提交 fbe9b5f8 编写于 作者: H hjxilinx

[tbase-933]

上级 a48c13aa
...@@ -3652,7 +3652,7 @@ int tscRenewMeterMeta(SSqlObj *pSql, char *meterId) { ...@@ -3652,7 +3652,7 @@ int tscRenewMeterMeta(SSqlObj *pSql, char *meterId) {
*/ */
if (pMeterMetaInfo->pMeterMeta == NULL || !tscQueryOnMetric(pCmd)) { if (pMeterMetaInfo->pMeterMeta == NULL || !tscQueryOnMetric(pCmd)) {
if (pMeterMetaInfo->pMeterMeta) { if (pMeterMetaInfo->pMeterMeta) {
tscTrace("%p update meter meta, old: numOfTags:%d, numOfCols:%d, uid:%d, addr:%p", pSql, tscTrace("%p update meter meta, old: numOfTags:%d, numOfCols:%d, uid:%lld, addr:%p", pSql,
pMeterMetaInfo->numOfTags, pCmd->numOfCols, pMeterMetaInfo->pMeterMeta->uid, pMeterMetaInfo->pMeterMeta); pMeterMetaInfo->numOfTags, pCmd->numOfCols, pMeterMetaInfo->pMeterMeta->uid, pMeterMetaInfo->pMeterMeta);
} }
tscWaitingForCreateTable(&pSql->cmd); tscWaitingForCreateTable(&pSql->cmd);
......
...@@ -224,7 +224,7 @@ typedef struct { ...@@ -224,7 +224,7 @@ typedef struct {
char meterId[TSDB_UNI_LEN]; char meterId[TSDB_UNI_LEN];
uint16_t port; // for UDP only uint16_t port; // for UDP only
char empty[1]; char empty[1];
char msgType; uint8_t msgType;
int32_t msgLen; int32_t msgLen;
uint8_t content[0]; uint8_t content[0];
} STaosHeader; } STaosHeader;
......
...@@ -256,6 +256,8 @@ SGlobalConfig *tsGetConfigOption(const char *option); ...@@ -256,6 +256,8 @@ SGlobalConfig *tsGetConfigOption(const char *option);
#define TSDB_CFG_OPTION_LEN 24 #define TSDB_CFG_OPTION_LEN 24
#define TSDB_CFG_VALUE_LEN 41 #define TSDB_CFG_VALUE_LEN 41
#define NEEDTO_COMPRESSS_MSG(size) (tsCompressMsgSize != -1 && (size) > tsCompressMsgSize)
#ifdef __cplusplus #ifdef __cplusplus
} }
#endif #endif
......
...@@ -14,7 +14,6 @@ ...@@ -14,7 +14,6 @@
*/ */
#include "os.h" #include "os.h"
#include "shash.h" #include "shash.h"
#include "taosmsg.h" #include "taosmsg.h"
#include "tidpool.h" #include "tidpool.h"
...@@ -30,6 +29,7 @@ ...@@ -30,6 +29,7 @@
#include "ttimer.h" #include "ttimer.h"
#include "tudp.h" #include "tudp.h"
#include "tutil.h" #include "tutil.h"
#include "lz4.h"
#pragma GCC diagnostic ignored "-Wpointer-to-int-cast" #pragma GCC diagnostic ignored "-Wpointer-to-int-cast"
...@@ -50,8 +50,7 @@ typedef struct { ...@@ -50,8 +50,7 @@ typedef struct {
char encrypt; char encrypt;
uint8_t secret[TSDB_KEY_LEN]; uint8_t secret[TSDB_KEY_LEN];
uint8_t ckey[TSDB_KEY_LEN]; uint8_t ckey[TSDB_KEY_LEN];
uint16_t localPort; // for UDP only
uint16_t localPort; // for UDP only
uint32_t peerUid; uint32_t peerUid;
uint32_t peerIp; // peer IP uint32_t peerIp; // peer IP
uint16_t peerPort; // peer port uint16_t peerPort; // peer port
...@@ -66,7 +65,7 @@ typedef struct { ...@@ -66,7 +65,7 @@ typedef struct {
void * chandle; // handle passed by TCP/UDP connection layer void * chandle; // handle passed by TCP/UDP connection layer
void * ahandle; // handle returned by upper app layter void * ahandle; // handle returned by upper app layter
int retry; int retry;
int tretry; // total retry int tretry; // total retry
void * pTimer; void * pTimer;
void * pIdleTimer; void * pIdleTimer;
char * pRspMsg; char * pRspMsg;
...@@ -79,7 +78,7 @@ typedef struct { ...@@ -79,7 +78,7 @@ typedef struct {
typedef struct { typedef struct {
int sessions; int sessions;
void * qhandle; // for scheduler void * qhandle; // for scheduler
SRpcConn * connList; SRpcConn * connList;
void * idPool; void * idPool;
void * tmrCtrl; void * tmrCtrl;
...@@ -94,11 +93,11 @@ typedef struct rpc_server { ...@@ -94,11 +93,11 @@ typedef struct rpc_server {
int mask; int mask;
int numOfChanns; int numOfChanns;
int numOfThreads; int numOfThreads;
int idMgmt; // ID management method int idMgmt; // ID management method
int type; int type;
int idleTime; // milliseconds; int idleTime; // milliseconds;
int noFree; // do not free the request msg when rsp is received int noFree; // do not free the request msg when rsp is received
int index; // for UDP server, next thread for new connection int index; // for UDP server, next thread for new connection
uint16_t localPort; uint16_t localPort;
char label[12]; char label[12];
void *(*fp)(char *, void *ahandle, void *thandle); void *(*fp)(char *, void *ahandle, void *thandle);
...@@ -107,8 +106,7 @@ typedef struct rpc_server { ...@@ -107,8 +106,7 @@ typedef struct rpc_server {
SRpcChann *channList; SRpcChann *channList;
} STaosRpc; } STaosRpc;
int tsRpcProgressTime = 10; // milliseocnds
int tsRpcProgressTime = 10; // milliseocnds
// not configurable // not configurable
int tsRpcMaxRetry; int tsRpcMaxRetry;
...@@ -141,6 +139,89 @@ void taosProcessSchedMsg(SSchedMsg *pMsg); ...@@ -141,6 +139,89 @@ void taosProcessSchedMsg(SSchedMsg *pMsg);
int taosAuthenticateMsg(uint8_t *pMsg, int msgLen, uint8_t *pAuth, uint8_t *pKey); int taosAuthenticateMsg(uint8_t *pMsg, int msgLen, uint8_t *pAuth, uint8_t *pKey);
int taosBuildAuthHeader(uint8_t *pMsg, int msgLen, uint8_t *pAuth, uint8_t *pKey); int taosBuildAuthHeader(uint8_t *pMsg, int msgLen, uint8_t *pAuth, uint8_t *pKey);
static int32_t taosCompressRpcMsg(char* pCont, int32_t contLen) {
STaosHeader* pHeader = (STaosHeader *)(pCont - sizeof(STaosHeader));
int32_t overhead = sizeof(int32_t) * 2;
int32_t finalLen = 0;
if (!NEEDTO_COMPRESSS_MSG(contLen)) {
return contLen;
}
char *buf = malloc (contLen + overhead + 8); // 16 extra bytes
if (buf == NULL) {
tError("failed to allocate memory for rpc msg compression, contLen:%d, reason:%s", contLen, strerror(errno));
return contLen;
}
int32_t compLen = LZ4_compress_default(pCont, buf, contLen, contLen + overhead);
/*
* only the compressed size is less than the value of contLen - overhead, the compression is applied
* The first four bytes is set to 0, the second four bytes are utilized to keep the original length of message
*/
if (compLen < contLen - overhead) {
//tDump(pCont, contLen);
int32_t *pLen = (int32_t *)pCont;
*pLen = 0; // first 4 bytes must be zero
pLen = (int32_t *)(pCont + sizeof(int32_t));
*pLen = htonl(contLen); // contLen is encoded in second 4 bytes
memcpy(pCont + overhead, buf, compLen);
pHeader->comp = 1;
tTrace("compress rpc msg, before:%lld, after:%lld", contLen, compLen);
finalLen = compLen + overhead;
//tDump(pCont, contLen);
} else {
finalLen = contLen;
}
free(buf);
return finalLen;
}
static STaosHeader* taosDecompressRpcMsg(STaosHeader* pHeader, SSchedMsg* pSchedMsg, int32_t msgLen) {
int overhead = sizeof(int32_t) * 2;
if (pHeader->comp == 0) {
pSchedMsg->msg = (char *)(&(pHeader->destId));
return pHeader;
}
// decompress the content
assert(GET_INT32_VAL(pHeader->content) == 0);
// contLen is original message length before compression applied
int contLen = htonl(GET_INT32_VAL(pHeader->content + sizeof(int32_t)));
// prepare the temporary buffer to decompress message
char *buf = malloc(sizeof(STaosHeader) + contLen);
//tDump(pHeader->content, msgLen);
if (buf) {
int32_t originalLen = LZ4_decompress_safe(pHeader->content + overhead, buf + sizeof(STaosHeader),
msgLen - overhead, contLen);
memcpy(buf, pHeader, sizeof(STaosHeader));
free(pHeader); // free the compressed message buffer
STaosHeader* pNewHeader = (STaosHeader *) buf;
pNewHeader->msgLen = originalLen + (int) sizeof(SIntMsg);
assert(originalLen == contLen);
pSchedMsg->msg = (char *)(&(pNewHeader->destId));
//tDump(pHeader->content, contLen);
return pNewHeader;
} else {
tError("failed to allocate memory to decompress msg, contLen:%d, reason:%s", contLen, strerror(errno));
pSchedMsg->msg = NULL;
}
}
char *taosBuildReqHeader(void *param, char type, char *msg) { char *taosBuildReqHeader(void *param, char type, char *msg) {
STaosHeader *pHeader; STaosHeader *pHeader;
SRpcConn * pConn = (SRpcConn *)param; SRpcConn * pConn = (SRpcConn *)param;
...@@ -1074,8 +1155,9 @@ void *taosProcessDataFromPeer(char *data, int dataLen, uint32_t ip, uint16_t por ...@@ -1074,8 +1155,9 @@ void *taosProcessDataFromPeer(char *data, int dataLen, uint32_t ip, uint16_t por
if (code != 0) { if (code != 0) {
// parsing error // parsing error
if (pHeader->msgType & 1) { if (pHeader->msgType & 1U) {
memset(pReply, 0, sizeof(pReply)); memset(pReply, 0, sizeof(pReply));
msgLen = taosBuildErrorMsgToPeer(data, code, pReply); msgLen = taosBuildErrorMsgToPeer(data, code, pReply);
(*taosSendData[pServer->type])(ip, port, pReply, msgLen, chandle); (*taosSendData[pServer->type])(ip, port, pReply, msgLen, chandle);
tTrace("%s cid:%d sid:%d id:%s, %s is sent with error code:%u pConn:%p", pServer->label, chann, sid, tTrace("%s cid:%d sid:%d id:%s, %s is sent with error code:%u pConn:%p", pServer->label, chann, sid,
...@@ -1090,17 +1172,17 @@ void *taosProcessDataFromPeer(char *data, int dataLen, uint32_t ip, uint16_t por ...@@ -1090,17 +1172,17 @@ void *taosProcessDataFromPeer(char *data, int dataLen, uint32_t ip, uint16_t por
// parsing OK // parsing OK
// internal communication is based on TAOS protocol, a trick here to make it efficient // internal communication is based on TAOS protocol, a trick here to make it efficient
pHeader->msgLen = msgLen - (int)sizeof(STaosHeader) + (int)sizeof(SIntMsg); if (pHeader->spi) msgLen -= sizeof(STaosDigest);
if (pHeader->spi) pHeader->msgLen -= sizeof(STaosDigest); msgLen -= (int)sizeof(STaosHeader);
pHeader->msgLen = msgLen + (int)sizeof(SIntMsg);
if ((pHeader->msgType & 1) == 0 && (pHeader->content[0] == TSDB_CODE_INVALID_VALUE)) { if ((pHeader->msgType & 1U) == 0 && (pHeader->content[0] == TSDB_CODE_INVALID_VALUE)) {
schedMsg.msg = NULL; // connection shall be closed schedMsg.msg = NULL; // connection shall be closed
} else { } else {
schedMsg.msg = (char *)(&(pHeader->destId)); pHeader = taosDecompressRpcMsg(pHeader, &schedMsg, msgLen);
// memcpy(schedMsg.msg, (char *)(&(pHeader->destId)), pHeader->msgLen);
} }
if (pHeader->msgType < TSDB_MSG_TYPE_HEARTBEAT || (rpcDebugFlag & 16)) { if (pHeader->msgType < TSDB_MSG_TYPE_HEARTBEAT || (rpcDebugFlag & 16U)) {
tTrace("%s cid:%d sid:%d id:%s, %s is put into queue, msgLen:%d pConn:%p pTimer:%p", pServer->label, chann, sid, tTrace("%s cid:%d sid:%d id:%s, %s is put into queue, msgLen:%d pConn:%p pTimer:%p", pServer->label, chann, sid,
pHeader->meterId, taosMsg[pHeader->msgType], pHeader->msgLen, pConn, pConn->pTimer); pHeader->meterId, taosMsg[pHeader->msgType], pHeader->msgLen, pConn, pConn->pTimer);
} }
...@@ -1132,9 +1214,12 @@ int taosSendMsgToPeerH(void *thandle, char *pCont, int contLen, void *ahandle) { ...@@ -1132,9 +1214,12 @@ int taosSendMsgToPeerH(void *thandle, char *pCont, int contLen, void *ahandle) {
pChann = pServer->channList + pConn->chann; pChann = pServer->channList + pConn->chann;
pHeader = (STaosHeader *)(pCont - sizeof(STaosHeader)); pHeader = (STaosHeader *)(pCont - sizeof(STaosHeader));
msg = (char *)pHeader; msg = (char *)pHeader;
msgLen = contLen + (int32_t)sizeof(STaosHeader);
if ((pHeader->msgType & 1) == 0 && pConn->localPort) pHeader->port = pConn->localPort; if ((pHeader->msgType & 1U) == 0 && pConn->localPort) pHeader->port = pConn->localPort;
contLen = taosCompressRpcMsg(pCont, contLen);
msgLen = contLen + (int32_t)sizeof(STaosHeader);
if (pConn->spi) { if (pConn->spi) {
// add auth part // add auth part
...@@ -1151,7 +1236,7 @@ int taosSendMsgToPeerH(void *thandle, char *pCont, int contLen, void *ahandle) { ...@@ -1151,7 +1236,7 @@ int taosSendMsgToPeerH(void *thandle, char *pCont, int contLen, void *ahandle) {
pthread_mutex_lock(&pChann->mutex); pthread_mutex_lock(&pChann->mutex);
msgType = pHeader->msgType; msgType = pHeader->msgType;
if ((msgType & 1) == 0) { if ((msgType & 1U) == 0) {
// response // response
pConn->inType = 0; pConn->inType = 0;
tfree(pConn->pRspMsg); tfree(pConn->pRspMsg);
......
...@@ -675,7 +675,7 @@ int mgmtCreateMeter(SDbObj *pDb, SCreateTableMsg *pCreate) { ...@@ -675,7 +675,7 @@ int mgmtCreateMeter(SDbObj *pDb, SCreateTableMsg *pCreate) {
// send create message to the selected vnode servers // send create message to the selected vnode servers
if (pCreate->numOfTags == 0) { if (pCreate->numOfTags == 0) {
mTrace("table:%s, send create msg to dnode, vgId:%d, sid:%d, vnode:%d", mTrace("table:%s, send create table msg to dnode, vgId:%d, sid:%d, vnode:%d",
pMeter->meterId, pMeter->gid.vgId, pMeter->gid.sid, pVgroup->vnodeGid[0].vnode); pMeter->meterId, pMeter->gid.vgId, pMeter->gid.sid, pVgroup->vnodeGid[0].vnode);
grantAddTimeSeries(pMeter->numOfColumns - 1); grantAddTimeSeries(pMeter->numOfColumns - 1);
......
...@@ -644,6 +644,7 @@ static void doInitGlobalConfig() { ...@@ -644,6 +644,7 @@ static void doInitGlobalConfig() {
tsInitConfigOption(cfg++, "defaultPass", tsDefaultPass, TSDB_CFG_VTYPE_STRING, tsInitConfigOption(cfg++, "defaultPass", tsDefaultPass, TSDB_CFG_VTYPE_STRING,
TSDB_CFG_CTYPE_B_CONFIG | TSDB_CFG_CTYPE_B_CLIENT | TSDB_CFG_CTYPE_B_NOT_PRINT, TSDB_CFG_CTYPE_B_CONFIG | TSDB_CFG_CTYPE_B_CLIENT | TSDB_CFG_CTYPE_B_NOT_PRINT,
0, 0, TSDB_PASSWORD_LEN, TSDB_CFG_UTYPE_NONE); 0, 0, TSDB_PASSWORD_LEN, TSDB_CFG_UTYPE_NONE);
// socket type, udp by default // socket type, udp by default
tsInitConfigOption(cfg++, "sockettype", tsSocketType, TSDB_CFG_VTYPE_STRING, tsInitConfigOption(cfg++, "sockettype", tsSocketType, TSDB_CFG_VTYPE_STRING,
TSDB_CFG_CTYPE_B_CONFIG | TSDB_CFG_CTYPE_B_CLIENT | TSDB_CFG_CTYPE_B_SHOW, TSDB_CFG_CTYPE_B_CONFIG | TSDB_CFG_CTYPE_B_CLIENT | TSDB_CFG_CTYPE_B_SHOW,
......
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