
rcol++;
} else if (pRowCol->colId < pDataCol->colId) {
rcol++;
} else {
dataColSetNullAt(pDataCol, pCols->numOfRows);
dcol++;
STColumn *pRowCol = schemaColAt(pSchema, rcol);
if (pRowCol->colId == pDataCol->colId) {
void *value = tdGetRowDataOfCol(row, pRowCol->type, pRowCol->offset + TD_DATA_ROW_HEAD_SIZE);
dataColAppendVal(pDataCol, value, pCols->numOfRows, pCols->maxPoints);
dcol++;
rcol++;
} else if (pRowCol->colId < pDataCol->colId) {
rcol++;
} else {
dataColSetNullAt(pDataCol, pCols->numOfRows);
dcol++;
}
}
}
pCols->numOfRows++;
}
// Pop pointsToPop points from the SDataCols
void tdPopDataColsPoints(SDataCols *pCols, int pointsToPop) {
int pointsLeft = pCols->numOfRows - pointsToPop;
if (pointsLeft <= 0) {
tdResetDataCols(pCols);
return;
}
for (int iCol = 0; iCol < pCols->numOfCols; iCol++) {
SDataCol *pCol = pCols->cols + iCol;
dataColPopPoints(pCol, pointsToPop, pCols->numOfRows);
}
pCols->numOfRows = pointsLeft;
}
int tdMergeDataCols(SDataCols *target, SDataCols *source, int rowsToMerge) {
ASSERT(rowsToMerge > 0 && rowsToMerge <= source->numOfRows);
ASSERT(target->numOfRows + rowsToMerge <= target->maxPoints);
ASSERT(target->numOfCols == source->numOfCols);
SDataCols *pTarget = NULL;
if (dataColsKeyLast(target) < dataColsKeyFirst(source)) { // No overlap
ASSERT(target->numOfRows + rowsToMerge <= target->maxPoints);
for (int i = 0; i < rowsToMerge; i++) {
for (int j = 0; j < source->numOfCols; j++) {
if (source->cols[j].len > 0) {
......@@ -499,17 +467,23 @@ _err:
return -1;
}
void tdMergeTwoDataCols(SDataCols *target, SDataCols *src1, int *iter1, int limit1, SDataCols *src2, int *iter2, int limit2, int tRows) {
// src2 data has more priority than src1
static void tdMergeTwoDataCols(SDataCols *target, SDataCols *src1, int *iter1, int limit1, SDataCols *src2, int *iter2,
int limit2, int tRows) {
tdResetDataCols(target);
ASSERT(limit1 <= src1->numOfRows && limit2 <= src2->numOfRows);
while (target->numOfRows < tRows) {
if (*iter1 >= limit1 && *iter2 >= limit2) break;
TSKEY key1 = (*iter1 >= limit1) ? INT64_MAX : ((TSKEY *)(src1->cols[0].pData))[*iter1];
TSKEY key2 = (*iter2 >= limit2) ? INT64_MAX : ((TSKEY *)(src2->cols[0].pData))[*iter2];
TSKEY key1 = (*iter1 >= limit1) ? INT64_MAX : dataColsKeyAt(src1, *iter1);
TKEY tkey1 = (*iter1 >= limit1) ? TKEY_NULL : dataColsTKeyAt(src1, *iter1);
TSKEY key2 = (*iter2 >= limit2) ? INT64_MAX : dataColsKeyAt(src2, *iter2);
TKEY tkey2 = (*iter2 >= limit2) ? TKEY_NULL : dataColsTKeyAt(src2, *iter2);
if (key1 <= key2) {
ASSERT(tkey1 == TKEY_NULL || (!TKEY_IS_DELETED(tkey1)));
if (key1 < key2) {
for (int i = 0; i < src1->numOfCols; i++) {
ASSERT(target->cols[i].type == src1->cols[i].type);
if (src1->cols[i].len > 0) {
......@@ -520,19 +494,23 @@ void tdMergeTwoDataCols(SDataCols *target, SDataCols *src1, int *iter1, int limi
target->numOfRows++;
(*iter1)++;
if (key1 == key2) (*iter2)++;
} else {
for (int i = 0; i < src2->numOfCols; i++) {
ASSERT(target->cols[i].type == src2->cols[i].type);
if (src2->cols[i].len > 0) {
dataColAppendVal(&(target->cols[i]), tdGetColDataOfRow(src2->cols + i, *iter2), target->numOfRows,
target->maxPoints);
} else if (key1 >= key2) {
if ((key1 > key2) || (key1 == key2 && !TKEY_IS_DELETED(tkey2))) {
for (int i = 0; i < src2->numOfCols; i++) {
ASSERT(target->cols[i].type == src2->cols[i].type);
if (src2->cols[i].len > 0) {
dataColAppendVal(&(target->cols[i]), tdGetColDataOfRow(src2->cols + i, *iter2), target->numOfRows,
target->maxPoints);
}
}
target->numOfRows++;
}
target->numOfRows++;
(*iter2)++;
if (key1 == key2) (*iter1)++;
}
ASSERT(target->numOfRows <= target->maxPoints);
}
}
......@@ -691,8 +669,8 @@ int tdInitKVRowBuilder(SKVRowBuilder *pBuilder) {
}
void tdDestroyKVRowBuilder(SKVRowBuilder *pBuilder) {
taosTFree(pBuilder->pColIdx);
taosTFree(pBuilder->buf);
tfree(pBuilder->pColIdx);
tfree(pBuilder->buf);
}
void tdResetKVRowBuilder(SKVRowBuilder *pBuilder) {
......
......@@ -120,6 +120,7 @@ int16_t tsWAL = TSDB_DEFAULT_WAL_LEVEL;
int32_t tsFsyncPeriod = TSDB_DEFAULT_FSYNC_PERIOD;
int32_t tsReplications = TSDB_DEFAULT_DB_REPLICA_OPTION;
int32_t tsQuorum = TSDB_DEFAULT_DB_QUORUM_OPTION;
int32_t tsUpdate = TSDB_DEFAULT_DB_UPDATE_OPTION;
int32_t tsMaxVgroupsPerDb = 0;
int32_t tsMinTablePerVnode = TSDB_TABLES_STEP;
int32_t tsMaxTablePerVnode = TSDB_DEFAULT_TABLES;
......@@ -217,6 +218,8 @@ int32_t (*monitorStartSystemFp)() = NULL;
void (*monitorStopSystemFp)() = NULL;
void (*monitorExecuteSQLFp)(char *sql) = NULL;
char *qtypeStr[] = {"rpc", "fwd", "wal", "cq", "query"};
static pthread_once_t tsInitGlobalCfgOnce = PTHREAD_ONCE_INIT;
void taosSetAllDebugFlag() {
......@@ -786,6 +789,16 @@ static void doInitGlobalConfig(void) {
cfg.unitType = TAOS_CFG_UTYPE_NONE;
taosInitConfigOption(cfg);
cfg.option = "update";
cfg.ptr = &tsUpdate;
cfg.valType = TAOS_CFG_VTYPE_INT32;
cfg.cfgType = TSDB_CFG_CTYPE_B_CONFIG | TSDB_CFG_CTYPE_B_SHOW;
cfg.minValue = TSDB_MIN_DB_UPDATE;
cfg.maxValue = TSDB_MAX_DB_UPDATE;
cfg.ptrLength = 0;
cfg.unitType = TAOS_CFG_UTYPE_NONE;
taosInitConfigOption(cfg);
cfg.option = "mqttHostName";
cfg.ptr = tsMqttHostName;
cfg.valType = TAOS_CFG_VTYPE_STRING;
......
......@@ -125,7 +125,7 @@ void tVariantDestroy(tVariant *pVar) {
if (pVar == NULL) return;
if (pVar->nType == TSDB_DATA_TYPE_BINARY || pVar->nType == TSDB_DATA_TYPE_NCHAR) {
taosTFree(pVar->pz);
tfree(pVar->pz);
pVar->nLen = 0;
}
......
/*
* Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
*
* This program is free software: you can use, redistribute, and/or modify
* it under the terms of the GNU Affero General Public License, version 3
* or later ("AGPL"), 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.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
using System;
using System.Collections.Generic;
using System.Runtime.InteropServices;
namespace TDengineDriver
{
enum TDengineDataType {
TSDB_DATA_TYPE_NULL = 0, // 1 bytes
TSDB_DATA_TYPE_BOOL = 1, // 1 bytes
TSDB_DATA_TYPE_TINYINT = 2, // 1 bytes
TSDB_DATA_TYPE_SMALLINT = 3, // 2 bytes
TSDB_DATA_TYPE_INT = 4, // 4 bytes
TSDB_DATA_TYPE_BIGINT = 5, // 8 bytes
TSDB_DATA_TYPE_FLOAT = 6, // 4 bytes
TSDB_DATA_TYPE_DOUBLE = 7, // 8 bytes
TSDB_DATA_TYPE_BINARY = 8, // string
TSDB_DATA_TYPE_TIMESTAMP = 9,// 8 bytes
TSDB_DATA_TYPE_NCHAR = 10 // unicode string
}
enum TDengineInitOption
{
TSDB_OPTION_LOCALE = 0,
TSDB_OPTION_CHARSET = 1,
TSDB_OPTION_TIMEZONE = 2,
TDDB_OPTION_CONFIGDIR = 3,
TDDB_OPTION_SHELL_ACTIVITY_TIMER = 4
}
class TDengineMeta
{
public string name;
public short size;
public byte type;
public string TypeName()
{
switch ((TDengineDataType)type)
{
case TDengineDataType.TSDB_DATA_TYPE_BOOL:
return "BOOLEAN";
case TDengineDataType.TSDB_DATA_TYPE_TINYINT:
return "BYTE";
case TDengineDataType.TSDB_DATA_TYPE_SMALLINT:
return "SHORT";
case TDengineDataType.TSDB_DATA_TYPE_INT:
return "INT";
case TDengineDataType.TSDB_DATA_TYPE_BIGINT:
return "LONG";
case TDengineDataType.TSDB_DATA_TYPE_FLOAT:
return "FLOAT";
case TDengineDataType.TSDB_DATA_TYPE_DOUBLE:
return "DOUBLE";
case TDengineDataType.TSDB_DATA_TYPE_BINARY:
return "STRING";
case TDengineDataType.TSDB_DATA_TYPE_TIMESTAMP:
return "TIMESTAMP";
case TDengineDataType.TSDB_DATA_TYPE_NCHAR:
return "NCHAR";
default:
return "undefine";
}
}
}
class TDengine
{
public const int TSDB_CODE_SUCCESS = 0;
[DllImport("taos.dll", EntryPoint = "taos_init", CallingConvention = CallingConvention.Cdecl)]
static extern public void Init();
[DllImport("taos.dll", EntryPoint = "taos_cleanup", CallingConvention = CallingConvention.Cdecl)]
static extern public void Cleanup();
[DllImport("taos.dll", EntryPoint = "taos_options", CallingConvention = CallingConvention.Cdecl)]
static extern public void Options(int option, string value);
[DllImport("taos.dll", EntryPoint = "taos_connect", CallingConvention = CallingConvention.Cdecl)]
static extern public IntPtr Connect(string ip, string user, string password, string db, short port);
[DllImport("taos.dll", EntryPoint = "taos_errstr", CallingConvention = CallingConvention.Cdecl)]
static extern private IntPtr taos_errstr(IntPtr res);
static public string Error(IntPtr res)
{
IntPtr errPtr = taos_errstr(res);
return Marshal.PtrToStringAnsi(errPtr);
}
[DllImport("taos.dll", EntryPoint = "taos_errno", CallingConvention = CallingConvention.Cdecl)]
static extern public int ErrorNo(IntPtr res);
[DllImport("taos.dll", EntryPoint = "taos_query", CallingConvention = CallingConvention.Cdecl)]
static extern public IntPtr Query(IntPtr conn, string sqlstr);
[DllImport("taos.dll", EntryPoint = "taos_affected_rows", CallingConvention = CallingConvention.Cdecl)]
static extern public int AffectRows(IntPtr res);
[DllImport("taos.dll", EntryPoint = "taos_field_count", CallingConvention = CallingConvention.Cdecl)]
static extern public int FieldCount(IntPtr res);
[DllImport("taos.dll", EntryPoint = "taos_fetch_fields", CallingConvention = CallingConvention.Cdecl)]
static extern private IntPtr taos_fetch_fields(IntPtr res);
static public List<TDengineMeta> FetchFields(IntPtr res)
{
const int fieldSize = 68;
List<TDengineMeta> metas = new List<TDengineMeta>();
if (res == IntPtr.Zero)
{
return metas;
}
int fieldCount = FieldCount(res);
IntPtr fieldsPtr = taos_fetch_fields(res);
for (int i = 0; i < fieldCount; ++i)
{
int offset = i * fieldSize;
TDengineMeta meta = new TDengineMeta();
meta.name = Marshal.PtrToStringAnsi(fieldsPtr + offset);
meta.type = Marshal.ReadByte(fieldsPtr + offset + 65);
meta.size = Marshal.ReadInt16(fieldsPtr + offset + 66);
metas.Add(meta);
}
return metas;
}
[DllImport("taos.dll", EntryPoint = "taos_fetch_row", CallingConvention = CallingConvention.Cdecl)]
static extern public IntPtr FetchRows(IntPtr res);
[DllImport("taos.dll", EntryPoint = "taos_free_result", CallingConvention = CallingConvention.Cdecl)]
static extern public IntPtr FreeResult(IntPtr res);
[DllImport("taos.dll", EntryPoint = "taos_close", CallingConvention = CallingConvention.Cdecl)]
static extern public int Close(IntPtr taos);
}
}
\ No newline at end of file
Subproject commit 8c58c512b6acda8bcdfa48fdc7140227b5221766
Subproject commit 8d7bf743852897110cbdcc7c4322cd7a74d4167b
Subproject commit d598db167eb256fe67409b7bb3d0eb7fffc3ff8c
Subproject commit ec77d9049a719dabfd1a7c1122a209e201861944
......@@ -5,7 +5,7 @@
<groupId>com.taosdata.jdbc</groupId>
<artifactId>taos-jdbcdriver</artifactId>
<version>2.0.6</version>
<version>2.0.9</version>
<packaging>jar</packaging>
<name>JDBCDriver</name>
......
......@@ -111,8 +111,8 @@ public class TSDBJNIConnector {
* @throws SQLException
*/
public long executeQuery(String sql) throws SQLException {
// close previous result set if the user forgets to invoke the
// free method to close previous result set.
// close previous result set if the user forgets to invoke the
// free method to close previous result set.
if (!this.isResultsetClosed) {
freeResultSet(taosResultSetPointer);
}
......@@ -122,23 +122,23 @@ public class TSDBJNIConnector {
pSql = this.executeQueryImp(sql.getBytes(TaosGlobalConfig.getCharset()), this.taos);
} catch (Exception e) {
e.printStackTrace();
this.freeResultSet(pSql);
this.freeResultSetImp(this.taos, pSql);
throw new SQLException(TSDBConstants.WrapErrMsg("Unsupported encoding"));
}
int code = this.getErrCode(pSql);
if (code != 0) {
affectedRows = -1;
String msg = this.getErrMsg(pSql);
this.freeResultSet(pSql);
this.freeResultSetImp(this.taos, pSql);
throw new SQLException(TSDBConstants.WrapErrMsg(msg), "", code);
}
// Try retrieving result set for the executed SQL using the current connection pointer.
taosResultSetPointer = this.getResultSetImp(this.taos, pSql);
isResultsetClosed = (taosResultSetPointer == TSDBConstants.JNI_NULL_POINTER);
return pSql;
}
......@@ -171,11 +171,11 @@ public class TSDBJNIConnector {
}
private native long getResultSetImp(long connection, long pSql);
public boolean isUpdateQuery(long pSql) {
return isUpdateQueryImp(this.taos, pSql) == 1? true:false;
return isUpdateQueryImp(this.taos, pSql) == 1 ? true : false;
}
private native long isUpdateQueryImp(long connection, long pSql);
/**
......@@ -191,7 +191,7 @@ public class TSDBJNIConnector {
res = this.freeResultSetImp(this.taos, result);
taosResultSetPointer = TSDBConstants.JNI_NULL_POINTER;
}
isResultsetClosed = true;
return res;
}
......@@ -274,7 +274,7 @@ public class TSDBJNIConnector {
* Consume a subscription
*/
long consume(long subscription) {
return this.consumeImp(subscription);
return this.consumeImp(subscription);
}
private native long consumeImp(long subscription);
......
......@@ -39,16 +39,16 @@
#define cTrace(...) { if (cqDebugFlag & DEBUG_TRACE) { taosPrintLog("CQ ", cqDebugFlag, __VA_ARGS__); }}
typedef struct {
int vgId;
int32_t vgId;
char user[TSDB_USER_LEN];
char pass[TSDB_PASSWORD_LEN];
char db[TSDB_DB_NAME_LEN];
FCqWrite cqWrite;
void *ahandle;
int num; // number of continuous streams
int32_t num; // number of continuous streams
struct SCqObj *pHead;
void *dbConn;
int master;
int32_t master;
void *tmrCtrl;
pthread_mutex_t mutex;
} SCqContext;
......@@ -57,7 +57,7 @@ typedef struct SCqObj {
tmr_h tmrId;
uint64_t uid;
int32_t tid; // table ID
int rowSize; // bytes of a row
int32_t rowSize; // bytes of a row
char * sqlStr; // SQL string
STSchema * pSchema; // pointer to schema array
void * pStream;
......@@ -115,7 +115,7 @@ void cqClose(void *handle) {
SCqObj *pTemp = pObj;
pObj = pObj->next;
tdFreeSchema(pTemp->pSchema);
taosTFree(pTemp->sqlStr);
tfree(pTemp->sqlStr);
free(pTemp);
}
......@@ -175,7 +175,7 @@ void cqStop(void *handle) {
pthread_mutex_unlock(&pContext->mutex);
}
void *cqCreate(void *handle, uint64_t uid, int tid, char *sqlStr, STSchema *pSchema) {
void *cqCreate(void *handle, uint64_t uid, int32_t tid, char *sqlStr, STSchema *pSchema) {
SCqContext *pContext = handle;
SCqObj *pObj = calloc(sizeof(SCqObj), 1);
......@@ -237,7 +237,7 @@ void cqDrop(void *handle) {
pthread_mutex_unlock(&pContext->mutex);
}
static void doCreateStream(void *param, TAOS_RES *result, int code) {
static void doCreateStream(void *param, TAOS_RES *result, int32_t code) {
SCqObj* pObj = (SCqObj*)param;
SCqContext* pContext = pObj->pContext;
SSqlObj* pSql = (SSqlObj*)result;
......@@ -288,7 +288,7 @@ static void cqProcessStreamRes(void *param, TAOS_RES *tres, TAOS_ROW row) {
cDebug("vgId:%d, id:%d CQ:%s stream result is ready", pContext->vgId, pObj->tid, pObj->sqlStr);
int size = sizeof(SWalHead) + sizeof(SSubmitMsg) + sizeof(SSubmitBlk) + TD_DATA_ROW_HEAD_SIZE + pObj->rowSize;
int32_t size = sizeof(SWalHead) + sizeof(SSubmitMsg) + sizeof(SSubmitBlk) + TD_DATA_ROW_HEAD_SIZE + pObj->rowSize;
char *buffer = calloc(size, 1);
SWalHead *pHead = (SWalHead *)buffer;
......
......@@ -20,11 +20,11 @@
extern "C" {
#endif
int32_t dnodeInitMnodePeer();
void dnodeCleanupMnodePeer();
int32_t dnodeAllocateMnodePqueue();
void dnodeFreeMnodePqueue();
void dnodeDispatchToMnodePeerQueue(SRpcMsg *pMsg);
int32_t dnodeInitMPeer();
void dnodeCleanupMPeer();
int32_t dnodeAllocateMPeerQueue();
void dnodeFreeMPeerQueue();
void dnodeDispatchToMPeerQueue(SRpcMsg *pMsg);
#ifdef __cplusplus
}
......
......@@ -20,11 +20,11 @@
extern "C" {
#endif
int32_t dnodeInitMnodeRead();
void dnodeCleanupMnodeRead();
int32_t dnodeAllocateMnodeRqueue();
void dnodeFreeMnodeRqueue();
void dnodeDispatchToMnodeReadQueue(SRpcMsg *rpcMsg);
int32_t dnodeInitMRead();
void dnodeCleanupMRead();
int32_t dnodeAllocMReadQueue();
void dnodeFreeMReadQueue();
void dnodeDispatchToMReadQueue(SRpcMsg *rpcMsg);
#ifdef __cplusplus
}
......
......@@ -20,11 +20,11 @@
extern "C" {
#endif
int32_t dnodeInitMnodeWrite();
void dnodeCleanupMnodeWrite();
int32_t dnodeAllocateMnodeWqueue();
void dnodeFreeMnodeWqueue();
void dnodeDispatchToMnodeWriteQueue(SRpcMsg *pMsg);
int32_t dnodeInitMWrite();
void dnodeCleanupMWrite();
int32_t dnodeAllocMWritequeue();
void dnodeFreeMWritequeue();
void dnodeDispatchToMWriteQueue(SRpcMsg *pMsg);
#ifdef __cplusplus
}
......
......@@ -35,44 +35,44 @@ typedef struct {
typedef struct {
int32_t curNum;
int32_t maxNum;
SMPeerWorker *peerWorker;
SMPeerWorker *worker;
} SMPeerWorkerPool;
static SMPeerWorkerPool tsMPeerPool;
static SMPeerWorkerPool tsMPeerWP;
static taos_qset tsMPeerQset;
static taos_queue tsMPeerQueue;
static void *dnodeProcessMnodePeerQueue(void *param);
static void *dnodeProcessMPeerQueue(void *param);
int32_t dnodeInitMnodePeer() {
int32_t dnodeInitMPeer() {
tsMPeerQset = taosOpenQset();
tsMPeerPool.maxNum = 1;
tsMPeerPool.curNum = 0;
tsMPeerPool.peerWorker = (SMPeerWorker *)calloc(sizeof(SMPeerWorker), tsMPeerPool.maxNum);
tsMPeerWP.maxNum = 1;
tsMPeerWP.curNum = 0;
tsMPeerWP.worker = (SMPeerWorker *)calloc(sizeof(SMPeerWorker), tsMPeerWP.maxNum);
if (tsMPeerPool.peerWorker == NULL) return -1;
for (int32_t i = 0; i < tsMPeerPool.maxNum; ++i) {
SMPeerWorker *pWorker = tsMPeerPool.peerWorker + i;
if (tsMPeerWP.worker == NULL) return -1;
for (int32_t i = 0; i < tsMPeerWP.maxNum; ++i) {
SMPeerWorker *pWorker = tsMPeerWP.worker + i;
pWorker->workerId = i;
dDebug("dnode mpeer worker:%d is created", i);
}
dDebug("dnode mpeer is initialized, workers:%d qset:%p", tsMPeerPool.maxNum, tsMPeerQset);
dDebug("dnode mpeer is initialized, workers:%d qset:%p", tsMPeerWP.maxNum, tsMPeerQset);
return 0;
}
void dnodeCleanupMnodePeer() {
for (int32_t i = 0; i < tsMPeerPool.maxNum; ++i) {
SMPeerWorker *pWorker = tsMPeerPool.peerWorker + i;
void dnodeCleanupMPeer() {
for (int32_t i = 0; i < tsMPeerWP.maxNum; ++i) {
SMPeerWorker *pWorker = tsMPeerWP.worker + i;
if (pWorker->thread) {
taosQsetThreadResume(tsMPeerQset);
}
dDebug("dnode mpeer worker:%d is closed", i);
}
for (int32_t i = 0; i < tsMPeerPool.maxNum; ++i) {
SMPeerWorker *pWorker = tsMPeerPool.peerWorker + i;
for (int32_t i = 0; i < tsMPeerWP.maxNum; ++i) {
SMPeerWorker *pWorker = tsMPeerWP.worker + i;
dDebug("dnode mpeer worker:%d start to join", i);
if (pWorker->thread) {
pthread_join(pWorker->thread, NULL);
......@@ -84,61 +84,60 @@ void dnodeCleanupMnodePeer() {
taosCloseQset(tsMPeerQset);
tsMPeerQset = NULL;
taosTFree(tsMPeerPool.peerWorker);
tfree(tsMPeerWP.worker);
}
int32_t dnodeAllocateMnodePqueue() {
int32_t dnodeAllocateMPeerQueue() {
tsMPeerQueue = taosOpenQueue();
if (tsMPeerQueue == NULL) return TSDB_CODE_DND_OUT_OF_MEMORY;
taosAddIntoQset(tsMPeerQset, tsMPeerQueue, NULL);
for (int32_t i = tsMPeerPool.curNum; i < tsMPeerPool.maxNum; ++i) {
SMPeerWorker *pWorker = tsMPeerPool.peerWorker + i;
for (int32_t i = tsMPeerWP.curNum; i < tsMPeerWP.maxNum; ++i) {
SMPeerWorker *pWorker = tsMPeerWP.worker + i;
pWorker->workerId = i;
pthread_attr_t thAttr;
pthread_attr_init(&thAttr);
pthread_attr_setdetachstate(&thAttr, PTHREAD_CREATE_JOINABLE);
if (pthread_create(&pWorker->thread, &thAttr, dnodeProcessMnodePeerQueue, pWorker) != 0) {
if (pthread_create(&pWorker->thread, &thAttr, dnodeProcessMPeerQueue, pWorker) != 0) {
dError("failed to create thread to process mpeer queue, reason:%s", strerror(errno));
}
pthread_attr_destroy(&thAttr);
tsMPeerPool.curNum = i + 1;
dDebug("dnode mpeer worker:%d is launched, total:%d", pWorker->workerId, tsMPeerPool.maxNum);
tsMPeerWP.curNum = i + 1;
dDebug("dnode mpeer worker:%d is launched, total:%d", pWorker->workerId, tsMPeerWP.maxNum);
}
dDebug("dnode mpeer queue:%p is allocated", tsMPeerQueue);
return TSDB_CODE_SUCCESS;
}
void dnodeFreeMnodePqueue() {
void dnodeFreeMPeerQueue() {
dDebug("dnode mpeer queue:%p is freed", tsMPeerQueue);
taosCloseQueue(tsMPeerQueue);
tsMPeerQueue = NULL;
}
void dnodeDispatchToMnodePeerQueue(SRpcMsg *pMsg) {
void dnodeDispatchToMPeerQueue(SRpcMsg *pMsg) {
if (!mnodeIsRunning() || tsMPeerQueue == NULL) {
dnodeSendRedirectMsg(pMsg, false);
rpcFreeCont(pMsg->pCont);
return;
} else {
SMnodeMsg *pPeer = mnodeCreateMsg(pMsg);
taosWriteQitem(tsMPeerQueue, TAOS_QTYPE_RPC, pPeer);
}
SMnodeMsg *pPeer = (SMnodeMsg *)taosAllocateQitem(sizeof(SMnodeMsg));
mnodeCreateMsg(pPeer, pMsg);
taosWriteQitem(tsMPeerQueue, TAOS_QTYPE_RPC, pPeer);
rpcFreeCont(pMsg->pCont);
}
static void dnodeFreeMnodePeerMsg(SMnodeMsg *pPeer) {
static void dnodeFreeMPeerMsg(SMnodeMsg *pPeer) {
mnodeCleanupMsg(pPeer);
taosFreeQitem(pPeer);
}
static void dnodeSendRpcMnodePeerRsp(SMnodeMsg *pPeer, int32_t code) {
static void dnodeSendRpcMPeerRsp(SMnodeMsg *pPeer, int32_t code) {
if (code == TSDB_CODE_MND_ACTION_IN_PROGRESS) return;
SRpcMsg rpcRsp = {
......@@ -149,10 +148,10 @@ static void dnodeSendRpcMnodePeerRsp(SMnodeMsg *pPeer, int32_t code) {
};
rpcSendResponse(&rpcRsp);
dnodeFreeMnodePeerMsg(pPeer);
dnodeFreeMPeerMsg(pPeer);
}
static void *dnodeProcessMnodePeerQueue(void *param) {
static void *dnodeProcessMPeerQueue(void *param) {
SMnodeMsg *pPeerMsg;
int32_t type;
void * unUsed;
......@@ -165,7 +164,7 @@ static void *dnodeProcessMnodePeerQueue(void *param) {
dDebug("msg:%s will be processed in mpeer queue", taosMsg[pPeerMsg->rpcMsg.msgType]);
int32_t code = mnodeProcessPeerReq(pPeerMsg);
dnodeSendRpcMnodePeerRsp(pPeerMsg, code);
dnodeSendRpcMPeerRsp(pPeerMsg, code);
}
return NULL;
......
......@@ -35,46 +35,46 @@ typedef struct {
typedef struct {
int32_t curNum;
int32_t maxNum;
SMReadWorker *readWorker;
SMReadWorker *worker;
} SMReadWorkerPool;
static SMReadWorkerPool tsMReadPool;
static SMReadWorkerPool tsMReadWP;
static taos_qset tsMReadQset;
static taos_queue tsMReadQueue;
static void *dnodeProcessMnodeReadQueue(void *param);
static void *dnodeProcessMReadQueue(void *param);
int32_t dnodeInitMnodeRead() {
int32_t dnodeInitMRead() {
tsMReadQset = taosOpenQset();
tsMReadPool.maxNum = tsNumOfCores * tsNumOfThreadsPerCore / 2;
tsMReadPool.maxNum = MAX(2, tsMReadPool.maxNum);
tsMReadPool.maxNum = MIN(4, tsMReadPool.maxNum);
tsMReadPool.curNum = 0;
tsMReadPool.readWorker = (SMReadWorker *)calloc(sizeof(SMReadWorker), tsMReadPool.maxNum);
tsMReadWP.maxNum = tsNumOfCores * tsNumOfThreadsPerCore / 2;
tsMReadWP.maxNum = MAX(2, tsMReadWP.maxNum);
tsMReadWP.maxNum = MIN(4, tsMReadWP.maxNum);
tsMReadWP.curNum = 0;
tsMReadWP.worker = (SMReadWorker *)calloc(sizeof(SMReadWorker), tsMReadWP.maxNum);
if (tsMReadPool.readWorker == NULL) return -1;
for (int32_t i = 0; i < tsMReadPool.maxNum; ++i) {
SMReadWorker *pWorker = tsMReadPool.readWorker + i;
if (tsMReadWP.worker == NULL) return -1;
for (int32_t i = 0; i < tsMReadWP.maxNum; ++i) {
SMReadWorker *pWorker = tsMReadWP.worker + i;
pWorker->workerId = i;
dDebug("dnode mread worker:%d is created", i);
}
dDebug("dnode mread is initialized, workers:%d qset:%p", tsMReadPool.maxNum, tsMReadQset);
dDebug("dnode mread is initialized, workers:%d qset:%p", tsMReadWP.maxNum, tsMReadQset);
return 0;
}
void dnodeCleanupMnodeRead() {
for (int32_t i = 0; i < tsMReadPool.maxNum; ++i) {
SMReadWorker *pWorker = tsMReadPool.readWorker + i;
void dnodeCleanupMRead() {
for (int32_t i = 0; i < tsMReadWP.maxNum; ++i) {
SMReadWorker *pWorker = tsMReadWP.worker + i;
if (pWorker->thread) {
taosQsetThreadResume(tsMReadQset);
}
dDebug("dnode mread worker:%d is closed", i);
}
for (int32_t i = 0; i < tsMReadPool.maxNum; ++i) {
SMReadWorker *pWorker = tsMReadPool.readWorker + i;
for (int32_t i = 0; i < tsMReadWP.maxNum; ++i) {
SMReadWorker *pWorker = tsMReadWP.worker + i;
dDebug("dnode mread worker:%d start to join", i);
if (pWorker->thread) {
pthread_join(pWorker->thread, NULL);
......@@ -86,64 +86,63 @@ void dnodeCleanupMnodeRead() {
taosCloseQset(tsMReadQset);
tsMReadQset = NULL;
free(tsMReadPool.readWorker);
free(tsMReadWP.worker);
}
int32_t dnodeAllocateMnodeRqueue() {
int32_t dnodeAllocMReadQueue() {
tsMReadQueue = taosOpenQueue();
if (tsMReadQueue == NULL) return TSDB_CODE_DND_OUT_OF_MEMORY;
taosAddIntoQset(tsMReadQset, tsMReadQueue, NULL);
for (int32_t i = tsMReadPool.curNum; i < tsMReadPool.maxNum; ++i) {
SMReadWorker *pWorker = tsMReadPool.readWorker + i;
for (int32_t i = tsMReadWP.curNum; i < tsMReadWP.maxNum; ++i) {
SMReadWorker *pWorker = tsMReadWP.worker + i;
pWorker->workerId = i;
pthread_attr_t thAttr;
pthread_attr_init(&thAttr);
pthread_attr_setdetachstate(&thAttr, PTHREAD_CREATE_JOINABLE);
if (pthread_create(&pWorker->thread, &thAttr, dnodeProcessMnodeReadQueue, pWorker) != 0) {
if (pthread_create(&pWorker->thread, &thAttr, dnodeProcessMReadQueue, pWorker) != 0) {
dError("failed to create thread to process mread queue, reason:%s", strerror(errno));
}
pthread_attr_destroy(&thAttr);
tsMReadPool.curNum = i + 1;
dDebug("dnode mread worker:%d is launched, total:%d", pWorker->workerId, tsMReadPool.maxNum);
tsMReadWP.curNum = i + 1;
dDebug("dnode mread worker:%d is launched, total:%d", pWorker->workerId, tsMReadWP.maxNum);
}
dDebug("dnode mread queue:%p is allocated", tsMReadQueue);
return TSDB_CODE_SUCCESS;
}
void dnodeFreeMnodeRqueue() {
void dnodeFreeMReadQueue() {
dDebug("dnode mread queue:%p is freed", tsMReadQueue);
taosCloseQueue(tsMReadQueue);
tsMReadQueue = NULL;
}
void dnodeDispatchToMnodeReadQueue(SRpcMsg *pMsg) {
void dnodeDispatchToMReadQueue(SRpcMsg *pMsg) {
if (!mnodeIsRunning() || tsMReadQueue == NULL) {
dnodeSendRedirectMsg(pMsg, true);
rpcFreeCont(pMsg->pCont);
return;
} else {
SMnodeMsg *pRead = mnodeCreateMsg(pMsg);
taosWriteQitem(tsMReadQueue, TAOS_QTYPE_RPC, pRead);
}
SMnodeMsg *pRead = (SMnodeMsg *)taosAllocateQitem(sizeof(SMnodeMsg));
mnodeCreateMsg(pRead, pMsg);
taosWriteQitem(tsMReadQueue, TAOS_QTYPE_RPC, pRead);
rpcFreeCont(pMsg->pCont);
}
static void dnodeFreeMnodeReadMsg(SMnodeMsg *pRead) {
static void dnodeFreeMReadMsg(SMnodeMsg *pRead) {
mnodeCleanupMsg(pRead);
taosFreeQitem(pRead);
}
static void dnodeSendRpcMnodeReadRsp(SMnodeMsg *pRead, int32_t code) {
static void dnodeSendRpcMReadRsp(SMnodeMsg *pRead, int32_t code) {
if (code == TSDB_CODE_MND_ACTION_IN_PROGRESS) return;
if (code == TSDB_CODE_MND_ACTION_NEED_REPROCESSED) {
// may be a auto create req, should put into write queue
dnodeReprocessMnodeWriteMsg(pRead);
dnodeReprocessMWriteMsg(pRead);
return;
}
......@@ -155,23 +154,23 @@ static void dnodeSendRpcMnodeReadRsp(SMnodeMsg *pRead, int32_t code) {
};
rpcSendResponse(&rpcRsp);
dnodeFreeMnodeReadMsg(pRead);
dnodeFreeMReadMsg(pRead);
}
static void *dnodeProcessMnodeReadQueue(void *param) {
SMnodeMsg *pReadMsg;
static void *dnodeProcessMReadQueue(void *param) {
SMnodeMsg *pRead;
int32_t type;
void * unUsed;
while (1) {
if (taosReadQitemFromQset(tsMReadQset, &type, (void **)&pReadMsg, &unUsed) == 0) {
if (taosReadQitemFromQset(tsMReadQset, &type, (void **)&pRead, &unUsed) == 0) {
dDebug("qset:%p, mnode read got no message from qset, exiting", tsMReadQset);
break;
}
dDebug("%p, msg:%s will be processed in mread queue", pReadMsg->rpcMsg.ahandle, taosMsg[pReadMsg->rpcMsg.msgType]);
int32_t code = mnodeProcessRead(pReadMsg);
dnodeSendRpcMnodeReadRsp(pReadMsg, code);
dDebug("%p, msg:%s will be processed in mread queue", pRead->rpcMsg.ahandle, taosMsg[pRead->rpcMsg.msgType]);
int32_t code = mnodeProcessRead(pRead);
dnodeSendRpcMReadRsp(pRead, code);
}
return NULL;
......
......@@ -36,45 +36,45 @@ typedef struct {
typedef struct {
int32_t curNum;
int32_t maxNum;
SMWriteWorker *writeWorker;
SMWriteWorker *worker;
} SMWriteWorkerPool;
static SMWriteWorkerPool tsMWritePool;
static SMWriteWorkerPool tsMWriteWP;
static taos_qset tsMWriteQset;
static taos_queue tsMWriteQueue;
extern void * tsDnodeTmr;
static void *dnodeProcessMnodeWriteQueue(void *param);
static void *dnodeProcessMWriteQueue(void *param);
int32_t dnodeInitMnodeWrite() {
int32_t dnodeInitMWrite() {
tsMWriteQset = taosOpenQset();
tsMWritePool.maxNum = 1;
tsMWritePool.curNum = 0;
tsMWritePool.writeWorker = (SMWriteWorker *)calloc(sizeof(SMWriteWorker), tsMWritePool.maxNum);
tsMWriteWP.maxNum = 1;
tsMWriteWP.curNum = 0;
tsMWriteWP.worker = (SMWriteWorker *)calloc(sizeof(SMWriteWorker), tsMWriteWP.maxNum);
if (tsMWritePool.writeWorker == NULL) return -1;
for (int32_t i = 0; i < tsMWritePool.maxNum; ++i) {
SMWriteWorker *pWorker = tsMWritePool.writeWorker + i;
if (tsMWriteWP.worker == NULL) return -1;
for (int32_t i = 0; i < tsMWriteWP.maxNum; ++i) {
SMWriteWorker *pWorker = tsMWriteWP.worker + i;
pWorker->workerId = i;
dDebug("dnode mwrite worker:%d is created", i);
}
dDebug("dnode mwrite is initialized, workers:%d qset:%p", tsMWritePool.maxNum, tsMWriteQset);
dDebug("dnode mwrite is initialized, workers:%d qset:%p", tsMWriteWP.maxNum, tsMWriteQset);
return 0;
}
void dnodeCleanupMnodeWrite() {
for (int32_t i = 0; i < tsMWritePool.maxNum; ++i) {
SMWriteWorker *pWorker = tsMWritePool.writeWorker + i;
void dnodeCleanupMWrite() {
for (int32_t i = 0; i < tsMWriteWP.maxNum; ++i) {
SMWriteWorker *pWorker = tsMWriteWP.worker + i;
if (pWorker->thread) {
taosQsetThreadResume(tsMWriteQset);
}
dDebug("dnode mwrite worker:%d is closed", i);
}
for (int32_t i = 0; i < tsMWritePool.maxNum; ++i) {
SMWriteWorker *pWorker = tsMWritePool.writeWorker + i;
for (int32_t i = 0; i < tsMWriteWP.maxNum; ++i) {
SMWriteWorker *pWorker = tsMWriteWP.worker + i;
dDebug("dnode mwrite worker:%d start to join", i);
if (pWorker->thread) {
pthread_join(pWorker->thread, NULL);
......@@ -86,58 +86,56 @@ void dnodeCleanupMnodeWrite() {
taosCloseQset(tsMWriteQset);
tsMWriteQset = NULL;
taosTFree(tsMWritePool.writeWorker);
tfree(tsMWriteWP.worker);
}
int32_t dnodeAllocateMnodeWqueue() {
int32_t dnodeAllocMWritequeue() {
tsMWriteQueue = taosOpenQueue();
if (tsMWriteQueue == NULL) return TSDB_CODE_DND_OUT_OF_MEMORY;
taosAddIntoQset(tsMWriteQset, tsMWriteQueue, NULL);
for (int32_t i = tsMWritePool.curNum; i < tsMWritePool.maxNum; ++i) {
SMWriteWorker *pWorker = tsMWritePool.writeWorker + i;
for (int32_t i = tsMWriteWP.curNum; i < tsMWriteWP.maxNum; ++i) {
SMWriteWorker *pWorker = tsMWriteWP.worker + i;
pWorker->workerId = i;
pthread_attr_t thAttr;
pthread_attr_init(&thAttr);
pthread_attr_setdetachstate(&thAttr, PTHREAD_CREATE_JOINABLE);
if (pthread_create(&pWorker->thread, &thAttr, dnodeProcessMnodeWriteQueue, pWorker) != 0) {
if (pthread_create(&pWorker->thread, &thAttr, dnodeProcessMWriteQueue, pWorker) != 0) {
dError("failed to create thread to process mwrite queue, reason:%s", strerror(errno));
}
pthread_attr_destroy(&thAttr);
tsMWritePool.curNum = i + 1;
dDebug("dnode mwrite worker:%d is launched, total:%d", pWorker->workerId, tsMWritePool.maxNum);
tsMWriteWP.curNum = i + 1;
dDebug("dnode mwrite worker:%d is launched, total:%d", pWorker->workerId, tsMWriteWP.maxNum);
}
dDebug("dnode mwrite queue:%p is allocated", tsMWriteQueue);
return TSDB_CODE_SUCCESS;
}
void dnodeFreeMnodeWqueue() {
void dnodeFreeMWritequeue() {
dDebug("dnode mwrite queue:%p is freed", tsMWriteQueue);
taosCloseQueue(tsMWriteQueue);
tsMWriteQueue = NULL;
}
void dnodeDispatchToMnodeWriteQueue(SRpcMsg *pMsg) {
void dnodeDispatchToMWriteQueue(SRpcMsg *pMsg) {
if (!mnodeIsRunning() || tsMWriteQueue == NULL) {
dnodeSendRedirectMsg(pMsg, true);
rpcFreeCont(pMsg->pCont);
return;
} else {
SMnodeMsg *pWrite = mnodeCreateMsg(pMsg);
dDebug("app:%p:%p, msg:%s is put into mwrite queue:%p", pWrite->rpcMsg.ahandle, pWrite,
taosMsg[pWrite->rpcMsg.msgType], tsMWriteQueue);
taosWriteQitem(tsMWriteQueue, TAOS_QTYPE_RPC, pWrite);
}
SMnodeMsg *pWrite = (SMnodeMsg *)taosAllocateQitem(sizeof(SMnodeMsg));
mnodeCreateMsg(pWrite, pMsg);
dDebug("app:%p:%p, msg:%s is put into mwrite queue:%p", pWrite->rpcMsg.ahandle, pWrite,
taosMsg[pWrite->rpcMsg.msgType], tsMWriteQueue);
taosWriteQitem(tsMWriteQueue, TAOS_QTYPE_RPC, pWrite);
rpcFreeCont(pMsg->pCont);
}
static void dnodeFreeMnodeWriteMsg(SMnodeMsg *pWrite) {
static void dnodeFreeMWriteMsg(SMnodeMsg *pWrite) {
dDebug("app:%p:%p, msg:%s is freed from mwrite queue:%p", pWrite->rpcMsg.ahandle, pWrite,
taosMsg[pWrite->rpcMsg.msgType], tsMWriteQueue);
......@@ -145,12 +143,12 @@ static void dnodeFreeMnodeWriteMsg(SMnodeMsg *pWrite) {
taosFreeQitem(pWrite);
}
void dnodeSendRpcMnodeWriteRsp(void *pMsg, int32_t code) {
void dnodeSendRpcMWriteRsp(void *pMsg, int32_t code) {
SMnodeMsg *pWrite = pMsg;
if (pWrite == NULL) return;
if (code == TSDB_CODE_MND_ACTION_IN_PROGRESS) return;
if (code == TSDB_CODE_MND_ACTION_NEED_REPROCESSED) {
dnodeReprocessMnodeWriteMsg(pWrite);
dnodeReprocessMWriteMsg(pWrite);
return;
}
......@@ -162,10 +160,10 @@ void dnodeSendRpcMnodeWriteRsp(void *pMsg, int32_t code) {
};
rpcSendResponse(&rpcRsp);
dnodeFreeMnodeWriteMsg(pWrite);
dnodeFreeMWriteMsg(pWrite);
}
static void *dnodeProcessMnodeWriteQueue(void *param) {
static void *dnodeProcessMWriteQueue(void *param) {
SMnodeMsg *pWrite;
int32_t type;
void * unUsed;
......@@ -180,13 +178,13 @@ static void *dnodeProcessMnodeWriteQueue(void *param) {
taosMsg[pWrite->rpcMsg.msgType]);
int32_t code = mnodeProcessWrite(pWrite);
dnodeSendRpcMnodeWriteRsp(pWrite, code);
dnodeSendRpcMWriteRsp(pWrite, code);
}
return NULL;
}
void dnodeReprocessMnodeWriteMsg(void *pMsg) {
void dnodeReprocessMWriteMsg(void *pMsg) {
SMnodeMsg *pWrite = pMsg;
if (!mnodeIsRunning() || tsMWriteQueue == NULL) {
......@@ -194,7 +192,7 @@ void dnodeReprocessMnodeWriteMsg(void *pMsg) {
taosMsg[pWrite->rpcMsg.msgType], pWrite->retry);
dnodeSendRedirectMsg(pMsg, true);
dnodeFreeMnodeWriteMsg(pWrite);
dnodeFreeMWriteMsg(pWrite);
} else {
dDebug("app:%p:%p, msg:%s is reput into mwrite queue:%p, retry times:%d", pWrite->rpcMsg.ahandle, pWrite,
taosMsg[pWrite->rpcMsg.msgType], tsMWriteQueue, pWrite->retry);
......@@ -203,12 +201,12 @@ void dnodeReprocessMnodeWriteMsg(void *pMsg) {
}
}
static void dnodeDoDelayReprocessMnodeWriteMsg(void *param, void *tmrId) {
dnodeReprocessMnodeWriteMsg(param);
static void dnodeDoDelayReprocessMWriteMsg(void *param, void *tmrId) {
dnodeReprocessMWriteMsg(param);
}
void dnodeDelayReprocessMnodeWriteMsg(void *pMsg) {
void dnodeDelayReprocessMWriteMsg(void *pMsg) {
SMnodeMsg *mnodeMsg = pMsg;
void *unUsed = NULL;
taosTmrReset(dnodeDoDelayReprocessMnodeWriteMsg, 300, mnodeMsg, tsDnodeTmr, &unUsed);
taosTmrReset(dnodeDoDelayReprocessMWriteMsg, 300, mnodeMsg, tsDnodeTmr, &unUsed);
}
......@@ -37,11 +37,11 @@
#include "dnodeShell.h"
#include "dnodeTelemetry.h"
static SDnodeRunStatus tsDnodeRunStatus = TSDB_DNODE_RUN_STATUS_STOPPED;
static SRunStatus tsRunStatus = TSDB_RUN_STATUS_STOPPED;
static int32_t dnodeInitStorage();
static void dnodeCleanupStorage();
static void dnodeSetRunStatus(SDnodeRunStatus status);
static void dnodeSetRunStatus(SRunStatus status);
static void dnodeCheckDataDirOpenned(char *dir);
static int32_t dnodeInitComponents();
static void dnodeCleanupComponents(int32_t stepId);
......@@ -63,9 +63,9 @@ static const SDnodeComponent tsDnodeComponents[] = {
{"check", dnodeInitCheck, dnodeCleanupCheck}, // NOTES: dnodeInitCheck must be behind the dnodeinitStorage component !!!
{"vread", dnodeInitVRead, dnodeCleanupVRead},
{"vwrite", dnodeInitVWrite, dnodeCleanupVWrite},
{"mread", dnodeInitMnodeRead, dnodeCleanupMnodeRead},
{"mwrite", dnodeInitMnodeWrite, dnodeCleanupMnodeWrite},
{"mpeer", dnodeInitMnodePeer, dnodeCleanupMnodePeer},
{"mread", dnodeInitMRead, dnodeCleanupMRead},
{"mwrite", dnodeInitMWrite, dnodeCleanupMWrite},
{"mpeer", dnodeInitMPeer, dnodeCleanupMPeer},
{"client", dnodeInitClient, dnodeCleanupClient},
{"server", dnodeInitServer, dnodeCleanupServer},
{"mgmt", dnodeInitMgmt, dnodeCleanupMgmt},
......@@ -104,7 +104,7 @@ static int32_t dnodeInitComponents() {
}
int32_t dnodeInitSystem() {
dnodeSetRunStatus(TSDB_DNODE_RUN_STATUS_INITIALIZE);
dnodeSetRunStatus(TSDB_RUN_STATUS_INITIALIZE);
tscEmbedded = 1;
taosBlockSIGPIPE();
taosResolveCRC();
......@@ -137,7 +137,7 @@ int32_t dnodeInitSystem() {
}
dnodeStartModules();
dnodeSetRunStatus(TSDB_DNODE_RUN_STATUS_RUNING);
dnodeSetRunStatus(TSDB_RUN_STATUS_RUNING);
dInfo("TDengine is initialized successfully");
......@@ -145,20 +145,20 @@ int32_t dnodeInitSystem() {
}
void dnodeCleanUpSystem() {
if (dnodeGetRunStatus() != TSDB_DNODE_RUN_STATUS_STOPPED) {
dnodeSetRunStatus(TSDB_DNODE_RUN_STATUS_STOPPED);
if (dnodeGetRunStatus() != TSDB_RUN_STATUS_STOPPED) {
dnodeSetRunStatus(TSDB_RUN_STATUS_STOPPED);
dnodeCleanupComponents(sizeof(tsDnodeComponents) / sizeof(tsDnodeComponents[0]) - 1);
taos_cleanup();
taosCloseLog();
}
}
SDnodeRunStatus dnodeGetRunStatus() {
return tsDnodeRunStatus;
SRunStatus dnodeGetRunStatus() {
return tsRunStatus;
}
static void dnodeSetRunStatus(SDnodeRunStatus status) {
tsDnodeRunStatus = status;
static void dnodeSetRunStatus(SRunStatus status) {
tsRunStatus = status;
}
static void dnodeCheckDataDirOpenned(char *dir) {
......
......@@ -47,6 +47,11 @@ typedef struct {
int32_t * vnodeList;
} SOpenVnodeThread;
typedef struct {
SRpcMsg rpcMsg;
char pCont[];
} SMgmtMsg;
void * tsDnodeTmr = NULL;
static void * tsStatusTimer = NULL;
static uint32_t tsRebootTime;
......@@ -172,38 +177,46 @@ void dnodeCleanupMgmt() {
vnodeCleanupResources();
}
void dnodeDispatchToMgmtQueue(SRpcMsg *pMsg) {
void *item;
static int32_t dnodeWriteToMgmtQueue(SRpcMsg *pMsg) {
int32_t size = sizeof(SMgmtMsg) + pMsg->contLen;
SMgmtMsg *pMgmt = taosAllocateQitem(size);
if (pMgmt == NULL) {
return TSDB_CODE_DND_OUT_OF_MEMORY;
}
item = taosAllocateQitem(sizeof(SRpcMsg));
if (item) {
memcpy(item, pMsg, sizeof(SRpcMsg));
taosWriteQitem(tsMgmtQueue, 1, item);
} else {
SRpcMsg rsp = {
.handle = pMsg->handle,
.pCont = NULL,
.code = TSDB_CODE_DND_OUT_OF_MEMORY
};
pMgmt->rpcMsg = *pMsg;
pMgmt->rpcMsg.pCont = pMgmt->pCont;
memcpy(pMgmt->pCont, pMsg->pCont, pMsg->contLen);
taosWriteQitem(tsMgmtQueue, TAOS_QTYPE_RPC, pMgmt);
return TSDB_CODE_SUCCESS;
}
void dnodeDispatchToMgmtQueue(SRpcMsg *pMsg) {
int32_t code = dnodeWriteToMgmtQueue(pMsg);
if (code != TSDB_CODE_SUCCESS) {
SRpcMsg rsp = {.handle = pMsg->handle, .code = code};
rpcSendResponse(&rsp);
rpcFreeCont(pMsg->pCont);
}
rpcFreeCont(pMsg->pCont);
}
static void *dnodeProcessMgmtQueue(void *param) {
SRpcMsg *pMsg;
SRpcMsg rsp = {0};
int type;
void * handle;
SMgmtMsg *pMgmt;
SRpcMsg * pMsg;
SRpcMsg rsp = {0};
int32_t qtype;
void * handle;
while (1) {
if (taosReadQitemFromQset(tsMgmtQset, &type, (void **) &pMsg, &handle) == 0) {
if (taosReadQitemFromQset(tsMgmtQset, &qtype, (void **)&pMgmt, &handle) == 0) {
dDebug("qset:%p, dnode mgmt got no message from qset, exit", tsMgmtQset);
break;
}
dDebug("%p, msg:%s will be processed", pMsg->ahandle, taosMsg[pMsg->msgType]);
pMsg = &pMgmt->rpcMsg;
dDebug("%p, msg:%p:%s will be processed", pMsg->ahandle, pMgmt, taosMsg[pMsg->msgType]);
if (dnodeProcessMgmtMsgFp[pMsg->msgType]) {
rsp.code = (*dnodeProcessMgmtMsgFp[pMsg->msgType])(pMsg);
} else {
......@@ -211,10 +224,9 @@ static void *dnodeProcessMgmtQueue(void *param) {
}
rsp.handle = pMsg->handle;
rsp.pCont = NULL;
rsp.pCont = NULL;
rpcSendResponse(&rsp);
rpcFreeCont(pMsg->pCont);
taosFreeQitem(pMsg);
}
......
......@@ -19,6 +19,7 @@
* to dnode. All theses messages are handled from here
*/
#define _DEFAULT_SOURCE
#include "os.h"
#include "taosmsg.h"
#include "tglobal.h"
......@@ -34,8 +35,8 @@ static void (*dnodeProcessReqMsgFp[TSDB_MSG_TYPE_MAX])(SRpcMsg *);
static void dnodeProcessReqMsgFromDnode(SRpcMsg *pMsg, SRpcEpSet *);
static void (*dnodeProcessRspMsgFp[TSDB_MSG_TYPE_MAX])(SRpcMsg *rpcMsg);
static void dnodeProcessRspFromDnode(SRpcMsg *pMsg, SRpcEpSet *pEpSet);
static void *tsDnodeServerRpc = NULL;
static void *tsDnodeClientRpc = NULL;
static void *tsServerRpc = NULL;
static void *tsClientRpc = NULL;
int32_t dnodeInitServer() {
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_MD_CREATE_TABLE] = dnodeDispatchToVWriteQueue;
......@@ -50,11 +51,11 @@ int32_t dnodeInitServer() {
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_MD_CONFIG_DNODE] = dnodeDispatchToMgmtQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_MD_CREATE_MNODE] = dnodeDispatchToMgmtQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_CONFIG_TABLE] = dnodeDispatchToMnodePeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_CONFIG_VNODE] = dnodeDispatchToMnodePeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_AUTH] = dnodeDispatchToMnodePeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_GRANT] = dnodeDispatchToMnodePeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_STATUS] = dnodeDispatchToMnodePeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_CONFIG_TABLE] = dnodeDispatchToMPeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_CONFIG_VNODE] = dnodeDispatchToMPeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_AUTH] = dnodeDispatchToMPeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_GRANT] = dnodeDispatchToMPeerQueue;
dnodeProcessReqMsgFp[TSDB_MSG_TYPE_DM_STATUS] = dnodeDispatchToMPeerQueue;
SRpcInit rpcInit;
memset(&rpcInit, 0, sizeof(rpcInit));
......@@ -66,8 +67,8 @@ int32_t dnodeInitServer() {
rpcInit.connType = TAOS_CONN_SERVER;
rpcInit.idleTime = tsShellActivityTimer * 1000;
tsDnodeServerRpc = rpcOpen(&rpcInit);
if (tsDnodeServerRpc == NULL) {
tsServerRpc = rpcOpen(&rpcInit);
if (tsServerRpc == NULL) {
dError("failed to init inter-dnodes RPC server");
return -1;
}
......@@ -77,9 +78,9 @@ int32_t dnodeInitServer() {
}
void dnodeCleanupServer() {
if (tsDnodeServerRpc) {
rpcClose(tsDnodeServerRpc);
tsDnodeServerRpc = NULL;
if (tsServerRpc) {
rpcClose(tsServerRpc);
tsServerRpc = NULL;
dInfo("inter-dnodes RPC server is closed");
}
}
......@@ -93,7 +94,7 @@ static void dnodeProcessReqMsgFromDnode(SRpcMsg *pMsg, SRpcEpSet *pEpSet) {
if (pMsg->pCont == NULL) return;
if (dnodeGetRunStatus() != TSDB_DNODE_RUN_STATUS_RUNING) {
if (dnodeGetRunStatus() != TSDB_RUN_STATUS_RUNING) {
rspMsg.code = TSDB_CODE_APP_NOT_READY;
rpcSendResponse(&rspMsg);
rpcFreeCont(pMsg->pCont);
......@@ -131,8 +132,8 @@ int32_t dnodeInitClient() {
rpcInit.ckey = "key";
rpcInit.secret = secret;
tsDnodeClientRpc = rpcOpen(&rpcInit);
if (tsDnodeClientRpc == NULL) {
tsClientRpc = rpcOpen(&rpcInit);
if (tsClientRpc == NULL) {
dError("failed to init mnode rpc client");
return -1;
}
......@@ -142,9 +143,9 @@ int32_t dnodeInitClient() {
}
void dnodeCleanupClient() {
if (tsDnodeClientRpc) {
rpcClose(tsDnodeClientRpc);
tsDnodeClientRpc = NULL;
if (tsClientRpc) {
rpcClose(tsClientRpc);
tsClientRpc = NULL;
dInfo("dnode inter-dnodes rpc client is closed");
}
}
......@@ -168,15 +169,15 @@ void dnodeAddClientRspHandle(uint8_t msgType, void (*fp)(SRpcMsg *rpcMsg)) {
}
void dnodeSendMsgToDnode(SRpcEpSet *epSet, SRpcMsg *rpcMsg) {
rpcSendRequest(tsDnodeClientRpc, epSet, rpcMsg);
rpcSendRequest(tsClientRpc, epSet, rpcMsg);
}
void dnodeSendMsgToMnodeRecv(SRpcMsg *rpcMsg, SRpcMsg *rpcRsp) {
SRpcEpSet epSet = {0};
dnodeGetEpSetForPeer(&epSet);
rpcSendRecv(tsDnodeClientRpc, &epSet, rpcMsg, rpcRsp);
rpcSendRecv(tsClientRpc, &epSet, rpcMsg, rpcRsp);
}
void dnodeSendMsgToDnodeRecv(SRpcMsg *rpcMsg, SRpcMsg *rpcRsp, SRpcEpSet *epSet) {
rpcSendRecv(tsDnodeClientRpc, epSet, rpcMsg, rpcRsp);
rpcSendRecv(tsClientRpc, epSet, rpcMsg, rpcRsp);
}
\ No newline at end of file
......@@ -33,9 +33,9 @@
static void (*dnodeProcessShellMsgFp[TSDB_MSG_TYPE_MAX])(SRpcMsg *);
static void dnodeProcessMsgFromShell(SRpcMsg *pMsg, SRpcEpSet *);
static int dnodeRetrieveUserAuthInfo(char *user, char *spi, char *encrypt, char *secret, char *ckey);
static void * tsDnodeShellRpc = NULL;
static int32_t tsDnodeQueryReqNum = 0;
static int32_t tsDnodeSubmitReqNum = 0;
static void * tsShellRpc = NULL;
static int32_t tsQueryReqNum = 0;
static int32_t tsSubmitReqNum = 0;
int32_t dnodeInitShell() {
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_SUBMIT] = dnodeDispatchToVWriteQueue;
......@@ -44,35 +44,35 @@ int32_t dnodeInitShell() {
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_UPDATE_TAG_VAL] = dnodeDispatchToVWriteQueue;
// the following message shall be treated as mnode write
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_ACCT] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_ACCT] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_ACCT] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_USER] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_USER] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_USER] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_DNODE]= dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_DNODE] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_DB] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_DB] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_DB] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_TABLE]= dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_TABLE] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_TABLE] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_STREAM]= dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_KILL_QUERY] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_KILL_STREAM] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_KILL_CONN] = dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CONFIG_DNODE]= dnodeDispatchToMnodeWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_ACCT] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_ACCT] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_ACCT] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_USER] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_USER] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_USER] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_DNODE]= dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_DNODE] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_DB] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_DB] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_DB] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CREATE_TABLE]= dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_DROP_TABLE] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_TABLE] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_ALTER_STREAM]= dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_KILL_QUERY] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_KILL_STREAM] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_KILL_CONN] = dnodeDispatchToMWriteQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CONFIG_DNODE]= dnodeDispatchToMWriteQueue;
// the following message shall be treated as mnode query
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_HEARTBEAT] = dnodeDispatchToMnodeReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CONNECT] = dnodeDispatchToMnodeReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_USE_DB] = dnodeDispatchToMnodeReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_TABLE_META] = dnodeDispatchToMnodeReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_STABLE_VGROUP]= dnodeDispatchToMnodeReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_TABLES_META] = dnodeDispatchToMnodeReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_SHOW] = dnodeDispatchToMnodeReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_RETRIEVE] = dnodeDispatchToMnodeReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_HEARTBEAT] = dnodeDispatchToMReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_CONNECT] = dnodeDispatchToMReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_USE_DB] = dnodeDispatchToMReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_TABLE_META] = dnodeDispatchToMReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_STABLE_VGROUP]= dnodeDispatchToMReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_TABLES_META] = dnodeDispatchToMReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_SHOW] = dnodeDispatchToMReadQueue;
dnodeProcessShellMsgFp[TSDB_MSG_TYPE_CM_RETRIEVE] = dnodeDispatchToMReadQueue;
int32_t numOfThreads = tsNumOfCores * tsNumOfThreadsPerCore;
numOfThreads = (int32_t) ((1.0 - tsRatioOfQueryThreads) * numOfThreads / 2.0);
......@@ -91,8 +91,8 @@ int32_t dnodeInitShell() {
rpcInit.idleTime = tsShellActivityTimer * 1000;
rpcInit.afp = dnodeRetrieveUserAuthInfo;
tsDnodeShellRpc = rpcOpen(&rpcInit);
if (tsDnodeShellRpc == NULL) {
tsShellRpc = rpcOpen(&rpcInit);
if (tsShellRpc == NULL) {
dError("failed to init shell rpc server");
return -1;
}
......@@ -102,13 +102,13 @@ int32_t dnodeInitShell() {
}
void dnodeCleanupShell() {
if (tsDnodeShellRpc) {
rpcClose(tsDnodeShellRpc);
tsDnodeShellRpc = NULL;
if (tsShellRpc) {
rpcClose(tsShellRpc);
tsShellRpc = NULL;
}
}
void dnodeProcessMsgFromShell(SRpcMsg *pMsg, SRpcEpSet *pEpSet) {
static void dnodeProcessMsgFromShell(SRpcMsg *pMsg, SRpcEpSet *pEpSet) {
SRpcMsg rpcMsg = {
.handle = pMsg->handle,
.pCont = NULL,
......@@ -117,7 +117,7 @@ void dnodeProcessMsgFromShell(SRpcMsg *pMsg, SRpcEpSet *pEpSet) {
if (pMsg->pCont == NULL) return;
if (dnodeGetRunStatus() != TSDB_DNODE_RUN_STATUS_RUNING) {
if (dnodeGetRunStatus() != TSDB_RUN_STATUS_RUNING) {
dError("RPC %p, shell msg:%s is ignored since dnode not running", pMsg->handle, taosMsg[pMsg->msgType]);
rpcMsg.code = TSDB_CODE_APP_NOT_READY;
rpcSendResponse(&rpcMsg);
......@@ -126,9 +126,9 @@ void dnodeProcessMsgFromShell(SRpcMsg *pMsg, SRpcEpSet *pEpSet) {
}
if (pMsg->msgType == TSDB_MSG_TYPE_QUERY) {
atomic_fetch_add_32(&tsDnodeQueryReqNum, 1);
atomic_fetch_add_32(&tsQueryReqNum, 1);
} else if (pMsg->msgType == TSDB_MSG_TYPE_SUBMIT) {
atomic_fetch_add_32(&tsDnodeSubmitReqNum, 1);
atomic_fetch_add_32(&tsSubmitReqNum, 1);
} else {}
if ( dnodeProcessShellMsgFp[pMsg->msgType] ) {
......@@ -211,12 +211,12 @@ void *dnodeSendCfgTableToRecv(int32_t vgId, int32_t tid) {
}
}
SDnodeStatisInfo dnodeGetStatisInfo() {
SDnodeStatisInfo info = {0};
if (dnodeGetRunStatus() == TSDB_DNODE_RUN_STATUS_RUNING) {
SStatisInfo dnodeGetStatisInfo() {
SStatisInfo info = {0};
if (dnodeGetRunStatus() == TSDB_RUN_STATUS_RUNING) {
info.httpReqNum = httpGetReqCount();
info.queryReqNum = atomic_exchange_32(&tsDnodeQueryReqNum, 0);
info.submitReqNum = atomic_exchange_32(&tsDnodeSubmitReqNum, 0);
info.queryReqNum = atomic_exchange_32(&tsQueryReqNum, 0);
info.submitReqNum = atomic_exchange_32(&tsSubmitReqNum, 0);
}
return info;
......
......@@ -92,33 +92,23 @@ void dnodeDispatchToVReadQueue(SRpcMsg *pMsg) {
pHead->vgId = htonl(pHead->vgId);
pHead->contLen = htonl(pHead->contLen);
taos_queue queue = vnodeAcquireRqueue(pHead->vgId);
if (queue == NULL) {
leftLen -= pHead->contLen;
pCont -= pHead->contLen;
continue;
void *pVnode = vnodeAcquire(pHead->vgId);
if (pVnode != NULL) {
int32_t code = vnodeWriteToRQueue(pVnode, pCont, pHead->contLen, TAOS_QTYPE_RPC, pMsg);
if (code == TSDB_CODE_SUCCESS) queuedMsgNum++;
vnodeRelease(pVnode);
}
// put message into queue
SVReadMsg *pRead = taosAllocateQitem(sizeof(SVReadMsg));
pRead->rpcMsg = *pMsg;
pRead->pCont = pCont;
pRead->contLen = pHead->contLen;
// next vnode
leftLen -= pHead->contLen;
pCont -= pHead->contLen;
queuedMsgNum++;
taosWriteQitem(queue, TAOS_QTYPE_RPC, pRead);
}
if (queuedMsgNum == 0) {
SRpcMsg rpcRsp = {.handle = pMsg->handle, .code = TSDB_CODE_VND_INVALID_VGROUP_ID};
rpcSendResponse(&rpcRsp);
rpcFreeCont(pMsg->pCont);
}
rpcFreeCont(pMsg->pCont);
}
void *dnodeAllocVReadQueue(void *pVnode) {
......@@ -162,50 +152,48 @@ void dnodeFreeVReadQueue(void *rqueue) {
void dnodeSendRpcVReadRsp(void *pVnode, SVReadMsg *pRead, int32_t code) {
SRpcMsg rpcRsp = {
.handle = pRead->rpcMsg.handle,
.handle = pRead->rpcHandle,
.pCont = pRead->rspRet.rsp,
.contLen = pRead->rspRet.len,
.code = code,
};
rpcSendResponse(&rpcRsp);
rpcFreeCont(pRead->rpcMsg.pCont);
vnodeRelease(pVnode);
}
void dnodeDispatchNonRspMsg(void *pVnode, SVReadMsg *pRead, int32_t code) {
rpcFreeCont(pRead->rpcMsg.pCont);
vnodeRelease(pVnode);
}
static void *dnodeProcessReadQueue(void *param) {
SVReadMsg *pReadMsg;
SVReadMsg *pRead;
int32_t qtype;
void * pVnode;
while (1) {
if (taosReadQitemFromQset(tsVReadQset, &qtype, (void **)&pReadMsg, &pVnode) == 0) {
if (taosReadQitemFromQset(tsVReadQset, &qtype, (void **)&pRead, &pVnode) == 0) {
dDebug("qset:%p dnode vread got no message from qset, exiting", tsVReadQset);
break;
}
dDebug("%p, msg:%s will be processed in vread queue, qtype:%d, msg:%p", pReadMsg->rpcMsg.ahandle,
taosMsg[pReadMsg->rpcMsg.msgType], qtype, pReadMsg);
dDebug("%p, msg:%p:%s will be processed in vread queue, qtype:%d", pRead->rpcAhandle, pRead,
taosMsg[pRead->msgType], qtype);
int32_t code = vnodeProcessRead(pVnode, pReadMsg);
int32_t code = vnodeProcessRead(pVnode, pRead);
if (qtype == TAOS_QTYPE_RPC && code != TSDB_CODE_QRY_NOT_READY) {
dnodeSendRpcVReadRsp(pVnode, pReadMsg, code);
dnodeSendRpcVReadRsp(pVnode, pRead, code);
} else {
if (code == TSDB_CODE_QRY_HAS_RSP) {
dnodeSendRpcVReadRsp(pVnode, pReadMsg, pReadMsg->rpcMsg.code);
dnodeSendRpcVReadRsp(pVnode, pRead, pRead->code);
} else { // code == TSDB_CODE_QRY_NOT_READY, do not return msg to client
assert(pReadMsg->rpcMsg.handle == NULL || (pReadMsg->rpcMsg.handle != NULL && pReadMsg->rpcMsg.msgType == 5));
dnodeDispatchNonRspMsg(pVnode, pReadMsg, code);
assert(pRead->rpcHandle == NULL || (pRead->rpcHandle != NULL && pRead->msgType == 5));
dnodeDispatchNonRspMsg(pVnode, pRead, code);
}
}
taosFreeQitem(pReadMsg);
taosFreeQitem(pRead);
}
return NULL;
......
......@@ -113,7 +113,7 @@ void dnodeDispatchToVWriteQueue(SRpcMsg *pRpcMsg) {
void *dnodeAllocVWriteQueue(void *pVnode) {
pthread_mutex_lock(&tsVWriteWP.mutex);
SVWriteWorker *pWorker = tsVWriteWP.worker + tsVWriteWP.nextId;
void *queue = taosOpenQueue();
taos_queue *queue = taosOpenQueue();
if (queue == NULL) {
pthread_mutex_unlock(&tsVWriteWP.mutex);
return NULL;
......@@ -207,8 +207,8 @@ static void *dnodeProcessVWriteQueue(void *param) {
bool forceFsync = false;
for (int32_t i = 0; i < numOfMsgs; ++i) {
taosGetQitem(pWorker->qall, &qtype, (void **)&pWrite);
dTrace("%p, msg:%p:%s will be processed in vwrite queue, qtype:%d version:%" PRIu64, pWrite->rpcAhandle, pWrite,
taosMsg[pWrite->pHead->msgType], qtype, pWrite->pHead->version);
dTrace("%p, msg:%p:%s will be processed in vwrite queue, qtype:%s hver:%" PRIu64, pWrite->rpcAhandle, pWrite,
taosMsg[pWrite->pHead->msgType], qtypeStr[qtype], pWrite->pHead->version);
pWrite->code = vnodeProcessWrite(pVnode, pWrite->pHead, qtype, &pWrite->rspRet);
if (pWrite->code <= 0) pWrite->processedCount = 1;
......
......@@ -27,16 +27,16 @@ typedef struct {
int32_t queryReqNum;
int32_t submitReqNum;
int32_t httpReqNum;
} SDnodeStatisInfo;
} SStatisInfo;
typedef enum {
TSDB_DNODE_RUN_STATUS_INITIALIZE,
TSDB_DNODE_RUN_STATUS_RUNING,
TSDB_DNODE_RUN_STATUS_STOPPED
} SDnodeRunStatus;
TSDB_RUN_STATUS_INITIALIZE,
TSDB_RUN_STATUS_RUNING,
TSDB_RUN_STATUS_STOPPED
} SRunStatus;
SDnodeRunStatus dnodeGetRunStatus();
SDnodeStatisInfo dnodeGetStatisInfo();
SRunStatus dnodeGetRunStatus();
SStatisInfo dnodeGetStatisInfo();
bool dnodeIsFirstDeploy();
bool dnodeIsMasterEp(char *ep);
......@@ -59,15 +59,15 @@ void dnodeSendRpcVWriteRsp(void *pVnode, void *param, int32_t code);
void *dnodeAllocVReadQueue(void *pVnode);
void dnodeFreeVReadQueue(void *rqueue);
int32_t dnodeAllocateMnodePqueue();
void dnodeFreeMnodePqueue();
int32_t dnodeAllocateMnodeRqueue();
void dnodeFreeMnodeRqueue();
int32_t dnodeAllocateMnodeWqueue();
void dnodeFreeMnodeWqueue();
void dnodeSendRpcMnodeWriteRsp(void *pMsg, int32_t code);
void dnodeReprocessMnodeWriteMsg(void *pMsg);
void dnodeDelayReprocessMnodeWriteMsg(void *pMsg);
int32_t dnodeAllocateMPeerQueue();
void dnodeFreeMPeerQueue();
int32_t dnodeAllocMReadQueue();
void dnodeFreeMReadQueue();
int32_t dnodeAllocMWritequeue();
void dnodeFreeMWritequeue();
void dnodeSendRpcMWriteRsp(void *pMsg, int32_t code);
void dnodeReprocessMWriteMsg(void *pMsg);
void dnodeDelayReprocessMWriteMsg(void *pMsg);
void dnodeSendStatusMsgToMnode();
......
......@@ -35,24 +35,26 @@ typedef struct {
} SMnodeRsp;
typedef struct SMnodeMsg {
SRpcMsg rpcMsg;
struct SAcctObj * pAcct;
struct SDnodeObj *pDnode;
struct SUserObj * pUser;
struct SDbObj * pDb;
struct SVgObj * pVgroup;
struct STableObj *pTable;
struct SSTableObj*pSTable;
SMnodeRsp rpcRsp;
int8_t received;
int8_t successed;
int8_t expected;
int8_t retry;
int32_t incomingTs;
int32_t code;
void * pObj;
struct SAcctObj * pAcct;
struct SDnodeObj *pDnode;
struct SUserObj * pUser;
struct SDbObj * pDb;
struct SVgObj * pVgroup;
struct STableObj *pTable;
struct SSuperTableObj *pSTable;
SRpcMsg rpcMsg;
char pCont[];
} SMnodeMsg;
void mnodeCreateMsg(SMnodeMsg *pMsg, SRpcMsg *rpcMsg);
void * mnodeCreateMsg(SRpcMsg *pRpcMsg);
int32_t mnodeInitMsg(SMnodeMsg *pMsg);
void mnodeCleanupMsg(SMnodeMsg *pMsg);
......
......@@ -85,6 +85,7 @@ extern const int32_t TYPE_BYTES[11];
#define TSDB_DATA_SMALLINT_NULL 0x8000
#define TSDB_DATA_INT_NULL 0x80000000L
#define TSDB_DATA_BIGINT_NULL 0x8000000000000000L
#define TSDB_DATA_TIMESTAMP_NULL TSDB_DATA_BIGINT_NULL
#define TSDB_DATA_FLOAT_NULL 0x7FF00000 // it is an NAN
#define TSDB_DATA_DOUBLE_NULL 0x7FFFFF0000000000L // an NAN
......@@ -361,6 +362,10 @@ void tsDataSwap(void *pLeft, void *pRight, int32_t type, int32_t size, void* buf
#define TSDB_MAX_WAL_LEVEL 2
#define TSDB_DEFAULT_WAL_LEVEL 1
#define TSDB_MIN_DB_UPDATE 0
#define TSDB_MAX_DB_UPDATE 1
#define TSDB_DEFAULT_DB_UPDATE_OPTION 0
#define TSDB_MIN_FSYNC_PERIOD 0
#define TSDB_MAX_FSYNC_PERIOD 180000 // millisecond
#define TSDB_DEFAULT_FSYNC_PERIOD 3000 // three second
......@@ -423,41 +428,51 @@ void tsDataSwap(void *pLeft, void *pRight, int32_t type, int32_t size, void* buf
#define TSDB_PORT_SYNC 10
#define TSDB_PORT_HTTP 11
#define TSDB_PORT_ARBITRATOR 12
#define TSDB_PORT_DNODESHELL 0
#define TSDB_PORT_DNODEDNODE 5
#define TSDB_PORT_SYNC 10
#define TSDB_PORT_HTTP 11
#define TSDB_PORT_ARBITRATOR 12
#define TSDB_MAX_WAL_SIZE (1024*1024)
#define TAOS_QTYPE_RPC 0
#define TAOS_QTYPE_FWD 1
#define TAOS_QTYPE_WAL 2
#define TAOS_QTYPE_CQ 3
#define TAOS_QTYPE_QUERY 4
typedef enum {
TAOS_QTYPE_RPC = 0,
TAOS_QTYPE_FWD = 1,
TAOS_QTYPE_WAL = 2,
TAOS_QTYPE_CQ = 3,
TAOS_QTYPE_QUERY = 4
} EQType;
typedef enum {
TSDB_SUPER_TABLE = 0, // super table
TSDB_CHILD_TABLE = 1, // table created from super table
TSDB_NORMAL_TABLE = 2, // ordinary table
TSDB_STREAM_TABLE = 3, // table created from stream computing
TSDB_TABLE_MAX = 4
TSDB_SUPER_TABLE = 0, // super table
TSDB_CHILD_TABLE = 1, // table created from super table
TSDB_NORMAL_TABLE = 2, // ordinary table
TSDB_STREAM_TABLE = 3, // table created from stream computing
TSDB_TABLE_MAX = 4
} ETableType;
typedef enum {
TSDB_MOD_MNODE,
TSDB_MOD_HTTP,
TSDB_MOD_MONITOR,
TSDB_MOD_MQTT,
TSDB_MOD_MAX
TSDB_MOD_MNODE = 0,
TSDB_MOD_HTTP = 1,
TSDB_MOD_MONITOR = 2,
TSDB_MOD_MQTT = 3,
TSDB_MOD_MAX = 4
} EModuleType;
typedef enum {
TSDB_CHECK_ITEM_NETWORK,
TSDB_CHECK_ITEM_MEM,
TSDB_CHECK_ITEM_CPU,
TSDB_CHECK_ITEM_DISK,
TSDB_CHECK_ITEM_OS,
TSDB_CHECK_ITEM_ACCESS,
TSDB_CHECK_ITEM_VERSION,
TSDB_CHECK_ITEM_DATAFILE,
TSDB_CHECK_ITEM_MAX
} ECheckItemType;
typedef enum {
TSDB_CHECK_ITEM_NETWORK,
TSDB_CHECK_ITEM_MEM,
TSDB_CHECK_ITEM_CPU,
TSDB_CHECK_ITEM_DISK,
TSDB_CHECK_ITEM_OS,
TSDB_CHECK_ITEM_ACCESS,
TSDB_CHECK_ITEM_VERSION,
TSDB_CHECK_ITEM_DATAFILE,
TSDB_CHECK_ITEM_MAX
} ECheckItemType;
extern char *qtypeStr[];
#ifdef __cplusplus
}
......
......@@ -181,6 +181,7 @@ TAOS_DEFINE_ERROR(TSDB_CODE_MND_INVALID_DB, 0, 0x0383, "Invalid da
TAOS_DEFINE_ERROR(TSDB_CODE_MND_MONITOR_DB_FORBIDDEN, 0, 0x0384, "Cannot delete monitor database")
TAOS_DEFINE_ERROR(TSDB_CODE_MND_TOO_MANY_DATABASES, 0, 0x0385, "Too many databases for account")
TAOS_DEFINE_ERROR(TSDB_CODE_MND_DB_IN_DROPPING, 0, 0x0386, "Database not available")
TAOS_DEFINE_ERROR(TSDB_CODE_MND_VGROUP_NOT_READY, 0, 0x0387, "Database unsynced")
// dnode
TAOS_DEFINE_ERROR(TSDB_CODE_DND_MSG_NOT_PROCESSED, 0, 0x0400, "Message not processed")
......@@ -236,7 +237,7 @@ TAOS_DEFINE_ERROR(TSDB_CODE_QRY_NOT_READY, 0, 0x0707, "Query not
TAOS_DEFINE_ERROR(TSDB_CODE_QRY_HAS_RSP, 0, 0x0708, "Query should response")
TAOS_DEFINE_ERROR(TSDB_CODE_QRY_IN_EXEC, 0, 0x0709, "Multiple retrieval of this query")
TAOS_DEFINE_ERROR(TSDB_CODE_QRY_TOO_MANY_TIMEWINDOW, 0, 0x070A, "Too many time window in query")
TAOS_DEFINE_ERROR(TSDB_CODE_QRY_NOT_ENOUGH_BUFFER, 0, 0x070B, "Query buffer limit has reached")
TAOS_DEFINE_ERROR(TSDB_CODE_QRY_NOT_ENOUGH_BUFFER, 0, 0x070B, "Query buffer limit has reached")
// grant
TAOS_DEFINE_ERROR(TSDB_CODE_GRANT_EXPIRED, 0, 0x0800, "License expired")
......@@ -260,6 +261,7 @@ TAOS_DEFINE_ERROR(TSDB_CODE_SYN_INVALID_VERSION, 0, 0x0902, "Invalid Sy
// wal
TAOS_DEFINE_ERROR(TSDB_CODE_WAL_APP_ERROR, 0, 0x1000, "Unexpected generic error in wal")
TAOS_DEFINE_ERROR(TSDB_CODE_WAL_FILE_CORRUPTED, 0, 0x1001, "WAL file is corrupted")
TAOS_DEFINE_ERROR(TSDB_CODE_WAL_SIZE_LIMIT, 0, 0x1002, "WAL size exceeds limit")
// http
TAOS_DEFINE_ERROR(TSDB_CODE_HTTP_SERVER_OFFLINE, 0, 0x1100, "http server is not onlin")
......
......@@ -544,6 +544,8 @@ typedef struct {
int8_t replications;
int8_t quorum;
int8_t ignoreExist;
int8_t update;
int8_t reserve[9];
} SCreateDbMsg, SAlterDbMsg;
typedef struct {
......@@ -654,7 +656,8 @@ typedef struct {
int8_t replications;
int8_t wals;
int8_t quorum;
int8_t reserved[16];
int8_t update;
int8_t reserved[15];
} SVnodeCfg;
typedef struct {
......
......@@ -24,7 +24,7 @@ extern "C" {
typedef int32_t (*FCqWrite)(void *ahandle, void *pHead, int32_t qtype, void *pMsg);
typedef struct {
int vgId;
int32_t vgId;
char user[TSDB_USER_LEN];
char pass[TSDB_PASSWORD_LEN];
char db[TSDB_DB_NAME_LEN];
......@@ -42,12 +42,12 @@ void cqStart(void *handle);
void cqStop(void *handle);
// cqCreate is called by TSDB to start an instance of CQ
void *cqCreate(void *handle, uint64_t uid, int sid, char *sqlStr, STSchema *pSchema);
void *cqCreate(void *handle, uint64_t uid, int32_t sid, char *sqlStr, STSchema *pSchema);
// cqDrop is called by TSDB to stop an instance of CQ, handle is the return value of cqCreate
void cqDrop(void *handle);
extern int cqDebugFlag;
extern int32_t cqDebugFlag;
#ifdef __cplusplus
......
......@@ -83,13 +83,13 @@ void rpcClose(void *);
void *rpcMallocCont(int contLen);
void rpcFreeCont(void *pCont);
void *rpcReallocCont(void *ptr, int contLen);
void rpcSendRequest(void *thandle, const SRpcEpSet *pEpSet, SRpcMsg *pMsg);
int64_t rpcSendRequest(void *thandle, const SRpcEpSet *pEpSet, SRpcMsg *pMsg);
void rpcSendResponse(const SRpcMsg *pMsg);
void rpcSendRedirectRsp(void *pConn, const SRpcEpSet *pEpSet);
int rpcGetConnInfo(void *thandle, SRpcConnInfo *pInfo);
void rpcSendRecv(void *shandle, SRpcEpSet *pEpSet, SRpcMsg *pReq, SRpcMsg *pRsp);
int rpcReportProgress(void *pConn, char *pCont, int contLen);
void rpcCancelRequest(void *pContext);
void rpcCancelRequest(int64_t rid);
#ifdef __cplusplus
}
......
......@@ -65,6 +65,7 @@ typedef struct {
int32_t maxRowsPerFileBlock; // maximum rows per file block
int8_t precision;
int8_t compression;
int8_t update;
} STsdbCfg;
// --------- TSDB REPOSITORY USAGE STATISTICS
......
......@@ -51,9 +51,9 @@ typedef struct {
} SSyncCfg;
typedef struct {
int selfIndex;
uint32_t nodeId[TAOS_SYNC_MAX_REPLICA];
int role[TAOS_SYNC_MAX_REPLICA];
int32_t selfIndex;
uint32_t nodeId[TAOS_SYNC_MAX_REPLICA];
int32_t role[TAOS_SYNC_MAX_REPLICA];
} SNodesRole;
/*
......@@ -83,48 +83,47 @@ typedef void (*FNotifyRole)(void *ahandle, int8_t role);
typedef void (*FNotifyFlowCtrl)(void *ahandle, int32_t mseconds);
// when data file is synced successfully, notity app
typedef int (*FNotifyFileSynced)(void *ahandle, uint64_t fversion);
typedef int32_t (*FNotifyFileSynced)(void *ahandle, uint64_t fversion);
typedef struct {
int32_t vgId; // vgroup ID
uint64_t version; // initial version
SSyncCfg syncCfg; // configuration from mgmt
char path[128]; // path to the file
void *ahandle; // handle provided by APP
FGetFileInfo getFileInfo;
FGetWalInfo getWalInfo;
FWriteToCache writeToCache;
FConfirmForward confirmForward;
FNotifyRole notifyRole;
FNotifyFlowCtrl notifyFlowCtrl;
int32_t vgId; // vgroup ID
uint64_t version; // initial version
SSyncCfg syncCfg; // configuration from mgmt
char path[128]; // path to the file
void * ahandle; // handle provided by APP
FGetFileInfo getFileInfo;
FGetWalInfo getWalInfo;
FWriteToCache writeToCache;
FConfirmForward confirmForward;
FNotifyRole notifyRole;
FNotifyFlowCtrl notifyFlowCtrl;
FNotifyFileSynced notifyFileSynced;
} SSyncInfo;
typedef void* tsync_h;
typedef void *tsync_h;
int32_t syncInit();
void syncCleanUp();
tsync_h syncStart(const SSyncInfo *);
void syncStop(tsync_h shandle);
int32_t syncReconfig(tsync_h shandle, const SSyncCfg *);
int32_t syncForwardToPeer(tsync_h shandle, void *pHead, void *mhandle, int qtype);
void syncConfirmForward(tsync_h shandle, uint64_t version, int32_t code);
void syncRecover(tsync_h shandle); // recover from other nodes:
int syncGetNodesRole(tsync_h shandle, SNodesRole *);
int64_t syncStart(const SSyncInfo *);
void syncStop(int64_t rid);
int32_t syncReconfig(int64_t rid, const SSyncCfg *);
int32_t syncForwardToPeer(int64_t rid, void *pHead, void *mhandle, int32_t qtype);
void syncConfirmForward(int64_t rid, uint64_t version, int32_t code);
void syncRecover(int64_t rid); // recover from other nodes:
int32_t syncGetNodesRole(int64_t rid, SNodesRole *);
extern char *syncRole[];
extern char *syncRole[];
//global configurable parameters
extern int tsMaxSyncNum;
extern int tsSyncTcpThreads;
extern int tsMaxWatchFiles;
extern int tsSyncTimer;
extern int tsMaxFwdInfo;
extern int sDebugFlag;
extern char tsArbitrator[];
extern uint16_t tsSyncPort;
extern int32_t tsMaxSyncNum;
extern int32_t tsSyncTcpThreads;
extern int32_t tsMaxWatchFiles;
extern int32_t tsSyncTimer;
extern int32_t tsMaxFwdInfo;
extern int32_t sDebugFlag;
extern char tsArbitrator[];
extern uint16_t tsSyncPort;
#ifdef __cplusplus
}
......
......@@ -16,7 +16,6 @@
#ifndef TDENGINE_TTOKENDEF_H
#define TDENGINE_TTOKENDEF_H
#define TK_ID 1
#define TK_BOOL 2
#define TK_TINYINT 3
......@@ -114,114 +113,116 @@
#define TK_FSYNC 95
#define TK_COMP 96
#define TK_PRECISION 97
#define TK_LP 98
#define TK_RP 99
#define TK_TAGS 100
#define TK_USING 101
#define TK_AS 102
#define TK_COMMA 103
#define TK_NULL 104
#define TK_SELECT 105
#define TK_UNION 106
#define TK_ALL 107
#define TK_FROM 108
#define TK_VARIABLE 109
#define TK_INTERVAL 110
#define TK_FILL 111
#define TK_SLIDING 112
#define TK_ORDER 113
#define TK_BY 114
#define TK_ASC 115
#define TK_DESC 116
#define TK_GROUP 117
#define TK_HAVING 118
#define TK_LIMIT 119
#define TK_OFFSET 120
#define TK_SLIMIT 121
#define TK_SOFFSET 122
#define TK_WHERE 123
#define TK_NOW 124
#define TK_RESET 125
#define TK_QUERY 126
#define TK_ADD 127
#define TK_COLUMN 128
#define TK_TAG 129
#define TK_CHANGE 130
#define TK_SET 131
#define TK_KILL 132
#define TK_CONNECTION 133
#define TK_STREAM 134
#define TK_COLON 135
#define TK_ABORT 136
#define TK_AFTER 137
#define TK_ATTACH 138
#define TK_BEFORE 139
#define TK_BEGIN 140
#define TK_CASCADE 141
#define TK_CLUSTER 142
#define TK_CONFLICT 143
#define TK_COPY 144
#define TK_DEFERRED 145
#define TK_DELIMITERS 146
#define TK_DETACH 147
#define TK_EACH 148
#define TK_END 149
#define TK_EXPLAIN 150
#define TK_FAIL 151
#define TK_FOR 152
#define TK_IGNORE 153
#define TK_IMMEDIATE 154
#define TK_INITIALLY 155
#define TK_INSTEAD 156
#define TK_MATCH 157
#define TK_KEY 158
#define TK_OF 159
#define TK_RAISE 160
#define TK_REPLACE 161
#define TK_RESTRICT 162
#define TK_ROW 163
#define TK_STATEMENT 164
#define TK_TRIGGER 165
#define TK_VIEW 166
#define TK_COUNT 167
#define TK_SUM 168
#define TK_AVG 169
#define TK_MIN 170
#define TK_MAX 171
#define TK_FIRST 172
#define TK_LAST 173
#define TK_TOP 174
#define TK_BOTTOM 175
#define TK_STDDEV 176
#define TK_PERCENTILE 177
#define TK_APERCENTILE 178
#define TK_LEASTSQUARES 179
#define TK_HISTOGRAM 180
#define TK_DIFF 181
#define TK_SPREAD 182
#define TK_TWA 183
#define TK_INTERP 184
#define TK_LAST_ROW 185
#define TK_RATE 186
#define TK_IRATE 187
#define TK_SUM_RATE 188
#define TK_SUM_IRATE 189
#define TK_AVG_RATE 190
#define TK_AVG_IRATE 191
#define TK_TBID 192
#define TK_SEMI 193
#define TK_NONE 194
#define TK_PREV 195
#define TK_LINEAR 196
#define TK_IMPORT 197
#define TK_METRIC 198
#define TK_TBNAME 199
#define TK_JOIN 200
#define TK_METRICS 201
#define TK_STABLE 202
#define TK_INSERT 203
#define TK_INTO 204
#define TK_VALUES 205
#define TK_UPDATE 98
#define TK_LP 99
#define TK_RP 100
#define TK_TAGS 101
#define TK_USING 102
#define TK_AS 103
#define TK_COMMA 104
#define TK_NULL 105
#define TK_SELECT 106
#define TK_UNION 107
#define TK_ALL 108
#define TK_FROM 109
#define TK_VARIABLE 110
#define TK_INTERVAL 111
#define TK_FILL 112
#define TK_SLIDING 113
#define TK_ORDER 114
#define TK_BY 115
#define TK_ASC 116
#define TK_DESC 117
#define TK_GROUP 118
#define TK_HAVING 119
#define TK_LIMIT 120
#define TK_OFFSET 121
#define TK_SLIMIT 122
#define TK_SOFFSET 123
#define TK_WHERE 124
#define TK_NOW 125
#define TK_RESET 126
#define TK_QUERY 127
#define TK_ADD 128
#define TK_COLUMN 129
#define TK_TAG 130
#define TK_CHANGE 131
#define TK_SET 132
#define TK_KILL 133
#define TK_CONNECTION 134
#define TK_STREAM 135
#define TK_COLON 136
#define TK_ABORT 137
#define TK_AFTER 138
#define TK_ATTACH 139
#define TK_BEFORE 140
#define TK_BEGIN 141
#define TK_CASCADE 142
#define TK_CLUSTER 143
#define TK_CONFLICT 144
#define TK_COPY 145
#define TK_DEFERRED 146
#define TK_DELIMITERS 147
#define TK_DETACH 148
#define TK_EACH 149
#define TK_END 150
#define TK_EXPLAIN 151
#define TK_FAIL 152
#define TK_FOR 153
#define TK_IGNORE 154
#define TK_IMMEDIATE 155
#define TK_INITIALLY 156
#define TK_INSTEAD 157
#define TK_MATCH 158
#define TK_KEY 159
#define TK_OF 160
#define TK_RAISE 161
#define TK_REPLACE 162
#define TK_RESTRICT 163
#define TK_ROW 164
#define TK_STATEMENT 165
#define TK_TRIGGER 166
#define TK_VIEW 167
#define TK_COUNT 168
#define TK_SUM 169
#define TK_AVG 170
#define TK_MIN 171
#define TK_MAX 172
#define TK_FIRST 173
#define TK_LAST 174
#define TK_TOP 175
#define TK_BOTTOM 176
#define TK_STDDEV 177
#define TK_PERCENTILE 178
#define TK_APERCENTILE 179
#define TK_LEASTSQUARES 180
#define TK_HISTOGRAM 181
#define TK_DIFF 182
#define TK_SPREAD 183
#define TK_TWA 184
#define TK_INTERP 185
#define TK_LAST_ROW 186
#define TK_RATE 187
#define TK_IRATE 188
#define TK_SUM_RATE 189
#define TK_SUM_IRATE 190
#define TK_AVG_RATE 191
#define TK_AVG_IRATE 192
#define TK_TBID 193
#define TK_SEMI 194
#define TK_NONE 195
#define TK_PREV 196
#define TK_LINEAR 197
#define TK_IMPORT 198
#define TK_METRIC 199
#define TK_TBNAME 200
#define TK_JOIN 201
#define TK_METRICS 202
#define TK_STABLE 203
#define TK_INSERT 204
#define TK_INTO 205
#define TK_VALUES 206
#define TK_SPACE 300
#define TK_COMMENT 301
......
......@@ -25,9 +25,15 @@ typedef enum {
TAOS_WAL_FSYNC = 2
} EWalType;
typedef enum {
TAOS_WAL_NOT_KEEP = 0,
TAOS_WAL_KEEP = 1
} EWalKeep;
typedef struct {
int8_t msgType;
int8_t reserved[3];
int8_t sver;
int8_t reserved[2];
int32_t len;
uint64_t version;
uint32_t signature;
......@@ -36,11 +42,10 @@ typedef struct {
} SWalHead;
typedef struct {
int32_t vgId;
int32_t fsyncPeriod; // millisecond
int8_t walLevel; // wal level
int8_t wals; // number of WAL files;
int8_t keep; // keep the wal file when closed
int32_t vgId;
int32_t fsyncPeriod; // millisecond
EWalType walLevel; // wal level
EWalKeep keep; // keep the wal file when closed
} SWalCfg;
typedef void * twalh; // WAL HANDLE
......@@ -54,11 +59,12 @@ int32_t walAlter(twalh pWal, SWalCfg *pCfg);
void walStop(twalh);
void walClose(twalh);
int32_t walRenew(twalh);
void walRemoveOldFiles(twalh);
int32_t walWrite(twalh, SWalHead *);
void walFsync(twalh, bool forceFsync);
int32_t walRestore(twalh, void *pVnode, FWalWrite writeFp);
int32_t walGetWalFile(twalh, char *fileName, int64_t *fileId);
int64_t walGetVersion(twalh);
uint64_t walGetVersion(twalh);
#ifdef __cplusplus
}
......
......@@ -37,10 +37,15 @@ typedef struct {
} SRspRet;
typedef struct {
SRspRet rspRet;
void * pCont;
int32_t code;
int32_t contLen;
SRpcMsg rpcMsg;
void * rpcHandle;
void * rpcAhandle;
void * qhandle;
int8_t qtype;
int8_t msgType;
SRspRet rspRet;
char pCont[];
} SVReadMsg;
typedef struct {
......@@ -62,13 +67,11 @@ int32_t vnodeAlter(void *pVnode, SCreateVnodeMsg *pVnodeCfg);
int32_t vnodeClose(int32_t vgId);
void* vnodeAcquire(int32_t vgId); // add refcount
void* vnodeAcquireRqueue(int32_t vgId); // add refCount, get read queue
void vnodeRelease(void *pVnode); // dec refCount
void* vnodeGetWal(void *pVnode);
int32_t vnodeWriteToWQueue(void *vparam, void *wparam, int32_t qtype, void *rparam);
int32_t vnodeProcessWrite(void *vparam, void *wparam, int32_t qtype, void *rparam);
int32_t vnodeCheckWrite(void *pVnode);
int32_t vnodeGetVnodeList(int32_t vnodeList[], int32_t *numOfVnodes);
void vnodeBuildStatusMsg(void *param);
void vnodeConfirmForward(void *param, uint64_t version, int32_t code);
......@@ -77,8 +80,8 @@ void vnodeSetAccess(SVgroupAccess *pAccess, int32_t numOfVnodes);
int32_t vnodeInitResources();
void vnodeCleanupResources();
int32_t vnodeProcessRead(void *pVnode, SVReadMsg *pReadMsg);
int32_t vnodeCheckRead(void *pVnode);
int32_t vnodeWriteToRQueue(void *vparam, void *pCont, int32_t contLen, int8_t qtype, void *rparam);
int32_t vnodeProcessRead(void *pVnode, SVReadMsg *pRead);
#ifdef __cplusplus
}
......
......@@ -60,7 +60,7 @@ typedef struct SShellArguments {
extern void shellParseArgument(int argc, char* argv[], SShellArguments* arguments);
extern TAOS* shellInit(SShellArguments* args);
extern void* shellLoopQuery(void* arg);
extern void taos_error(TAOS_RES* tres);
extern void taos_error(TAOS_RES* tres, int64_t st);
extern int regex_match(const char* s, const char* reg, int cflags);
void shellReadCommand(TAOS* con, char command[]);
int32_t shellRunCommand(TAOS* con, char* command);
......
......@@ -229,8 +229,8 @@ void shellReadCommand(TAOS *con, char *command) {
printf("\n");
if (isReadyGo(&cmd)) {
sprintf(command, "%s%s", cmd.buffer, cmd.command);
taosTFree(cmd.buffer);
taosTFree(cmd.command);
tfree(cmd.buffer);
tfree(cmd.command);
return;
} else {
updateBuffer(&cmd);
......
......@@ -193,7 +193,7 @@ int32_t shellRunCommand(TAOS* con, char* command) {
history.hist[(history.hend + MAX_HISTORY_SIZE - 1) % MAX_HISTORY_SIZE] == NULL ||
strcmp(command, history.hist[(history.hend + MAX_HISTORY_SIZE - 1) % MAX_HISTORY_SIZE]) != 0) {
if (history.hist[history.hend] != NULL) {
taosTFree(history.hist[history.hend]);
tfree(history.hist[history.hend]);
}
history.hist[history.hend] = strdup(command);
......@@ -296,7 +296,7 @@ void shellRunCommandOnServer(TAOS *con, char command[]) {
TAOS_RES* pSql = taos_query_h(con, command, &result);
if (taos_errno(pSql)) {
taos_error(pSql);
taos_error(pSql, st);
return;
}
......@@ -770,7 +770,7 @@ void read_history() {
return;
}
while ((read_size = taosGetline(&line, &line_size, f)) != -1) {
while ((read_size = tgetline(&line, &line_size, f)) != -1) {
line[read_size - 1] = '\0';
history.hist[history.hend] = strdup(line);
......@@ -800,16 +800,17 @@ void write_history() {
for (int i = history.hstart; i != history.hend;) {
if (history.hist[i] != NULL) {
fprintf(f, "%s\n", history.hist[i]);
taosTFree(history.hist[i]);
tfree(history.hist[i]);
}
i = (i + 1) % MAX_HISTORY_SIZE;
}
fclose(f);
}
void taos_error(TAOS_RES *tres) {
void taos_error(TAOS_RES *tres, int64_t st) {
int64_t et = taosGetTimestampUs();
atomic_store_ptr(&result, 0);
fprintf(stderr, "\nDB error: %s\n", taos_errstr(tres));
fprintf(stderr, "\nDB error: %s (%.6fs)\n", taos_errstr(tres), (et - st) / 1E6);
taos_free_result(tres);
}
......@@ -853,7 +854,7 @@ void source_file(TAOS *con, char *fptr) {
return;
}
while ((read_len = taosGetline(&line, &line_len, f)) != -1) {
while ((read_len = tgetline(&line, &line_len, f)) != -1) {
if (read_len >= tsMaxSQLStringLen) continue;
line[--read_len] = '\0';
......
......@@ -232,8 +232,8 @@ void shellReadCommand(TAOS *con, char *command) {
printf("\n");
if (isReadyGo(&cmd)) {
sprintf(command, "%s%s", cmd.buffer, cmd.command);
taosTFree(cmd.buffer);
taosTFree(cmd.command);
tfree(cmd.buffer);
tfree(cmd.command);
return;
} else {
updateBuffer(&cmd);
......@@ -351,7 +351,7 @@ void *shellLoopQuery(void *arg) {
reset_terminal_mode();
} while (shellRunCommand(con, command) == 0);
taosTFree(command);
tfree(command);
exitShell();
pthread_cleanup_pop(1);
......
......@@ -793,9 +793,9 @@ int main(int argc, char *argv[]) {
(ntables * nrecords_per_table) / (t * nrecords_per_request),
t * 1000);
printf("Spent %.4f seconds to insert %d records with %d record(s) per request: %.2f records/second\n",
t, ntables * nrecords_per_table, nrecords_per_request,
ntables * nrecords_per_table / t);
printf("Spent %.4f seconds to insert %lld records with %d record(s) per request: %.2f records/second\n",
t, (long long int)ntables * nrecords_per_table, nrecords_per_request,
((long long int)ntables * nrecords_per_table) / t);
for (int i = 0; i < threads; i++) {
info *t_info = infos + i;
......@@ -955,7 +955,7 @@ void querySqlFile(TAOS* taos, char* sqlFile)
double t = getCurrentTime();
while ((read_len = taosGetline(&line, &line_len, fp)) != -1) {
while ((read_len = tgetline(&line, &line_len, fp)) != -1) {
if (read_len >= MAX_SQL_SIZE) continue;
line[--read_len] = '\0';
......
......@@ -89,7 +89,7 @@ typedef struct STableObj {
int8_t type;
} STableObj;
typedef struct SSuperTableObj {
typedef struct SSTableObj {
STableObj info;
int8_t reserved0[9]; // for fill struct STableObj to 4byte align
int16_t nextColId;
......@@ -104,7 +104,7 @@ typedef struct SSuperTableObj {
int32_t numOfTables;
SSchema * schema;
void * vgHash;
} SSuperTableObj;
} SSTableObj;
typedef struct {
STableObj info;
......@@ -122,8 +122,8 @@ typedef struct {
int32_t refCount;
char* sql; //used by normal table
SSchema* schema; //used by normal table
SSuperTableObj *superTable;
} SChildTableObj;
SSTableObj*superTable;
} SCTableObj;
typedef struct {
int32_t dnodeId;
......@@ -172,7 +172,8 @@ typedef struct {
int8_t walLevel;
int8_t replications;
int8_t quorum;
int8_t reserved[12];
int8_t update;
int8_t reserved[11];
} SDbCfg;
typedef struct SDbObj {
......
......@@ -29,8 +29,8 @@ int64_t mnodeGetChildTableNum();
void * mnodeGetTable(char *tableId);
void mnodeIncTableRef(void *pTable);
void mnodeDecTableRef(void *pTable);
void * mnodeGetNextChildTable(void *pIter, SChildTableObj **pTable);
void * mnodeGetNextSuperTable(void *pIter, SSuperTableObj **pTable);
void * mnodeGetNextChildTable(void *pIter, SCTableObj **pTable);
void * mnodeGetNextSuperTable(void *pIter, SSTableObj **pTable);
void mnodeDropAllChildTables(SDbObj *pDropDb);
void mnodeDropAllSuperTables(SDbObj *pDropDb);
void mnodeDropAllChildTablesInVgroups(SVgObj *pVgroup);
......
......@@ -43,8 +43,8 @@ void mnodeDropVgroup(SVgObj *pVgroup, void *ahandle);
void mnodeAlterVgroup(SVgObj *pVgroup, void *ahandle);
int32_t mnodeGetAvailableVgroup(struct SMnodeMsg *pMsg, SVgObj **pVgroup, int32_t *sid);
void mnodeAddTableIntoVgroup(SVgObj *pVgroup, SChildTableObj *pTable);
void mnodeRemoveTableFromVgroup(SVgObj *pVgroup, SChildTableObj *pTable);
void mnodeAddTableIntoVgroup(SVgObj *pVgroup, SCTableObj *pTable);
void mnodeRemoveTableFromVgroup(SVgObj *pVgroup, SCTableObj *pTable);
void mnodeSendDropVnodeMsg(int32_t vgId, SRpcEpSet *epSet, void *ahandle);
void mnodeSendCreateVgroupMsg(SVgObj *pVgroup, void *ahandle);
void mnodeSendAlterVgroupMsg(SVgObj *pVgroup);
......
......@@ -34,7 +34,7 @@ static int32_t mnodeCreateRootAcct();
static int32_t mnodeAcctActionDestroy(SSdbOper *pOper) {
SAcctObj *pAcct = pOper->pObj;
pthread_mutex_destroy(&pAcct->mutex);
taosTFree(pOper->pObj);
tfree(pOper->pObj);
return TSDB_CODE_SUCCESS;
}
......
......@@ -33,7 +33,7 @@ static int32_t mnodeGetClusterMeta(STableMetaMsg *pMeta, SShowObj *pShow, void *
static int32_t mnodeRetrieveClusters(SShowObj *pShow, char *data, int32_t rows, void *pConn);
static int32_t mnodeClusterActionDestroy(SSdbOper *pOper) {
taosTFree(pOper->pObj);
tfree(pOper->pObj);
return TSDB_CODE_SUCCESS;
}
......
......@@ -52,8 +52,8 @@ static int32_t mnodeProcessDropDbMsg(SMnodeMsg *pMsg);
static void mnodeDestroyDb(SDbObj *pDb) {
pthread_mutex_destroy(&pDb->mutex);
taosTFree(pDb->vgList);
taosTFree(pDb);
tfree(pDb->vgList);
tfree(pDb);
}
static int32_t mnodeDbActionDestroy(SSdbOper *pOper) {
......@@ -319,6 +319,11 @@ static int32_t mnodeCheckDbCfg(SDbCfg *pCfg) {
}
#endif
if (pCfg->update < TSDB_MIN_DB_UPDATE || pCfg->update > TSDB_MAX_DB_UPDATE) {
mError("invalid db option update:%d valid range: [%d, %d]", pCfg->update, TSDB_MIN_DB_UPDATE, TSDB_MAX_DB_UPDATE);
return TSDB_CODE_MND_INVALID_DB_OPTION;
}
return TSDB_CODE_SUCCESS;
}
......@@ -339,6 +344,7 @@ static void mnodeSetDefaultDbCfg(SDbCfg *pCfg) {
if (pCfg->walLevel < 0) pCfg->walLevel = tsWAL;
if (pCfg->replications < 0) pCfg->replications = tsReplications;
if (pCfg->quorum < 0) pCfg->quorum = tsQuorum;
if (pCfg->update < 0) pCfg->update = tsUpdate;
}
static int32_t mnodeCreateDbCb(SMnodeMsg *pMsg, int32_t code) {
......@@ -391,14 +397,15 @@ static int32_t mnodeCreateDb(SAcctObj *pAcct, SCreateDbMsg *pCreate, SMnodeMsg *
.compression = pCreate->compression,
.walLevel = pCreate->walLevel,
.replications = pCreate->replications,
.quorum = pCreate->quorum
.quorum = pCreate->quorum,
.update = pCreate->update
};
mnodeSetDefaultDbCfg(&pDb->cfg);
code = mnodeCheckDbCfg(&pDb->cfg);
if (code != TSDB_CODE_SUCCESS) {
taosTFree(pDb);
tfree(pDb);
return code;
}
......@@ -610,6 +617,12 @@ static int32_t mnodeGetDbMeta(STableMetaMsg *pMeta, SShowObj *pShow, void *pConn
pSchema[cols].bytes = htons(pShow->bytes[cols]);
cols++;
pShow->bytes[cols] = 1;
pSchema[cols].type = TSDB_DATA_TYPE_TINYINT;
strcpy(pSchema[cols].name, "update");
pSchema[cols].bytes = htons(pShow->bytes[cols]);
cols++;
pShow->bytes[cols] = 10 + VARSTR_HEADER_SIZE;
pSchema[cols].type = TSDB_DATA_TYPE_BINARY;
strcpy(pSchema[cols].name, "status");
......@@ -749,6 +762,10 @@ static int32_t mnodeRetrieveDbs(SShowObj *pShow, char *data, int32_t rows, void
STR_WITH_SIZE_TO_VARSTR(pWrite, prec, 2);
cols++;
pWrite = data + pShow->offset[cols] * rows + pShow->bytes[cols] * numOfRows;
*(int8_t *)pWrite = pDb->cfg.update;
cols++;
pWrite = data + pShow->offset[cols] * rows + pShow->bytes[cols] * numOfRows;
if (pDb->status == TSDB_DB_STATUS_READY) {
const char *src = "ready";
......@@ -848,6 +865,7 @@ static SDbCfg mnodeGetAlterDbOption(SDbObj *pDb, SAlterDbMsg *pAlter) {
int8_t replications = pAlter->replications;
int8_t quorum = pAlter->quorum;
int8_t precision = pAlter->precision;
int8_t update = pAlter->update;
terrno = TSDB_CODE_SUCCESS;
......@@ -950,6 +968,16 @@ static SDbCfg mnodeGetAlterDbOption(SDbObj *pDb, SAlterDbMsg *pAlter) {
newCfg.quorum = quorum;
}
if (update >= 0 && update != pDb->cfg.update) {
#if 0
mDebug("db:%s, update:%d change to %d", pDb->name, pDb->cfg.update, update);
newCfg.update = update;
#else
mError("db:%s, can't alter update option", pDb->name);
terrno = TSDB_CODE_MND_INVALID_DB_OPTION;
#endif
}
return newCfg;
}
......
......@@ -88,7 +88,7 @@ static char* offlineReason[] = {
};
static int32_t mnodeDnodeActionDestroy(SSdbOper *pOper) {
taosTFree(pOper->pObj);
tfree(pOper->pObj);
return TSDB_CODE_SUCCESS;
}
......@@ -655,7 +655,7 @@ static int32_t mnodeCreateDnode(char *ep, SMnodeMsg *pMsg) {
int32_t code = sdbInsertRow(&oper);
if (code != TSDB_CODE_SUCCESS && code != TSDB_CODE_MND_ACTION_IN_PROGRESS) {
int dnodeId = pDnode->dnodeId;
taosTFree(pDnode);
tfree(pDnode);
mError("failed to create dnode:%d, reason:%s", dnodeId, tstrerror(code));
} else {
mLInfo("dnode:%d is created", pDnode->dnodeId);
......
......@@ -18,7 +18,7 @@
#include "taosmsg.h"
#include "taoserror.h"
#include "trpc.h"
#include "tcache.h"
#include "tqueue.h"
#include "mnode.h"
#include "dnode.h"
#include "mnodeDef.h"
......@@ -34,8 +34,16 @@
#include "mnodeUser.h"
#include "mnodeVgroup.h"
void mnodeCreateMsg(SMnodeMsg *pMsg, SRpcMsg *rpcMsg) {
pMsg->rpcMsg = *rpcMsg;
void *mnodeCreateMsg(SRpcMsg *pRpcMsg) {
int32_t size = sizeof(SMnodeMsg) + pRpcMsg->contLen;
SMnodeMsg *pMsg = taosAllocateQitem(size);
pMsg->rpcMsg = *pRpcMsg;
pMsg->rpcMsg.pCont = pMsg->pCont;
pMsg->incomingTs = taosGetTimestampSec();
memcpy(pMsg->pCont, pRpcMsg->pCont, pRpcMsg->contLen);
return pMsg;
}
int32_t mnodeInitMsg(SMnodeMsg *pMsg) {
......@@ -54,7 +62,9 @@ int32_t mnodeInitMsg(SMnodeMsg *pMsg) {
void mnodeCleanupMsg(SMnodeMsg *pMsg) {
if (pMsg != NULL) {
if (pMsg->rpcMsg.pCont) rpcFreeCont(pMsg->rpcMsg.pCont);
if (pMsg->rpcMsg.pCont != pMsg->pCont) {
tfree(pMsg->rpcMsg.pCont);
}
if (pMsg->pUser) mnodeDecUserRef(pMsg->pUser);
if (pMsg->pDb) mnodeDecDbRef(pMsg->pDb);
if (pMsg->pVgroup) mnodeDecVgroupRef(pMsg->pVgroup);
......
......@@ -96,9 +96,9 @@ int32_t mnodeStartSystem() {
return -1;
}
dnodeAllocateMnodeWqueue();
dnodeAllocateMnodeRqueue();
dnodeAllocateMnodePqueue();
dnodeAllocMWritequeue();
dnodeAllocMReadQueue();
dnodeAllocateMPeerQueue();
if (mnodeInitComponents() != 0) {
return -1;
......@@ -127,9 +127,9 @@ void mnodeCleanupSystem() {
mInfo("starting to clean up mnode");
tsMgmtIsRunning = false;
dnodeFreeMnodeWqueue();
dnodeFreeMnodeRqueue();
dnodeFreeMnodePqueue();
dnodeFreeMWritequeue();
dnodeFreeMReadQueue();
dnodeFreeMPeerQueue();
mnodeCleanupTimer();
mnodeCleanupComponents(sizeof(tsMnodeComponents) / sizeof(tsMnodeComponents[0]) - 1);
......
......@@ -59,7 +59,7 @@ static int32_t mnodeRetrieveMnodes(SShowObj *pShow, char *data, int32_t rows, vo
#endif
static int32_t mnodeMnodeActionDestroy(SSdbOper *pOper) {
taosTFree(pOper->pObj);
tfree(pOper->pObj);
return TSDB_CODE_SUCCESS;
}
......@@ -342,14 +342,14 @@ void mnodeCreateMnode(int32_t dnodeId, char *dnodeEp, bool needConfirm) {
}
if (code != TSDB_CODE_SUCCESS) {
taosTFree(pMnode);
tfree(pMnode);
return;
}
code = sdbInsertRow(&oper);
if (code != TSDB_CODE_SUCCESS && code != TSDB_CODE_MND_ACTION_IN_PROGRESS) {
mError("dnode:%d, failed to create mnode, ep:%s reason:%s", dnodeId, dnodeEp, tstrerror(code));
taosTFree(pMnode);
tfree(pMnode);
}
}
......
......@@ -131,8 +131,8 @@ SConnObj *mnodeAccquireConn(int32_t connId, char *user, uint32_t ip, uint16_t po
static void mnodeFreeConn(void *data) {
SConnObj *pConn = data;
taosTFree(pConn->pQueries);
taosTFree(pConn->pStreams);
tfree(pConn->pQueries);
tfree(pConn->pStreams);
mDebug("connId:%d, is destroyed", pConn->connId);
}
......
......@@ -72,7 +72,7 @@ typedef struct {
ESyncRole role;
ESdbStatus status;
int64_t version;
void * sync;
int64_t sync;
void * wal;
SSyncCfg cfg;
int32_t numOfTables;
......@@ -175,7 +175,7 @@ static void *sdbGetTableFromId(int32_t tableId) {
}
static int32_t sdbInitWal() {
SWalCfg walCfg = {.vgId = 1, .walLevel = 2, .wals = 2, .keep = 1, .fsyncPeriod = 0};
SWalCfg walCfg = {.vgId = 1, .walLevel = TAOS_WAL_FSYNC, .keep = TAOS_WAL_KEEP, .fsyncPeriod = 0};
char temp[TSDB_FILENAME_LEN];
sprintf(temp, "%s/wal", tsMnodeDir);
tsSdbObj.wal = walOpen(temp, &walCfg);
......@@ -212,7 +212,7 @@ static void sdbRestoreTables() {
}
void sdbUpdateMnodeRoles() {
if (tsSdbObj.sync == NULL) return;
if (tsSdbObj.sync <= 0) return;
SNodesRole roles = {0};
syncGetNodesRole(tsSdbObj.sync, &roles);
......@@ -295,7 +295,7 @@ static void sdbConfirmForward(void *ahandle, void *param, int32_t code) {
if (pOper->writeCb != NULL) {
pOper->retCode = (*pOper->writeCb)(pMsg, pOper->retCode);
}
dnodeSendRpcMnodeWriteRsp(pMsg, pOper->retCode);
dnodeSendRpcMWriteRsp(pMsg, pOper->retCode);
// if ahandle, means this func is called by sdb write
if (ahandle == NULL) {
......@@ -433,7 +433,7 @@ void sdbCleanUp() {
if (tsSdbObj.sync) {
syncStop(tsSdbObj.sync);
tsSdbObj.sync = NULL;
tsSdbObj.sync = -1;
}
if (tsSdbObj.wal) {
......@@ -984,7 +984,7 @@ void sdbCleanupWriteWorker() {
}
sdbFreeWritequeue();
taosTFree(tsSdbPool.writeWorker);
tfree(tsSdbPool.writeWorker);
mInfo("sdb write is closed");
}
......@@ -1043,7 +1043,7 @@ void sdbFreeWritequeue() {
int32_t sdbWriteToQueue(void *param, void *data, int32_t qtype, void *pMsg) {
SWalHead *pHead = data;
int32_t size = sizeof(SWalHead) + pHead->len;
SWalHead *pWal = (SWalHead *)taosAllocateQitem(size);
SWalHead *pWal = taosAllocateQitem(size);
memcpy(pWal, pHead, size);
taosWriteQitem(tsSdbWriteQueue, qtype, pWal);
......
......@@ -415,7 +415,7 @@ static void mnodeFreeShowObj(void *data) {
sdbFreeIter(pShow->pIter);
mDebug("%p, show is destroyed, data:%p index:%d", pShow, data, pShow->index);
taosTFree(pShow);
tfree(pShow);
}
static void mnodeReleaseShowObj(SShowObj *pShow, bool forceRemove) {
......
此差异已折叠。
......@@ -43,7 +43,7 @@ static int32_t mnodeProcessDropUserMsg(SMnodeMsg *pMsg);
static int32_t mnodeProcessAuthMsg(SMnodeMsg *pMsg);
static int32_t mnodeUserActionDestroy(SSdbOper *pOper) {
taosTFree(pOper->pObj);
tfree(pOper->pObj);
return TSDB_CODE_SUCCESS;
}
......@@ -270,7 +270,7 @@ int32_t mnodeCreateUser(SAcctObj *pAcct, char *name, char *pass, void *pMsg) {
code = sdbInsertRow(&oper);
if (code != TSDB_CODE_SUCCESS && code != TSDB_CODE_MND_ACTION_IN_PROGRESS) {
mError("user:%s, failed to create by %s, reason:%s", pUser->user, mnodeGetUserFromMsg(pMsg), tstrerror(code));
taosTFree(pUser);
tfree(pUser);
} else {
mLInfo("user:%s, is created by %s", pUser->user, mnodeGetUserFromMsg(pMsg));
}
......
......@@ -69,7 +69,7 @@ static void mnodeDestroyVgroup(SVgObj *pVgroup) {
pVgroup->idPool = NULL;
}
taosTFree(pVgroup);
tfree(pVgroup);
}
static int32_t mnodeVgroupActionDestroy(SSdbOper *pOper) {
......@@ -529,7 +529,7 @@ static int32_t mnodeCreateVgroupCb(SMnodeMsg *pMsg, int32_t code) {
SSdbOper desc = {.type = SDB_OPER_GLOBAL, .pObj = pVgroup, .table = tsVgroupSdb};
(void)sdbUpdateRow(&desc);
dnodeReprocessMnodeWriteMsg(pMsg);
dnodeReprocessMWriteMsg(pMsg);
return TSDB_CODE_MND_ACTION_IN_PROGRESS;
// if (pVgroup->status == TAOS_VG_STATUS_CREATING || pVgroup->status == TAOS_VG_STATUS_READY) {
// mInfo("app:%p:%p, vgId:%d, is created in sdb, db:%s replica:%d", pMsg->rpcMsg.ahandle, pMsg, pVgroup->vgId,
......@@ -537,7 +537,7 @@ static int32_t mnodeCreateVgroupCb(SMnodeMsg *pMsg, int32_t code) {
// pVgroup->status = TAOS_VG_STATUS_READY;
// SSdbOper desc = {.type = SDB_OPER_GLOBAL, .pObj = pVgroup, .table = tsVgroupSdb};
// (void)sdbUpdateRow(&desc);
// dnodeReprocessMnodeWriteMsg(pMsg);
// dnodeReprocessMWriteMsg(pMsg);
// return TSDB_CODE_MND_ACTION_IN_PROGRESS;
// } else {
// mError("app:%p:%p, vgId:%d, is created in sdb, db:%s replica:%d, but vgroup is dropping", pMsg->rpcMsg.ahandle,
......@@ -694,7 +694,7 @@ static bool mnodeFilterVgroups(SVgObj *pVgroup, STableObj *pTable) {
return true;
}
SChildTableObj *pCTable = (SChildTableObj *)pTable;
SCTableObj *pCTable = (SCTableObj *)pTable;
if (pVgroup->vgId == pCTable->vgId) {
return true;
} else {
......@@ -791,7 +791,7 @@ static int32_t mnodeRetrieveVgroups(SShowObj *pShow, char *data, int32_t rows, v
return numOfRows;
}
void mnodeAddTableIntoVgroup(SVgObj *pVgroup, SChildTableObj *pTable) {
void mnodeAddTableIntoVgroup(SVgObj *pVgroup, SCTableObj *pTable) {
int32_t idPoolSize = taosIdPoolMaxSize(pVgroup->idPool);
if (pTable->tid > idPoolSize) {
mnodeAllocVgroupIdPool(pVgroup);
......@@ -807,7 +807,7 @@ void mnodeAddTableIntoVgroup(SVgObj *pVgroup, SChildTableObj *pTable) {
}
}
void mnodeRemoveTableFromVgroup(SVgObj *pVgroup, SChildTableObj *pTable) {
void mnodeRemoveTableFromVgroup(SVgObj *pVgroup, SCTableObj *pTable) {
if (pTable->tid >= 1) {
taosFreeId(pVgroup->idPool, pTable->tid);
pVgroup->numOfTables--;
......@@ -850,6 +850,7 @@ static SCreateVnodeMsg *mnodeBuildVnodeMsg(SVgObj *pVgroup) {
pCfg->replications = (int8_t) pVgroup->numOfVnodes;
pCfg->wals = 3;
pCfg->quorum = pDb->cfg.quorum;
pCfg->update = pDb->cfg.update;
SVnodeDesc *pNodes = pVnode->nodes;
for (int32_t j = 0; j < pVgroup->numOfVnodes; ++j) {
......@@ -969,7 +970,7 @@ static void mnodeProcessCreateVnodeRsp(SRpcMsg *rpcMsg) {
if (code != TSDB_CODE_SUCCESS && code != TSDB_CODE_MND_ACTION_IN_PROGRESS) {
mnodeMsg->pVgroup = NULL;
mnodeDestroyVgroup(pVgroup);
dnodeSendRpcMnodeWriteRsp(mnodeMsg, code);
dnodeSendRpcMWriteRsp(mnodeMsg, code);
}
} else {
SSdbOper oper = {
......@@ -978,7 +979,7 @@ static void mnodeProcessCreateVnodeRsp(SRpcMsg *rpcMsg) {
.pObj = pVgroup
};
sdbDeleteRow(&oper);
dnodeSendRpcMnodeWriteRsp(mnodeMsg, mnodeMsg->code);
dnodeSendRpcMWriteRsp(mnodeMsg, mnodeMsg->code);
}
}
......@@ -1040,7 +1041,7 @@ static void mnodeProcessDropVnodeRsp(SRpcMsg *rpcMsg) {
code = TSDB_CODE_MND_SDB_ERROR;
}
dnodeReprocessMnodeWriteMsg(mnodeMsg);
dnodeReprocessMWriteMsg(mnodeMsg);
}
static int32_t mnodeProcessVnodeCfgMsg(SMnodeMsg *pMsg) {
......
......@@ -53,7 +53,6 @@ extern "C" {
#endif
#include "osDef.h"
#include "osAlloc.h"
#include "osAtomic.h"
#include "osCommon.h"
#include "osDir.h"
......
......@@ -31,6 +31,7 @@ typedef enum {
void taosSetAllocMode(int mode, const char *path, bool autoDump);
void taosDumpMemoryLeak();
// used in tsdb module
void * taosTMalloc(size_t size);
void * taosTCalloc(size_t nmemb, size_t size);
void * taosTRealloc(void *ptr, size_t size);
......@@ -38,7 +39,14 @@ void taosTZfree(void *ptr);
size_t taosTSizeof(void *ptr);
void taosTMemset(void *ptr, int c);
#define taosTFree(x) \
// used in other module
#define tmalloc(size) malloc(size)
#define tcalloc(num, size) calloc(num, size)
#define trealloc(ptr, size) realloc(ptr, size)
#define tstrdup(str) taosStrdupImp(str)
#define tstrndup(str, size) taosStrndupImp(str, size)
#define tgetline(lineptr, n, stream) taosGetlineImp(lineptr, n, stream)
#define tfree(x) \
do { \
if (x) { \
free((void *)(x)); \
......@@ -46,37 +54,30 @@ void taosTMemset(void *ptr, int c);
} \
} while (0);
#define taosMalloc(size) malloc(size)
#define taosCalloc(num, size) calloc(num, size)
#define taosRealloc(ptr, size) realloc(ptr, size)
#define taosFree(ptr) free(ptr)
#define taosStrdup(str) taosStrdupImp(str)
#define taosStrndup(str, size) taosStrndupImp(str, size)
#define taosGetline(lineptr, n, stream) taosGetlineImp(lineptr, n, stream)
#ifdef TAOS_MEM_CHECK
#ifdef TAOS_MEM_CHECK_TEST
void * taos_malloc(size_t size, const char *file, uint32_t line);
void * taos_calloc(size_t num, size_t size, const char *file, uint32_t line);
void * taos_realloc(void *ptr, size_t size, const char *file, uint32_t line);
void taos_free(void *ptr, const char *file, uint32_t line);
char * taos_strdup(const char *str, const char *file, uint32_t line);
char * taos_strndup(const char *str, size_t size, const char *file, uint32_t line);
ssize_t taos_getline(char **lineptr, size_t *n, FILE *stream, const char *file, uint32_t line);
#undef taosMalloc
#undef taosCalloc
#undef taosRealloc
#undef taosFree
#undef taosStrdup
#undef taosStrndup
#undef taosGetline
#define taosMalloc(size) taos_malloc(size, __FILE__, __LINE__)
#define taosCalloc(num, size) taos_calloc(num, size, __FILE__, __LINE__)
#define taosRealloc(ptr, size) taos_realloc(ptr, size, __FILE__, __LINE__)
#define taosFree(ptr) taos_free(ptr, __FILE__, __LINE__)
//#define taosStrdup(str) taos_strdup(str, __FILE__, __LINE__)
//#define taosStrndup(str, size) taos_strndup(str, size, __FILE__, __LINE__)
//#define taosGetline(lineptr, n, stream) taos_getline(lineptr, n, stream, __FILE__, __LINE__)
void * taosMallocMem(size_t size, const char *file, uint32_t line);
void * taosCallocMem(size_t num, size_t size, const char *file, uint32_t line);
void * taosReallocMem(void *ptr, size_t size, const char *file, uint32_t line);
void taosFreeMem(void *ptr, const char *file, uint32_t line);
char * taosStrdupMem(const char *str, const char *file, uint32_t line);
char * taosStrndupMem(const char *str, size_t size, const char *file, uint32_t line);
ssize_t taosGetlineMem(char **lineptr, size_t *n, FILE *stream, const char *file, uint32_t line);
#undef tmalloc
#undef tcalloc
#undef trealloc
#undef tfree
#define tmalloc(size) taosMallocMem(size, __FILE__, __LINE__)
#define tcalloc(num, size) taosCallocMem(num, size, __FILE__, __LINE__)
#define trealloc(ptr, size) taosReallocMem(ptr, size, __FILE__, __LINE__)
#define tfree(ptr) taosFreeMem(ptr, __FILE__, __LINE__)
// #undef tstrdup
// #undef tstrndup
// #undef tgetline
// #define taosStrdup(str) taos_strdup(str, __FILE__, __LINE__)
// #define taosStrndup(str, size) taos_strndup(str, size, __FILE__, __LINE__)
// #define tgetline(lineptr, n, stream) taos_getline(lineptr, n, stream, __FILE__, __LINE__)
#endif
#endif
......
此差异已折叠。
......@@ -61,7 +61,7 @@ bool taosGetProcMemory(float *memoryUsedMB) {
size_t len;
char * line = NULL;
while (!feof(fp)) {
taosTFree(line);
tfree(line);
len = 0;
getline(&line, &len, fp);
if (line == NULL) {
......@@ -83,7 +83,7 @@ bool taosGetProcMemory(float *memoryUsedMB) {
sscanf(line, "%s %" PRId64, tmp, &memKB);
*memoryUsedMB = (float)((double)memKB / 1024);
taosTFree(line);
tfree(line);
fclose(fp);
return true;
}
......@@ -107,7 +107,7 @@ static bool taosGetSysCpuInfo(SysCpuInfo *cpuInfo) {
char cpu[10] = {0};
sscanf(line, "%s %" PRIu64 " %" PRIu64 " %" PRIu64 " %" PRIu64, cpu, &cpuInfo->user, &cpuInfo->nice, &cpuInfo->system, &cpuInfo->idle);
taosTFree(line);
tfree(line);
fclose(fp);
return true;
}
......@@ -136,7 +136,7 @@ static bool taosGetProcCpuInfo(ProcCpuInfo *cpuInfo) {
}
}
taosTFree(line);
tfree(line);
fclose(fp);
return true;
}
......@@ -377,7 +377,7 @@ static bool taosGetCardInfo(int64_t *bytes) {
*bytes += (rbytes + tbytes);
}
taosTFree(line);
tfree(line);
fclose(fp);
return true;
......@@ -432,7 +432,7 @@ static bool taosReadProcIO(int64_t *readbyte, int64_t *writebyte) {
int readIndex = 0;
while (!feof(fp)) {
taosTFree(line);
tfree(line);
len = 0;
getline(&line, &len, fp);
if (line == NULL) {
......@@ -450,7 +450,7 @@ static bool taosReadProcIO(int64_t *readbyte, int64_t *writebyte) {
if (readIndex >= 2) break;
}
taosTFree(line);
tfree(line);
fclose(fp);
if (readIndex < 2) {
......
......@@ -22,9 +22,11 @@ extern "C" {
#include <stdint.h>
typedef void (*FHttpResultFp)(void *param, void *result, int32_t code, int32_t rows);
bool httpInitResultQueue();
void httpCleanupResultQueue();
void httpDispatchToResultQueue();
void httpDispatchToResultQueue(void *param, TAOS_RES *result, int32_t code, int32_t rows, FHttpResultFp fp);
#ifdef __cplusplus
}
......
......@@ -63,7 +63,7 @@ static void httpDestroyContext(void *data) {
pContext->parser = NULL;
}
taosTFree(pContext);
tfree(pContext);
}
bool httpInitContexts() {
......
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
此差异已折叠。
Markdown is supported
0% .
You are about to add 0 people to the discussion. Proceed with caution.
先完成此消息的编辑!
想要评论请 注册