提交 985e6f53 编写于 作者: S Shengliang Guan

Merge branch '3.0' into FIX/TD-19593-3.0

......@@ -2,7 +2,7 @@
IF (DEFINED VERNUMBER)
SET(TD_VER_NUMBER ${VERNUMBER})
ELSE ()
SET(TD_VER_NUMBER "3.0.1.4")
SET(TD_VER_NUMBER "3.0.1.5")
ENDIF ()
IF (DEFINED VERCOMPATIBLE)
......
......@@ -6,6 +6,10 @@ description: TDengine release history, Release Notes and download links.
import Release from "/components/ReleaseV3";
## 3.0.1.5
<Release type="tdengine" version="3.0.1.5" />
## 3.0.1.4
<Release type="tdengine" version="3.0.1.4" />
......
......@@ -6,6 +6,10 @@ description: taosTools release history, Release Notes, download links.
import Release from "/components/ReleaseV3";
## 2.2.6
<Release type="tools" version="2.2.6" />
## 2.2.4
<Release type="tools" version="2.2.4" />
......
......@@ -420,7 +420,18 @@ let mut consumer = tmq.build()?;
<TabItem value="Python" label="Python">
Python 使用以下配置项创建一个 Consumer 实例。
Python 语言下引入 `taos` 库的 `TaosConsumer` 类,创建一个 Consumer 示例:
```python
from taos.tmq import TaosConsumer
# Syntax: `consumer = TaosConsumer(*topics, **args)`
#
# Example:
consumer = TaosConsumer('topic1', 'topic2', td_connect_ip = "127.0.0.1", group_id = "local")
```
其中,元组类型参数被视为 *Topics*,字典类型参数用于以下订阅配置设置:
| 参数名称 | 类型 | 参数说明 | 备注 |
| :----------------------------: | :----: | -------------------------------------------------------- | ------------------------------------------- |
......@@ -430,12 +441,12 @@ Python 使用以下配置项创建一个 Consumer 实例。
| `td_connect_port` | string | 用于创建连接,同 `taos_connect` | |
| `group_id` | string | 消费组 ID,同一消费组共享消费进度 | **必填项**。最大长度:192。 |
| `client_id` | string | 客户端 ID | 最大长度:192。 |
| `auto_offset_reset` | string | 消费组订阅的初始位置 | 可选:`earliest`, `latest`, `none`(default) |
| `enable_auto_commit` | string | 启用自动提交 | 合法值:`true`, `false` |
| `auto_commit_interval_ms` | string | 以毫秒为单位的自动提交时间间隔 | |
| `auto_offset_reset` | string | 消费组订阅的初始位置 | 可选:`earliest`(default), `latest`, `none` |
| `enable_auto_commit` | string | 启用自动提交 | 合法值:`true`, `false`,默认为 true |
| `auto_commit_interval_ms` | string | 以毫秒为单位的自动提交时间间隔 | 默认值:5000 ms |
| `enable_heartbeat_background` | string | 启用后台心跳,启用后即使长时间不 poll 消息也不会造成离线 | 合法值:`true`, `false` |
| `experimental_snapshot_enable` | string | 从 WAL 开始消费,还是从 TSBS 开始消费 | 合法值:`true`, `false` |
| `msg_with_table_name` | string | 是否允许从消息中解析表名 | 合法值:`true`, `false` |
| `experimental_snapshot_enable` | string | 是否允许从 TSDB 消费数据 | 合法值:`true`, `false` |
| `msg_with_table_name` | string | 是否允许从消息中解析表名,不适用于列订阅 | 合法值:`true`, `false` |
| `timeout` | int | 消费者拉取数据的超时时间 | |
</TabItem>
......
......@@ -6,6 +6,10 @@ description: TDengine 发布历史、Release Notes 及下载链接
import Release from "/components/ReleaseV3";
## 3.0.1.5
<Release type="tdengine" version="3.0.1.5" />
## 3.0.1.4
<Release type="tdengine" version="3.0.1.4" />
......
......@@ -6,6 +6,10 @@ description: taosTools 的发布历史、Release Notes 和下载链接
import Release from "/components/ReleaseV3";
## 2.2.6
<Release type="tools" version="2.2.6" />
## 2.2.4
<Release type="tools" version="2.2.4" />
......
......@@ -45,14 +45,6 @@ extern bool tsPrintAuth;
extern int64_t tsTickPerMin[3];
extern int32_t tsCountAlwaysReturnValue;
// multi-process
extern int32_t tsMultiProcess;
extern int32_t tsMnodeShmSize;
extern int32_t tsVnodeShmSize;
extern int32_t tsQnodeShmSize;
extern int32_t tsSnodeShmSize;
extern int32_t tsNumOfShmThreads;
// queue & threads
extern int32_t tsNumOfRpcThreads;
extern int32_t tsNumOfCommitThreads;
......
......@@ -343,6 +343,8 @@ typedef struct {
} SSchemaWrapper;
static FORCE_INLINE SSchemaWrapper* tCloneSSchemaWrapper(const SSchemaWrapper* pSchemaWrapper) {
if (pSchemaWrapper->pSchema == NULL) return NULL;
SSchemaWrapper* pSW = (SSchemaWrapper*)taosMemoryMalloc(sizeof(SSchemaWrapper));
if (pSW == NULL) return pSW;
pSW->nCols = pSchemaWrapper->nCols;
......@@ -352,6 +354,7 @@ static FORCE_INLINE SSchemaWrapper* tCloneSSchemaWrapper(const SSchemaWrapper* p
taosMemoryFree(pSW);
return NULL;
}
memcpy(pSW->pSchema, pSchemaWrapper->pSchema, pSW->nCols * sizeof(SSchema));
return pSW;
}
......
......@@ -239,13 +239,6 @@ enum {
TD_DEF_MSG_TYPE(TDMT_STREAM_MAX_MSG, "stream-max", NULL, NULL)
TD_NEW_MSG_SEG(TDMT_MON_MSG)
TD_DEF_MSG_TYPE(TDMT_MON_MM_INFO, "monitor-minfo", NULL, NULL)
TD_DEF_MSG_TYPE(TDMT_MON_VM_INFO, "monitor-vinfo", NULL, NULL)
TD_DEF_MSG_TYPE(TDMT_MON_QM_INFO, "monitor-qinfo", NULL, NULL)
TD_DEF_MSG_TYPE(TDMT_MON_SM_INFO, "monitor-sinfo", NULL, NULL)
TD_DEF_MSG_TYPE(TDMT_MON_VM_LOAD, "monitor-vload", NULL, NULL)
TD_DEF_MSG_TYPE(TDMT_MON_MM_LOAD, "monitor-mload", NULL, NULL)
TD_DEF_MSG_TYPE(TDMT_MON_QM_LOAD, "monitor-qload", NULL, NULL)
TD_DEF_MSG_TYPE(TDMT_MON_MAX_MSG, "monitor-max", NULL, NULL)
TD_NEW_MSG_SEG(TDMT_SYNC_MSG)
......
......@@ -25,10 +25,9 @@ extern "C" {
/**
* @brief Initialize the dnode
*
* @param rtype for internal debug usage, default is 0
* @return int32_t 0 for success and -1 for failure
*/
int32_t dmInit(int8_t rtype);
int32_t dmInit();
/**
* @brief Cleanup the dnode
......
......@@ -94,10 +94,8 @@ extern "C" {
#include "osLz4.h"
#include "osMath.h"
#include "osMemory.h"
#include "osProc.h"
#include "osRand.h"
#include "osSemaphore.h"
#include "osShm.h"
#include "osSignal.h"
#include "osSleep.h"
#include "osSocket.h"
......
......@@ -60,6 +60,7 @@ bool osTempSpaceSufficient();
void osSetTimezone(const char *timezone);
void osSetSystemLocale(const char *inLocale, const char *inCharSet);
void osSetProcPath(int32_t argc, char **argv);
#ifdef __cplusplus
}
......
/*
* 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/>.
*/
#ifndef _TD_OS_PROC_H_
#define _TD_OS_PROC_H_
#ifdef __cplusplus
extern "C" {
#endif
int32_t taosNewProc(char **args);
void taosWaitProc(int32_t pid);
void taosKillProc(int32_t pid);
bool taosProcExist(int32_t pid);
void taosSetProcName(int32_t argc, char **argv, const char *name);
void taosSetProcPath(int32_t argc, char **argv);
#ifdef __cplusplus
}
#endif
#endif /*_TD_OS_PROC_H_*/
/*
* 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/>.
*/
#ifndef _TD_OS_SHM_H_
#define _TD_OS_SHM_H_
#ifdef __cplusplus
extern "C" {
#endif
typedef struct {
int32_t id;
int32_t size;
void *ptr;
} SShm;
int32_t taosCreateShm(SShm *pShm, int32_t key, int32_t shmsize);
void taosDropShm(SShm *pShm);
int32_t taosAttachShm(SShm *pShm);
#ifdef __cplusplus
}
#endif
#endif /*_TD_OS_SHM_H_*/
......@@ -40,14 +40,6 @@ int32_t tsMaxShellConns = 50000;
int32_t tsShellActivityTimer = 3; // second
bool tsPrintAuth = false;
// multi process
int32_t tsMultiProcess = 0;
int32_t tsMnodeShmSize = TSDB_MAX_MSG_SIZE * 2 + 1024;
int32_t tsVnodeShmSize = TSDB_MAX_MSG_SIZE * 10 + 1024;
int32_t tsQnodeShmSize = TSDB_MAX_MSG_SIZE * 4 + 1024;
int32_t tsSnodeShmSize = TSDB_MAX_MSG_SIZE * 4 + 1024;
int32_t tsNumOfShmThreads = 1;
// queue & threads
int32_t tsNumOfRpcThreads = 1;
int32_t tsNumOfCommitThreads = 2;
......@@ -352,13 +344,6 @@ static int32_t taosAddServerCfg(SConfig *pCfg) {
if (cfgAddBool(pCfg, "printAuth", tsPrintAuth, 0) != 0) return -1;
if (cfgAddInt32(pCfg, "queryRspPolicy", tsQueryRspPolicy, 0, 1, 0) != 0) return -1;
if (cfgAddInt32(pCfg, "multiProcess", tsMultiProcess, 0, 2, 0) != 0) return -1;
if (cfgAddInt32(pCfg, "mnodeShmSize", tsMnodeShmSize, TSDB_MAX_MSG_SIZE * 2 + 1024, INT32_MAX, 0) != 0) return -1;
if (cfgAddInt32(pCfg, "vnodeShmSize", tsVnodeShmSize, TSDB_MAX_MSG_SIZE * 2 + 1024, INT32_MAX, 0) != 0) return -1;
if (cfgAddInt32(pCfg, "qnodeShmSize", tsQnodeShmSize, TSDB_MAX_MSG_SIZE * 2 + 1024, INT32_MAX, 0) != 0) return -1;
if (cfgAddInt32(pCfg, "snodeShmSize", tsSnodeShmSize, TSDB_MAX_MSG_SIZE * 2 + 1024, INT32_MAX, 0) != 0) return -1;
if (cfgAddInt32(pCfg, "numOfShmThreads", tsNumOfShmThreads, 1, 1024, 0) != 0) return -1;
tsNumOfRpcThreads = tsNumOfCores / 2;
tsNumOfRpcThreads = TRANGE(tsNumOfRpcThreads, 1, 4);
if (cfgAddInt32(pCfg, "numOfRpcThreads", tsNumOfRpcThreads, 1, 1024, 0) != 0) return -1;
......@@ -698,14 +683,6 @@ static int32_t taosSetServerCfg(SConfig *pCfg) {
tsQueryBufferSize = cfgGetItem(pCfg, "queryBufferSize")->i32;
tsPrintAuth = cfgGetItem(pCfg, "printAuth")->bval;
#if !defined(WINDOWS) && !defined(DARWIN)
tsMultiProcess = cfgGetItem(pCfg, "multiProcess")->bval;
#endif
tsMnodeShmSize = cfgGetItem(pCfg, "mnodeShmSize")->i32;
tsVnodeShmSize = cfgGetItem(pCfg, "vnodeShmSize")->i32;
tsQnodeShmSize = cfgGetItem(pCfg, "qnodeShmSize")->i32;
tsSnodeShmSize = cfgGetItem(pCfg, "snodeShmSize")->i32;
tsNumOfRpcThreads = cfgGetItem(pCfg, "numOfRpcThreads")->i32;
tsNumOfCommitThreads = cfgGetItem(pCfg, "numOfCommitThreads")->i32;
tsNumOfMnodeReadThreads = cfgGetItem(pCfg, "numOfMnodeReadThreads")->i32;
......@@ -903,12 +880,6 @@ int32_t taosSetCfg(SConfig *pCfg, char *name) {
}
break;
}
case 'n': {
if (strcasecmp("mnodeShmSize", name) == 0) {
tsMnodeShmSize = cfgGetItem(pCfg, "mnodeShmSize")->i32;
}
break;
}
case 'o': {
if (strcasecmp("monitor", name) == 0) {
tsEnableMonitor = cfgGetItem(pCfg, "monitor")->bval;
......@@ -932,11 +903,7 @@ int32_t taosSetCfg(SConfig *pCfg, char *name) {
break;
}
case 'u': {
if (strcasecmp("multiProcess", name) == 0) {
#if !defined(WINDOWS) && !defined(DARWIN)
tsMultiProcess = cfgGetItem(pCfg, "multiProcess")->bval;
#endif
} else if (strcasecmp("udfDebugFlag", name) == 0) {
if (strcasecmp("udfDebugFlag", name) == 0) {
udfDebugFlag = cfgGetItem(pCfg, "udfDebugFlag")->i32;
}
break;
......@@ -999,8 +966,6 @@ int32_t taosSetCfg(SConfig *pCfg, char *name) {
if (tsQueryBufferSize >= 0) {
tsQueryBufferSizeBytes = tsQueryBufferSize * 1048576UL;
}
} else if (strcasecmp("qnodeShmSize", name) == 0) {
tsQnodeShmSize = cfgGetItem(pCfg, "qnodeShmSize")->i32;
} else if (strcasecmp("qDebugFlag", name) == 0) {
qDebugFlag = cfgGetItem(pCfg, "qDebugFlag")->i32;
} else if (strcasecmp("queryPlannerTrace", name) == 0) {
......@@ -1041,8 +1006,6 @@ int32_t taosSetCfg(SConfig *pCfg, char *name) {
tsNumOfSupportVnodes = cfgGetItem(pCfg, "supportVnodes")->i32;
} else if (strcasecmp("statusInterval", name) == 0) {
tsStatusInterval = cfgGetItem(pCfg, "statusInterval")->i32;
} else if (strcasecmp("snodeShmSize", name) == 0) {
tsSnodeShmSize = cfgGetItem(pCfg, "snodeShmSize")->i32;
} else if (strcasecmp("serverPort", name) == 0) {
tstrncpy(tsLocalFqdn, cfgGetItem(pCfg, "fqdn")->str, TSDB_FQDN_LEN);
tsServerPort = (uint16_t)cfgGetItem(pCfg, "serverPort")->i32;
......@@ -1110,9 +1073,7 @@ int32_t taosSetCfg(SConfig *pCfg, char *name) {
break;
}
case 'v': {
if (strcasecmp("vnodeShmSize", name) == 0) {
tsVnodeShmSize = cfgGetItem(pCfg, "vnodeShmSize")->i32;
} else if (strcasecmp("vDebugFlag", name) == 0) {
if (strcasecmp("vDebugFlag", name) == 0) {
vDebugFlag = cfgGetItem(pCfg, "vDebugFlag")->i32;
}
break;
......@@ -1235,6 +1196,7 @@ int32_t taosInitCfg(const char *cfgDir, const char **envCmd, const char *envFile
if (cfgLoadFromArray(tsCfg, pArgs) != 0) {
uError("failed to load cfg from array since %s", terrstr());
cfgCleanup(tsCfg);
tsCfg = NULL;
return -1;
}
......
......@@ -25,7 +25,6 @@
#define DM_SDB_INFO "Dump sdb info."
#define DM_ENV_CMD "The env cmd variable string to use when configuring the server, such as: -e 'TAOS_FQDN=td1'."
#define DM_ENV_FILE "The env variable file path to use when configuring the server, default is './.env', .env text can be 'TAOS_FQDN=td1'."
#define DM_NODE_TYPE "Startup type of the node, default is 0."
#define DM_MACHINE_CODE "Get machine code."
#define DM_VERSION "Print program version."
#define DM_EMAIL "<support@taosdata.com>"
......@@ -44,7 +43,6 @@ static struct {
char apolloUrl[PATH_MAX];
const char **envCmd;
SArray *pArgs; // SConfigPair
EDndNodeType ntype;
} global = {0};
static void dmStopDnode(int signum, void *info, void *ctx) { dmStop(); }
......@@ -59,13 +57,6 @@ static void dmSetSignalHandle() {
taosSetSignal(SIGTSTP, dmStopDnode);
taosSetSignal(SIGQUIT, dmStopDnode);
#endif
if (!tsMultiProcess) {
} else if (global.ntype == DNODE || global.ntype == NODE_END) {
taosIgnSignal(SIGCHLD);
} else {
taosKillChildOnParentStopped();
}
}
static int32_t dmParseArgs(int32_t argc, char const *argv[]) {
......@@ -91,12 +82,6 @@ static int32_t dmParseArgs(int32_t argc, char const *argv[]) {
global.dumpSdb = true;
} else if (strcmp(argv[i], "-E") == 0) {
tstrncpy(global.envFile, argv[++i], PATH_MAX);
} else if (strcmp(argv[i], "-n") == 0) {
global.ntype = atoi(argv[++i]);
if (global.ntype <= DNODE || global.ntype > NODE_END) {
printf("'-n' range is [1 - %d], default is 0\n", NODE_END - 1);
return -1;
}
} else if (strcmp(argv[i], "-k") == 0) {
global.generateGrant = true;
} else if (strcmp(argv[i], "-C") == 0) {
......@@ -142,7 +127,6 @@ static void dmPrintHelp() {
printf("%s%s%s%s\n", indent, "-C,", indent, DM_DMP_CFG);
printf("%s%s%s%s\n", indent, "-e,", indent, DM_ENV_CMD);
printf("%s%s%s%s\n", indent, "-E,", indent, DM_ENV_FILE);
printf("%s%s%s%s\n", indent, "-n,", indent, DM_NODE_TYPE);
printf("%s%s%s%s\n", indent, "-k,", indent, DM_MACHINE_CODE);
printf("%s%s%s%s\n", indent, "-V,", indent, DM_VERSION);
......@@ -155,17 +139,7 @@ static void dmDumpCfg() {
}
static int32_t dmInitLog() {
char logName[12] = {0};
snprintf(logName, sizeof(logName), "%slog", dmNodeLogName(global.ntype));
return taosCreateLog(logName, 1, configDir, global.envCmd, global.envFile, global.apolloUrl, global.pArgs, 0);
}
static void dmSetProcInfo(int32_t argc, char **argv) {
taosSetProcPath(argc, argv);
if (global.ntype != DNODE && global.ntype != NODE_END) {
const char *name = dmNodeProcName(global.ntype);
taosSetProcName(argc, argv, name);
}
return taosCreateLog("taosdlog", 1, configDir, global.envCmd, global.envFile, global.apolloUrl, global.pArgs, 0);
}
static void taosCleanupArgs() {
......@@ -234,6 +208,7 @@ int mainWindows(int argc, char **argv) {
taosCleanupCfg();
taosCloseLog();
taosCleanupArgs();
taosConvDestroy();
return 0;
}
......@@ -242,13 +217,14 @@ int mainWindows(int argc, char **argv) {
taosCleanupCfg();
taosCloseLog();
taosCleanupArgs();
taosConvDestroy();
return 0;
}
dmSetProcInfo(argc, (char **)argv);
osSetProcPath(argc, (char **)argv);
taosCleanupArgs();
if (dmInit(global.ntype) != 0) {
if (dmInit() != 0) {
dError("failed to init dnode since %s", terrstr());
return -1;
}
......
......@@ -34,7 +34,6 @@ typedef struct SMnodeMgmt {
SSingleWorker readWorker;
SSingleWorker writeWorker;
SSingleWorker syncWorker;
SSingleWorker monitorWorker;
bool stopped;
int32_t refCount;
TdThreadRwlock lock;
......@@ -48,8 +47,6 @@ int32_t mmWriteFile(const char *path, const SMnodeOpt *pOption);
SArray *mmGetMsgHandles();
int32_t mmProcessCreateReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg);
int32_t mmProcessDropReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg);
int32_t mmProcessGetMonitorInfoReq(SMnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t mmProcessGetLoadsReq(SMnodeMgmt *pMgmt, SRpcMsg *pMsg);
// mmWorker.c
int32_t mmStartWorker(SMnodeMgmt *pMgmt);
......@@ -59,7 +56,6 @@ int32_t mmPutMsgToSyncQueue(SMnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t mmPutMsgToReadQueue(SMnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t mmPutMsgToQueryQueue(SMnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t mmPutMsgToFetchQueue(SMnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t mmPutMsgToMonitorQueue(SMnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t mmPutMsgToQueue(SMnodeMgmt *pMgmt, EQueueType qtype, SRpcMsg *pRpc);
#ifdef __cplusplus
......
......@@ -20,58 +20,11 @@ void mmGetMonitorInfo(SMnodeMgmt *pMgmt, SMonMmInfo *pInfo) {
mndGetMonitorInfo(pMgmt->pMnode, &pInfo->cluster, &pInfo->vgroup, &pInfo->stb, &pInfo->grant);
}
int32_t mmProcessGetMonitorInfoReq(SMnodeMgmt *pMgmt, SRpcMsg *pMsg) {
SMonMmInfo mmInfo = {0};
mmGetMonitorInfo(pMgmt, &mmInfo);
dmGetMonitorSystemInfo(&mmInfo.sys);
monGetLogs(&mmInfo.log);
int32_t rspLen = tSerializeSMonMmInfo(NULL, 0, &mmInfo);
if (rspLen < 0) {
terrno = TSDB_CODE_INVALID_MSG;
return -1;
}
void *pRsp = rpcMallocCont(rspLen);
if (pRsp == NULL) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
return -1;
}
tSerializeSMonMmInfo(pRsp, rspLen, &mmInfo);
pMsg->info.rsp = pRsp;
pMsg->info.rspLen = rspLen;
tFreeSMonMmInfo(&mmInfo);
return 0;
}
void mmGetMnodeLoads(SMnodeMgmt *pMgmt, SMonMloadInfo *pInfo) {
pInfo->isMnode = 1;
mndGetLoad(pMgmt->pMnode, &pInfo->load);
}
int32_t mmProcessGetLoadsReq(SMnodeMgmt *pMgmt, SRpcMsg *pMsg) {
SMonMloadInfo mloads = {0};
mmGetMnodeLoads(pMgmt, &mloads);
int32_t rspLen = tSerializeSMonMloadInfo(NULL, 0, &mloads);
if (rspLen < 0) {
terrno = TSDB_CODE_INVALID_MSG;
return -1;
}
void *pRsp = rpcMallocCont(rspLen);
if (pRsp == NULL) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
return -1;
}
tSerializeSMonMloadInfo(pRsp, rspLen, &mloads);
pMsg->info.rsp = pRsp;
pMsg->info.rspLen = rspLen;
return 0;
}
int32_t mmProcessCreateReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg) {
const STraceId *trace = &pMsg->info.traceId;
SDCreateMnodeReq createReq = {0};
......@@ -230,9 +183,6 @@ SArray *mmGetMsgHandles() {
if (dmSetMgmtHandle(pArray, TDMT_VND_ALTER_HASHRANGE_RSP, mmPutMsgToWriteQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_VND_COMPACT_RSP, mmPutMsgToWriteQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_MON_MM_INFO, mmPutMsgToMonitorQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_MON_MM_LOAD, mmPutMsgToMonitorQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_SYNC_TIMEOUT, mmPutMsgToSyncQueue, 1) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_SYNC_PING, mmPutMsgToSyncQueue, 1) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_SYNC_PING_REPLY, mmPutMsgToSyncQueue, 1) == NULL) goto _OVER;
......
......@@ -46,22 +46,12 @@ static inline void mmSendRsp(SRpcMsg *pMsg, int32_t code) {
static void mmProcessRpcMsg(SQueueInfo *pInfo, SRpcMsg *pMsg) {
SMnodeMgmt *pMgmt = pInfo->ahandle;
int32_t code = -1;
pMsg->info.node = pMgmt->pMnode;
const STraceId *trace = &pMsg->info.traceId;
dGTrace("msg:%p, get from mnode queue", pMsg);
switch (pMsg->msgType) {
case TDMT_MON_MM_INFO:
code = mmProcessGetMonitorInfoReq(pMgmt, pMsg);
break;
case TDMT_MON_MM_LOAD:
code = mmProcessGetLoadsReq(pMgmt, pMsg);
break;
default:
pMsg->info.node = pMgmt->pMnode;
code = mndProcessRpcMsg(pMsg);
}
int32_t code = mndProcessRpcMsg(pMsg);
if (IsReq(pMsg) && pMsg->info.handle != NULL && code != TSDB_CODE_ACTION_IN_PROGRESS) {
if (code != 0 && terrno != 0) code = terrno;
......@@ -136,10 +126,6 @@ int32_t mmPutMsgToFetchQueue(SMnodeMgmt *pMgmt, SRpcMsg *pMsg) {
return mmPutMsgToWorker(pMgmt, &pMgmt->fetchWorker, pMsg);
}
int32_t mmPutMsgToMonitorQueue(SMnodeMgmt *pMgmt, SRpcMsg *pMsg) {
return mmPutMsgToWorker(pMgmt, &pMgmt->monitorWorker, pMsg);
}
int32_t mmPutMsgToQueue(SMnodeMgmt *pMgmt, EQueueType qtype, SRpcMsg *pRpc) {
SSingleWorker *pWorker = NULL;
switch (qtype) {
......@@ -237,18 +223,6 @@ int32_t mmStartWorker(SMnodeMgmt *pMgmt) {
return -1;
}
SSingleWorkerCfg mCfg = {
.min = 1,
.max = 1,
.name = "mnode-monitor",
.fp = (FItem)mmProcessRpcMsg,
.param = pMgmt,
};
if (tSingleWorkerInit(&pMgmt->monitorWorker, &mCfg) != 0) {
dError("failed to start mnode mnode-monitor worker since %s", terrstr());
return -1;
}
dDebug("mnode workers are initialized");
return 0;
}
......@@ -256,7 +230,6 @@ int32_t mmStartWorker(SMnodeMgmt *pMgmt) {
void mmStopWorker(SMnodeMgmt *pMgmt) {
while (pMgmt->refCount > 0) taosMsleep(10);
tSingleWorkerCleanup(&pMgmt->monitorWorker);
tSingleWorkerCleanup(&pMgmt->queryWorker);
tSingleWorkerCleanup(&pMgmt->fetchWorker);
tSingleWorkerCleanup(&pMgmt->readWorker);
......
......@@ -32,14 +32,12 @@ typedef struct SQnodeMgmt {
const char *name;
SSingleWorker queryWorker;
SSingleWorker fetchWorker;
SSingleWorker monitorWorker;
} SQnodeMgmt;
// qmHandle.c
SArray *qmGetMsgHandles();
int32_t qmProcessCreateReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg);
int32_t qmProcessDropReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg);
int32_t qmProcessGetMonitorInfoReq(SQnodeMgmt *pMgmt, SRpcMsg *pMsg);
// qmWorker.c
int32_t qmPutRpcMsgToQueue(SQnodeMgmt *pMgmt, EQueueType qtype, SRpcMsg *pMsg);
......@@ -49,7 +47,6 @@ int32_t qmStartWorker(SQnodeMgmt *pMgmt);
void qmStopWorker(SQnodeMgmt *pMgmt);
int32_t qmPutNodeMsgToQueryQueue(SQnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t qmPutNodeMsgToFetchQueue(SQnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t qmPutNodeMsgToMonitorQueue(SQnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t qndPreprocessQueryMsg(SQnode *pQnode, SRpcMsg *pMsg);
......
......@@ -29,31 +29,6 @@ void qmGetQnodeLoads(SQnodeMgmt *pMgmt, SQnodeLoad *pInfo) {
pInfo->dnodeId = pMgmt->pData->dnodeId;
}
int32_t qmProcessGetMonitorInfoReq(SQnodeMgmt *pMgmt, SRpcMsg *pMsg) {
SMonQmInfo qmInfo = {0};
qmGetMonitorInfo(pMgmt, &qmInfo);
dmGetMonitorSystemInfo(&qmInfo.sys);
monGetLogs(&qmInfo.log);
int32_t rspLen = tSerializeSMonQmInfo(NULL, 0, &qmInfo);
if (rspLen < 0) {
terrno = TSDB_CODE_INVALID_MSG;
return -1;
}
void *pRsp = rpcMallocCont(rspLen);
if (pRsp == NULL) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
return -1;
}
tSerializeSMonQmInfo(pRsp, rspLen, &qmInfo);
pMsg->info.rsp = pRsp;
pMsg->info.rspLen = rspLen;
tFreeSMonQmInfo(&qmInfo);
return 0;
}
int32_t qmProcessCreateReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg) {
SDCreateQnodeReq createReq = {0};
if (tDeserializeSCreateDropMQSNodeReq(pMsg->pCont, pMsg->contLen, &createReq) != 0) {
......@@ -103,8 +78,6 @@ SArray *qmGetMsgHandles() {
SArray *pArray = taosArrayInit(16, sizeof(SMgmtHandle));
if (pArray == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_MON_QM_INFO, qmPutNodeMsgToMonitorQueue, 0) == NULL) goto _OVER;
// Requests handled by VNODE
if (dmSetMgmtHandle(pArray, TDMT_SCH_QUERY, qmPutNodeMsgToQueryQueue, 1) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_SCH_MERGE_QUERY, qmPutNodeMsgToQueryQueue, 1) == NULL) goto _OVER;
......
......@@ -28,18 +28,9 @@ static inline void qmSendRsp(SRpcMsg *pMsg, int32_t code) {
static void qmProcessQueue(SQueueInfo *pInfo, SRpcMsg *pMsg) {
SQnodeMgmt *pMgmt = pInfo->ahandle;
int32_t code = -1;
dTrace("msg:%p, get from qnode queue", pMsg);
switch (pMsg->msgType) {
case TDMT_MON_QM_INFO:
code = qmProcessGetMonitorInfoReq(pMgmt, pMsg);
break;
default:
code = qndProcessQueryMsg(pMgmt->pQnode, pInfo->timestamp, pMsg);
break;
}
int32_t code = qndProcessQueryMsg(pMgmt->pQnode, pInfo->timestamp, pMsg);
if (IsReq(pMsg) && code != TSDB_CODE_ACTION_IN_PROGRESS) {
if (code != 0 && terrno != 0) code = terrno;
qmSendRsp(pMsg, code);
......@@ -66,10 +57,6 @@ int32_t qmPutNodeMsgToFetchQueue(SQnodeMgmt *pMgmt, SRpcMsg *pMsg) {
return qmPutNodeMsgToWorker(&pMgmt->fetchWorker, pMsg);
}
int32_t qmPutNodeMsgToMonitorQueue(SQnodeMgmt *pMgmt, SRpcMsg *pMsg) {
return qmPutNodeMsgToWorker(&pMgmt->monitorWorker, pMsg);
}
int32_t qmPutRpcMsgToQueue(SQnodeMgmt *pMgmt, EQueueType qtype, SRpcMsg *pRpc) {
SRpcMsg *pMsg = taosAllocateQitem(sizeof(SRpcMsg), RPC_QITEM);
if (pMsg == NULL) return -1;
......@@ -136,24 +123,11 @@ int32_t qmStartWorker(SQnodeMgmt *pMgmt) {
return -1;
}
SSingleWorkerCfg mCfg = {
.min = 1,
.max = 1,
.name = "qnode-monitor",
.fp = (FItem)qmProcessQueue,
.param = pMgmt,
};
if (tSingleWorkerInit(&pMgmt->monitorWorker, &mCfg) != 0) {
dError("failed to start qnode-monitor worker since %s", terrstr());
return -1;
}
dDebug("qnode workers are initialized");
return 0;
}
void qmStopWorker(SQnodeMgmt *pMgmt) {
tSingleWorkerCleanup(&pMgmt->monitorWorker);
tSingleWorkerCleanup(&pMgmt->queryWorker);
tSingleWorkerCleanup(&pMgmt->fetchWorker);
dDebug("qnode workers are closed");
......
......@@ -33,14 +33,12 @@ typedef struct SSnodeMgmt {
int8_t uniqueWorkerInUse;
SArray *uniqueWorkers; // SArray<SMultiWorker*>
SSingleWorker sharedWorker;
SSingleWorker monitorWorker;
} SSnodeMgmt;
// smHandle.c
SArray *smGetMsgHandles();
int32_t smProcessCreateReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg);
int32_t smProcessDropReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg);
int32_t smProcessGetMonitorInfoReq(SSnodeMgmt *pMgmt, SRpcMsg *pMsg);
// smWorker.c
int32_t smStartWorker(SSnodeMgmt *pMgmt);
......@@ -49,7 +47,6 @@ int32_t smPutNodeMsgToMgmtQueue(SSnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t smPutNodeMsgToUniqueQueue(SSnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t smPutNodeMsgToSharedQueue(SSnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t smPutNodeMsgToExecQueue(SSnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t smPutNodeMsgToMonitorQueue(SSnodeMgmt *pMgmt, SRpcMsg *pMsg);
#ifdef __cplusplus
}
......
......@@ -18,31 +18,6 @@
void smGetMonitorInfo(SSnodeMgmt *pMgmt, SMonSmInfo *smInfo) {}
int32_t smProcessGetMonitorInfoReq(SSnodeMgmt *pMgmt, SRpcMsg *pMsg) {
SMonSmInfo smInfo = {0};
smGetMonitorInfo(pMgmt, &smInfo);
dmGetMonitorSystemInfo(&smInfo.sys);
monGetLogs(&smInfo.log);
int32_t rspLen = tSerializeSMonSmInfo(NULL, 0, &smInfo);
if (rspLen < 0) {
terrno = TSDB_CODE_INVALID_MSG;
return -1;
}
void *pRsp = rpcMallocCont(rspLen);
if (pRsp == NULL) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
return -1;
}
tSerializeSMonSmInfo(pRsp, rspLen, &smInfo);
pMsg->info.rsp = pRsp;
pMsg->info.rspLen = rspLen;
tFreeSMonSmInfo(&smInfo);
return 0;
}
int32_t smProcessCreateReq(const SMgmtInputOpt *pInput, SRpcMsg *pMsg) {
SDCreateSnodeReq createReq = {0};
if (tDeserializeSCreateDropMQSNodeReq(pMsg->pCont, pMsg->contLen, &createReq) != 0) {
......@@ -92,8 +67,6 @@ SArray *smGetMsgHandles() {
SArray *pArray = taosArrayInit(4, sizeof(SMgmtHandle));
if (pArray == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_MON_SM_INFO, smPutNodeMsgToMonitorQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_STREAM_TASK_DEPLOY, smPutNodeMsgToMgmtQueue, 1) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_STREAM_TASK_DROP, smPutNodeMsgToMgmtQueue, 1) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_STREAM_TASK_RUN, smPutNodeMsgToSharedQueue, 1) == NULL) goto _OVER;
......
......@@ -26,27 +26,6 @@ static inline void smSendRsp(SRpcMsg *pMsg, int32_t code) {
tmsgSendRsp(&rsp);
}
static void smProcessMonitorQueue(SQueueInfo *pInfo, SRpcMsg *pMsg) {
SSnodeMgmt *pMgmt = pInfo->ahandle;
int32_t code = -1;
dTrace("msg:%p, get from snode-monitor queue", pMsg);
if (pMsg->msgType == TDMT_MON_SM_INFO) {
code = smProcessGetMonitorInfoReq(pMgmt, pMsg);
} else {
terrno = TSDB_CODE_MSG_NOT_PROCESSED;
}
if (IsReq(pMsg)) {
if (code != 0 && terrno != 0) code = terrno;
smSendRsp(pMsg, code);
}
dTrace("msg:%p, is freed, code:0x%x", pMsg, code);
rpcFreeCont(pMsg->pCont);
taosFreeQitem(pMsg);
}
static void smProcessUniqueQueue(SQueueInfo *pInfo, STaosQall *qall, int32_t numOfMsgs) {
SSnodeMgmt *pMgmt = pInfo->ahandle;
......@@ -123,24 +102,11 @@ int32_t smStartWorker(SSnodeMgmt *pMgmt) {
return -1;
}
SSingleWorkerCfg mCfg = {
.min = 1,
.max = 1,
.name = "snode-monitor",
.fp = (FItem)smProcessMonitorQueue,
.param = pMgmt,
};
if (tSingleWorkerInit(&pMgmt->monitorWorker, &mCfg) != 0) {
dError("failed to start snode-monitor worker since %s", terrstr());
return -1;
}
dDebug("snode workers are initialized");
return 0;
}
void smStopWorker(SSnodeMgmt *pMgmt) {
tSingleWorkerCleanup(&pMgmt->monitorWorker);
for (int32_t i = 0; i < taosArrayGetSize(pMgmt->uniqueWorkers); i++) {
SMultiWorker *pWorker = taosArrayGetP(pMgmt->uniqueWorkers, i);
tMultiWorkerCleanup(pWorker);
......@@ -175,14 +141,6 @@ int32_t smPutNodeMsgToMgmtQueue(SSnodeMgmt *pMgmt, SRpcMsg *pMsg) {
return 0;
}
int32_t smPutNodeMsgToMonitorQueue(SSnodeMgmt *pMgmt, SRpcMsg *pMsg) {
SSingleWorker *pWorker = &pMgmt->monitorWorker;
dTrace("msg:%p, put into worker %s", pMsg, pWorker->name);
taosWriteQitem(pWorker->queue, pMsg);
return 0;
}
int32_t smPutNodeMsgToUniqueQueue(SSnodeMgmt *pMgmt, SRpcMsg *pMsg) {
int32_t index = smGetSWIdFromMsg(pMsg);
SMultiWorker *pWorker = taosArrayGetP(pMgmt->uniqueWorkers, index);
......
......@@ -38,7 +38,6 @@ typedef struct SVnodeMgmt {
SWWorkerPool writePool;
SWWorkerPool applyPool;
SSingleWorker mgmtWorker;
SSingleWorker monitorWorker;
SHashObj *hash;
TdThreadRwlock lock;
SVnodesStat state;
......@@ -89,8 +88,6 @@ void vmCloseVnode(SVnodeMgmt *pMgmt, SVnodeObj *pVnode);
SArray *vmGetMsgHandles();
int32_t vmProcessCreateVnodeReq(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t vmProcessDropVnodeReq(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t vmProcessGetMonitorInfoReq(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t vmProcessGetLoadsReq(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
// vmFile.c
int32_t vmGetVnodeListFromFile(SVnodeMgmt *pMgmt, SWrapperCfg **ppCfgs, int32_t *numOfVnodes);
......@@ -114,7 +111,6 @@ int32_t vmPutMsgToFetchQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t vmPutMsgToStreamQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t vmPutMsgToMergeQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t vmPutMsgToMgmtQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
int32_t vmPutMsgToMonitorQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg);
#ifdef __cplusplus
}
......
......@@ -83,54 +83,6 @@ void vmGetMonitorInfo(SVnodeMgmt *pMgmt, SMonVmInfo *pInfo) {
taosArrayDestroy(pVloads);
}
int32_t vmProcessGetMonitorInfoReq(SVnodeMgmt *pMgmt, SRpcMsg *pMsg) {
SMonVmInfo vmInfo = {0};
vmGetMonitorInfo(pMgmt, &vmInfo);
dmGetMonitorSystemInfo(&vmInfo.sys);
monGetLogs(&vmInfo.log);
int32_t rspLen = tSerializeSMonVmInfo(NULL, 0, &vmInfo);
if (rspLen < 0) {
terrno = TSDB_CODE_INVALID_MSG;
return -1;
}
void *pRsp = rpcMallocCont(rspLen);
if (pRsp == NULL) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
return -1;
}
tSerializeSMonVmInfo(pRsp, rspLen, &vmInfo);
pMsg->info.rsp = pRsp;
pMsg->info.rspLen = rspLen;
tFreeSMonVmInfo(&vmInfo);
return 0;
}
int32_t vmProcessGetLoadsReq(SVnodeMgmt *pMgmt, SRpcMsg *pMsg) {
SMonVloadInfo vloads = {0};
vmGetVnodeLoads(pMgmt, &vloads, false);
int32_t rspLen = tSerializeSMonVloadInfo(NULL, 0, &vloads);
if (rspLen < 0) {
terrno = TSDB_CODE_INVALID_MSG;
return -1;
}
void *pRsp = rpcMallocCont(rspLen);
if (pRsp == NULL) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
return -1;
}
tSerializeSMonVloadInfo(pRsp, rspLen, &vloads);
pMsg->info.rsp = pRsp;
pMsg->info.rspLen = rspLen;
tFreeSMonVloadInfo(&vloads);
return 0;
}
static void vmGenerateVnodeCfg(SCreateVnodeReq *pCreate, SVnodeCfg *pCfg) {
memcpy(pCfg, &vnodeCfgDefault, sizeof(SVnodeCfg));
......@@ -348,9 +300,6 @@ SArray *vmGetMsgHandles() {
SArray *pArray = taosArrayInit(32, sizeof(SMgmtHandle));
if (pArray == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_MON_VM_INFO, vmPutMsgToMonitorQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_MON_VM_LOAD, vmPutMsgToMonitorQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_VND_SUBMIT, vmPutMsgToWriteQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_SCH_QUERY, vmPutMsgToQueryQueue, 0) == NULL) goto _OVER;
if (dmSetMgmtHandle(pArray, TDMT_SCH_MERGE_QUERY, vmPutMsgToQueryQueue, 0) == NULL) goto _OVER;
......
......@@ -34,12 +34,6 @@ static void vmProcessMgmtQueue(SQueueInfo *pInfo, SRpcMsg *pMsg) {
dGTrace("msg:%p, get from vnode-mgmt queue", pMsg);
switch (pMsg->msgType) {
case TDMT_MON_VM_INFO:
code = vmProcessGetMonitorInfoReq(pMgmt, pMsg);
break;
case TDMT_MON_VM_LOAD:
code = vmProcessGetLoadsReq(pMgmt, pMsg);
break;
case TDMT_DND_CREATE_VNODE:
code = vmProcessCreateVnodeReq(pMgmt, pMsg);
break;
......@@ -258,13 +252,6 @@ int32_t vmPutMsgToMgmtQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg) {
return 0;
}
int32_t vmPutMsgToMonitorQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg) {
const STraceId *trace = &pMsg->info.traceId;
dGTrace("msg:%p, put into vnode-monitor queue", pMsg);
taosWriteQitem(pMgmt->monitorWorker.queue, pMsg);
return 0;
}
int32_t vmPutRpcMsgToQueue(SVnodeMgmt *pMgmt, EQueueType qtype, SRpcMsg *pRpc) {
SRpcMsg *pMsg = taosAllocateQitem(sizeof(SRpcMsg), RPC_QITEM);
if (pMsg == NULL) {
......@@ -410,21 +397,11 @@ int32_t vmStartWorker(SVnodeMgmt *pMgmt) {
};
if (tSingleWorkerInit(&pMgmt->mgmtWorker, &mgmtCfg) != 0) return -1;
SSingleWorkerCfg monitorCfg = {
.min = 1,
.max = 1,
.name = "vnode-monitor",
.fp = (FItem)vmProcessMgmtQueue,
.param = pMgmt,
};
if (tSingleWorkerInit(&pMgmt->monitorWorker, &monitorCfg) != 0) return -1;
dDebug("vnode workers are initialized");
return 0;
}
void vmStopWorker(SVnodeMgmt *pMgmt) {
tSingleWorkerCleanup(&pMgmt->monitorWorker);
tSingleWorkerCleanup(&pMgmt->mgmtWorker);
tWWorkerCleanup(&pMgmt->writePool);
tWWorkerCleanup(&pMgmt->applyPool);
......
......@@ -25,44 +25,6 @@
extern "C" {
#endif
typedef struct SMgmtWrapper SMgmtWrapper;
#define SINGLE_PROC 0
#define CHILD_PROC 1
#define PARENT_PROC 2
#define TEST_PROC 3
#define OnlyInSingleProc(wrapper) ((wrapper)->proc.ptype == SINGLE_PROC)
#define OnlyInChildProc(wrapper) ((wrapper)->proc.ptype == CHILD_PROC)
#define OnlyInParentProc(wrapper) ((wrapper)->proc.ptype == PARENT_PROC)
#define InChildProc(wrapper) ((wrapper)->proc.ptype & CHILD_PROC)
#define InParentProc(wrapper) ((wrapper)->proc.ptype & PARENT_PROC)
typedef struct {
int32_t head;
int32_t tail;
int32_t total;
int32_t avail;
int32_t items;
char name[8];
TdThreadMutex mutex;
tsem_t sem;
char pBuffer[];
} SProcQueue;
typedef struct {
SMgmtWrapper *wrapper;
const char *name;
SHashObj *hash;
SProcQueue *pqueue;
SProcQueue *cqueue;
TdThread pthread;
TdThread cthread;
SShm shm;
int32_t pid;
EDndProcType ptype;
bool stop;
} SProc;
typedef struct SMgmtWrapper {
SMgmtFunc func;
struct SDnode *pDnode;
......@@ -74,7 +36,6 @@ typedef struct SMgmtWrapper {
EDndNodeType ntype;
bool deployed;
bool required;
SProc proc;
NodeMsgFp msgFps[TDMT_MAX];
} SMgmtWrapper;
......@@ -111,8 +72,6 @@ typedef struct SUdfdData {
typedef struct SDnode {
int8_t once;
bool stop;
EDndProcType ptype;
EDndNodeType rtype;
EDndRunStatus status;
SStartupInfo startup;
SDnodeTrans trans;
......@@ -128,7 +87,7 @@ SDnode *dmInstance();
void dmReportStartup(const char *pName, const char *pDesc);
// dmMgmt.c
int32_t dmInitDnode(SDnode *pDnode, EDndNodeType rtype);
int32_t dmInitDnode(SDnode *pDnode);
void dmCleanupDnode(SDnode *pDnode);
SMgmtWrapper *dmAcquireWrapper(SDnode *pDnode, EDndNodeType nType);
int32_t dmMarkWrapper(SMgmtWrapper *pWrapper);
......@@ -145,16 +104,6 @@ void dmStopNode(SMgmtWrapper *pWrapper);
void dmCloseNode(SMgmtWrapper *pWrapper);
int32_t dmRunDnode(SDnode *pDnode);
// dmProc.c
int32_t dmInitProc(struct SMgmtWrapper *pWrapper);
void dmCleanupProc(struct SMgmtWrapper *pWrapper);
int32_t dmRunProc(SProc *proc);
void dmStopProc(SProc *proc);
void dmRemoveProcRpcHandle(SProc *proc, void *handle);
void dmCloseProcRpcHandles(SProc *proc);
int32_t dmPutToProcCQueue(SProc *proc, SRpcMsg *pMsg, EProcFuncType ftype);
void dmPutToProcPQueue(SProc *proc, SRpcMsg *pMsg, EProcFuncType ftype);
// dmTransport.c
int32_t dmInitServer(SDnode *pDnode);
void dmCleanupServer(SDnode *pDnode);
......
......@@ -53,13 +53,19 @@ static bool dmCheckDiskSpace() {
osUpdate();
// sufficiency
if (!osDataSpaceSufficient()) {
dWarn("free data disk size: %f GB, not sufficient, expected %f GB at least", (double)tsDataSpace.size.avail / 1024.0 / 1024.0 / 1024.0, (double)tsDataSpace.reserved / 1024.0 / 1024.0 / 1024.0);
dWarn("free data disk size: %f GB, not sufficient, expected %f GB at least",
(double)tsDataSpace.size.avail / 1024.0 / 1024.0 / 1024.0,
(double)tsDataSpace.reserved / 1024.0 / 1024.0 / 1024.0);
}
if (!osLogSpaceSufficient()) {
dWarn("free log disk size: %f GB, not sufficient, expected %f GB at least", (double)tsLogSpace.size.avail / 1024.0 / 1024.0 / 1024.0, (double)tsLogSpace.reserved / 1024.0 / 1024.0 / 1024.0);
dWarn("free log disk size: %f GB, not sufficient, expected %f GB at least",
(double)tsLogSpace.size.avail / 1024.0 / 1024.0 / 1024.0,
(double)tsLogSpace.reserved / 1024.0 / 1024.0 / 1024.0);
}
if (!osTempSpaceSufficient()) {
dWarn("free temp disk size: %f GB, not sufficient, expected %f GB at least", (double)tsTempSpace.size.avail / 1024.0 / 1024.0 / 1024.0, (double)tsTempSpace.reserved / 1024.0 / 1024.0 / 1024.0);
dWarn("free temp disk size: %f GB, not sufficient, expected %f GB at least",
(double)tsTempSpace.size.avail / 1024.0 / 1024.0 / 1024.0,
(double)tsTempSpace.reserved / 1024.0 / 1024.0 / 1024.0);
}
// availability
bool ret = true;
......@@ -82,7 +88,7 @@ static bool dmCheckDiskSpace() {
}
static bool dmCheckDataDirVersion() {
char checkDataDirJsonFileName[PATH_MAX];
char checkDataDirJsonFileName[PATH_MAX] = {0};
snprintf(checkDataDirJsonFileName, PATH_MAX, "%s/dnode/dnodeCfg.json", tsDataDir);
if (taosCheckExistFile(checkDataDirJsonFileName)) {
dError("The default data directory %s contains old data of tdengine 2.x, please clear it before running!",
......@@ -92,14 +98,14 @@ static bool dmCheckDataDirVersion() {
return true;
}
int32_t dmInit(int8_t rtype) {
int32_t dmInit() {
dInfo("start to init dnode env");
if (!dmCheckDataDirVersion()) return -1;
if (!dmCheckDiskSpace()) return -1;
if (dmCheckRepeatInit(dmInstance()) != 0) return -1;
if (dmInitSystem() != 0) return -1;
if (dmInitMonitor() != 0) return -1;
if (dmInitDnode(dmInstance(), rtype) != 0) return -1;
if (dmInitDnode(dmInstance()) != 0) return -1;
dInfo("dnode env is initialized");
return 0;
......@@ -126,8 +132,8 @@ void dmCleanup() {
taosStopCacheRefreshWorker();
dInfo("dnode env is cleaned up");
taosCloseLog();
taosCleanupCfg();
taosCloseLog();
}
void dmStop() {
......@@ -174,7 +180,6 @@ static int32_t dmProcessCreateNodeReq(EDndNodeType ntype, SRpcMsg *pMsg) {
}
pWrapper->deployed = true;
pWrapper->required = true;
pWrapper->proc.ptype = pDnode->ptype;
}
taosThreadMutexUnlock(&pDnode->mutex);
......
......@@ -26,47 +26,14 @@ static bool dmRequireNode(SDnode *pDnode, SMgmtWrapper *pWrapper) {
int32_t code = (*pWrapper->func.requiredFp)(&input, &required);
if (!required) {
dDebug("node:%s, does not require startup", pWrapper->name);
}
if (pWrapper->ntype == DNODE) {
if (pDnode->rtype != DNODE && pDnode->rtype != NODE_END) {
required = false;
dDebug("node:%s, does not require startup in child process", pWrapper->name);
}
} else {
if (OnlyInChildProc(pWrapper)) {
if (pWrapper->ntype != pDnode->rtype) {
dDebug("node:%s, does not require startup in child process", pWrapper->name);
required = false;
}
}
}
if (required) {
dDebug("node:%s, required to startup", pWrapper->name);
}
return required;
}
static int32_t dmInitVars(SDnode *pDnode, EDndNodeType rtype) {
pDnode->rtype = rtype;
if (tsMultiProcess == 0) {
pDnode->ptype = DND_PROC_SINGLE;
dInfo("dnode will run in single-process mode");
} else if (tsMultiProcess > 1) {
pDnode->ptype = DND_PROC_TEST;
dInfo("dnode will run in multi-process test mode");
} else if (pDnode->rtype == DNODE || pDnode->rtype == NODE_END) {
pDnode->ptype = DND_PROC_PARENT;
dInfo("dnode will run in parent-process mode");
} else {
pDnode->ptype = DND_PROC_CHILD;
SMgmtWrapper *pWrapper = &pDnode->wrappers[pDnode->rtype];
dInfo("dnode will run in child-process mode, node:%s", dmNodeName(pDnode->rtype));
}
static int32_t dmInitVars(SDnode *pDnode) {
SDnodeData *pData = &pDnode->data;
pData->dnodeId = 0;
pData->clusterId = 0;
......@@ -127,12 +94,12 @@ static void dmClearVars(SDnode *pDnode) {
memset(&pDnode->mutex, 0, sizeof(pDnode->mutex));
}
int32_t dmInitDnode(SDnode *pDnode, EDndNodeType rtype) {
int32_t dmInitDnode(SDnode *pDnode) {
dDebug("start to create dnode");
int32_t code = -1;
char path[PATH_MAX + 100] = {0};
if (dmInitVars(pDnode, rtype) != 0) {
if (dmInitVars(pDnode) != 0) {
goto _OVER;
}
......@@ -147,13 +114,6 @@ int32_t dmInitDnode(SDnode *pDnode, EDndNodeType rtype) {
pWrapper->pDnode = pDnode;
pWrapper->name = dmNodeName(ntype);
pWrapper->ntype = ntype;
pWrapper->proc.wrapper = pWrapper;
pWrapper->proc.shm.id = -1;
pWrapper->proc.pid = -1;
pWrapper->proc.ptype = pDnode->ptype;
if (ntype == DNODE) {
pWrapper->proc.ptype = DND_PROC_SINGLE;
}
taosThreadRwlockInit(&pWrapper->lock, NULL);
snprintf(path, sizeof(path), "%s%s%s", tsDataDir, TD_DIRSEP, pWrapper->name);
......@@ -164,11 +124,6 @@ int32_t dmInitDnode(SDnode *pDnode, EDndNodeType rtype) {
}
pWrapper->required = dmRequireNode(pDnode, pWrapper);
if (ntype != DNODE && dmReadShmFile(pWrapper->path, pWrapper->name, pDnode->rtype, &pWrapper->proc.shm) != 0) {
dError("node:%s, failed to read shm file since %s", pWrapper->name, terrstr());
goto _OVER;
}
}
if (dmInitMsgHandle(pDnode) != 0) {
......@@ -176,16 +131,14 @@ int32_t dmInitDnode(SDnode *pDnode, EDndNodeType rtype) {
goto _OVER;
}
if (pDnode->ptype == SINGLE_PROC || (pDnode->ptype & PARENT_PROC)) {
pDnode->lockfile = dmCheckRunning(tsDataDir);
if (pDnode->lockfile == NULL) {
goto _OVER;
}
pDnode->lockfile = dmCheckRunning(tsDataDir);
if (pDnode->lockfile == NULL) {
goto _OVER;
}
if (dmInitServer(pDnode) != 0) {
dError("failed to init transport since %s", terrstr());
goto _OVER;
}
if (dmInitServer(pDnode) != 0) {
dError("failed to init transport since %s", terrstr());
goto _OVER;
}
if (dmInitClient(pDnode) != 0) {
......@@ -248,7 +201,7 @@ int32_t dmMarkWrapper(SMgmtWrapper *pWrapper) {
int32_t code = 0;
taosThreadRwlockRdlock(&pWrapper->lock);
if (pWrapper->deployed || (InParentProc(pWrapper) && pWrapper->required)) {
if (pWrapper->deployed) {
int32_t refCount = atomic_add_fetch_32(&pWrapper->refCount, 1);
// dTrace("node:%s, is marked, ref:%d", pWrapper->name, refCount);
} else {
......
......@@ -17,18 +17,6 @@
#include "dmMgmt.h"
#include "dmNodes.h"
#define dmSendLocalRecv(pDnode, mtype, func, pInfo) \
SRpcMsg rsp = {0}; \
SRpcMsg req = {.msgType = mtype}; \
SEpSet epset = {.inUse = 0, .numOfEps = 1}; \
tstrncpy(epset.eps[0].fqdn, tsLocalFqdn, TSDB_FQDN_LEN); \
epset.eps[0].port = tsServerPort; \
rpcSendRecv(pDnode->trans.clientRpc, &epset, &req, &rsp); \
if (rsp.code == 0 && rsp.contLen > 0) { \
func(rsp.pCont, rsp.contLen, pInfo); \
} \
rpcFreeCont(rsp.pCont);
static void dmGetMonitorBasicInfo(SDnode *pDnode, SMonBasicInfo *pInfo) {
pInfo->protocol = 1;
pInfo->dnode_id = pDnode->data.dnodeId;
......@@ -59,9 +47,7 @@ static void dmGetMmMonitorInfo(SDnode *pDnode) {
SMgmtWrapper *pWrapper = &pDnode->wrappers[MNODE];
if (dmMarkWrapper(pWrapper) == 0) {
SMonMmInfo mmInfo = {0};
if (tsMultiProcess) {
dmSendLocalRecv(pDnode, TDMT_MON_MM_INFO, tDeserializeSMonMmInfo, &mmInfo);
} else if (pWrapper->pMgmt != NULL) {
if (pWrapper->pMgmt != NULL) {
mmGetMonitorInfo(pWrapper->pMgmt, &mmInfo);
}
dmReleaseWrapper(pWrapper);
......@@ -74,9 +60,7 @@ static void dmGetVmMonitorInfo(SDnode *pDnode) {
SMgmtWrapper *pWrapper = &pDnode->wrappers[VNODE];
if (dmMarkWrapper(pWrapper) == 0) {
SMonVmInfo vmInfo = {0};
if (tsMultiProcess) {
dmSendLocalRecv(pDnode, TDMT_MON_VM_INFO, tDeserializeSMonVmInfo, &vmInfo);
} else if (pWrapper->pMgmt != NULL) {
if (pWrapper->pMgmt != NULL) {
vmGetMonitorInfo(pWrapper->pMgmt, &vmInfo);
}
dmReleaseWrapper(pWrapper);
......@@ -89,9 +73,7 @@ static void dmGetQmMonitorInfo(SDnode *pDnode) {
SMgmtWrapper *pWrapper = &pDnode->wrappers[QNODE];
if (dmMarkWrapper(pWrapper) == 0) {
SMonQmInfo qmInfo = {0};
if (tsMultiProcess) {
dmSendLocalRecv(pDnode, TDMT_MON_QM_INFO, tDeserializeSMonQmInfo, &qmInfo);
} else if (pWrapper->pMgmt != NULL) {
if (pWrapper->pMgmt != NULL) {
qmGetMonitorInfo(pWrapper->pMgmt, &qmInfo);
}
dmReleaseWrapper(pWrapper);
......@@ -104,9 +86,7 @@ static void dmGetSmMonitorInfo(SDnode *pDnode) {
SMgmtWrapper *pWrapper = &pDnode->wrappers[SNODE];
if (dmMarkWrapper(pWrapper) == 0) {
SMonSmInfo smInfo = {0};
if (tsMultiProcess) {
dmSendLocalRecv(pDnode, TDMT_MON_SM_INFO, tDeserializeSMonSmInfo, &smInfo);
} else if (pWrapper->pMgmt != NULL) {
if (pWrapper->pMgmt != NULL) {
smGetMonitorInfo(pWrapper->pMgmt, &smInfo);
}
dmReleaseWrapper(pWrapper);
......@@ -132,9 +112,7 @@ void dmGetVnodeLoads(SMonVloadInfo *pInfo) {
SDnode *pDnode = dmInstance();
SMgmtWrapper *pWrapper = &pDnode->wrappers[VNODE];
if (dmMarkWrapper(pWrapper) == 0) {
if (tsMultiProcess) {
dmSendLocalRecv(pDnode, TDMT_MON_VM_LOAD, tDeserializeSMonVloadInfo, pInfo);
} else if (pWrapper->pMgmt != NULL) {
if (pWrapper->pMgmt != NULL) {
vmGetVnodeLoads(pWrapper->pMgmt, pInfo, false);
}
dmReleaseWrapper(pWrapper);
......@@ -145,9 +123,7 @@ void dmGetMnodeLoads(SMonMloadInfo *pInfo) {
SDnode *pDnode = dmInstance();
SMgmtWrapper *pWrapper = &pDnode->wrappers[MNODE];
if (dmMarkWrapper(pWrapper) == 0) {
if (tsMultiProcess) {
dmSendLocalRecv(pDnode, TDMT_MON_MM_LOAD, tDeserializeSMonMloadInfo, pInfo);
} else if (pWrapper->pMgmt != NULL) {
if (pWrapper->pMgmt != NULL) {
mmGetMnodeLoads(pWrapper->pMgmt, pInfo);
}
dmReleaseWrapper(pWrapper);
......@@ -158,9 +134,7 @@ void dmGetQnodeLoads(SQnodeLoad *pInfo) {
SDnode *pDnode = dmInstance();
SMgmtWrapper *pWrapper = &pDnode->wrappers[QNODE];
if (dmMarkWrapper(pWrapper) == 0) {
if (tsMultiProcess) {
dmSendLocalRecv(pDnode, TDMT_MON_QM_LOAD, tDeserializeSQnodeLoad, pInfo);
} else if (pWrapper->pMgmt != NULL) {
if (pWrapper->pMgmt != NULL) {
qmGetQnodeLoads(pWrapper->pMgmt, pInfo);
}
dmReleaseWrapper(pWrapper);
......
......@@ -16,53 +16,6 @@
#define _DEFAULT_SOURCE
#include "dmMgmt.h"
static int32_t dmCreateShm(SMgmtWrapper *pWrapper) {
int32_t shmsize = tsMnodeShmSize;
if (pWrapper->ntype == VNODE) {
shmsize = tsVnodeShmSize;
} else if (pWrapper->ntype == QNODE) {
shmsize = tsQnodeShmSize;
} else if (pWrapper->ntype == SNODE) {
shmsize = tsSnodeShmSize;
} else if (pWrapper->ntype == MNODE) {
shmsize = tsMnodeShmSize;
} else {
return -1;
}
if (taosCreateShm(&pWrapper->proc.shm, pWrapper->ntype, shmsize) != 0) {
terrno = TAOS_SYSTEM_ERROR(terrno);
dError("node:%s, failed to create shm size:%d since %s", pWrapper->name, shmsize, terrstr());
return -1;
}
dInfo("node:%s, shm:%d is created, size:%d", pWrapper->name, pWrapper->proc.shm.id, shmsize);
return 0;
}
static int32_t dmNewProc(SMgmtWrapper *pWrapper, EDndNodeType ntype) {
char tstr[8] = {0};
char *args[6] = {0};
snprintf(tstr, sizeof(tstr), "%d", ntype);
args[1] = "-c";
args[2] = configDir;
args[3] = "-n";
args[4] = tstr;
args[5] = NULL;
int32_t pid = taosNewProc(args);
if (pid <= 0) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to exec in new process since %s", pWrapper->name, terrstr());
return -1;
}
taosIgnSignal(SIGCHLD);
pWrapper->proc.pid = pid;
dInfo("node:%s, continue running in new pid:%d", pWrapper->name, pid);
return 0;
}
int32_t dmOpenNode(SMgmtWrapper *pWrapper) {
SDnode *pDnode = pWrapper->pDnode;
......@@ -75,64 +28,14 @@ int32_t dmOpenNode(SMgmtWrapper *pWrapper) {
SMgmtOutputOpt output = {0};
SMgmtInputOpt input = dmBuildMgmtInputOpt(pWrapper);
if (pWrapper->ntype == DNODE || InChildProc(pWrapper)) {
tmsgSetDefault(&input.msgCb);
}
if (OnlyInSingleProc(pWrapper)) {
dInfo("node:%s, start to open", pWrapper->name);
if ((*pWrapper->func.openFp)(&input, &output) != 0) {
dError("node:%s, failed to open since %s", pWrapper->name, terrstr());
return -1;
}
dInfo("node:%s, has been opened", pWrapper->name);
pWrapper->deployed = true;
}
if (InParentProc(pWrapper)) {
dDebug("node:%s, start to open", pWrapper->name);
if (dmCreateShm(pWrapper) != 0) {
return -1;
}
if (dmWriteShmFile(pWrapper->path, pWrapper->name, &pWrapper->proc.shm) != 0) {
return -1;
}
if (OnlyInParentProc(pWrapper)) {
if (dmInitProc(pWrapper) != 0) {
dError("node:%s, failed to init proc since %s", pWrapper->name, terrstr());
return -1;
}
if (pDnode->rtype == NODE_END) {
dInfo("node:%s, should be started manually in child process", pWrapper->name);
} else {
if (dmNewProc(pWrapper, pWrapper->ntype) != 0) {
return -1;
}
}
if (dmRunProc(&pWrapper->proc) != 0) {
dError("node:%s, failed to run proc since %s", pWrapper->name, terrstr());
return -1;
}
}
dDebug("node:%s, has been opened in parent process", pWrapper->name);
}
if (InChildProc(pWrapper)) {
dDebug("node:%s, start to open", pWrapper->name);
if ((*pWrapper->func.openFp)(&input, &output) != 0) {
dError("node:%s, failed to open since %s", pWrapper->name, terrstr());
return -1;
}
if (dmInitProc(pWrapper) != 0) {
return -1;
}
if (dmRunProc(&pWrapper->proc) != 0) {
return -1;
}
dDebug("node:%s, has been opened in child process", pWrapper->name);
pWrapper->deployed = true;
dInfo("node:%s, start to open", pWrapper->name);
tmsgSetDefault(&input.msgCb);
if ((*pWrapper->func.openFp)(&input, &output) != 0) {
dError("node:%s, failed to open since %s", pWrapper->name, terrstr());
return -1;
}
dInfo("node:%s, has been opened", pWrapper->name);
pWrapper->deployed = true;
if (output.pMgmt != NULL) {
pWrapper->pMgmt = output.pMgmt;
......@@ -143,7 +46,6 @@ int32_t dmOpenNode(SMgmtWrapper *pWrapper) {
}
int32_t dmStartNode(SMgmtWrapper *pWrapper) {
if (OnlyInParentProc(pWrapper)) return 0;
if (pWrapper->func.startFp != NULL) {
dDebug("node:%s, start to start", pWrapper->name);
if ((*pWrapper->func.startFp)(pWrapper->pMgmt) != 0) {
......@@ -173,17 +75,6 @@ void dmCloseNode(SMgmtWrapper *pWrapper) {
taosMsleep(10);
}
if (OnlyInParentProc(pWrapper)) {
int32_t pid = pWrapper->proc.pid;
if (pid > 0 && taosProcExist(pid)) {
dInfo("node:%s, send kill signal to the child pid:%d", pWrapper->name, pid);
taosKillProc(pid);
dInfo("node:%s, wait for child pid:%d to stop", pWrapper->name, pid);
taosWaitProc(pid);
dInfo("node:%s, child pid:%d is stopped", pWrapper->name, pid);
}
}
taosThreadRwlockWrlock(&pWrapper->lock);
if (pWrapper->pMgmt != NULL) {
(*pWrapper->func.closeFp)(pWrapper->pMgmt);
......@@ -191,10 +82,6 @@ void dmCloseNode(SMgmtWrapper *pWrapper) {
}
taosThreadRwlockUnlock(&pWrapper->lock);
if (!OnlyInSingleProc(pWrapper)) {
dmCleanupProc(pWrapper);
}
dInfo("node:%s, has been closed", pWrapper->name);
}
......@@ -241,29 +128,8 @@ static void dmCloseNodes(SDnode *pDnode) {
}
}
static void dmWatchNodes(SDnode *pDnode) {
if (pDnode->ptype != PARENT_PROC) return;
if (pDnode->rtype == NODE_END) return;
taosThreadMutexLock(&pDnode->mutex);
for (EDndNodeType ntype = DNODE + 1; ntype < NODE_END; ++ntype) {
SMgmtWrapper *pWrapper = &pDnode->wrappers[ntype];
SProc *proc = &pWrapper->proc;
if (!pWrapper->required) continue;
if (!OnlyInParentProc(pWrapper)) continue;
if (proc->pid <= 0 || !taosProcExist(proc->pid)) {
dError("node:%s, pid:%d is killed and needs to restart", pWrapper->name, proc->pid);
dmCloseProcRpcHandles(&pWrapper->proc);
dmNewProc(pWrapper, ntype);
}
}
taosThreadMutexUnlock(&pDnode->mutex);
}
int32_t dmRunDnode(SDnode *pDnode) {
int count = 0;
int32_t count = 0;
if (dmOpenNodes(pDnode) != 0) {
dError("failed to open nodes since %s", terrstr());
return -1;
......@@ -273,6 +139,7 @@ int32_t dmRunDnode(SDnode *pDnode) {
dError("failed to start nodes since %s", terrstr());
return -1;
}
while (1) {
if (pDnode->stop) {
dInfo("TDengine is about to stop");
......@@ -282,8 +149,8 @@ int32_t dmRunDnode(SDnode *pDnode) {
return 0;
}
dmWatchNodes(pDnode);
if (count == 0) osUpdate();
count %= 10;
count++;
taosMsleep(100);
......
/*
* 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/>.
*/
#define _DEFAULT_SOURCE
#include "dmMgmt.h"
static inline int32_t CEIL8(int32_t v) { return ceil((float)(v) / 8) * 8; }
static int32_t dmInitProcMutex(SProcQueue *queue) {
TdThreadMutexAttr mattr = {0};
if (taosThreadMutexAttrInit(&mattr) != 0) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to init mutex while init attr since %s", queue->name, terrstr());
return -1;
}
if (taosThreadMutexAttrSetPshared(&mattr, PTHREAD_PROCESS_SHARED) != 0) {
taosThreadMutexAttrDestroy(&mattr);
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to init mutex while set shared since %s", queue->name, terrstr());
return -1;
}
if (taosThreadMutexInit(&queue->mutex, &mattr) != 0) {
taosThreadMutexAttrDestroy(&mattr);
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to init mutex since %s", queue->name, terrstr());
return -1;
}
taosThreadMutexAttrDestroy(&mattr);
return 0;
}
static int32_t dmInitProcSem(SProcQueue *queue) {
if (tsem_init(&queue->sem, 1, 0) != 0) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to init sem since %s", queue->name, terrstr());
return -1;
}
return 0;
}
static SProcQueue *dmInitProcQueue(SProc *proc, char *ptr, int32_t size) {
SProcQueue *queue = (SProcQueue *)(ptr);
int32_t bufSize = size - CEIL8(sizeof(SProcQueue));
if (bufSize <= 1024) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
return NULL;
}
if (proc->ptype & DND_PROC_PARENT) {
memset(ptr, 0, sizeof(SProcQueue));
if (dmInitProcMutex(queue) != 0) {
return NULL;
}
if (dmInitProcSem(queue) != 0) {
return NULL;
}
tstrncpy(queue->name, proc->name, sizeof(queue->name));
taosThreadMutexLock(&queue->mutex);
// queue->head = 0;
// queue->tail = 0;
queue->total = bufSize;
queue->avail = bufSize;
// queue->items = 0;
taosThreadMutexUnlock(&queue->mutex);
}
return queue;
}
static void dmCleanupProcQueue(SProcQueue *queue) {}
static inline int32_t dmPushToProcQueue(SProc *proc, SProcQueue *queue, SRpcMsg *pMsg, EProcFuncType ftype) {
const void *pHead = pMsg;
const void *pBody = pMsg->pCont;
const int16_t rawHeadLen = sizeof(SRpcMsg);
const int32_t rawBodyLen = pMsg->contLen;
const int16_t headLen = CEIL8(rawHeadLen);
const int32_t bodyLen = CEIL8(rawBodyLen);
const int32_t fullLen = headLen + bodyLen + 8;
const int64_t handle = (int64_t)pMsg->info.handle;
if (fullLen > queue->total) {
terrno = TSDB_CODE_OUT_OF_RANGE;
return -1;
}
taosThreadMutexLock(&queue->mutex);
if (fullLen > queue->avail) {
taosThreadMutexUnlock(&queue->mutex);
terrno = TSDB_CODE_OUT_OF_SHM_MEM;
return -1;
}
if (ftype == DND_FUNC_REQ && IsReq(pMsg) && pMsg->code == 0 && handle != 0 && pMsg->info.noResp == 0) {
if (taosHashPut(proc->hash, &handle, sizeof(int64_t), &pMsg->info, sizeof(SRpcConnInfo)) != 0) {
taosThreadMutexUnlock(&queue->mutex);
return -1;
}
}
const int32_t pos = queue->tail;
if (queue->tail < queue->total) {
*(int16_t *)(queue->pBuffer + queue->tail) = rawHeadLen;
*(int8_t *)(queue->pBuffer + queue->tail + 2) = (int8_t)ftype;
*(int32_t *)(queue->pBuffer + queue->tail + 4) = rawBodyLen;
} else {
*(int16_t *)(queue->pBuffer) = rawHeadLen;
*(int8_t *)(queue->pBuffer + 2) = (int8_t)ftype;
*(int32_t *)(queue->pBuffer + 4) = rawBodyLen;
}
if (queue->tail < queue->head) {
memcpy(queue->pBuffer + queue->tail + 8, pHead, rawHeadLen);
if (rawBodyLen > 0) memcpy(queue->pBuffer + queue->tail + 8 + headLen, pBody, rawBodyLen);
queue->tail = queue->tail + 8 + headLen + bodyLen;
} else {
int32_t remain = queue->total - queue->tail;
if (remain == 0) {
memcpy(queue->pBuffer + 8, pHead, rawHeadLen);
if (rawBodyLen > 0) memcpy(queue->pBuffer + 8 + headLen, pBody, rawBodyLen);
queue->tail = 8 + headLen + bodyLen;
} else if (remain == 8) {
memcpy(queue->pBuffer, pHead, rawHeadLen);
if (rawBodyLen > 0) memcpy(queue->pBuffer + headLen, pBody, rawBodyLen);
queue->tail = headLen + bodyLen;
} else if (remain < 8 + headLen) {
memcpy(queue->pBuffer + queue->tail + 8, pHead, remain - 8);
memcpy(queue->pBuffer, (char *)pHead + remain - 8, rawHeadLen - (remain - 8));
if (rawBodyLen > 0) memcpy(queue->pBuffer + headLen - (remain - 8), pBody, rawBodyLen);
queue->tail = headLen - (remain - 8) + bodyLen;
} else if (remain < 8 + headLen + bodyLen) {
memcpy(queue->pBuffer + queue->tail + 8, pHead, rawHeadLen);
if (rawBodyLen > 0) memcpy(queue->pBuffer + queue->tail + 8 + headLen, pBody, remain - 8 - headLen);
if (rawBodyLen > 0)
memcpy(queue->pBuffer, (char *)pBody + remain - 8 - headLen, rawBodyLen - (remain - 8 - headLen));
queue->tail = bodyLen - (remain - 8 - headLen);
} else {
memcpy(queue->pBuffer + queue->tail + 8, pHead, rawHeadLen);
if (rawBodyLen > 0) memcpy(queue->pBuffer + queue->tail + headLen + 8, pBody, rawBodyLen);
queue->tail = queue->tail + headLen + bodyLen + 8;
}
}
queue->avail -= fullLen;
queue->items++;
taosThreadMutexUnlock(&queue->mutex);
tsem_post(&queue->sem);
dTrace("node:%s, push %s msg:%p type:%d handle:%p len:%d code:0x%x, pos:%d remain:%d", queue->name, dmFuncStr(ftype),
pMsg, pMsg->msgType, pMsg->info.handle, pMsg->contLen, pMsg->code, pos, queue->items);
return 0;
}
static inline int32_t dmPopFromProcQueue(SProcQueue *queue, SRpcMsg **ppMsg, EProcFuncType *pFuncType) {
tsem_wait(&queue->sem);
taosThreadMutexLock(&queue->mutex);
if (queue->total - queue->avail <= 0) {
taosThreadMutexUnlock(&queue->mutex);
terrno = TSDB_CODE_OUT_OF_SHM_MEM;
return 0;
}
int16_t rawHeadLen = 0;
int8_t ftype = 0;
int32_t rawBodyLen = 0;
if (queue->head < queue->total) {
rawHeadLen = *(int16_t *)(queue->pBuffer + queue->head);
ftype = *(int8_t *)(queue->pBuffer + queue->head + 2);
rawBodyLen = *(int32_t *)(queue->pBuffer + queue->head + 4);
} else {
rawHeadLen = *(int16_t *)(queue->pBuffer);
ftype = *(int8_t *)(queue->pBuffer + 2);
rawBodyLen = *(int32_t *)(queue->pBuffer + 4);
}
int16_t headLen = CEIL8(rawHeadLen);
int32_t bodyLen = CEIL8(rawBodyLen);
void *pHead = taosAllocateQitem(headLen, DEF_QITEM);
void *pBody = NULL;
if (bodyLen > 0) pBody = rpcMallocCont(bodyLen);
if (pHead == NULL || (bodyLen > 0 && pBody == NULL)) {
taosThreadMutexUnlock(&queue->mutex);
tsem_post(&queue->sem);
taosFreeQitem(pHead);
rpcFreeCont(pBody);
terrno = TSDB_CODE_OUT_OF_MEMORY;
return -1;
}
const int32_t pos = queue->head;
if (queue->head < queue->tail) {
memcpy(pHead, queue->pBuffer + queue->head + 8, headLen);
if (bodyLen > 0) memcpy(pBody, queue->pBuffer + queue->head + 8 + headLen, bodyLen);
queue->head = queue->head + 8 + headLen + bodyLen;
} else {
int32_t remain = queue->total - queue->head;
if (remain == 0) {
memcpy(pHead, queue->pBuffer + 8, headLen);
if (bodyLen > 0) memcpy(pBody, queue->pBuffer + 8 + headLen, bodyLen);
queue->head = 8 + headLen + bodyLen;
} else if (remain == 8) {
memcpy(pHead, queue->pBuffer, headLen);
if (bodyLen > 0) memcpy(pBody, queue->pBuffer + headLen, bodyLen);
queue->head = headLen + bodyLen;
} else if (remain < 8 + headLen) {
memcpy(pHead, queue->pBuffer + queue->head + 8, remain - 8);
memcpy((char *)pHead + remain - 8, queue->pBuffer, headLen - (remain - 8));
if (bodyLen > 0) memcpy(pBody, queue->pBuffer + headLen - (remain - 8), bodyLen);
queue->head = headLen - (remain - 8) + bodyLen;
} else if (remain < 8 + headLen + bodyLen) {
memcpy(pHead, queue->pBuffer + queue->head + 8, headLen);
if (bodyLen > 0) memcpy(pBody, queue->pBuffer + queue->head + 8 + headLen, remain - 8 - headLen);
if (bodyLen > 0) memcpy((char *)pBody + remain - 8 - headLen, queue->pBuffer, bodyLen - (remain - 8 - headLen));
queue->head = bodyLen - (remain - 8 - headLen);
} else {
memcpy(pHead, queue->pBuffer + queue->head + 8, headLen);
if (bodyLen > 0) memcpy(pBody, queue->pBuffer + queue->head + headLen + 8, bodyLen);
queue->head = queue->head + headLen + bodyLen + 8;
}
}
queue->avail = queue->avail + headLen + bodyLen + 8;
queue->items--;
taosThreadMutexUnlock(&queue->mutex);
*ppMsg = pHead;
(*ppMsg)->pCont = pBody;
*pFuncType = (EProcFuncType)ftype;
dTrace("node:%s, pop %s msg:%p type:%d handle:%p len:%d code:0x%x, pos:%d remain:%d", queue->name, dmFuncStr(ftype),
(*ppMsg), (*ppMsg)->msgType, (*ppMsg)->info.handle, (*ppMsg)->contLen, (*ppMsg)->code, pos, queue->items);
return 1;
}
int32_t dmInitProc(struct SMgmtWrapper *pWrapper) {
SProc *proc = &pWrapper->proc;
if (proc->name != NULL) return 0;
proc->wrapper = pWrapper;
proc->name = pWrapper->name;
SShm *shm = &proc->shm;
int32_t cstart = 0;
int32_t csize = CEIL8(shm->size / 2);
int32_t pstart = csize;
int32_t psize = CEIL8(shm->size - pstart);
if (pstart + psize > shm->size) {
psize -= 8;
}
proc->hash = taosHashInit(128, taosGetDefaultHashFunction(TSDB_DATA_TYPE_BIGINT), false, HASH_NO_LOCK);
proc->cqueue = dmInitProcQueue(proc, (char *)shm->ptr + cstart, csize);
proc->pqueue = dmInitProcQueue(proc, (char *)shm->ptr + pstart, psize);
if (proc->cqueue == NULL || proc->pqueue == NULL || proc->hash == NULL) {
dmCleanupProcQueue(proc->cqueue);
dmCleanupProcQueue(proc->pqueue);
taosHashCleanup(proc->hash);
return -1;
}
dDebug("node:%s, proc is initialized, cqueue:%p pqueue:%p", proc->name, proc->cqueue, proc->pqueue);
return 0;
}
static void *dmConsumChildQueue(void *param) {
SProc *proc = param;
SMgmtWrapper *pWrapper = proc->wrapper;
SProcQueue *queue = proc->cqueue;
int32_t numOfMsgs = 0;
int32_t code = 0;
EProcFuncType ftype = DND_FUNC_REQ;
SRpcMsg *pMsg = NULL;
dDebug("node:%s, start to consume from cqueue", proc->name);
do {
numOfMsgs = dmPopFromProcQueue(queue, &pMsg, &ftype);
if (numOfMsgs == 0) {
dDebug("node:%s, get no msg from cqueue and exit thread", proc->name);
break;
}
if (numOfMsgs < 0) {
dError("node:%s, get no msg from cqueue since %s", proc->name, terrstr());
taosMsleep(1);
continue;
}
if (ftype != DND_FUNC_REQ) {
dError("node:%s, invalid ftype:%d from cqueue", proc->name, ftype);
rpcFreeCont(pMsg->pCont);
taosFreeQitem(pMsg);
continue;
}
code = dmProcessNodeMsg(pWrapper, pMsg);
if (code != 0) {
dError("node:%s, failed to process msg:%p since %s, put into pqueue", proc->name, pMsg, terrstr());
SRpcMsg rsp = {.code = (terrno != 0 ? terrno : code), .info = pMsg->info};
dmPutToProcPQueue(proc, &rsp, DND_FUNC_RSP);
rpcFreeCont(pMsg->pCont);
taosFreeQitem(pMsg);
}
} while (1);
return NULL;
}
static void *dmConsumParentQueue(void *param) {
SProc *proc = param;
SMgmtWrapper *pWrapper = proc->wrapper;
SProcQueue *queue = proc->pqueue;
int32_t numOfMsgs = 0;
int32_t code = 0;
EProcFuncType ftype = DND_FUNC_REQ;
SRpcMsg *pMsg = NULL;
dDebug("node:%s, start to consume from pqueue", proc->name);
do {
numOfMsgs = dmPopFromProcQueue(queue, &pMsg, &ftype);
if (numOfMsgs == 0) {
dDebug("node:%s, get no msg from pqueue and exit thread", proc->name);
break;
}
if (numOfMsgs < 0) {
dError("node:%s, get no msg from pqueue since %s", proc->name, terrstr());
taosMsleep(1);
continue;
}
if (ftype == DND_FUNC_RSP) {
dmRemoveProcRpcHandle(proc, pMsg->info.handle);
rpcSendResponse(pMsg);
} else if (ftype == DND_FUNC_REGIST) {
rpcRegisterBrokenLinkArg(pMsg);
} else if (ftype == DND_FUNC_RELEASE) {
dmRemoveProcRpcHandle(proc, pMsg->info.handle);
rpcReleaseHandle(&pMsg->info, TAOS_CONN_SERVER);
} else {
dError("node:%s, invalid ftype:%d from pqueue", proc->name, ftype);
rpcFreeCont(pMsg->pCont);
}
taosFreeQitem(pMsg);
} while (1);
return NULL;
}
int32_t dmRunProc(SProc *proc) {
TdThreadAttr thAttr = {0};
taosThreadAttrInit(&thAttr);
taosThreadAttrSetDetachState(&thAttr, PTHREAD_CREATE_JOINABLE);
if (proc->ptype & DND_PROC_PARENT) {
if (taosThreadCreate(&proc->pthread, &thAttr, dmConsumParentQueue, proc) != 0) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to create pthread since %s", proc->name, terrstr());
return -1;
}
dDebug("node:%s, thread:%" PRId64 " is created to consume pqueue", proc->name, taosGetPthreadId(proc->pthread));
}
if (proc->ptype & DND_PROC_CHILD) {
if (taosThreadCreate(&proc->cthread, &thAttr, dmConsumChildQueue, proc) != 0) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to create cthread since %s", proc->name, terrstr());
return -1;
}
dDebug("node:%s, thread:%" PRId64 " is created to consume cqueue", proc->name, taosGetPthreadId(proc->cthread));
}
taosThreadAttrDestroy(&thAttr);
return 0;
}
void dmStopProc(SProc *proc) {
proc->stop = true;
if (taosCheckPthreadValid(proc->pthread)) {
dDebug("node:%s, start to join pthread:%" PRId64 "", proc->name, taosGetPthreadId(proc->pthread));
tsem_post(&proc->pqueue->sem);
taosThreadJoin(proc->pthread, NULL);
taosThreadClear(&proc->pthread);
}
if (taosCheckPthreadValid(proc->cthread)) {
dDebug("node:%s, start to join cthread:%" PRId64 "", proc->name, taosGetPthreadId(proc->cthread));
tsem_post(&proc->cqueue->sem);
taosThreadJoin(proc->cthread, NULL);
taosThreadClear(&proc->cthread);
}
}
void dmCleanupProc(struct SMgmtWrapper *pWrapper) {
SProc *proc = &pWrapper->proc;
if (proc->name == NULL) return;
dDebug("node:%s, start to cleanup proc", pWrapper->name);
dmStopProc(proc);
dmCleanupProcQueue(proc->cqueue);
dmCleanupProcQueue(proc->pqueue);
taosHashCleanup(proc->hash);
proc->hash = NULL;
dDebug("node:%s, proc is cleaned up", pWrapper->name);
}
void dmRemoveProcRpcHandle(SProc *proc, void *handle) {
int64_t h = (int64_t)handle;
taosThreadMutexLock(&proc->cqueue->mutex);
taosHashRemove(proc->hash, &h, sizeof(int64_t));
taosThreadMutexUnlock(&proc->cqueue->mutex);
}
void dmCloseProcRpcHandles(SProc *proc) {
taosThreadMutexLock(&proc->cqueue->mutex);
SRpcHandleInfo *pInfo = taosHashIterate(proc->hash, NULL);
while (pInfo != NULL) {
dError("node:%s, the child process dies and send an offline rsp to handle:%p", proc->name, pInfo->handle);
SRpcMsg rpcMsg = {.code = TSDB_CODE_NODE_OFFLINE, .info = *pInfo};
rpcSendResponse(&rpcMsg);
pInfo = taosHashIterate(proc->hash, pInfo);
}
taosHashClear(proc->hash);
taosThreadMutexUnlock(&proc->cqueue->mutex);
}
void dmPutToProcPQueue(SProc *proc, SRpcMsg *pMsg, EProcFuncType ftype) {
int32_t retry = 0;
while (1) {
if (dmPushToProcQueue(proc, proc->pqueue, pMsg, ftype) == 0) {
break;
}
if (terrno != TSDB_CODE_OUT_OF_SHM_MEM) {
pMsg->code = terrno;
if (pMsg->contLen > 0) {
rpcFreeCont(pMsg->pCont);
pMsg->pCont = NULL;
pMsg->contLen = 0;
}
dError("node:%s, failed to push %s msg:%p type:%d handle:%p then discard data and return error", proc->name,
dmFuncStr(ftype), pMsg, pMsg->msgType, pMsg->info.handle);
} else {
dError("node:%s, failed to push %s msg:%p type:%d handle:%p len:%d since %s, retry:%d", proc->name,
dmFuncStr(ftype), pMsg, pMsg->msgType, pMsg->info.handle, pMsg->contLen, terrstr(), retry);
retry++;
taosMsleep(retry);
}
}
rpcFreeCont(pMsg->pCont);
pMsg->pCont = NULL;
pMsg->contLen = 0;
}
int32_t dmPutToProcCQueue(SProc *proc, SRpcMsg *pMsg, EProcFuncType ftype) {
int32_t code = dmPushToProcQueue(proc, proc->cqueue, pMsg, ftype);
if (code == 0) {
dTrace("msg:%p, is freed after push to cqueue", pMsg);
rpcFreeCont(pMsg->pCont);
taosFreeQitem(pMsg);
}
return code;
}
......@@ -17,14 +17,7 @@
#include "dmMgmt.h"
#include "qworker.h"
static inline void dmSendRsp(SRpcMsg *pMsg) {
SMgmtWrapper *pWrapper = pMsg->info.wrapper;
if (InChildProc(pWrapper)) {
dmPutToProcPQueue(&pWrapper->proc, pMsg, DND_FUNC_RSP);
} else {
rpcSendResponse(pMsg);
}
}
static inline void dmSendRsp(SRpcMsg *pMsg) { rpcSendResponse(pMsg); }
static inline void dmBuildMnodeRedirectRsp(SDnode *pDnode, SRpcMsg *pMsg) {
SEpSet epSet = {0};
......@@ -157,11 +150,7 @@ static void dmProcessRpcMsg(SDnode *pDnode, SRpcMsg *pRpc, SEpSet *pEpSet) {
memcpy(pMsg, pRpc, sizeof(SRpcMsg));
dGTrace("msg:%p, is created, type:%s handle:%p", pMsg, TMSG_INFO(pRpc->msgType), pMsg->info.handle);
if (InParentProc(pWrapper)) {
code = dmPutToProcCQueue(&pWrapper->proc, pMsg, DND_FUNC_REQ);
} else {
code = dmProcessNodeMsg(pWrapper, pMsg);
}
code = dmProcessNodeMsg(pWrapper, pMsg);
_OVER:
if (code != 0) {
......@@ -233,24 +222,9 @@ static inline int32_t dmSendReq(const SEpSet *pEpSet, SRpcMsg *pMsg) {
}
}
static inline void dmRegisterBrokenLinkArg(SRpcMsg *pMsg) {
SMgmtWrapper *pWrapper = pMsg->info.wrapper;
if (InChildProc(pWrapper)) {
dmPutToProcPQueue(&pWrapper->proc, pMsg, DND_FUNC_REGIST);
} else {
rpcRegisterBrokenLinkArg(pMsg);
}
}
static inline void dmRegisterBrokenLinkArg(SRpcMsg *pMsg) { rpcRegisterBrokenLinkArg(pMsg); }
static inline void dmReleaseHandle(SRpcHandleInfo *pHandle, int8_t type) {
SMgmtWrapper *pWrapper = pHandle->wrapper;
if (InChildProc(pWrapper)) {
SRpcMsg msg = {.code = type, .info = *pHandle};
dmPutToProcPQueue(&pWrapper->proc, &msg, DND_FUNC_RELEASE);
} else {
rpcReleaseHandle(pHandle, type);
}
}
static inline void dmReleaseHandle(SRpcHandleInfo *pHandle, int8_t type) { rpcReleaseHandle(pHandle, type); }
static bool rpcRfp(int32_t code, tmsg_t msgType) {
if (code == TSDB_CODE_RPC_REDIRECT || code == TSDB_CODE_RPC_NETWORK_UNAVAIL || code == TSDB_CODE_NODE_NOT_DEPLOYED ||
......
......@@ -83,20 +83,6 @@ typedef enum {
DND_ENV_CLEANUP,
} EDndEnvStatus;
typedef enum {
DND_PROC_SINGLE,
DND_PROC_CHILD,
DND_PROC_PARENT,
DND_PROC_TEST,
} EDndProcType;
typedef enum {
DND_FUNC_REQ = 1,
DND_FUNC_RSP = 2,
DND_FUNC_REGIST = 3,
DND_FUNC_RELEASE = 4,
} EProcFuncType;
typedef int32_t (*ProcessCreateNodeFp)(EDndNodeType ntype, SRpcMsg *pMsg);
typedef int32_t (*ProcessDropNodeFp)(EDndNodeType ntype, SRpcMsg *pMsg);
typedef void (*SendMonitorReportFp)();
......@@ -165,11 +151,7 @@ typedef struct {
// dmUtil.c
const char *dmStatStr(EDndRunStatus stype);
const char *dmNodeLogName(EDndNodeType ntype);
const char *dmNodeProcName(EDndNodeType ntype);
const char *dmNodeName(EDndNodeType ntype);
const char *dmProcStr(EDndProcType ptype);
const char *dmFuncStr(EProcFuncType etype);
void *dmSetMgmtHandle(SArray *pArray, tmsg_t msgType, void *nodeMsgFp, bool needCheckVgId);
void dmGetMonitorSystemInfo(SMonSysInfo *pInfo);
......@@ -177,8 +159,6 @@ void dmGetMonitorSystemInfo(SMonSysInfo *pInfo);
int32_t dmReadFile(const char *path, const char *name, bool *pDeployed);
int32_t dmWriteFile(const char *path, const char *name, bool deployed);
TdFilePtr dmCheckRunning(const char *dataDir);
int32_t dmReadShmFile(const char *path, const char *name, EDndNodeType runType, SShm *pShm);
int32_t dmWriteShmFile(const char *path, const char *name, const SShm *pShm);
// dmEps.c
int32_t dmReadEps(SDnodeData *pData);
......
......@@ -148,114 +148,3 @@ TdFilePtr dmCheckRunning(const char *dataDir) {
dDebug("lock file:%s to prevent repeated starts", filepath);
return pFile;
}
int32_t dmReadShmFile(const char *path, const char *name, EDndNodeType runType, SShm *pShm) {
int32_t code = -1;
char content[MAXLEN + 1] = {0};
char file[PATH_MAX] = {0};
cJSON *root = NULL;
TdFilePtr pFile = NULL;
snprintf(file, sizeof(file), "%s%sshmfile", path, TD_DIRSEP);
pFile = taosOpenFile(file, TD_FILE_READ);
if (pFile == NULL) {
code = 0;
goto _OVER;
}
if (taosReadFile(pFile, content, MAXLEN) > 0) {
root = cJSON_Parse(content);
if (root == NULL) {
terrno = TSDB_CODE_INVALID_JSON_FORMAT;
dError("node:%s, failed to read %s since invalid json format", name, file);
goto _OVER;
}
cJSON *shmid = cJSON_GetObjectItem(root, "shmid");
if (shmid && shmid->type == cJSON_Number) {
pShm->id = shmid->valueint;
}
cJSON *shmsize = cJSON_GetObjectItem(root, "shmsize");
if (shmsize && shmsize->type == cJSON_Number) {
pShm->size = shmsize->valueint;
}
}
if (!tsMultiProcess || runType == DNODE || runType == NODE_END) {
if (pShm->id >= 0) {
dDebug("node:%s, shmid:%d, is closed, size:%d", name, pShm->id, pShm->size);
taosDropShm(pShm);
}
} else {
if (taosAttachShm(pShm) != 0) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("shmid:%d, failed to attach shm since %s", pShm->id, terrstr());
goto _OVER;
}
dInfo("node:%s, shmid:%d is attached, size:%d", name, pShm->id, pShm->size);
}
dDebug("node:%s, successed to load %s", name, file);
code = 0;
_OVER:
if (root != NULL) cJSON_Delete(root);
if (pFile != NULL) taosCloseFile(&pFile);
return code;
}
int32_t dmWriteShmFile(const char *path, const char *name, const SShm *pShm) {
int32_t code = -1;
int32_t len = 0;
char content[MAXLEN + 1] = {0};
char file[PATH_MAX] = {0};
char realfile[PATH_MAX] = {0};
TdFilePtr pFile = NULL;
snprintf(file, sizeof(file), "%s%sshmfile.bak", path, TD_DIRSEP);
snprintf(realfile, sizeof(realfile), "%s%sshmfile", path, TD_DIRSEP);
pFile = taosOpenFile(file, TD_FILE_CREATE | TD_FILE_WRITE | TD_FILE_TRUNC);
if (pFile == NULL) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to open file:%s since %s", name, file, terrstr());
goto _OVER;
}
len += snprintf(content + len, MAXLEN - len, "{\n");
len += snprintf(content + len, MAXLEN - len, " \"shmid\":%d,\n", pShm->id);
len += snprintf(content + len, MAXLEN - len, " \"shmsize\":%d\n", pShm->size);
len += snprintf(content + len, MAXLEN - len, "}\n");
if (taosWriteFile(pFile, content, len) != len) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to write file:%s since %s", name, file, terrstr());
goto _OVER;
}
if (taosFsyncFile(pFile) != 0) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to fsync file:%s since %s", name, file, terrstr());
goto _OVER;
}
taosCloseFile(&pFile);
if (taosRenameFile(file, realfile) != 0) {
terrno = TAOS_SYSTEM_ERROR(errno);
dError("node:%s, failed to rename %s to %s since %s", name, file, realfile, terrstr());
return -1;
}
dInfo("node:%s, successed to write %s", name, realfile);
code = 0;
_OVER:
if (pFile != NULL) {
taosCloseFile(&pFile);
}
return code;
}
......@@ -29,36 +29,6 @@ const char *dmStatStr(EDndRunStatus stype) {
}
}
const char *dmNodeLogName(EDndNodeType ntype) {
switch (ntype) {
case VNODE:
return "vnode";
case QNODE:
return "qnode";
case SNODE:
return "snode";
case MNODE:
return "mnode";
default:
return "taosd";
}
}
const char *dmNodeProcName(EDndNodeType ntype) {
switch (ntype) {
case VNODE:
return "taosv";
case QNODE:
return "taosq";
case SNODE:
return "taoss";
case MNODE:
return "taosm";
default:
return "taosd";
}
}
const char *dmNodeName(EDndNodeType ntype) {
switch (ntype) {
case VNODE:
......@@ -74,36 +44,6 @@ const char *dmNodeName(EDndNodeType ntype) {
}
}
const char *dmProcStr(EDndProcType etype) {
switch (etype) {
case DND_PROC_SINGLE:
return "start";
case DND_PROC_CHILD:
return "stop";
case DND_PROC_PARENT:
return "child";
case DND_PROC_TEST:
return "test";
default:
return "UNKNOWN";
}
}
const char *dmFuncStr(EProcFuncType etype) {
switch (etype) {
case DND_FUNC_REQ:
return "req";
case DND_FUNC_RSP:
return "rsp";
case DND_FUNC_REGIST:
return "regist";
case DND_FUNC_RELEASE:
return "release";
default:
return "UNKNOWN";
}
}
void *dmSetMgmtHandle(SArray *pArray, tmsg_t msgType, void *nodeMsgFp, bool needCheckVgId) {
SMgmtHandle handle = {
.msgType = msgType,
......
......@@ -16,7 +16,7 @@
#include "sut.h"
void* serverLoop(void* param) {
dmInit(0);
dmInit();
dmRun();
dmCleanup();
return NULL;
......
......@@ -21,7 +21,7 @@ int metaEncodeEntry(SEncoder *pCoder, const SMetaEntry *pME) {
if (tEncodeI64(pCoder, pME->version) < 0) return -1;
if (tEncodeI8(pCoder, pME->type) < 0) return -1;
if (tEncodeI64(pCoder, pME->uid) < 0) return -1;
if (tEncodeCStr(pCoder, pME->name) < 0) return -1;
if (pME->name == NULL || tEncodeCStr(pCoder, pME->name) < 0) return -1;
if (pME->type == TSDB_SUPER_TABLE) {
if (tEncodeI8(pCoder, pME->flags) < 0) return -1; // TODO: need refactor?
......
......@@ -505,6 +505,7 @@ typedef struct SCtgOperation {
#define CTG_FLAG_UNKNOWN_STB 0x4
#define CTG_FLAG_SYS_DB 0x8
#define CTG_FLAG_FORCE_UPDATE 0x10
#define CTG_FLAG_ONLY_CACHE 0x20
#define CTG_FLAG_SET(_flag, _v) ((_flag) |= (_v))
......@@ -783,7 +784,7 @@ void ctgFreeQNode(SCtgQNode* node);
void ctgClearHandle(SCatalog* pCtg);
void ctgFreeTbCacheImpl(SCtgTbCache* pCache);
int32_t ctgRemoveTbMeta(SCatalog* pCtg, SName* pTableName);
int32_t ctgGetTbHashVgroup(SCatalog* pCtg, SRequestConnInfo* pConn, const SName* pTableName, SVgroupInfo* pVgroup);
int32_t ctgGetTbHashVgroup(SCatalog* pCtg, SRequestConnInfo* pConn, const SName* pTableName, SVgroupInfo* pVgroup, bool* exists);
SName* ctgGetFetchName(SArray* pNames, SCtgFetch* pFetch);
extern SCatalogMgmt gCtgMgmt;
......
......@@ -23,12 +23,21 @@
SCatalogMgmt gCtgMgmt = {0};
int32_t ctgGetDBVgInfo(SCatalog* pCtg, SRequestConnInfo* pConn, const char* dbFName, SCtgDBCache** dbCache,
SDBVgInfo** pInfo) {
SDBVgInfo** pInfo, bool* exists) {
int32_t code = 0;
CTG_ERR_RET(ctgAcquireVgInfoFromCache(pCtg, dbFName, dbCache));
if (*dbCache) {
if (exists) {
*exists = true;
}
return TSDB_CODE_SUCCESS;
}
if (exists) {
*exists = false;
return TSDB_CODE_SUCCESS;
}
......@@ -94,7 +103,7 @@ int32_t ctgRefreshTbMeta(SCatalog* pCtg, SRequestConnInfo* pConn, SCtgTbMetaCtx*
int32_t code = 0;
if (!CTG_FLAG_IS_SYS_DB(ctx->flag)) {
CTG_ERR_RET(ctgGetTbHashVgroup(pCtg, pConn, ctx->pName, &vgroupInfo));
CTG_ERR_RET(ctgGetTbHashVgroup(pCtg, pConn, ctx->pName, &vgroupInfo, NULL));
}
STableMetaOutput moutput = {0};
......@@ -194,7 +203,7 @@ int32_t ctgGetTbMeta(SCatalog* pCtg, SRequestConnInfo* pConn, SCtgTbMetaCtx* ctx
STableMetaOutput* output = NULL;
CTG_ERR_RET(ctgGetTbMetaFromCache(pCtg, pConn, ctx, pTableMeta));
if (*pTableMeta) {
if (*pTableMeta || (ctx->flag & CTG_FLAG_ONLY_CACHE)) {
goto _return;
}
......@@ -415,7 +424,7 @@ int32_t ctgGetTbCfg(SCatalog* pCtg, SRequestConnInfo* pConn, SName* pTableName,
CTG_ERR_RET(ctgGetTableCfgFromMnode(pCtg, pConn, pTableName, pCfg, NULL));
} else {
SVgroupInfo vgroupInfo = {0};
CTG_ERR_RET(ctgGetTbHashVgroup(pCtg, pConn, pTableName, &vgroupInfo));
CTG_ERR_RET(ctgGetTbHashVgroup(pCtg, pConn, pTableName, &vgroupInfo, NULL));
CTG_ERR_RET(ctgGetTableCfgFromVnode(pCtg, pConn, pTableName, &vgroupInfo, pCfg, NULL));
}
......@@ -441,7 +450,7 @@ int32_t ctgGetTbDistVgInfo(SCatalog* pCtg, SRequestConnInfo* pConn, SName* pTabl
tNameGetFullDbName(pTableName, db);
SHashObj* vgHash = NULL;
CTG_ERR_JRET(ctgGetDBVgInfo(pCtg, pConn, db, &dbCache, &vgInfo));
CTG_ERR_JRET(ctgGetDBVgInfo(pCtg, pConn, db, &dbCache, &vgInfo, NULL));
if (dbCache) {
vgHash = dbCache->vgCache.vgInfo->vgHash;
......@@ -501,7 +510,7 @@ _return:
CTG_RET(code);
}
int32_t ctgGetTbHashVgroup(SCatalog* pCtg, SRequestConnInfo* pConn, const SName* pTableName, SVgroupInfo* pVgroup) {
int32_t ctgGetTbHashVgroup(SCatalog* pCtg, SRequestConnInfo* pConn, const SName* pTableName, SVgroupInfo* pVgroup, bool* exists) {
if (IS_SYS_DBNAME(pTableName->dbname)) {
ctgError("no valid vgInfo for db, dbname:%s", pTableName->dbname);
CTG_ERR_RET(TSDB_CODE_CTG_INVALID_INPUT);
......@@ -513,8 +522,13 @@ int32_t ctgGetTbHashVgroup(SCatalog* pCtg, SRequestConnInfo* pConn, const SName*
tNameGetFullDbName(pTableName, db);
SDBVgInfo* vgInfo = NULL;
CTG_ERR_JRET(ctgGetDBVgInfo(pCtg, pConn, db, &dbCache, &vgInfo));
CTG_ERR_JRET(ctgGetDBVgInfo(pCtg, pConn, db, &dbCache, &vgInfo, exists));
if (exists && false == *exists) {
ctgDebug("db %s vgInfo not in cache", pTableName->dbname);
return TSDB_CODE_SUCCESS;
}
CTG_ERR_JRET(ctgGetVgInfoFromHashValue(pCtg, vgInfo ? vgInfo : dbCache->vgCache.vgInfo, pTableName, pVgroup));
_return:
......@@ -737,7 +751,7 @@ int32_t catalogGetDBVgInfo(SCatalog* pCtg, SRequestConnInfo* pConn, const char*
SArray* vgList = NULL;
SHashObj* vgHash = NULL;
SDBVgInfo* vgInfo = NULL;
CTG_ERR_JRET(ctgGetDBVgInfo(pCtg, pConn, dbFName, &dbCache, &vgInfo));
CTG_ERR_JRET(ctgGetDBVgInfo(pCtg, pConn, dbFName, &dbCache, &vgInfo, NULL));
if (dbCache) {
vgHash = dbCache->vgCache.vgInfo->vgHash;
} else {
......@@ -880,6 +894,17 @@ int32_t catalogGetTableMeta(SCatalog* pCtg, SRequestConnInfo* pConn, const SName
CTG_API_LEAVE(ctgGetTbMeta(pCtg, pConn, &ctx, pTableMeta));
}
int32_t catalogGetCachedTableMeta(SCatalog* pCtg, SRequestConnInfo* pConn, const SName* pTableName, STableMeta** pTableMeta) {
CTG_API_ENTER();
SCtgTbMetaCtx ctx = {0};
ctx.pName = (SName*)pTableName;
ctx.flag = CTG_FLAG_UNKNOWN_STB | CTG_FLAG_ONLY_CACHE;
CTG_API_LEAVE(ctgGetTbMeta(pCtg, pConn, &ctx, pTableMeta));
}
int32_t catalogGetSTableMeta(SCatalog* pCtg, SRequestConnInfo* pConn, const SName* pTableName,
STableMeta** pTableMeta) {
CTG_API_ENTER();
......@@ -891,6 +916,18 @@ int32_t catalogGetSTableMeta(SCatalog* pCtg, SRequestConnInfo* pConn, const SNam
CTG_API_LEAVE(ctgGetTbMeta(pCtg, pConn, &ctx, pTableMeta));
}
int32_t catalogGetCachedSTableMeta(SCatalog* pCtg, SRequestConnInfo* pConn, const SName* pTableName,
STableMeta** pTableMeta) {
CTG_API_ENTER();
SCtgTbMetaCtx ctx = {0};
ctx.pName = (SName*)pTableName;
ctx.flag = CTG_FLAG_STB | CTG_FLAG_ONLY_CACHE;
CTG_API_LEAVE(ctgGetTbMeta(pCtg, pConn, &ctx, pTableMeta));
}
int32_t catalogUpdateTableMeta(SCatalog* pCtg, STableMetaRsp* pMsg) {
CTG_API_ENTER();
......@@ -1009,7 +1046,14 @@ int32_t catalogGetTableHashVgroup(SCatalog* pCtg, SRequestConnInfo* pConn, const
SVgroupInfo* pVgroup) {
CTG_API_ENTER();
CTG_API_LEAVE(ctgGetTbHashVgroup(pCtg, pConn, pTableName, pVgroup));
CTG_API_LEAVE(ctgGetTbHashVgroup(pCtg, pConn, pTableName, pVgroup, NULL));
}
int32_t catalogGetCachedTableHashVgroup(SCatalog* pCtg, SRequestConnInfo* pConn, const SName* pTableName,
SVgroupInfo* pVgroup, bool* exists) {
CTG_API_ENTER();
CTG_API_LEAVE(ctgGetTbHashVgroup(pCtg, pConn, pTableName, pVgroup, exists));
}
int32_t catalogGetAllMeta(SCatalog* pCtg, SRequestConnInfo* pConn, const SCatalogReq* pReq, SMetaData* pRsp) {
......
......@@ -1094,6 +1094,7 @@ static int tdbBtreeEncodePayload(SPage *pPage, SCell *pCell, int nHeader, const
// fetch next ofp, a new ofp and make it dirty
ret = tdbFetchOvflPage(&pgno, &nextOfp, pTxn, pBt);
if (ret < 0) {
tdbFree(pBuf);
return -1;
}
}
......@@ -1135,6 +1136,11 @@ static int tdbBtreeEncodePayload(SPage *pPage, SCell *pCell, int nHeader, const
memcpy(pBuf, ((SCell *)pVal) + vLen - nLeft, bytes);
memcpy(pBuf + bytes, &pgno, sizeof(pgno));
if (ofp == NULL) {
tdbFree(pBuf);
return -1;
}
ret = tdbPageInsertCell(ofp, 0, pBuf, bytes + sizeof(pgno), 0);
if (ret < 0) {
tdbFree(pBuf);
......
......@@ -105,7 +105,7 @@ static int tdbPCacheAlterImpl(SPCache *pCache, int32_t nPage) {
for (int32_t iPage = pCache->nPages; iPage < nPage; iPage++) {
if (tdbPageCreate(pCache->szPage, &aPage[iPage], tdbDefaultMalloc, NULL) < 0) {
// TODO: handle error
tdbOsFree(pCache->aPage);
tdbOsFree(aPage);
return -1;
}
......
......@@ -105,3 +105,5 @@ void osSetSystemLocale(const char *inLocale, const char *inCharSet) {
memcpy(tsLocale, inLocale, strlen(inLocale) + 1);
memcpy(tsCharset, inCharSet, strlen(inCharSet) + 1);
}
void osSetProcPath(int32_t argc, char **argv) { tsProcPath = argv[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/>.
*/
#define ALLOW_FORBID_FUNC
#define _DEFAULT_SOURCE
#include "os.h"
int32_t taosNewProc(char **args) {
#ifdef WINDOWS
assert(0);
return 0;
#else
int32_t pid = fork();
if (pid == 0) {
args[0] = tsProcPath;
// close(STDIN_FILENO);
// close(STDOUT_FILENO);
// close(STDERR_FILENO);
return execvp(tsProcPath, args);
} else {
return pid;
}
#endif
}
void taosWaitProc(int32_t pid) {
#ifdef WINDOWS
assert(0);
#else
int32_t status = -1;
waitpid(pid, &status, 0);
#endif
}
void taosKillProc(int32_t pid) {
#ifdef WINDOWS
assert(0);
#else
kill(pid, SIGINT);
#endif
}
bool taosProcExist(int32_t pid) {
#ifdef WINDOWS
assert(0);
return false;
#else
int32_t p = getpgid(pid);
return p >= 0;
#endif
}
// the length of the new name must be less than the original name to take effect
void taosSetProcName(int32_t argc, char **argv, const char *name) {
setThreadName(name);
for (int32_t i = 0; i < argc; ++i) {
int32_t len = strlen(argv[i]);
for (int32_t j = 0; j < len; ++j) {
argv[i][j] = 0;
}
if (i == 0) {
tstrncpy(argv[0], name, len + 1);
}
}
}
void taosSetProcPath(int32_t argc, char **argv) { tsProcPath = argv[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/>.
*/
#define ALLOW_FORBID_FUNC
#define _DEFAULT_SOURCE
#include "os.h"
#define MAX_SHMIDS 6
static int32_t shmids[MAX_SHMIDS] = {0};
static void taosDeleteCreatedShms() {
#if defined(WINDOWS)
assert(0);
#else
for (int32_t i = 0; i < MAX_SHMIDS; ++i) {
int32_t shmid = shmids[i] - 1;
if (shmid >= 0) {
shmctl(shmid, IPC_RMID, NULL);
}
}
#endif
}
int32_t taosCreateShm(SShm* pShm, int32_t key, int32_t shmsize) {
#if defined(WINDOWS)
assert(0);
#else
pShm->id = -1;
#if 1
key_t __shkey = IPC_PRIVATE;
int32_t __shmflag = IPC_CREAT | IPC_EXCL | 0600;
#else
key_t __shkey = 0X95270000 + key;
int32_t __shmflag = IPC_CREAT | 0600;
#endif
int32_t shmid = shmget(__shkey, shmsize, __shmflag);
if (shmid < 0) {
return -1;
}
void* shmptr = shmat(shmid, NULL, 0);
if (shmptr == NULL) {
return -1;
}
pShm->id = shmid;
pShm->size = shmsize;
pShm->ptr = shmptr;
#if 0
if (key >= 0 && key < MAX_SHMIDS) {
shmids[key] = pShm->id + 1;
}
atexit(taosDeleteCreatedShms);
#else
shmctl(pShm->id, IPC_RMID, NULL);
#endif
#endif
return 0;
}
void taosDropShm(SShm* pShm) {
#if defined(WINDOWS)
assert(0);
#else
if (pShm->id >= 0) {
if (pShm->ptr != NULL) {
shmdt(pShm->ptr);
}
shmctl(pShm->id, IPC_RMID, NULL);
}
pShm->id = -1;
pShm->size = 0;
pShm->ptr = NULL;
#endif
}
int32_t taosAttachShm(SShm* pShm) {
#if defined(WINDOWS)
assert(0);
#else
errno = 0;
void* ptr = shmat(pShm->id, NULL, 0);
if (errno == 0) {
pShm->ptr = ptr;
}
#endif
return errno;
}
......@@ -45,14 +45,6 @@ INCLUDE_DIRECTORIES(${TD_SOURCE_DIR}/src/util/inc)
# add_executable(encodeTest "encodeTest.cpp")
# target_link_libraries(encodeTest os util gtest gtest_main)
# queueTest
# add_executable(procTest "procTest.cpp")
# target_link_libraries(procTest os util transport sut gtest_main)
# add_test(
# NAME procTest
# COMMAND procTest
# )
# cfgTest
add_executable(cfgTest "cfgTest.cpp")
target_link_libraries(cfgTest os util gtest_main)
......
/**
* @file queue.cpp
* @author slguan (slguan@taosdata.com)
* @brief UTIL module queue tests
* @version 1.0
* @date 2022-01-27
*
* @copyright Copyright (c) 2022
*
*/
#if 0
#include <gtest/gtest.h>
#include "tlog.h"
#include "tprocess.h"
#include "tqueue.h"
typedef struct STestMsg {
uint16_t msgType;
void *pCont;
int contLen;
int32_t code;
void *handle; // rpc handle returned to app
void *ahandle; // app handle set by client
int noResp; // has response or not(default 0, 0: resp, 1: no resp);
int persistHandle; // persist handle or not
} STestMsg;
class UtilTesProc : public ::testing::Test {
public:
void SetUp() override {
shm.id = -1;
for (int32_t i = 0; i < 4000; ++i) {
body[i] = i % 26 + 'a';
}
head.pCont = body;
head.code = 1;
head.msgType = 2;
head.noResp = 3;
head.persistHandle = 4;
taosRemoveDir(TD_TMP_DIR_PATH "td");
taosMkDir(TD_TMP_DIR_PATH "td");
tstrncpy(tsLogDir, TD_TMP_DIR_PATH "td", PATH_MAX);
if (taosInitLog("taosdlog", 1) != 0) {
printf("failed to init log file\n");
}
}
void TearDown() override { taosDropShm(&shm); }
public:
static STestMsg head;
static char body[4000];
static SShm shm;
static void SetUpTestSuite() {}
static void TearDownTestSuite() {}
};
SShm UtilTesProc::shm;
char UtilTesProc::body[4000];
STestMsg UtilTesProc::head;
TEST_F(UtilTesProc, 00_Init_Cleanup) {
ASSERT_EQ(taosCreateShm(&shm, 1234, 1024 * 1024 * 2), 0);
shm.size = 1023;
SProcCfg cfg = {(ProcConsumeFp)NULL,
(ProcMallocFp)taosAllocateQitem,
(ProcFreeFp)taosFreeQitem,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryMalloc,
(ProcConsumeFp)NULL,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryMalloc,
shm,
&shm,
"1234"};
SProc *proc = dmInitProc(&cfg);
ASSERT_EQ(proc, nullptr);
shm.size = 2468;
cfg.shm = shm;
proc = dmInitProc(&cfg);
ASSERT_NE(proc, nullptr);
ASSERT_EQ(dmRunProc(proc), 0);
dmCleanupProc(proc);
taosDropShm(&shm);
}
void ConsumeChild1(void *parent, void *pHead, int16_t headLen, void *pBody, int32_t bodyLen, EProcFuncType ftype) {
STestMsg msg;
memcpy(&msg, pHead, headLen);
char body[2000] = {0};
memcpy(body, pBody, bodyLen);
uDebug("====> parent:%" PRId64 " ftype:%d, headLen:%d bodyLen:%d head:%d:%d:%d:%d body:%s <====", (int64_t)parent,
ftype, headLen, bodyLen, msg.code, msg.msgType, msg.noResp, msg.persistHandle, body);
taosMemoryFree(pBody);
taosFreeQitem(pHead);
}
TEST_F(UtilTesProc, 01_Push_Pop_Child) {
shm.size = 3000;
ASSERT_EQ(taosCreateShm(&shm, 1235, shm.size), 0);
SProcCfg cfg = {(ProcConsumeFp)ConsumeChild1,
(ProcMallocFp)taosAllocateQitem,
(ProcFreeFp)taosFreeQitem,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
(ProcConsumeFp)NULL,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
shm,
(void *)((int64_t)1235),
"1235_c"};
SProc *cproc = dmInitProc(&cfg);
ASSERT_NE(cproc, nullptr);
ASSERT_NE(dmPutToProcCQueue(cproc, &head, 0, body, 0, 0, 0, DND_FUNC_RSP), 0);
ASSERT_NE(dmPutToProcCQueue(cproc, &head, 0, body, 0, 0, 0, DND_FUNC_REGIST), 0);
ASSERT_NE(dmPutToProcCQueue(cproc, &head, 0, body, 0, 0, 0, DND_FUNC_RELEASE), 0);
ASSERT_NE(dmPutToProcCQueue(cproc, NULL, 12, body, 0, 0, 0, DND_FUNC_REQ), 0);
ASSERT_NE(dmPutToProcCQueue(cproc, &head, 0, body, 0, 0, 0, DND_FUNC_REQ), 0);
ASSERT_NE(dmPutToProcCQueue(cproc, &head, shm.size, body, 0, 0, 0, DND_FUNC_REQ), 0);
ASSERT_NE(dmPutToProcCQueue(cproc, &head, sizeof(STestMsg), body, shm.size, 0, 0, DND_FUNC_REQ), 0);
for (int32_t j = 0; j < 1000; j++) {
int32_t i = 0;
for (i = 0; i < 20; ++i) {
ASSERT_EQ(dmPutToProcCQueue(cproc, &head, sizeof(STestMsg), body, i, 0, 0, DND_FUNC_REQ), 0);
}
ASSERT_NE(dmPutToProcCQueue(cproc, &head, sizeof(STestMsg), body, i, 0, 0, DND_FUNC_REQ), 0);
cfg.isChild = true;
cfg.name = "1235_p";
SProc *pproc = dmInitProc(&cfg);
ASSERT_NE(pproc, nullptr);
dmRunProc(pproc);
dmCleanupProc(pproc);
}
dmCleanupProc(cproc);
taosDropShm(&shm);
}
void ConsumeParent1(void *parent, void *pHead, int16_t headLen, void *pBody, int32_t bodyLen, EProcFuncType ftype) {
STestMsg msg;
memcpy(&msg, pHead, headLen);
char body[2000] = {0};
memcpy(body, pBody, bodyLen);
uDebug("----> parent:%" PRId64 " ftype:%d, headLen:%d bodyLen:%d head:%d:%d:%d:%d body:%s <----", (int64_t)parent,
ftype, headLen, bodyLen, msg.code, msg.msgType, msg.noResp, msg.persistHandle, body);
taosMemoryFree(pBody);
taosMemoryFree(pHead);
}
TEST_F(UtilTesProc, 02_Push_Pop_Parent) {
shm.size = 3000;
ASSERT_EQ(taosCreateShm(&shm, 1236, shm.size), 0);
SProcCfg cfg = {(ProcConsumeFp)NULL,
(ProcMallocFp)taosAllocateQitem,
(ProcFreeFp)taosFreeQitem,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
(ProcConsumeFp)ConsumeParent1,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
shm,
(void *)((int64_t)1236),
"1236_c"};
SProc *cproc = dmInitProc(&cfg);
ASSERT_NE(cproc, nullptr);
cfg.name = "1236_p";
cfg.isChild = true;
SProc *pproc = dmInitProc(&cfg);
ASSERT_NE(pproc, nullptr);
for (int32_t j = 0; j < 1000; j++) {
int32_t i = 0;
for (i = 0; i < 20; ++i) {
dmPutToProcPQueue(pproc, &head, sizeof(STestMsg), body, i, DND_FUNC_REQ);
}
dmRunProc(cproc);
dmStopProc(cproc);
}
dmCleanupProc(pproc);
dmCleanupProc(cproc);
taosDropShm(&shm);
}
void ConsumeChild3(void *parent, void *pHead, int16_t headLen, void *pBody, int32_t bodyLen, EProcFuncType ftype) {
STestMsg msg;
memcpy(&msg, pHead, headLen);
char body[2000] = {0};
memcpy(body, pBody, bodyLen);
uDebug("====> parent:%" PRId64 " ftype:%d, headLen:%d bodyLen:%d handle:%" PRId64 " body:%s <====", (int64_t)parent,
ftype, headLen, bodyLen, (int64_t)msg.handle, body);
taosMemoryFree(pBody);
taosFreeQitem(pHead);
}
void processHandle(void *handle) { uDebug("----> remove handle:%" PRId64 " <----", (int64_t)handle); }
TEST_F(UtilTesProc, 03_Handle) {
// uDebugFlag = 207;
shm.size = 3000;
ASSERT_EQ(taosCreateShm(&shm, 1237, shm.size), 0);
SProcCfg cfg = {(ProcConsumeFp)ConsumeChild3,
(ProcMallocFp)taosAllocateQitem,
(ProcFreeFp)taosFreeQitem,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
(ProcConsumeFp)NULL,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
(ProcMallocFp)taosMemoryMalloc,
(ProcFreeFp)taosMemoryFree,
shm,
(void *)((int64_t)1235),
"1237_p"};
SProc *cproc = dmInitProc(&cfg);
ASSERT_NE(cproc, nullptr);
for (int32_t j = 0; j < 1; j++) {
int32_t i = 0;
for (i = 0; i < 20; ++i) {
head.handle = (void *)((int64_t)i);
ASSERT_EQ(dmPutToProcCQueue(cproc, &head, sizeof(STestMsg), body, i, (void *)((int64_t)i), i, DND_FUNC_REQ), 0);
}
cfg.isChild = true;
cfg.name = "child_queue";
SProc *pproc = dmInitProc(&cfg);
ASSERT_NE(pproc, nullptr);
dmRunProc(pproc);
dmCleanupProc(pproc);
int64_t ref = 0;
ref = dmRemoveProcRpcHandle(cproc, (void *)((int64_t)3));
EXPECT_EQ(ref, 3);
ref = dmRemoveProcRpcHandle(cproc, (void *)((int64_t)5));
EXPECT_EQ(ref, 5);
ref = dmRemoveProcRpcHandle(cproc, (void *)((int64_t)6));
EXPECT_EQ(ref, 6);
dmCloseProcRpcHandles(cproc, processHandle);
}
dmCleanupProc(cproc);
taosDropShm(&shm);
}
#endif
\ No newline at end of file
......@@ -299,18 +299,6 @@
./test.sh -f tsim/stable/values.sim
./test.sh -f tsim/stable/vnode3.sim
# --- for multi process mode
./test.sh -f tsim/user/basic.sim -m
./test.sh -f tsim/db/basic3.sim -m
./test.sh -f tsim/db/error1.sim -m
./test.sh -f tsim/insert/backquote.sim -m
# unsupport ./test.sh -f tsim/parser/fourArithmetic-basic.sim -m
./test.sh -f tsim/query/interval-offset.sim -m
# unsupport ./test.sh -f tsim/tmq/basic3.sim -m
./test.sh -f tsim/stable/vnode3.sim -m
./test.sh -f tsim/qnode/basic1.sim -m
# unsupport ./test.sh -f tsim/mnode/basic1.sim -m
# --- sma
./test.sh -f tsim/sma/drop_sma.sim
./test.sh -f tsim/sma/tsmaCreateInsertQuery.sim
......
......@@ -9,7 +9,6 @@ UNAME_BIN=`which uname`
OS_TYPE=`$UNAME_BIN`
NODE_NAME=
NODE=
MULTIPROCESS=0
while getopts "n:i:m" arg
do
case $arg in
......@@ -19,9 +18,6 @@ do
i)
NODE=$OPTARG
;;
m)
MULTIPROCESS=1
;;
?)
echo "unkonw argument"
;;
......@@ -148,5 +144,4 @@ echo "numOfLogLines 20000000" >> $TAOS_CFG
echo "asyncLog 0" >> $TAOS_CFG
echo "locale en_US.UTF-8" >> $TAOS_CFG
echo "telemetryReporting 0" >> $TAOS_CFG
echo "multiProcess ${MULTIPROCESS}" >> $TAOS_CFG
echo " " >> $TAOS_CFG
......@@ -15,7 +15,6 @@ VALGRIND=0
UNIQUE=0
UNAME_BIN=`which uname`
OS_TYPE=`$UNAME_BIN`
MULTIPROCESS=0
while getopts "f:avum" arg
do
case $arg in
......@@ -28,9 +27,6 @@ do
u)
UNIQUE=1
;;
m)
MULTIPROCESS=1
;;
?)
echo "unknow argument"
;;
......@@ -126,22 +122,12 @@ ulimit -c unlimited
if [ -n "$FILE_NAME" ]; then
echo "------------------------------------------------------------------------"
if [ $VALGRIND -eq 1 ]; then
if [[ $MULTIPROCESS -eq 1 ]];then
FLAG="-m -v"
else
FLAG="-v"
fi
FLAG="-v"
echo valgrind --tool=memcheck --leak-check=full --show-reachable=no --track-origins=yes --child-silent-after-fork=yes --show-leak-kinds=all --num-callers=20 -v --workaround-gcc296-bugs=yes --log-file=${LOG_DIR}/valgrind-tsim.log $PROGRAM -c $CFG_DIR -f $FILE_NAME $FLAG
valgrind --tool=memcheck --leak-check=full --show-reachable=no --track-origins=yes --child-silent-after-fork=yes --show-leak-kinds=all --num-callers=20 -v --workaround-gcc296-bugs=yes --log-file=${LOG_DIR}/valgrind-tsim.log $PROGRAM -c $CFG_DIR -f $FILE_NAME $FLAG
else
if [[ $MULTIPROCESS -eq 1 ]];then
echo "ExcuteCmd(multiprocess):" $PROGRAM -m -c $CFG_DIR -f $FILE_NAME
$PROGRAM -m -c $CFG_DIR -f $FILE_NAME
else
echo "ExcuteCmd(singleprocess):" $PROGRAM -c $CFG_DIR -f $FILE_NAME
$PROGRAM -c $CFG_DIR -f $FILE_NAME
fi
echo "ExcuteCmd:" $PROGRAM -c $CFG_DIR -f $FILE_NAME
$PROGRAM -c $CFG_DIR -f $FILE_NAME
fi
else
echo "ExcuteCmd:" $PROGRAM -c $CFG_DIR -f basicSuite.sim
......
......@@ -155,7 +155,6 @@ extern int32_t simScriptSucced;
extern int32_t simDebugFlag;
extern char simScriptDir[];
extern bool abortExecution;
extern bool useMultiProcess;
extern bool useValgrind;
SScript *simParseScript(char *fileName);
......
......@@ -442,10 +442,6 @@ bool simExecuteSystemCmd(SScript *script, char *option) {
simReplaceStr(buf, ".sh", ".bat");
#endif
if (useMultiProcess) {
simReplaceStr(buf, "deploy.sh", "deploy.sh -m");
}
if (useValgrind) {
replaced = simReplaceStr(buf, "exec.sh", "exec.sh -v");
}
......
......@@ -18,7 +18,6 @@
bool simExecSuccess = false;
bool abortExecution = false;
bool useMultiProcess = false;
bool useValgrind = false;
void simHandleSignal(int32_t signo, void *sigInfo, void *context) {
......@@ -34,8 +33,6 @@ int32_t main(int32_t argc, char *argv[]) {
tstrncpy(configDir, argv[++i], 128);
} else if (strcmp(argv[i], "-f") == 0 && i < argc - 1) {
tstrncpy(scriptFile, argv[++i], MAX_FILE_NAME_LEN);
} else if (strcmp(argv[i], "-m") == 0) {
useMultiProcess = true;
} else if (strcmp(argv[i], "-v") == 0) {
useValgrind = true;
} else {
......
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