提交 c1c3513b 编写于 作者: D dapan1121

Merge branch '3.0' into enh/ctgPerf

......@@ -2,7 +2,7 @@
# taosadapter
ExternalProject_Add(taosadapter
GIT_REPOSITORY https://github.com/taosdata/taosadapter.git
GIT_TAG df8678f
GIT_TAG 766dcc4
SOURCE_DIR "${TD_SOURCE_DIR}/tools/taosadapter"
BINARY_DIR ""
#BUILD_IN_SOURCE TRUE
......
......@@ -2,7 +2,7 @@
# taos-tools
ExternalProject_Add(taos-tools
GIT_REPOSITORY https://github.com/taosdata/taos-tools.git
GIT_TAG 2a2def1
GIT_TAG c9cc20f
SOURCE_DIR "${TD_SOURCE_DIR}/tools/taos-tools"
BINARY_DIR ""
#BUILD_IN_SOURCE TRUE
......
......@@ -2,7 +2,7 @@
# taosws-rs
ExternalProject_Add(taosws-rs
GIT_REPOSITORY https://github.com/taosdata/taosws-rs.git
GIT_TAG 24b199e
GIT_TAG 648cc62
SOURCE_DIR "${TD_SOURCE_DIR}/tools/taosws-rs"
BINARY_DIR ""
#BUILD_IN_SOURCE TRUE
......
......@@ -73,7 +73,7 @@ If `maven` is used to manage the projects, what needs to be done is only adding
<dependency>
<groupId>com.taosdata.jdbc</groupId>
<artifactId>taos-jdbcdriver</artifactId>
<version>2.0.38</version>
<version>3.0.0</version>
</dependency>
```
......@@ -102,7 +102,7 @@ module goexample
go 1.17
require github.com/taosdata/driver-go/v2 develop
require github.com/taosdata/driver-go/v3 latest
```
:::note
......@@ -137,7 +137,7 @@ Node.js connector provides different ways of establishing connections by providi
1. Install Node.js Native Connector
```
npm i td2.0-connector
npm install @tdengine/client
```
:::note
......@@ -147,7 +147,7 @@ It's recommend to use Node whose version is between `node-v12.8.0` and `node-v13
2. Install Node.js REST Connector
```
npm i td2.0-rest-connector
npm install @tdengine/rest
```
</TabItem>
......@@ -167,7 +167,7 @@ Just need to add the reference to [TDengine.Connector](https://www.nuget.org/pac
</PropertyGroup>
<ItemGroup>
<PackageReference Include="TDengine.Connector" Version="1.0.6" />
<PackageReference Include="TDengine.Connector" Version="3.0.0" />
</ItemGroup>
</Project>
......@@ -187,7 +187,7 @@ The sample code below are based on dotnet6.0, they may need to be adjusted if yo
</TabItem>
<TabItem label="R" value="r">
1. Download [taos-jdbcdriver-version-dist.jar](https://repo1.maven.org/maven2/com/taosdata/jdbc/taos-jdbcdriver/2.0.38/).
1. Download [taos-jdbcdriver-version-dist.jar](https://repo1.maven.org/maven2/com/taosdata/jdbc/taos-jdbcdriver/3.0.0/).
2. Install the dependency package `RJDBC`
```R
......
......@@ -2,13 +2,18 @@ Execute TDengine CLI program `taos` directly from the Linux shell to connect to
```text
$ taos
Welcome to the TDengine shell from Linux, Client Version:2.0.5.0
Copyright (c) 2017 by TAOS Data, Inc. All rights reserved.
Welcome to the TDengine shell from Linux, Client Version:3.0.0.0
Copyright (c) 2022 by TAOS Data, Inc. All rights reserved.
Server is Community Edition.
taos> show databases;
name | created_time | ntables | vgroups | replica | quorum | days | keep1,keep2,keep(D) | cache(MB)| blocks | minrows | maxrows | wallevel | fsync | comp | precision | status |
=========================================================================================================================================================================================================================
test | 2020-10-14 10:35:48.617 | 10 | 1 | 1 | 1 | 2 | 3650,3650,3650 | 16| 6 | 100 | 4096 | 1 | 3000 | 2 | ms | ready |
log | 2020-10-12 09:08:21.651 | 4 | 1 | 1 | 1 | 10 | 30,30,30 | 1| 3 | 100 | 4096 | 1 | 3000 | 2 | us | ready |
Query OK, 2 row(s) in set (0.001198s)
name | create_time | vgroups | ntables | replica | strict | duration | keep | buffer | pagesize | pages | minrows | maxrows | comp | precision | status | retention | single_stable | cachemodel | cachesize | wal_level | wal_fsync_period | wal_retention_period | wal_retention_size | wal_roll_period | wal_seg_size |
=========================================================================================================================================================================================================================================================================================================================================================================================================================================================================
information_schema | NULL | NULL | 14 | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | ready | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL |
performance_schema | NULL | NULL | 3 | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | ready | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL |
db | 2022-08-04 14:14:49.385 | 2 | 4 | 1 | off | 14400m | 5254560m,5254560m,5254560m | 96 | 4 | 256 | 100 | 4096 | 2 | ms | ready | NULL | false | none | 1 | 1 | 3000 | 0 | 0 | 0 | 0 |
Query OK, 3 rows in database (0.019154s)
taos>
```
Go to the `C:\TDengine` directory from `cmd` and execute TDengine CLI program `taos.exe` directly to connect to the TDengine service and enter the TDengine CLI interface, for example, as follows:
```text
C:\TDengine>taos
Welcome to the TDengine shell from Linux, Client Version:2.0.5.0
Copyright (c) 2017 by TAOS Data, Inc. All rights reserved.
taos> show databases;
name | created_time | ntables | vgroups | replica | quorum | days | keep1,keep2,keep(D) | cache(MB) | blocks | minrows | maxrows | wallevel | fsync | comp | precision | status |
===================================================================================================================================================================================================================================================================
test | 2020-10-14 10:35:48.617 | 10 | 1 | 1 | 1 | 2 | 3650,3650,3650 | 16 | 6 | 100 | 4096 | 1 | 3000 | 2 | ms | ready |
log | 2020-10-12 09:08:21.651 | 4 | 1 | 1 | 1 | 10 | 30,30,30 | 1 | 3 | 100 | 4096 | 1 | 3000 | 2 | us | ready |
Query OK, 2 row(s) in set (0.045000s)
taos>
Welcome to the TDengine shell from Windows, Client Version:3.0.0.0
Copyright (c) 2022 by TAOS Data, Inc. All rights reserved.
Server is Community Edition.
taos> show databases;
name | create_time | vgroups | ntables | replica | strict | duration | keep | buffer | pagesize | pages | minrows | maxrows | comp | precision | status | retention | single_stable | cachemodel | cachesize | wal_level | wal_fsync_period | wal_retention_period | wal_retention_size | wal_roll_period | wal_seg_size |
=========================================================================================================================================================================================================================================================================================================================================================================================================================================================================
information_schema | NULL | NULL | 14 | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | ready | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL |
performance_schema | NULL | NULL | 3 | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | ready | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL |
test | 2022-08-04 16:46:40.506 | 2 | 0 | 1 | off | 14400m | 5256000m,5256000m,5256000m | 96 | 4 | 256 |
100 | 4096 | 2 | ms | ready | NULL | false | none | 1 | 1 | 3000 | 0 | 0 | 0 | 0 |
Query OK, 3 rows in database (0.123000s)
taos>
```
......@@ -29,7 +29,7 @@ There are two ways to install taosdump:
1. backing up all databases: specify `-A` or `-all-databases` parameter.
2. backup multiple specified databases: use `-D db1,db2,... ` parameters;
3. back up some super or normal tables in the specified database: use `-dbname stbname1 stbname2 tbname1 tbname2 ... ` parameters. Note that the first parameter of this input sequence is the database name, and only one database is supported. The second and subsequent parameters are the names of super or normal tables in that database, separated by spaces.
3. back up some super or normal tables in the specified database: use `dbname stbname1 stbname2 tbname1 tbname2 ... ` parameters. Note that the first parameter of this input sequence is the database name, and only one database is supported. The second and subsequent parameters are the names of super or normal tables in that database, separated by spaces.
4. back up the system log database: TDengine clusters usually contain a system database named `log`. The data in this database is the data that TDengine runs itself, and the taosdump will not back up the log database by default. If users need to back up the log database, users can use the `-a` or `-allow-sys` command-line parameter.
5. Loose mode backup: taosdump version 1.4.1 onwards provides `-n` and `-L` parameters for backing up data without using escape characters and "loose" mode, which can reduce the number of backups if table names, column names, tag names do not use escape characters. This can also reduce the backup data time and backup data footprint. If you are unsure about using `-n` and `-L` conditions, please use the default parameters for "strict" mode backup. See the [official documentation](/taos-sql/escape) for a description of escaped characters.
......@@ -104,7 +104,10 @@ Usage: taosdump [OPTION...] dbname [tbname ...]
use letter and number only. Default is NOT.
-n, --no-escape No escape char '`'. Default is using it.
-T, --thread-num=THREAD_NUM Number of thread for dump in file. Default is
5.
8.
-C, --cloud=CLOUD_DSN specify a DSN to access TDengine cloud service
-R, --restful Use RESTful interface to connect TDengine
-t, --timeout=SECONDS The timeout seconds for websocket to interact.
-g, --debug Print debug info.
-?, --help Give this help list
--usage Give a short usage message
......
......@@ -16,6 +16,7 @@ The following preparations are required for EMQX to add TDengine data sources co
Depending on the current operating system, users can download the installation package from the [EMQX official website](https://www.emqx.io/downloads) and execute the installation. After installation, use `sudo emqx start` or `sudo systemctl start emqx` to start the EMQX service.
Note: this chapter is based on EMQX v4.4.5. Other version of EMQX probably change its user interface, configuration methods or functions.
## Create Database and Table
......@@ -31,7 +32,7 @@ Note: The table schema is based on the blog [(In Chinese) Data Transfer, Storage
## Configuring EMQX Rules
Since the configuration interface of EMQX differs from version to version, here is v4.4.3 as an example. For other versions, please refer to the corresponding official documentation.
Since the configuration interface of EMQX differs from version to version, here is v4.4.5 as an example. For other versions, please refer to the corresponding official documentation.
### Login EMQX Dashboard
......
......@@ -8,9 +8,9 @@ library("rJava")
library("RJDBC")
args<- commandArgs(trailingOnly = TRUE)
driver_path = args[1] # path to jdbc-driver for example: "/root/taos-jdbcdriver-2.0.37-dist.jar"
driver_path = args[1] # path to jdbc-driver for example: "/root/taos-jdbcdriver-3.0.0-dist.jar"
driver = JDBC("com.taosdata.jdbc.TSDBDriver", driver_path)
conn = dbConnect(driver, "jdbc:TAOS://127.0.0.1:6030/?user=root&password=taosdata")
dbGetQuery(conn, "SELECT server_version()")
dbDisconnect(conn)
# ANCHOR_END: demo
\ No newline at end of file
# ANCHOR_END: demo
......@@ -74,7 +74,7 @@ TDengine 提供了丰富的应用程序开发接口,为了便于用户快速
<dependency>
<groupId>com.taosdata.jdbc</groupId>
<artifactId>taos-jdbcdriver</artifactId>
<version>2.0.38</version>
<version>3.0.0</version>
</dependency>
```
......@@ -103,7 +103,7 @@ module goexample
go 1.17
require github.com/taosdata/driver-go/v2 develop
require github.com/taosdata/driver-go/v3 latest
```
:::note
......@@ -138,7 +138,7 @@ Node.js 连接器通过不同的包提供不同的连接方式。
1. 安装 Node.js 原生连接器
```
npm i td2.0-connector
npm install @tdengine/client
```
:::note
......@@ -148,7 +148,7 @@ Node.js 连接器通过不同的包提供不同的连接方式。
2. 安装 Node.js REST 连接器
```
npm i td2.0-rest-connector
npm install @tdengine/rest
```
</TabItem>
......@@ -168,7 +168,7 @@ Node.js 连接器通过不同的包提供不同的连接方式。
</PropertyGroup>
<ItemGroup>
<PackageReference Include="TDengine.Connector" Version="1.0.6" />
<PackageReference Include="TDengine.Connector" Version="3.0.0" />
</ItemGroup>
</Project>
......@@ -188,7 +188,7 @@ dotnet add package TDengine.Connector
</TabItem>
<TabItem label="R" value="r">
1. 下载 [taos-jdbcdriver-version-dist.jar](https://repo1.maven.org/maven2/com/taosdata/jdbc/taos-jdbcdriver/2.0.38/)
1. 下载 [taos-jdbcdriver-version-dist.jar](https://repo1.maven.org/maven2/com/taosdata/jdbc/taos-jdbcdriver/3.0.0/)
2. 安装 R 的依赖包`RJDBC`
```R
......
......@@ -16,72 +16,96 @@ description: "支持用户编码的聚合函数和标量函数,在查询中嵌
用户可以按照下列函数模板定义自己的标量计算函数
`void udfNormalFunc(char* data, short itype, short ibytes, int numOfRows, long long* ts, char* dataOutput, char* interBuf, char* tsOutput, int* numOfOutput, short otype, short obytes, SUdfInit* buf)`
`int32_t udf(SUdfDataBlock* inputDataBlock, SUdfColumn *resultColumn)`
其中 udfNormalFunc 是函数名的占位符,以上述模板实现的函数对行数据块进行标量计算,其参数项是固定的,用于按照约束完成与引擎之间的数据交换。
- udfNormalFunc 中各参数的具体含义是:
- data:输入数据。
- itype:输入数据的类型。这里采用的是短整型表示法,与各种数据类型对应的值可以参见 [column_meta 中的列类型说明](/reference/rest-api/)。例如 4 用于表示 INT 型。
- iBytes:输入数据中每个值会占用的字节数。
- numOfRows:输入数据的总行数。
- ts:主键时间戳在输入中的列数据(只读)。
- dataOutput:输出数据的缓冲区,缓冲区大小为用户指定的输出类型大小 \* numOfRows。
- interBuf:中间计算结果的缓冲区,大小为用户在创建 UDF 时指定的 BUFSIZE 大小。通常用于计算中间结果与最终结果不一致时使用,由引擎负责分配与释放。
- tsOutput:主键时间戳在输出时的列数据,如果非空可用于输出结果对应的时间戳。
- numOfOutput:输出结果的个数(行数)。
- oType:输出数据的类型。取值含义与 itype 参数一致。
- oBytes:输出数据中每个值占用的字节数。
- buf:用于在 UDF 与引擎间的状态控制信息传递块。
[add_one.c](https://github.com/taosdata/TDengine/blob/develop/tests/script/sh/add_one.c) 是结构最简单的 UDF 实现,也即上面定义的 udfNormalFunc 函数的一个具体实现。其功能为:对传入的一个数据列(可能因 WHERE 子句进行了筛选)中的每一项,都输出 +1 之后的值,并且要求输入的列数据类型为 INT。
其中 udf 是函数名的占位符,以上述模板实现的函数对行数据块进行标量计算。
- scalarFunction 中各参数的具体含义是:
- inputDataBlock: 输入的数据块
- resultColumn: 输出列
### 聚合函数
用户可以按照如下函数模板定义自己的聚合函数。
`void abs_max_merge(char* data, int32_t numOfRows, char* dataOutput, int32_t* numOfOutput, SUdfInit* buf)`
其中 udfMergeFunc 是函数名的占位符,以上述模板实现的函数用于对计算中间结果进行聚合,只有针对超级表的聚合查询才需要调用该函数。其中各参数的具体含义是:
- data:udfNormalFunc 的输出数据数组,如果使用了 interBuf 那么 data 就是 interBuf 的数组。
- numOfRows:data 中数据的行数。
- dataOutput:输出数据的缓冲区,大小等于一条最终结果的大小。如果此时输出还不是最终结果,可以选择输出到 interBuf 中即 data 中。
- numOfOutput:输出结果的个数(行数)。
- buf:用于在 UDF 与引擎间的状态控制信息传递块。
[abs_max.c](https://github.com/taosdata/TDengine/blob/develop/tests/script/sh/abs_max.c) 实现的是一个聚合函数,功能是对一组数据按绝对值取最大值。
其计算过程为:与所在查询语句相关的数据会被分为多个行数据块,对每个行数据块调用 udfNormalFunc(在本例的实现代码中,实际函数名是 `abs_max`)来生成每个子表的中间结果,再将子表的中间结果调用 udfMergeFunc(本例中,其实际的函数名是 `abs_max_merge`)进行聚合,生成超级表的最终聚合结果或中间结果。聚合查询最后还会通过 udfFinalizeFunc(本例中,其实际的函数名是 `abs_max_finalize`)再把超级表的中间结果处理为最终结果,最终结果只能含 0 或 1 条结果数据。
`int32_t udf_start(SUdfInterBuf *interBuf)`
其他典型场景,如协方差的计算,也可通过定义聚合 UDF 的方式实现。
`int32_t udf(SUdfDataBlock* inputBlock, SUdfInterBuf *interBuf, SUdfInterBuf *newInterBuf)`
### 最终计算
`int32_t udf_finish(SUdfInterBuf* interBuf, SUdfInterBuf *result)`
其中 udf 是函数名的占位符。其中各参数的具体含义是:
用户可以按下面的函数模板实现自己的函数对计算结果进行最终计算,通常用于有 interBuf 使用的场景。
- interBuf:中间结果 buffer。
- inputBlock:输入的数据块。
- newInterBuf:新的中间结果buffer。
- result:最终结果。
`void abs_max_finalize(char* dataOutput, char* interBuf, int* numOfOutput, SUdfInit* buf)`
其中 udfFinalizeFunc 是函数名的占位符 ,其中各参数的具体含义是:
- dataOutput:输出数据的缓冲区。
- interBuf:中间结算结果缓冲区,可作为输入。
- numOfOutput:输出数据的个数,对聚合函数来说只能是 0 或者 1。
- buf:用于在 UDF 与引擎间的状态控制信息传递块。
其计算过程为:首先调用udf_start生成结果buffer,然后相关的数据会被分为多个行数据块,对每个行数据块调用 udf 用数据块更新中间结果,最后再调用 udf_finish 从中间结果产生最终结果,最终结果只能含 0 或 1 条结果数据。
## UDF 实现方式的规则总结
### UDF 初始化和销毁
`int32_t udf_init()`
三类 UDF 函数: udfNormalFunc、udfMergeFunc、udfFinalizeFunc ,其函数名约定使用相同的前缀,此前缀即 udfNormalFunc 的实际函数名,也即 udfNormalFunc 函数不需要在实际函数名后添加后缀;而udfMergeFunc 的函数名要加上后缀 `_merge`、udfFinalizeFunc 的函数名要加上后缀 `_finalize`,这是 UDF 实现规则的一部分,系统会按照这些函数名后缀来调用相应功能。
`int32_t udf_destroy()`
根据 UDF 函数类型的不同,用户所要实现的功能函数也不同:
- 标量函数:UDF 中需实现 udfNormalFunc。
- 聚合函数:UDF 中需实现 udfNormalFunc、udfMergeFunc(对超级表查询)、udfFinalizeFunc。
其中 udf 是函数名的占位符。udf_init 完成初始化工作。 udf_destroy 完成清理工作。
:::note
如果对应的函数不需要具体的功能,也需要实现一个空函数。
:::
### UDF 数据结构
```c
typedef struct SUdfColumnMeta {
int16_t type;
int32_t bytes;
uint8_t precision;
uint8_t scale;
} SUdfColumnMeta;
typedef struct SUdfColumnData {
int32_t numOfRows;
int32_t rowsAlloc;
union {
struct {
int32_t nullBitmapLen;
char *nullBitmap;
int32_t dataLen;
char *data;
} fixLenCol;
struct {
int32_t varOffsetsLen;
int32_t *varOffsets;
int32_t payloadLen;
char *payload;
int32_t payloadAllocLen;
} varLenCol;
};
} SUdfColumnData;
typedef struct SUdfColumn {
SUdfColumnMeta colMeta;
bool hasNull;
SUdfColumnData colData;
} SUdfColumn;
typedef struct SUdfDataBlock {
int32_t numOfRows;
int32_t numOfCols;
SUdfColumn **udfCols;
} SUdfDataBlock;
typedef struct SUdfInterBuf {
int32_t bufLen;
char* buf;
int8_t numOfResult; //zero or one
} SUdfInterBuf;
```
为了更好的操作以上数据结构,提供了一些便利函数,定义在 taosudf.h。
## 编译 UDF
用户定义函数的 C 语言源代码无法直接被 TDengine 系统使用,而是需要先编译为 动态链接库,之后才能载入 TDengine 系统。
......
......@@ -15,21 +15,21 @@ Note: 由于 SHOW 语句已经被开发者熟悉和广泛使用,所以它们
本章将详细介绍 `INFORMATION_SCHEMA` 这个内置元数据库中的表和表结构。
## DNODES
## INS_DNODES
提供 dnode 的相关信息。也可以使用 SHOW DNODES 来查询这些信息。
| # | **列名** | **数据类型** | **说明** |
| --- | :------------: | ------------ | --------------------- |
| 1 | vnodes | SMALLINT | dnode 中的 vnode 个数 |
| 2 | support_vnodes | SMALLINT | 支持的 vnode 个数 |
| 3 | status | BINARY(10) | 当前状态 |
| 4 | note | BINARY(256) | 离线原因等信息 |
| 5 | id | SMALLINT | dnode id |
| 6 | endpoint | BINARY(134) | dnode 的地址 |
| 7 | create | TIMESTAMP | 创建时间 |
| # | **列名** | **数据类型** | **说明** |
| --- | :------------: | ------------ | ------------------------- |
| 1 | vnodes | SMALLINT | dnode 中的实际 vnode 个数 |
| 2 | support_vnodes | SMALLINT | 最多支持的 vnode 个数 |
| 3 | status | BINARY(10) | 当前状态 |
| 4 | note | BINARY(256) | 离线原因等信息 |
| 5 | id | SMALLINT | dnode id |
| 6 | endpoint | BINARY(134) | dnode 的地址 |
| 7 | create | TIMESTAMP | 创建时间 |
## MNODES
## INS_MNODES
提供 mnode 的相关信息。也可以使用 SHOW MNODES 来查询这些信息。
......@@ -41,7 +41,7 @@ Note: 由于 SHOW 语句已经被开发者熟悉和广泛使用,所以它们
| 4 | role_time | TIMESTAMP | 成为当前角色的时间 |
| 5 | create_time | TIMESTAMP | 创建时间 |
## MODULES
## INS_MODULES
提供组件的相关信息。也可以使用 SHOW MODULES 来查询这些信息
......@@ -51,46 +51,74 @@ Note: 由于 SHOW 语句已经被开发者熟悉和广泛使用,所以它们
| 2 | endpoint | BINARY(134) | 组件的地址 |
| 3 | module | BINARY(10) | 组件状态 |
## QNODES
## INS_QNODES
当前系统中 QNODE 的信息。也可以使用 SHOW QNODES 来查询这些信息。
| # | **列名** | **数据类型** | **说明** |
| --- | :---------: | ------------ | ------------ |
| 1 | id | SMALLINT | module id |
| 1 | id | SMALLINT | qnode id |
| 2 | endpoint | BINARY(134) | qnode 的地址 |
| 3 | create_time | TIMESTAMP | 创建时间 |
## USER_DATABASES
## INS_CLUSTER
存储集群相关信息。
| # | **列名** | **数据类型** | **说明** |
| --- | :---------: | ------------ | ---------- |
| 1 | id | BIGINT | cluster id |
| 2 | name | BINARY(134) | 集群名称 |
| 3 | create_time | TIMESTAMP | 创建时间 |
## INS_DATABASES
提供用户创建的数据库对象的相关信息。也可以使用 SHOW DATABASES 来查询这些信息。
TODO
| # | **列名** | **数据类型** | **说明** |
| --- | :---------: | ------------ | ------------------------------------------------ |
| 1 | name | BINARY(32) | 数据库名 |
| 2 | create_time | TIMESTAMP | 创建时间 |
| 3 | ntables | INT | 数据库中表的数量,包含子表和普通表但不包含超级表 |
| 4 | vgroups | INT | 数据库中有多少个 vgroup |
| 5 | replica | INT | 副本数 |
| 6 | quorum | INT | 写成功的确认数 |
| 7 | days | INT | 单文件存储数据的时间跨度 |
| 8 | keep | INT | 数据保留时长 |
| 9 | buffer | INT | 每个 vnode 写缓存的内存块大小,单位 MB |
| 10 | minrows | INT | 文件块中记录的最大条数 |
| 11 | maxrows | INT | 文件块中记录的最小条数 |
| 12 | wal_level | INT | WAL 级别 |
| 13 | walfsync_period | INT | 数据落盘周期 |
| 14 | comp | INT | 数据压缩方式 |
| 15 | precision | BINARY(2) | 时间分辨率 |
| 16 | status | BINARY(10) | 数据库状态 |
## USER_FUNCTIONS
TODO
## USER_INDEXES
| # | **列名** | **数据类型** | **说明** |
| --- | :------------------: | ---------------- | ------------------------------------------------ |
| 1 | name | BINARY(32) | 数据库名 |
| 2 | create_time | TIMESTAMP | 创建时间 |
| 3 | ntables | INT | 数据库中表的数量,包含子表和普通表但不包含超级表 |
| 4 | vgroups | INT | 数据库中有多少个 vgroup |
| 6 | replica | INT | 副本数 |
| 7 | quorum | BINARY(3) | 强一致性 |
| 8 | duration | INT | 单文件存储数据的时间跨度 |
| 9 | keep | INT | 数据保留时长 |
| 10 | buffer | INT | 每个 vnode 写缓存的内存块大小,单位 MB |
| 11 | pagesize | INT | 每个 VNODE 中元数据存储引擎的页大小,单位为 KB |
| 12 | pages | INT | 每个 vnode 元数据存储引擎的缓存页个数 |
| 13 | minrows | INT | 文件块中记录的最大条数 |
| 14 | maxrows | INT | 文件块中记录的最小条数 |
| 15 | comp | INT | 数据压缩方式 |
| 16 | precision | BINARY(2) | 时间分辨率 |
| 17 | status | BINARY(10) | 数据库状态 |
| 18 | retention | BINARY (60) | 数据的聚合周期和保存时长 |
| 19 | single_stable | BOOL | 表示此数据库中是否只可以创建一个超级表 |
| 20 | cachemodel | BINARY(60) | 表示是否在内存中缓存子表的最近数据 |
| 21 | cachesize | INT | 表示每个 vnode 中用于缓存子表最近数据的内存大小 |
| 22 | wal_level | INT | WAL 级别 |
| 23 | wal_fsync_period | INT | 数据落盘周期 |
| 24 | wal_retention_period | INT | WAL 的保存时长 |
| 25 | wal_retention_size | INT | WAL 的保存上限 |
| 26 | wal_roll_period | INT | wal 文件切换时长 |
| 27 | wal_segment_size | wal 单个文件大小 |
## INS_FUNCTIONS
用户创建的自定义函数的信息。
| # | **列名** | **数据类型** | **说明** |
| --- | :---------: | ------------ | -------------- |
| 1 | name | BINARY(64) | 函数名 |
| 2 | comment | BINARY(255) | 补充说明 |
| 3 | aggregate | INT | 是否为聚合函数 |
| 4 | output_type | BINARY(31) | 输出类型 |
| 5 | create_time | TIMESTAMP | 创建时间 |
| 6 | code_len | INT | 代码长度 |
| 7 | bufsize | INT | buffer 大小 |
## INS_INDEXES
提供用户创建的索引的相关信息。也可以使用 SHOW INDEX 来查询这些信息。
......@@ -103,7 +131,7 @@ TODO
| 5 | index_type | BINARY(10) | 目前有 SMA 和 FULLTEXT |
| 6 | index_extensions | BINARY(256) | 索引的额外信息。对 SMA 类型的索引,是函数名的列表。对 FULLTEXT 类型的索引为 NULL。 |
## USER_STABLES
## INS_STABLES
提供用户创建的超级表的相关信息。
......@@ -120,19 +148,7 @@ TODO
| 9 | max_delay | BINARY(64) | 推送计算结果的最大延迟 |
| 10 | rollup | BINARY(128) | rollup 聚合函数 |
## USER_STREAMS
提供用户创建的流计算的相关信息。
| # | **列名** | **数据类型** | **说明** |
| --- | :---------: | ------------ | --------------------------- |
| 1 | stream_name | BINARY(192) | 流计算名称 |
| 2 | user_name | BINARY(23) | 创建流计算的用户 |
| 3 | dest_table | BINARY(192) | 流计算写入的目标表 |
| 4 | create_time | TIMESTAMP | 创建时间 |
| 5 | sql | BLOB | 创建流计算时提供的 SQL 语句 |
## USER_TABLES
## INS_TABLES
提供用户创建的普通表和子表的相关信息
......@@ -149,7 +165,18 @@ TODO
| 9 | table_comment | BINARY(1024) | 表注释 |
| 10 | type | BINARY(20) | 表类型 |
## USER_USERS
## INS_TAGS
| # | **列名** | **数据类型** | **说明** |
| --- | :---------: | ------------- | ---------------------- |
| 1 | table_name | BINARY(192) | 表名 |
| 2 | db_name | BINARY(64) | 该表所在的数据库的名称 |
| 3 | stable_name | BINARY(192) | 所属的超级表表名 |
| 4 | tag_name | BINARY(64) | tag 的名称 |
| 5 | tag_type | BINARY(64) | tag 的类型 |
| 6 | tag_value | BINARY(16384) | tag 的值 |
## INS_USERS
提供系统中创建的用户的相关信息。
......@@ -159,21 +186,62 @@ TODO
| 2 | privilege | BINARY(256) | 权限 |
| 3 | create_time | TIMESTAMP | 创建时间 |
## VGROUPS
## INS_GRANTS
提供企业版授权的相关信息。
| # | **列名** | **数据类型** | **说明** |
| --- | :---------: | ------------ | -------------------------------------------------- |
| 1 | version | BINARY(9) | 企业版授权说明:official(官方授权的)/trial(试用的) |
| 2 | cpu_cores | BINARY(9) | 授权使用的 CPU 核心数量 |
| 3 | dnodes | BINARY(10) | 授权使用的 dnode 节点数量 |
| 4 | streams | BINARY(10) | 授权创建的流数量 |
| 5 | users | BINARY(10) | 授权创建的用户数量 |
| 6 | accounts | BINARY(10) | 授权创建的帐户数量 |
| 7 | storage | BINARY(21) | 授权使用的存储空间大小 |
| 8 | connections | BINARY(21) | 授权使用的客户端连接数量 |
| 9 | databases | BINARY(11) | 授权使用的数据库数量 |
| 10 | speed | BINARY(9) | 授权使用的数据点每秒写入数量 |
| 11 | querytime | BINARY(9) | 授权使用的查询总时长 |
| 12 | timeseries | BINARY(21) | 授权使用的测点数量 |
| 13 | expired | BINARY(5) | 是否到期,true:到期,false:未到期 |
| 14 | expire_time | BINARY(19) | 试用期到期时间 |
## INS_VGROUPS
系统中所有 vgroups 的信息。
| # | **列名** | **数据类型** | **说明** |
| --- | :--------: | ------------ | ---------------------------- |
| 1 | vg_id | INT | vgroup id |
| 2 | db_name | BINARY(32) | 数据库名 |
| 3 | tables | INT | 此 vgroup 内有多少表 |
| 4 | status | BINARY(10) | 此 vgroup 的状态 |
| 5 | onlines | INT | 在线的成员数目 |
| 6 | v1_dnode | INT | 第一个成员所在的 dnode 的 id |
| 7 | v1_status | BINARY(10) | 第一个成员的状态 |
| 8 | v2_dnode | INT | 第二个成员所在的 dnode 的 id |
| 9 | v2_status | BINARY(10) | 第二个成员的状态 |
| 10 | v3_dnode | INT | 第三个成员所在的 dnode 的 id |
| 11 | v3_status | BINARY(10) | 第三个成员的状态 |
| 12 | compacting | INT | compact 状态 |
| # | **列名** | **数据类型** | **说明** |
| --- | :-------: | ------------ | ------------------------------------------------------ |
| 1 | vgroup_id | INT | vgroup id |
| 2 | db_name | BINARY(32) | 数据库名 |
| 3 | tables | INT | 此 vgroup 内有多少表 |
| 4 | status | BINARY(10) | 此 vgroup 的状态 |
| 5 | v1_dnode | INT | 第一个成员所在的 dnode 的 id |
| 6 | v1_status | BINARY(10) | 第一个成员的状态 |
| 7 | v2_dnode | INT | 第二个成员所在的 dnode 的 id |
| 8 | v2_status | BINARY(10) | 第二个成员的状态 |
| 9 | v3_dnode | INT | 第三个成员所在的 dnode 的 id |
| 10 | v3_status | BINARY(10) | 第三个成员的状态 |
| 11 | nfiles | INT | 此 vgroup 中数据/元数据文件的数量 |
| 12 | file_size | INT | 此 vgroup 中数据/元数据文件的大小 |
| 13 | tsma | TINYINT | 此 vgroup 是否专用于 Time-range-wise SMA,1: 是, 0: 否 |
## INS_CONFIGS
系统配置参数。
| # | **列名** | **数据类型** | **说明** |
| --- | :------: | ------------ | ------------ |
| 1 | name | BINARY(32) | 配置项名称 |
| 2 | value | BINARY(64) | 该配置项的值 |
## INS_DNODE_VARIABLES
系统中每个 dnode 的配置参数。
| # | **列名** | **数据类型** | **说明** |
| --- | :------: | ------------ | ------------ |
| 1 | dnode_id | INT | dnode 的 ID |
| 2 | name | BINARY(32) | 配置项名称 |
| 3 | value | BINARY(64) | 该配置项的值 |
此差异已折叠。
......@@ -2,13 +2,18 @@
```text
$ taos
Welcome to the TDengine shell from Linux, Client Version:2.0.5.0
Copyright (c) 2017 by TAOS Data, Inc. All rights reserved.
Welcome to the TDengine shell from Linux, Client Version:3.0.0.0
Copyright (c) 2022 by TAOS Data, Inc. All rights reserved.
Server is Community Edition.
taos> show databases;
name | created_time | ntables | vgroups | replica | quorum | days | keep1,keep2,keep(D) | cache(MB)| blocks | minrows | maxrows | wallevel | fsync | comp | precision | status |
=========================================================================================================================================================================================================================
test | 2020-10-14 10:35:48.617 | 10 | 1 | 1 | 1 | 2 | 3650,3650,3650 | 16| 6 | 100 | 4096 | 1 | 3000 | 2 | ms | ready |
log | 2020-10-12 09:08:21.651 | 4 | 1 | 1 | 1 | 10 | 30,30,30 | 1| 3 | 100 | 4096 | 1 | 3000 | 2 | us | ready |
Query OK, 2 row(s) in set (0.001198s)
name | create_time | vgroups | ntables | replica | strict | duration | keep | buffer | pagesize | pages | minrows | maxrows | comp | precision | status | retention | single_stable | cachemodel | cachesize | wal_level | wal_fsync_period | wal_retention_period | wal_retention_size | wal_roll_period | wal_seg_size |
=========================================================================================================================================================================================================================================================================================================================================================================================================================================================================
information_schema | NULL | NULL | 14 | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | ready | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL |
performance_schema | NULL | NULL | 3 | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | ready | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL |
db | 2022-08-04 14:14:49.385 | 2 | 4 | 1 | off | 14400m | 5254560m,5254560m,5254560m | 96 | 4 | 256 | 100 | 4096 | 2 | ms | ready | NULL | false | none | 1 | 1 | 3000 | 0 | 0 | 0 | 0 |
Query OK, 3 rows in database (0.019154s)
taos>
```
在 cmd 下进入到 C:\TDengine 目录下直接执行 `taos.exe`,连接到 TDengine 服务,进入到 TDengine CLI 界面,示例如下:
```text
C:\TDengine>taos
Welcome to the TDengine shell from Linux, Client Version:2.0.5.0
Copyright (c) 2017 by TAOS Data, Inc. All rights reserved.
taos> show databases;
name | created_time | ntables | vgroups | replica | quorum | days | keep1,keep2,keep(D) | cache(MB) | blocks | minrows | maxrows | wallevel | fsync | comp | precision | status |
===================================================================================================================================================================================================================================================================
test | 2020-10-14 10:35:48.617 | 10 | 1 | 1 | 1 | 2 | 3650,3650,3650 | 16 | 6 | 100 | 4096 | 1 | 3000 | 2 | ms | ready |
log | 2020-10-12 09:08:21.651 | 4 | 1 | 1 | 1 | 10 | 30,30,30 | 1 | 3 | 100 | 4096 | 1 | 3000 | 2 | us | ready |
Query OK, 2 row(s) in set (0.045000s)
taos>
Welcome to the TDengine shell from Windows, Client Version:3.0.0.0
Copyright (c) 2022 by TAOS Data, Inc. All rights reserved.
Server is Community Edition.
taos> show databases;
name | create_time | vgroups | ntables | replica | strict | duration | keep | buffer | pagesize | pages | minrows | maxrows | comp | precision | status | retention | single_stable | cachemodel | cachesize | wal_level | wal_fsync_period | wal_retention_period | wal_retention_size | wal_roll_period | wal_seg_size |
=========================================================================================================================================================================================================================================================================================================================================================================================================================================================================
information_schema | NULL | NULL | 14 | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | ready | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL |
performance_schema | NULL | NULL | 3 | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | ready | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL | NULL |
test | 2022-08-04 16:46:40.506 | 2 | 0 | 1 | off | 14400m | 5256000m,5256000m,5256000m | 96 | 4 | 256 |
100 | 4096 | 2 | ms | ready | NULL | false | none | 1 | 1 | 3000 | 0 | 0 | 0 | 0 |
Query OK, 3 rows in database (0.123000s)
taos>
```
......@@ -107,7 +107,10 @@ Usage: taosdump [OPTION...] dbname [tbname ...]
use letter and number only. Default is NOT.
-n, --no-escape No escape char '`'. Default is using it.
-T, --thread-num=THREAD_NUM Number of thread for dump in file. Default is
5.
8.
-C, --cloud=CLOUD_DSN specify a DSN to access TDengine cloud service
-R, --restful Use RESTful interface to connect TDengine
-t, --timeout=SECONDS The timeout seconds for websocket to interact.
-g, --debug Print debug info.
-?, --help Give this help list
--usage Give a short usage message
......
......@@ -17,6 +17,7 @@ MQTT 是流行的物联网数据传输协议,[EMQX](https://github.com/emqx/em
用户可以根据当前的操作系统,到 EMQX 官网下载安装包,并执行安装。下载地址如下:<https://www.emqx.io/zh/downloads>。安装后使用 `sudo emqx start``sudo systemctl start emqx` 启动 EMQX 服务。
注意:本文基于 EMQX v4.4.5 版本,其他版本由于相关配置界面、配置方法以及功能可能随着版本升级有所区别。
## 创建数据库和表
......@@ -32,7 +33,7 @@ CREATE TABLE sensor_data (ts TIMESTAMP, temperature FLOAT, humidity FLOAT, volum
## 配置 EMQX 规则
由于 EMQX 不同版本配置界面所有不同,这里仅以 v4.4.3 为例,其他版本请参考相应官网文档。
由于 EMQX 不同版本配置界面所有不同,这里仅以 v4.4.5 为例,其他版本请参考相应官网文档。
### 登录 EMQX Dashboard
......
......@@ -49,9 +49,9 @@ int32_t grantCheck(EGrantType grant);
#ifndef GRANTS_CFG
#define GRANTS_SCHEMA static const SSysDbTableSchema grantsSchema[] = { \
{.name = "version", .bytes = 9 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "expire time", .bytes = 19 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "expire_time", .bytes = 19 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "expired", .bytes = 5 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "storage(GB)", .bytes = 21 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "storage", .bytes = 21 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "timeseries", .bytes = 21 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "databases", .bytes = 10 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "users", .bytes = 10 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
......@@ -59,8 +59,8 @@ int32_t grantCheck(EGrantType grant);
{.name = "dnodes", .bytes = 10 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "connections", .bytes = 11 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "streams", .bytes = 9 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "cpu cores", .bytes = 9 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "speed(PPS)", .bytes = 9 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "cpu_cores", .bytes = 9 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "speed", .bytes = 9 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
{.name = "querytime", .bytes = 9 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR}, \
}
#define GRANT_CFG_ADD
......
......@@ -227,8 +227,7 @@ typedef struct SSubmitBlk {
int32_t sversion; // data schema version
int32_t dataLen; // data part length, not including the SSubmitBlk head
int32_t schemaLen; // schema length, if length is 0, no schema exists
int16_t numOfRows; // total number of rows in current submit block
int16_t padding; // TODO just for padding here
int32_t numOfRows; // total number of rows in current submit block
char data[];
} SSubmitBlk;
......@@ -256,7 +255,7 @@ typedef struct {
int32_t sversion; // data schema version
int32_t dataLen; // data part length, not including the SSubmitBlk head
int32_t schemaLen; // schema length, if length is 0, no schema exists
int16_t numOfRows; // total number of rows in current submit block
int32_t numOfRows; // total number of rows in current submit block
// head of SSubmitBlk
int32_t numOfBlocks;
const void* pMsg;
......@@ -337,8 +336,10 @@ static FORCE_INLINE SSchemaWrapper* tCloneSSchemaWrapper(const SSchemaWrapper* p
}
static FORCE_INLINE void tDeleteSSchemaWrapper(SSchemaWrapper* pSchemaWrapper) {
taosMemoryFree(pSchemaWrapper->pSchema);
taosMemoryFree(pSchemaWrapper);
if (pSchemaWrapper) {
taosMemoryFree(pSchemaWrapper->pSchema);
taosMemoryFree(pSchemaWrapper);
}
}
static FORCE_INLINE int32_t taosEncodeSSchema(void** buf, const SSchema* pSchema) {
......
......@@ -76,6 +76,13 @@ qTaskInfo_t qCreateQueueExecTaskInfo(void* msg, SReadHandle* readers, int32_t* n
*/
int32_t qSetMultiStreamInput(qTaskInfo_t tinfo, const void* pBlocks, size_t numOfBlocks, int32_t type);
/**
* @brief Cleanup SSDataBlock for StreamScanInfo
*
* @param tinfo
*/
void tdCleanupStreamInputDataBlock(qTaskInfo_t tinfo);
/**
* Update the table id list, add or remove.
*
......
......@@ -253,7 +253,8 @@ typedef struct SShowCreateTableStmt {
ENodeType type;
char dbName[TSDB_DB_NAME_LEN];
char tableName[TSDB_TABLE_NAME_LEN];
void* pCfg; // STableCfg
void* pDbCfg; // SDbCfgInfo
void* pTableCfg; // STableCfg
} SShowCreateTableStmt;
typedef struct SShowTableDistributedStmt {
......@@ -282,6 +283,7 @@ typedef struct SCreateIndexStmt {
ENodeType type;
EIndexType indexType;
bool ignoreExists;
char indexDbName[TSDB_DB_NAME_LEN];
char indexName[TSDB_INDEX_NAME_LEN];
char dbName[TSDB_DB_NAME_LEN];
char tableName[TSDB_TABLE_NAME_LEN];
......@@ -292,6 +294,7 @@ typedef struct SCreateIndexStmt {
typedef struct SDropIndexStmt {
ENodeType type;
bool ignoreNotExists;
char indexDbName[TSDB_DB_NAME_LEN];
char indexName[TSDB_INDEX_NAME_LEN];
} SDropIndexStmt;
......
......@@ -114,6 +114,7 @@ typedef struct SAggLogicNode {
SNodeList* pAggFuncs;
bool hasLastRow;
bool hasTimeLineFunc;
bool onlyHasKeepOrderFunc;
} SAggLogicNode;
typedef struct SProjectLogicNode {
......@@ -552,6 +553,8 @@ typedef struct SQueryPlan {
void nodesWalkPhysiPlan(SNode* pNode, FNodeWalker walker, void* pContext);
const char* dataOrderStr(EDataOrderLevel order);
#ifdef __cplusplus
}
#endif
......
......@@ -269,6 +269,7 @@ typedef struct SSelectStmt {
bool hasInterpFunc;
bool hasLastRowFunc;
bool hasTimeLineFunc;
bool onlyHasKeepOrderFunc;
bool groupSort;
} SSelectStmt;
......
......@@ -46,9 +46,10 @@ enum {
};
enum {
TASK_EXEC_STATUS__IDLE = 1,
TASK_EXEC_STATUS__EXECUTING,
TASK_EXEC_STATUS__CLOSING,
TASK_SCHED_STATUS__INACTIVE = 1,
TASK_SCHED_STATUS__WAITING,
TASK_SCHED_STATUS__ACTIVE,
TASK_SCHED_STATUS__FAILED,
};
enum {
......@@ -204,13 +205,11 @@ typedef struct {
enum {
TASK_SOURCE__SCAN = 1,
TASK_SOURCE__PIPE,
TASK_SOURCE__MERGE,
};
enum {
TASK_EXEC__NONE = 1,
TASK_EXEC__PIPE,
TASK_EXEC__MERGE,
};
enum {
......@@ -256,7 +255,7 @@ typedef struct SStreamTask {
int16_t dispatchMsgType;
int8_t taskStatus;
int8_t execStatus;
int8_t schedStatus;
// node info
int32_t selfChildId;
......@@ -475,11 +474,10 @@ typedef struct {
int32_t tDecodeStreamDispatchReq(SDecoder* pDecoder, SStreamDispatchReq* pReq);
int32_t tDecodeStreamRetrieveReq(SDecoder* pDecoder, SStreamRetrieveReq* pReq);
int32_t streamLaunchByWrite(SStreamTask* pTask, int32_t vgId);
int32_t streamSetupTrigger(SStreamTask* pTask);
int32_t streamProcessRunReq(SStreamTask* pTask);
int32_t streamProcessDispatchReq(SStreamTask* pTask, SStreamDispatchReq* pReq, SRpcMsg* pMsg);
int32_t streamProcessDispatchReq(SStreamTask* pTask, SStreamDispatchReq* pReq, SRpcMsg* pMsg, bool exec);
int32_t streamProcessDispatchRsp(SStreamTask* pTask, SStreamDispatchRsp* pRsp);
int32_t streamProcessRecoverReq(SStreamTask* pTask, SStreamTaskRecoverReq* pReq, SRpcMsg* pMsg);
int32_t streamProcessRecoverRsp(SStreamTask* pTask, SStreamTaskRecoverRsp* pRsp);
......@@ -487,6 +485,21 @@ int32_t streamProcessRecoverRsp(SStreamTask* pTask, SStreamTaskRecoverRsp* pRsp)
int32_t streamProcessRetrieveReq(SStreamTask* pTask, SStreamRetrieveReq* pReq, SRpcMsg* pMsg);
int32_t streamProcessRetrieveRsp(SStreamTask* pTask, SStreamRetrieveRsp* pRsp);
int32_t streamTryExec(SStreamTask* pTask);
int32_t streamSchedExec(SStreamTask* pTask);
typedef struct SStreamMeta SStreamMeta;
SStreamMeta* streamMetaOpen();
void streamMetaClose(SStreamMeta* streamMeta);
int32_t streamMetaAddTask(SStreamMeta* pMeta, SStreamTask* pTask);
int32_t streamMetaRemoveTask(SStreamMeta* pMeta, int32_t taskId);
int32_t streamMetaBegin(SStreamMeta* pMeta);
int32_t streamMetaCommit(SStreamMeta* pMeta);
int32_t streamMetaRollBack(SStreamMeta* pMeta);
#ifdef __cplusplus
}
#endif
......
......@@ -49,6 +49,8 @@ void osDefaultInit();
void osUpdate();
void osCleanup();
bool osLogSpaceAvailable();
bool osDataSpaceAvailable();
bool osTempSpaceAvailable();
void osSetTimezone(const char *timezone);
void osSetSystemLocale(const char *inLocale, const char *inCharSet);
......
......@@ -54,6 +54,7 @@ typedef struct TdFile *TdFilePtr;
#define TD_FILE_EXCL 0x0080
#define TD_FILE_STREAM 0x0100 // Only support taosFprintfFile, taosGetLineFile, taosEOFFile
TdFilePtr taosOpenFile(const char *path, int32_t tdFileOptions);
TdFilePtr taosCreateFile(const char *path, int32_t tdFileOptions);
#define TD_FILE_ACCESS_EXIST_OK 0x1
#define TD_FILE_ACCESS_READ_OK 0x2
......
......@@ -608,6 +608,7 @@ int32_t* taosGetErrno();
#define TSDB_CODE_RSMA_INVALID_STAT TAOS_DEF_ERROR_CODE(0, 0x3151)
#define TSDB_CODE_RSMA_QTASKINFO_CREATE TAOS_DEF_ERROR_CODE(0, 0x3152)
#define TSDB_CODE_RSMA_FILE_CORRUPTED TAOS_DEF_ERROR_CODE(0, 0x3153)
#define TSDB_CODE_RSMA_REMOVE_EXISTS TAOS_DEF_ERROR_CODE(0, 0x3154)
//index
#define TSDB_CODE_INDEX_REBUILDING TAOS_DEF_ERROR_CODE(0, 0x3200)
......
文件模式从 100644 更改为 100755
文件模式从 100644 更改为 100755
文件模式从 100644 更改为 100755
文件模式从 100644 更改为 100755
文件模式从 100644 更改为 100755
文件模式从 100644 更改为 100755
......@@ -76,7 +76,7 @@ void taos_cleanup(void) {
cleanupTaskQueue();
taosConvDestroy();
tscInfo("all local resources released");
taosCleanupCfg();
taosCloseLog();
......@@ -680,7 +680,7 @@ void retrieveMetaCallback(SMetaData *pResultMeta, void *param, int32_t code) {
code = qAnalyseSqlSemantic(pWrapper->pCtx, &pWrapper->catalogReq, pResultMeta, pQuery);
pRequest->stableQuery = pQuery->stableQuery;
if (pQuery->pRoot) {
pRequest->stmtType = pQuery->pRoot->type;
pRequest->stmtType = pQuery->pRoot->type;
}
}
......@@ -785,9 +785,9 @@ void doAsyncQuery(SRequestObj *pRequest, bool updateMetaForce) {
STscObj *pTscObj = pRequest->pTscObj;
SAppClusterSummary *pActivity = &pTscObj->pAppInfo->summary;
if (NULL == pQuery->pRoot) {
atomic_add_fetch_64((int64_t *)&pActivity->numOfInsertsReq, 1);
atomic_add_fetch_64((int64_t *)&pActivity->numOfInsertsReq, 1);
} else if (QUERY_NODE_SELECT_STMT == pQuery->pRoot->type) {
atomic_add_fetch_64((int64_t *)&pActivity->numOfQueryReq, 1);
atomic_add_fetch_64((int64_t *)&pActivity->numOfQueryReq, 1);
}
}
......@@ -809,6 +809,7 @@ void doAsyncQuery(SRequestObj *pRequest, bool updateMetaForce) {
code = catalogAsyncGetAllMeta(pCxt->pCatalog, &conn, &catalogReq, retrieveMetaCallback, pWrapper,
&pRequest->body.queryJob);
pCxt = NULL;
if (code == TSDB_CODE_SUCCESS) {
return;
}
......@@ -816,6 +817,8 @@ void doAsyncQuery(SRequestObj *pRequest, bool updateMetaForce) {
_error:
tscError("0x%" PRIx64 " error happens, code:%d - %s, reqId:0x%" PRIx64, pRequest->self, code, tstrerror(code),
pRequest->requestId);
taosMemoryFree(pCxt);
terrno = code;
pRequest->code = code;
pRequest->body.queryFp(pRequest->body.param, pRequest, code);
......@@ -857,7 +860,7 @@ static void fetchCallback(void *pResult, void *param, int32_t code) {
STscObj *pTscObj = pRequest->pTscObj;
SAppClusterSummary *pActivity = &pTscObj->pAppInfo->summary;
atomic_add_fetch_64((int64_t *)&pActivity->fetchBytes, pRequest->body.resInfo.payloadLen);
atomic_add_fetch_64((int64_t *)&pActivity->fetchBytes, pRequest->body.resInfo.payloadLen);
}
pRequest->body.fetchFp(pRequest->body.param, pRequest, pResultInfo->numOfRows);
......
......@@ -30,6 +30,10 @@ int32_t genericRspCallback(void* param, SDataBuf* pMsg, int32_t code) {
SRequestObj* pRequest = param;
setErrno(pRequest, code);
if (NEED_CLIENT_RM_TBLMETA_REQ(pRequest->type)) {
removeMeta(pRequest->pTscObj, pRequest->targetTableList);
}
taosMemoryFree(pMsg->pData);
if (pRequest->body.queryFp != NULL) {
pRequest->body.queryFp(pRequest->body.param, pRequest, code);
......
此差异已折叠。
......@@ -1739,6 +1739,9 @@ void blockDebugShowDataBlocks(const SArray* dataBlocks, const char* flag) {
formatTimestamp(pBuf, *(uint64_t*)var, TSDB_TIME_PRECISION_MILLI);
printf(" %25s |", pBuf);
break;
case TSDB_DATA_TYPE_BOOL:
printf(" %15d |", *(int32_t*)var);
break;
case TSDB_DATA_TYPE_INT:
printf(" %15d |", *(int32_t*)var);
break;
......@@ -1757,6 +1760,22 @@ void blockDebugShowDataBlocks(const SArray* dataBlocks, const char* flag) {
case TSDB_DATA_TYPE_DOUBLE:
printf(" %15lf |", *(double*)var);
break;
case TSDB_DATA_TYPE_VARCHAR: {
char* pData = colDataGetVarData(pColInfoData, j);
int32_t dataSize = TMIN(sizeof(pBuf) - 1, varDataLen(pData));
memset(pBuf, 0, dataSize + 1);
strncpy(pBuf, varDataVal(pData), dataSize);
printf(" %15s |", pBuf);
} break;
case TSDB_DATA_TYPE_NCHAR: {
char* pData = colDataGetVarData(pColInfoData, j);
int32_t dataSize = TMIN(sizeof(pBuf), varDataLen(pData));
memset(pBuf, 0, dataSize);
taosUcs4ToMbs((TdUcs4*)varDataVal(pData), dataSize, pBuf);
printf(" %15s |", pBuf);
} break;
default:
break;
}
}
printf("\n");
......@@ -1773,8 +1792,10 @@ char* dumpBlockData(SSDataBlock* pDataBlock, const char* flag, char** pDataBuf)
int32_t colNum = taosArrayGetSize(pDataBlock->pDataBlock);
int32_t rows = pDataBlock->info.rows;
int32_t len = 0;
len += snprintf(dumpBuf + len, size - len, "===stream===%s|block type %d|child id %d|group id:%" PRIu64 "|uid:%ld|rows:%d|version:%" PRIu64 "\n", flag,
(int32_t)pDataBlock->info.type, pDataBlock->info.childId, pDataBlock->info.groupId,
len += snprintf(dumpBuf + len, size - len,
"===stream===%s|block type %d|child id %d|group id:%" PRIu64 "|uid:%" PRId64
"|rows:%d|version:%" PRIu64 "\n",
flag, (int32_t)pDataBlock->info.type, pDataBlock->info.childId, pDataBlock->info.groupId,
pDataBlock->info.uid, pDataBlock->info.rows, pDataBlock->info.version);
if (len >= size - 1) return dumpBuf;
......@@ -1929,12 +1950,14 @@ int32_t buildSubmitReqFromDataBlock(SSubmitReq** pReq, const SArray* pDataBlocks
}
break;
case TSDB_DATA_TYPE_NCHAR: {
tdAppendColValToRow(&rb, PRIMARYKEY_TIMESTAMP_COL_ID + k, TSDB_DATA_TYPE_NCHAR, TD_VTYPE_NORM, var, true,
void* data = colDataGetData(pColInfoData, j);
tdAppendColValToRow(&rb, PRIMARYKEY_TIMESTAMP_COL_ID + k, TSDB_DATA_TYPE_NCHAR, TD_VTYPE_NORM, data, true,
offset, k);
break;
}
case TSDB_DATA_TYPE_VARCHAR: { // TSDB_DATA_TYPE_BINARY
tdAppendColValToRow(&rb, PRIMARYKEY_TIMESTAMP_COL_ID + k, TSDB_DATA_TYPE_VARCHAR, TD_VTYPE_NORM, var, true,
void* data = colDataGetData(pColInfoData, j);
tdAppendColValToRow(&rb, PRIMARYKEY_TIMESTAMP_COL_ID + k, TSDB_DATA_TYPE_VARCHAR, TD_VTYPE_NORM, data, true,
offset, k);
break;
}
......@@ -2005,11 +2028,10 @@ int32_t buildSubmitReqFromDataBlock(SSubmitReq** pReq, const SArray* pDataBlocks
int32_t dataLen = blk->dataLen;
blk->uid = htobe64(blk->uid);
blk->suid = htobe64(blk->suid);
blk->padding = htonl(blk->padding);
blk->sversion = htonl(blk->sversion);
blk->dataLen = htonl(blk->dataLen);
blk->schemaLen = htonl(blk->schemaLen);
blk->numOfRows = htons(blk->numOfRows);
blk->numOfRows = htonl(blk->numOfRows);
blk = (SSubmitBlk*)(blk->data + dataLen);
}
} else {
......
......@@ -18,8 +18,8 @@
#include "tcompare.h"
#include "tconfig.h"
#include "tdatablock.h"
#include "tlog.h"
#include "tgrant.h"
#include "tlog.h"
GRANT_CFG_DECLARE;
......@@ -389,7 +389,7 @@ static int32_t taosAddServerCfg(SConfig *pCfg) {
tsNumOfVnodeQueryThreads = TMAX(tsNumOfVnodeQueryThreads, 4);
if (cfgAddInt32(pCfg, "numOfVnodeQueryThreads", tsNumOfVnodeQueryThreads, 4, 1024, 0) != 0) return -1;
tsNumOfVnodeStreamThreads = tsNumOfCores / 4;
tsNumOfVnodeStreamThreads = tsNumOfCores;
tsNumOfVnodeStreamThreads = TMAX(tsNumOfVnodeStreamThreads, 4);
if (cfgAddInt32(pCfg, "numOfVnodeStreamThreads", tsNumOfVnodeStreamThreads, 4, 1024, 0) != 0) return -1;
......@@ -452,7 +452,7 @@ static void taosSetClientLogCfg(SConfig *pCfg) {
SConfigItem *pItem = cfgGetItem(pCfg, "logDir");
tstrncpy(tsLogDir, cfgGetItem(pCfg, "logDir")->str, PATH_MAX);
taosExpandDir(tsLogDir, tsLogDir, PATH_MAX);
tsLogSpace.reserved = cfgGetItem(pCfg, "minimalLogDirGB")->fval;
tsLogSpace.reserved = (int64_t)(((double)cfgGetItem(pCfg, "minimalLogDirGB")->fval) * 1024 * 1024 * 1024);
tsNumOfLogLines = cfgGetItem(pCfg, "numOfLogLines")->i32;
tsAsyncLog = cfgGetItem(pCfg, "asyncLog")->bval;
tsLogKeepDays = cfgGetItem(pCfg, "logKeepDays")->i32;
......@@ -502,7 +502,7 @@ static int32_t taosSetClientCfg(SConfig *pCfg) {
tstrncpy(tsTempDir, cfgGetItem(pCfg, "tempDir")->str, PATH_MAX);
taosExpandDir(tsTempDir, tsTempDir, PATH_MAX);
tsTempSpace.reserved = cfgGetItem(pCfg, "minimalTmpDirGB")->fval;
tsTempSpace.reserved = (int64_t)(((double)cfgGetItem(pCfg, "minimalTmpDirGB")->fval) * 1024 * 1024 * 1024);
if (taosMulMkDir(tsTempDir) != 0) {
uError("failed to create tempDir:%s since %s", tsTempDir, terrstr());
return -1;
......@@ -540,7 +540,7 @@ static void taosSetSystemCfg(SConfig *pCfg) {
}
static int32_t taosSetServerCfg(SConfig *pCfg) {
tsDataSpace.reserved = cfgGetItem(pCfg, "minimalDataDirGB")->fval;
tsDataSpace.reserved = (int64_t)(((double)cfgGetItem(pCfg, "minimalDataDirGB")->fval) * 1024 * 1024 * 1024);
tsNumOfSupportVnodes = cfgGetItem(pCfg, "supportVnodes")->i32;
tsMaxShellConns = cfgGetItem(pCfg, "maxShellConns")->i32;
tsStatusInterval = cfgGetItem(pCfg, "statusInterval")->i32;
......@@ -598,7 +598,7 @@ static int32_t taosSetServerCfg(SConfig *pCfg) {
return 0;
}
void taosLocalCfgForbiddenToChange(char* name, bool* forbidden) {
void taosLocalCfgForbiddenToChange(char *name, bool *forbidden) {
int32_t len = strlen(name);
char lowcaseName[CFG_NAME_MAX_LEN + 1] = {0};
strntolower(lowcaseName, name, TMIN(CFG_NAME_MAX_LEN, len));
......@@ -612,7 +612,6 @@ void taosLocalCfgForbiddenToChange(char* name, bool* forbidden) {
*forbidden = false;
}
int32_t taosSetCfg(SConfig *pCfg, char *name) {
int32_t len = strlen(name);
char lowcaseName[CFG_NAME_MAX_LEN + 1] = {0};
......@@ -740,15 +739,15 @@ int32_t taosSetCfg(SConfig *pCfg, char *name) {
}
case 'i': {
if (strcasecmp("minimalTmpDirGB", name) == 0) {
tsTempSpace.reserved = cfgGetItem(pCfg, "minimalTmpDirGB")->fval;
tsTempSpace.reserved = (int64_t)(((double)cfgGetItem(pCfg, "minimalTmpDirGB")->fval) * 1024 * 1024 * 1024);
} else if (strcasecmp("minimalDataDirGB", name) == 0) {
tsDataSpace.reserved = cfgGetItem(pCfg, "minimalDataDirGB")->fval;
tsDataSpace.reserved = (int64_t)(((double)cfgGetItem(pCfg, "minimalDataDirGB")->fval) * 1024 * 1024 * 1024);
} else if (strcasecmp("minSlidingTime", name) == 0) {
tsMinSlidingTime = cfgGetItem(pCfg, "minSlidingTime")->i32;
} else if (strcasecmp("minIntervalTime", name) == 0) {
tsMinIntervalTime = cfgGetItem(pCfg, "minIntervalTime")->i32;
} else if (strcasecmp("minimalLogDirGB", name) == 0) {
tsLogSpace.reserved = cfgGetItem(pCfg, "minimalLogDirGB")->fval;
tsLogSpace.reserved = (int64_t)(((double)cfgGetItem(pCfg, "minimalLogDirGB")->fval) * 1024 * 1024 * 1024);
}
break;
}
......@@ -1114,12 +1113,12 @@ void taosCfgDynamicOptions(const char *option, const char *value) {
const char *options[] = {
"dDebugFlag", "vDebugFlag", "mDebugFlag", "wDebugFlag", "sDebugFlag", "tsdbDebugFlag",
"tqDebugFlag", "fsDebugFlag", "udfDebugFlag", "smaDebugFlag", "idxDebugFlag", "tdbDebugFlag",
"tmrDebugFlag", "uDebugFlag", "smaDebugFlag", "rpcDebugFlag", "qDebugFlag", "metaDebugFlag",
"tmrDebugFlag", "uDebugFlag", "smaDebugFlag", "rpcDebugFlag", "qDebugFlag", "metaDebugFlag",
};
int32_t *optionVars[] = {
&dDebugFlag, &vDebugFlag, &mDebugFlag, &wDebugFlag, &sDebugFlag, &tsdbDebugFlag,
&tqDebugFlag, &fsDebugFlag, &udfDebugFlag, &smaDebugFlag, &idxDebugFlag, &tdbDebugFlag,
&tmrDebugFlag, &uDebugFlag, &smaDebugFlag, &rpcDebugFlag, &qDebugFlag, &metaDebugFlag,
&tmrDebugFlag, &uDebugFlag, &smaDebugFlag, &rpcDebugFlag, &qDebugFlag, &metaDebugFlag,
};
int32_t optionSize = tListLen(options);
......
......@@ -76,7 +76,7 @@ int32_t tGetSubmitMsgNext(SSubmitMsgIter *pIter, SSubmitBlk **pPBlock) {
pIter->sversion = htonl((*pPBlock)->sversion);
pIter->dataLen = htonl((*pPBlock)->dataLen);
pIter->schemaLen = htonl((*pPBlock)->schemaLen);
pIter->numOfRows = htons((*pPBlock)->numOfRows);
pIter->numOfRows = htonl((*pPBlock)->numOfRows);
}
return 0;
}
......@@ -4908,7 +4908,6 @@ int32_t tDecodeSRSmaParam(SDecoder *pCoder, SRSmaParam *pRSmaParam) {
if (tDecodeI64v(pCoder, &pRSmaParam->watermark[i]) < 0) return -1;
if (tDecodeI32v(pCoder, &pRSmaParam->qmsgLen[i]) < 0) return -1;
if (pRSmaParam->qmsgLen[i] > 0) {
tDecoderMalloc(pCoder, pRSmaParam->qmsgLen[i]);
if (tDecodeBinary(pCoder, (uint8_t **)&pRSmaParam->qmsg[i], NULL) < 0) return -1; // qmsgLen contains len of '\0'
} else {
pRSmaParam->qmsg[i] = NULL;
......
......@@ -30,6 +30,12 @@ static int32_t STSBufUpdateHeader(STSBuf* pTSBuf, STSBufFileHeader* pHeader);
* @return
*/
STSBuf* tsBufCreate(bool autoDelete, int32_t order) {
if (!osTempSpaceAvailable()) {
terrno = TSDB_CODE_TSC_NO_DISKSPACE;
// tscError("tmp file created failed since %s", terrstr());
return NULL;
}
STSBuf* pTSBuf = taosMemoryCalloc(1, sizeof(STSBuf));
if (pTSBuf == NULL) {
return NULL;
......
......@@ -146,8 +146,8 @@ static int32_t vmPutMsgToQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg, EQueueType qtyp
SVnodeObj *pVnode = vmAcquireVnode(pMgmt, pHead->vgId);
if (pVnode == NULL) {
dGError("vgId:%d, msg:%p failed to put into vnode queue since %s, msgtype:%s qtype:%d", pHead->vgId, pMsg,
terrstr(), TMSG_INFO(pMsg->msgType), qtype);
dGError("vgId:%d, msg:%p failed to put into vnode queue since %s, type:%s qtype:%d", pHead->vgId, pMsg, terrstr(),
TMSG_INFO(pMsg->msgType), qtype);
return terrno != 0 ? terrno : -1;
}
......@@ -165,14 +165,22 @@ static int32_t vmPutMsgToQueue(SVnodeMgmt *pMgmt, SRpcMsg *pMsg, EQueueType qtyp
break;
case STREAM_QUEUE:
dGTrace("vgId:%d, msg:%p put into vnode-stream queue", pVnode->vgId, pMsg);
taosWriteQitem(pVnode->pStreamQ, pMsg);
if (pMsg->msgType == TDMT_STREAM_TASK_DISPATCH) {
vnodeEnqueueStreamMsg(pVnode->pImpl, pMsg);
} else {
taosWriteQitem(pVnode->pStreamQ, pMsg);
}
break;
case FETCH_QUEUE:
dGTrace("vgId:%d, msg:%p put into vnode-fetch queue", pVnode->vgId, pMsg);
taosWriteQitem(pVnode->pFetchQ, pMsg);
break;
case WRITE_QUEUE:
if ((pMsg->msgType == TDMT_VND_SUBMIT) && (grantCheck(TSDB_GRANT_STORAGE) != TSDB_CODE_SUCCESS)) {
if (!osDataSpaceAvailable()) {
terrno = TSDB_CODE_VND_NO_DISKSPACE;
code = terrno;
dError("vgId:%d, msg:%p put into vnode-write queue failed since %s", pVnode->vgId, pMsg, terrstr());
} else if ((pMsg->msgType == TDMT_VND_SUBMIT) && (grantCheck(TSDB_GRANT_STORAGE) != TSDB_CODE_SUCCESS)) {
terrno = TSDB_CODE_VND_NO_WRITE_AUTH;
code = terrno;
dDebug("vgId:%d, msg:%p put into vnode-write queue failed since %s", pVnode->vgId, pMsg, terrstr());
......
......@@ -49,8 +49,26 @@ static int32_t dmInitMonitor() {
return 0;
}
static bool dmCheckDiskSpace() {
osUpdate();
if (!osDataSpaceAvailable()) {
dError("free disk size: %f GB, too little, require %f GB at least at least , quit", (double)tsDataSpace.size.avail / 1024.0 / 1024.0 / 1024.0, (double)tsDataSpace.reserved / 1024.0 / 1024.0 / 1024.0);
return false;
}
if (!osLogSpaceAvailable()) {
dError("free disk size: %f GB, too little, require %f GB at least at least, quit", (double)tsLogSpace.size.avail / 1024.0 / 1024.0 / 1024.0, (double)tsLogSpace.reserved / 1024.0 / 1024.0 / 1024.0);
return false;
}
if (!osTempSpaceAvailable()) {
dError("free disk size: %f GB, too little, require %f GB at least at least, quit", (double)tsTempSpace.size.avail / 1024.0 / 1024.0 / 1024.0, (double)tsTempSpace.reserved / 1024.0 / 1024.0 / 1024.0);
return false;
}
return true;
}
int32_t dmInit(int8_t rtype) {
dInfo("start to init dnode env");
if (!dmCheckDiskSpace()) return -1;
if (dmCheckRepeatInit(dmInstance()) != 0) return -1;
if (dmInitSystem() != 0) return -1;
if (dmInitMonitor() != 0) return -1;
......
......@@ -265,6 +265,7 @@ static void dmWatchNodes(SDnode *pDnode) {
}
int32_t dmRunDnode(SDnode *pDnode) {
int count = 0;
if (dmOpenNodes(pDnode) != 0) {
dError("failed to open nodes since %s", terrstr());
return -1;
......@@ -274,7 +275,6 @@ 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");
......@@ -285,6 +285,9 @@ int32_t dmRunDnode(SDnode *pDnode) {
}
dmWatchNodes(pDnode);
if (count == 0) osUpdate();
count %= 10;
count++;
taosMsleep(100);
}
}
......@@ -878,14 +878,14 @@ static int32_t mndRetrieveConsumer(SRpcMsg *pReq, SShowObj *pShow, SSDataBlock *
pShow->pIter = sdbFetch(pSdb, SDB_CONSUMER, pShow->pIter, (void **)&pConsumer);
if (pShow->pIter == NULL) break;
if (taosArrayGetSize(pConsumer->assignedTopics) == 0) {
mDebug("showing consumer %ld no assigned topic, skip", pConsumer->consumerId);
mDebug("showing consumer %" PRId64 " no assigned topic, skip", pConsumer->consumerId);
sdbRelease(pSdb, pConsumer);
continue;
}
taosRLockLatch(&pConsumer->lock);
mDebug("showing consumer %ld", pConsumer->consumerId);
mDebug("showing consumer %" PRId64, pConsumer->consumerId);
int32_t topicSz = taosArrayGetSize(pConsumer->assignedTopics);
bool hasTopic = true;
......
......@@ -531,7 +531,7 @@ int32_t mndCheckCreateStbReq(SMCreateStbReq *pCreate) {
}
if (pCreate->numOfColumns < TSDB_MIN_COLUMNS || pCreate->numOfColumns > TSDB_MAX_COLUMNS) {
terrno = TSDB_CODE_MND_INVALID_STB_OPTION;
terrno = TSDB_CODE_PAR_INVALID_COLUMNS_NUM;
return -1;
}
......@@ -542,7 +542,7 @@ int32_t mndCheckCreateStbReq(SMCreateStbReq *pCreate) {
SField *pField = taosArrayGet(pCreate->pColumns, 0);
if (pField->type != TSDB_DATA_TYPE_TIMESTAMP) {
terrno = TSDB_CODE_MND_INVALID_STB_OPTION;
terrno = TSDB_CODE_PAR_INVALID_FIRST_COLUMN;
return -1;
}
......@@ -1011,6 +1011,11 @@ static int32_t mndProcessCreateStbReq(SRpcMsg *pReq) {
goto _OVER;
}
if ((terrno = grantCheck(TSDB_GRANT_STABLE)) < 0) {
code = -1;
goto _OVER;
}
if (isAlter) {
bool needRsp = false;
SStbObj pDst = {0};
......
......@@ -437,7 +437,6 @@ static int32_t mndCreateStbForStream(SMnode *pMnode, STrans *pTrans, const SStre
pField->bytes = 8;
if (mndCheckCreateStbReq(&createReq) != 0) {
terrno = TSDB_CODE_INVALID_MSG;
goto _OVER;
}
......
......@@ -149,7 +149,7 @@ int32_t mndSnapshotStartWrite(struct SSyncFSM *pFsm, void *pParam, void **ppWrit
int32_t mndSnapshotStopWrite(struct SSyncFSM *pFsm, void *pWriter, bool isApply, SSnapshot *pSnapshot) {
mInfo("stop to apply snapshot to sdb, apply:%d, index:%" PRId64 " term:%" PRIu64 " config:%" PRId64, isApply,
pSnapshot->lastApplyIndex, pSnapshot->lastApplyTerm, pSnapshot->lastApplyIndex);
pSnapshot->lastApplyIndex, pSnapshot->lastApplyTerm, pSnapshot->lastConfigIndex);
SMnode *pMnode = pFsm->data;
return sdbStopWrite(pMnode->pSdb, pWriter, isApply, pSnapshot->lastApplyIndex, pSnapshot->lastApplyTerm,
pSnapshot->lastConfigIndex);
......
......@@ -30,15 +30,15 @@
extern "C" {
#endif
typedef struct SSnode {
SMsgCb msgCb;
} SSnode;
#if 0
typedef struct {
SHashObj* pHash; // taskId -> SStreamTask
} SStreamMeta;
typedef struct SSnode {
SStreamMeta* pMeta;
SMsgCb msgCb;
} SSnode;
SStreamMeta* sndMetaNew();
void sndMetaDelete(SStreamMeta* pMeta);
......@@ -49,6 +49,7 @@ int32_t sndMetaRemoveTask(SStreamMeta* pMeta, int32_t taskId);
int32_t sndDropTaskOfStream(SStreamMeta* pMeta, int64_t streamId);
int32_t sndStopTaskOfStream(SStreamMeta* pMeta, int64_t streamId);
int32_t sndResumeTaskOfStream(SStreamMeta* pMeta, int64_t streamId);
#endif
#ifdef __cplusplus
}
......
......@@ -16,6 +16,10 @@
#include "executor.h"
#include "sndInt.h"
#include "tuuid.h"
/*SSnode *sndOpen(const char *path, const SSnodeOpt *pOption) { return NULL; }*/
/*void sndClose(SSnode *pSnode) {}*/
int32_t sndProcessUMsg(SSnode *pSnode, SRpcMsg *pMsg) { return 0; }
int32_t sndProcessSMsg(SSnode *pSnode, SRpcMsg *pMsg) { return 0; }
SSnode *sndOpen(const char *path, const SSnodeOpt *pOption) {
SSnode *pSnode = taosMemoryCalloc(1, sizeof(SSnode));
......@@ -23,21 +27,24 @@ SSnode *sndOpen(const char *path, const SSnodeOpt *pOption) {
return NULL;
}
pSnode->msgCb = pOption->msgCb;
#if 0
pSnode->pMeta = sndMetaNew();
if (pSnode->pMeta == NULL) {
taosMemoryFree(pSnode);
return NULL;
}
#endif
return pSnode;
}
void sndClose(SSnode *pSnode) {
sndMetaDelete(pSnode->pMeta);
/*sndMetaDelete(pSnode->pMeta);*/
taosMemoryFree(pSnode);
}
int32_t sndGetLoad(SSnode *pSnode, SSnodeLoad *pLoad) { return 0; }
#if 0
SStreamMeta *sndMetaNew() {
SStreamMeta *pMeta = taosMemoryCalloc(1, sizeof(SStreamMeta));
if (pMeta == NULL) {
......@@ -151,7 +158,7 @@ static int32_t sndProcessTaskDispatchReq(SSnode *pNode, SRpcMsg *pMsg) {
.info = pMsg->info,
.code = 0,
};
streamProcessDispatchReq(pTask, &req, &rsp);
streamProcessDispatchReq(pTask, &req, &rsp, true);
return 0;
}
......@@ -263,3 +270,4 @@ int32_t sndProcessSMsg(SSnode *pSnode, SRpcMsg *pMsg) {
}
return 0;
}
#endif
......@@ -188,6 +188,8 @@ bool tqNextDataBlock(STqReader *pReader);
bool tqNextDataBlockFilterOut(STqReader *pReader, SHashObj *filterOutUids);
int32_t tqRetrieveDataBlock(SSDataBlock *pBlock, STqReader *pReader);
void vnodeEnqueueStreamMsg(SVnode *pVnode, SRpcMsg *pMsg);
// sma
int32_t smaGetTSmaDays(SVnodeCfg *pCfg, void *pCont, uint32_t contLen, int32_t *days);
......
......@@ -41,6 +41,9 @@ typedef struct SRSmaStat SRSmaStat;
typedef struct SSmaKey SSmaKey;
typedef struct SRSmaInfo SRSmaInfo;
typedef struct SRSmaInfoItem SRSmaInfoItem;
typedef struct SQTaskFile SQTaskFile;
typedef struct SQTaskFReader SQTaskFReader;
typedef struct SQTaskFWriter SQTaskFWriter;
struct SSmaEnv {
SRWLatch lock;
......@@ -64,12 +67,32 @@ struct STSmaStat {
STSchema *pTSchema;
};
struct SQTaskFile {
volatile int32_t nRef;
int64_t commitID;
int64_t size;
};
struct SQTaskFReader {
SSma *pSma;
SQTaskFile fTask;
TdFilePtr pReadH;
};
struct SQTaskFWriter {
SSma *pSma;
SQTaskFile fTask;
TdFilePtr pWriteH;
char *fname;
};
struct SRSmaStat {
SSma *pSma;
int64_t commitAppliedVer; // vnode applied version for async commit
int64_t refId; // shared by fetch tasks
SRWLatch lock; // r/w lock for rsma fs(e.g. qtaskinfo)
int8_t triggerStat; // shared by fetch tasks
int8_t commitStat; // 0 not in committing, 1 in committing
SArray *aTaskFile; // qTaskFiles committed recently(for recovery/snapshot r/w)
SHashObj *rsmaInfoHash; // key: stbUid, value: SRSmaInfo;
SHashObj *iRsmaInfoHash; // key: stbUid, value: SRSmaInfo; immutable rsmaInfoHash
};
......@@ -89,6 +112,7 @@ struct SSmaStat {
#define RSMA_TRIGGER_STAT(r) (&(r)->triggerStat)
#define RSMA_COMMIT_STAT(r) (&(r)->commitStat)
#define RSMA_REF_ID(r) ((r)->refId)
#define RSMA_FS_LOCK(r) (&(r)->lock)
struct SRSmaInfoItem {
void *taskInfo; // qTaskInfo_t
......@@ -127,6 +151,11 @@ enum {
RSMA_ROLE_ITERATE = 4,
};
enum {
RSMA_RESTORE_REBOOT = 1,
RSMA_RESTORE_SYNC = 2,
};
void tdDestroySmaEnv(SSmaEnv *pSmaEnv);
void *tdFreeSmaEnv(SSmaEnv *pSmaEnv);
......@@ -192,6 +221,8 @@ static FORCE_INLINE void tdSmaStatSetDropped(STSmaStat *pTStat) {
}
}
void tdRSmaQTaskInfoGetFileName(int32_t vid, int64_t version, char *outputName);
void tdRSmaQTaskInfoGetFullName(int32_t vid, int64_t version, const char *path, char *outputName);
int32_t tdCloneRSmaInfo(SSma *pSma, SRSmaInfo *pDest, SRSmaInfo *pSrc);
void tdFreeQTaskInfo(qTaskInfo_t *taskHandle, int32_t vgId, int32_t level);
static int32_t tdDestroySmaState(SSmaStat *pSmaStat, int8_t smaType);
......@@ -201,7 +232,8 @@ void tdRemoveRSmaInfoBySuid(SSma *pSma, int64_t suid);
int32_t tdRSmaPersistExecImpl(SRSmaStat *pRSmaStat, SHashObj *pInfoHash);
int32_t tdProcessRSmaCreateImpl(SSma *pSma, SRSmaParam *param, int64_t suid, const char *tbName);
int32_t tdProcessRSmaRestoreImpl(SSma *pSma);
int32_t tdProcessRSmaRestoreImpl(SSma *pSma, int8_t type, int64_t qtaskFileVer);
int32_t tdRsmaRestore(SSma *pSma, int8_t type, int64_t committedVer);
int32_t tdProcessTSmaCreateImpl(SSma *pSma, int64_t version, const char *pMsg);
int32_t tdProcessTSmaInsertImpl(SSma *pSma, int64_t indexUid, const char *msg);
......@@ -209,9 +241,6 @@ int32_t tdProcessTSmaGetDaysImpl(SVnodeCfg *pCfg, void *pCont, uint32_t contLen,
// smaFileUtil ================
typedef struct SQTaskFReader SQTaskFReader;
typedef struct SQTaskFWriter SQTaskFWriter;
#define TD_FILE_HEAD_SIZE 512
typedef struct STFInfo STFInfo;
......
......@@ -115,15 +115,23 @@ typedef struct {
} STqHandle;
struct STQ {
char* path;
SHashObj* pushMgr; // consumerId -> STqHandle*
SHashObj* handles; // subKey -> STqHandle
SHashObj* pStreamTasks; // taksId -> SStreamTask
SHashObj* pAlterInfo; // topic -> SAlterCheckInfo
SVnode* pVnode;
char* path;
SHashObj* pushMgr; // consumerId -> STqHandle*
SHashObj* handles; // subKey -> STqHandle
SHashObj* pStreamTasks; // taksId -> SStreamTask
SHashObj* pAlterInfo; // topic -> SAlterCheckInfo
STqOffsetStore* pOffsetStore;
SVnode* pVnode;
TDB* pMetaStore;
TTB* pExecStore;
TDB* pMetaStore;
TTB* pExecStore;
TTB* pAlterInfoStore;
TDB* pStreamStore;
TTB* pTaskDb;
TTB* pTaskState;
};
typedef struct {
......
......@@ -163,7 +163,7 @@ int32_t tqProcessTaskDeployReq(STQ* pTq, char* msg, int32_t msgLen);
int32_t tqProcessTaskDropReq(STQ* pTq, char* msg, int32_t msgLen);
int32_t tqProcessStreamTrigger(STQ* pTq, SSubmitReq* data, int64_t ver);
int32_t tqProcessTaskRunReq(STQ* pTq, SRpcMsg* pMsg);
int32_t tqProcessTaskDispatchReq(STQ* pTq, SRpcMsg* pMsg);
int32_t tqProcessTaskDispatchReq(STQ* pTq, SRpcMsg* pMsg, bool exec);
int32_t tqProcessTaskRecoverReq(STQ* pTq, SRpcMsg* pMsg);
int32_t tqProcessTaskDispatchRsp(STQ* pTq, SRpcMsg* pMsg);
int32_t tqProcessTaskRecoverRsp(STQ* pTq, SRpcMsg* pMsg);
......@@ -186,6 +186,7 @@ int32_t smaSyncPostCommit(SSma* pSma);
int32_t smaAsyncPreCommit(SSma* pSma);
int32_t smaAsyncCommit(SSma* pSma);
int32_t smaAsyncPostCommit(SSma* pSma);
int32_t smaDoRetention(SSma* pSma, int64_t now);
int32_t tdProcessTSmaCreate(SSma* pSma, int64_t version, const char* msg);
int32_t tdProcessTSmaInsert(SSma* pSma, int64_t indexUid, const char* msg);
......@@ -354,16 +355,16 @@ struct SSma {
void smaHandleRes(void* pVnode, int64_t smaId, const SArray* data);
enum {
SNAP_DATA_META = 0,
SNAP_DATA_TSDB = 1,
SNAP_DATA_DEL = 2,
SNAP_DATA_RSMA1 = 3,
SNAP_DATA_RSMA2 = 4,
SNAP_DATA_QTASK = 5,
SNAP_DATA_TQ_HANDLE = 6,
SNAP_DATA_TQ_OFFSET = 7,
SNAP_DATA_STREAM_TASK = 8,
SNAP_DATA_STREAM_STATE = 9,
SNAP_DATA_META = 1,
SNAP_DATA_TSDB = 2,
SNAP_DATA_DEL = 3,
SNAP_DATA_RSMA1 = 4,
SNAP_DATA_RSMA2 = 5,
SNAP_DATA_QTASK = 6,
SNAP_DATA_TQ_HANDLE = 7,
SNAP_DATA_TQ_OFFSET = 8,
SNAP_DATA_STREAM_TASK = 9,
SNAP_DATA_STREAM_STATE = 10,
};
struct SSnapDataHdr {
......
......@@ -18,6 +18,7 @@
static FORCE_INLINE void *metaMalloc(void *pPool, size_t size) { return vnodeBufPoolMalloc((SVBufPool *)pPool, size); }
static FORCE_INLINE void metaFree(void *pPool, void *p) { vnodeBufPoolFree((SVBufPool *)pPool, p); }
// begin a meta txn
int metaBegin(SMeta *pMeta) {
tdbTxnOpen(&pMeta->txn, 0, metaMalloc, metaFree, pMeta->pVnode->inUse, TDB_TXN_WRITE | TDB_TXN_READ_UNCOMMITTED);
......@@ -28,4 +29,8 @@ int metaBegin(SMeta *pMeta) {
return 0;
}
// commit the meta txn
int metaCommit(SMeta *pMeta) { return tdbCommit(pMeta->pEnv, &pMeta->txn); }
// abort the meta txn
int metaAbort(SMeta *pMeta) { return tdbAbort(pMeta->pEnv, &pMeta->txn); }
......@@ -133,7 +133,7 @@ int metaOpen(SVnode *pVnode, SMeta **ppMeta) {
ret = tdbTbOpen("stream.task.db", sizeof(int64_t), -1, taskIdxKeyCmpr, pMeta->pEnv, &pMeta->pStreamDb);
if (ret < 0) {
metaError("vgId: %d, failed to open meta stream task index since %s", TD_VID(pVnode), tstrerror(terrno));
metaError("vgId:%d, failed to open meta stream task index since %s", TD_VID(pVnode), tstrerror(terrno));
goto _err;
}
......
......@@ -599,7 +599,7 @@ STSmaWrapper *metaGetSmaInfoByTable(SMeta *pMeta, tb_uid_t uid, bool deepCopy) {
for (int i = 0; i < pSW->number; ++i) {
smaId = *(tb_uid_t *)taosArrayGet(pSmaIds, i);
if (metaGetTableEntryByUid(&mr, smaId) < 0) {
metaWarn("vgId:%d, no entry for tbId: %" PRIi64 ", smaId: %" PRIi64, TD_VID(pMeta->pVnode), uid, smaId);
metaWarn("vgId:%d, no entry for tbId:%" PRIi64 ", smaId:%" PRIi64, TD_VID(pMeta->pVnode), uid, smaId);
continue;
}
pTSma = pSW->tSma + smaIdx;
......@@ -647,7 +647,7 @@ STSma *metaGetSmaInfoByIndex(SMeta *pMeta, int64_t indexUid) {
SMetaReader mr = {0};
metaReaderInit(&mr, pMeta, 0);
if (metaGetTableEntryByUid(&mr, indexUid) < 0) {
metaWarn("vgId:%d, failed to get table entry for smaId: %" PRIi64, TD_VID(pMeta->pVnode), indexUid);
metaWarn("vgId:%d, failed to get table entry for smaId:%" PRIi64, TD_VID(pMeta->pVnode), indexUid);
metaReaderClear(&mr);
return NULL;
}
......
......@@ -57,12 +57,12 @@ int32_t metaCreateTSma(SMeta *pMeta, int64_t version, SSmaCfg *pCfg) {
if (metaHandleSmaEntry(pMeta, &me) < 0) goto _err;
metaDebug("vgId:%d, tsma is created, name:%s uid: %" PRId64, TD_VID(pMeta->pVnode), pCfg->indexName, pCfg->indexUid);
metaDebug("vgId:%d, tsma is created, name:%s uid:%" PRId64, TD_VID(pMeta->pVnode), pCfg->indexName, pCfg->indexUid);
return 0;
_err:
metaError("vgId:%d, failed to create tsma: %s uid: %" PRId64 " since %s", TD_VID(pMeta->pVnode), pCfg->indexName,
metaError("vgId:%d, failed to create tsma:%s uid:%" PRId64 " since %s", TD_VID(pMeta->pVnode), pCfg->indexName,
pCfg->indexUid, tstrerror(terrno));
return -1;
}
......
......@@ -204,12 +204,12 @@ int metaCreateSTable(SMeta *pMeta, int64_t version, SVCreateStbReq *pReq) {
++pMeta->pVnode->config.vndStats.numOfSTables;
metaDebug("vgId:%d, super table is created, name:%s uid: %" PRId64, TD_VID(pMeta->pVnode), pReq->name, pReq->suid);
metaDebug("vgId:%d, stb:%s is created, suid:%" PRId64, TD_VID(pMeta->pVnode), pReq->name, pReq->suid);
return 0;
_err:
metaError("vgId:%d, failed to create super table: %s uid: %" PRId64 " since %s", TD_VID(pMeta->pVnode), pReq->name,
metaError("vgId:%d, failed to create stb:%s uid:%" PRId64 " since %s", TD_VID(pMeta->pVnode), pReq->name,
pReq->suid, tstrerror(terrno));
return -1;
}
......@@ -411,7 +411,7 @@ int metaCreateTable(SMeta *pMeta, int64_t version, SVCreateTbReq *pReq) {
if (metaHandleEntry(pMeta, &me) < 0) goto _err;
metaDebug("vgId:%d, table %s uid %" PRId64 " is created, type:%" PRId8, TD_VID(pMeta->pVnode), pReq->name, pReq->uid,
metaDebug("vgId:%d, table:%s uid %" PRId64 " is created, type:%" PRId8, TD_VID(pMeta->pVnode), pReq->name, pReq->uid,
pReq->type);
return 0;
......@@ -996,7 +996,7 @@ static int metaSaveToTbDb(SMeta *pMeta, const SMetaEntry *pME) {
tbDbKey.version = pME->version;
tbDbKey.uid = pME->uid;
metaDebug("vgId:%d, start to save table version:%" PRId64 "uid: %" PRId64, TD_VID(pMeta->pVnode), pME->version,
metaDebug("vgId:%d, start to save table version:%" PRId64 " uid:%" PRId64, TD_VID(pMeta->pVnode), pME->version,
pME->uid);
pKey = &tbDbKey;
......@@ -1031,7 +1031,7 @@ static int metaSaveToTbDb(SMeta *pMeta, const SMetaEntry *pME) {
return 0;
_err:
metaError("vgId:%d, failed to save table version:%" PRId64 "uid: %" PRId64 " %s", TD_VID(pMeta->pVnode), pME->version,
metaError("vgId:%d, failed to save table version:%" PRId64 "uid:%" PRId64 " %s", TD_VID(pMeta->pVnode), pME->version,
pME->uid, tstrerror(terrno));
taosMemoryFree(pVal);
......
......@@ -241,6 +241,41 @@ static int32_t tdCleanupQTaskInfoFiles(SSma *pSma, SRSmaStat *pRSmaStat) {
return TSDB_CODE_SUCCESS;
}
// SQTaskFile ======================================================
// int32_t tCmprQTaskFile(void const *lhs, void const *rhs) {
// int64_t *lCommitted = *(int64_t *)lhs;
// SQTaskFile *rQTaskF = (SQTaskFile *)rhs;
// if (lCommitted < rQTaskF->commitID) {
// return -1;
// } else if (lCommitted > rQTaskF->commitID) {
// return 1;
// }
// return 0;
// }
#if 0
/**
* @brief At most time, there is only one qtaskinfo file committed latest in aTaskFile. Sometimes, there would be
* multiple qtaskinfo files supporting snapshot replication.
*
* @param pSma
* @param pRSmaStat
* @return int32_t
*/
static int32_t tdCleanupQTaskInfoFiles(SSma *pSma, SRSmaStat *pRSmaStat) {
SVnode *pVnode = pSma->pVnode;
int64_t committed = pRSmaStat->commitAppliedVer;
SArray *aTaskFile = pRSmaStat->aTaskFile;
void *qTaskFile = taosArraySearch(aTaskFile, committed, tCmprQTaskFile, TD_LE);
return TSDB_CODE_SUCCESS;
}
#endif
/**
* @brief post-commit for rollup sma
* 1) clean up the outdated qtaskinfo files
......
......@@ -295,6 +295,9 @@ static void tdDestroyRSmaStat(void *pRSmaStat) {
nLoops = 0;
}
}
// step 4: free pStat
taosMemoryFreeClear(pStat);
}
}
......@@ -321,12 +324,13 @@ int32_t tdDestroySmaState(SSmaStat *pSmaStat, int8_t smaType) {
tdDestroyTSmaStat(SMA_TSMA_STAT(pSmaStat));
} else if (smaType == TSDB_SMA_TYPE_ROLLUP) {
SRSmaStat *pRSmaStat = SMA_RSMA_STAT(pSmaStat);
int32_t vid = SMA_VID(pRSmaStat->pSma);
int64_t refId = RSMA_REF_ID(pRSmaStat);
if (taosRemoveRef(smaMgmt.rsetId, RSMA_REF_ID(pRSmaStat)) < 0) {
smaError("vgId:%d, remove refId:%" PRIi64 " from rsmaRef:%" PRIi32 " failed since %s", SMA_VID(pRSmaStat->pSma),
RSMA_REF_ID(pRSmaStat), smaMgmt.rsetId, terrstr());
smaError("vgId:%d, remove refId:%" PRIi64 " from rsmaRef:%" PRIi32 " failed since %s", vid, refId,
smaMgmt.rsetId, terrstr());
} else {
smaDebug("vgId:%d, remove refId:%" PRIi64 " from rsmaRef:%" PRIi32 " succeed", SMA_VID(pRSmaStat->pSma),
RSMA_REF_ID(pRSmaStat), smaMgmt.rsetId);
smaDebug("vgId:%d, remove refId:%" PRIi64 " from rsmaRef:%" PRIi32 " succeed", vid, refId, smaMgmt.rsetId);
}
} else {
ASSERT(0);
......
......@@ -123,7 +123,7 @@ int32_t smaOpen(SVnode *pVnode) {
}
// restore the rsma
if (rsmaRestore(pSma) < 0) {
if (tdRsmaRestore(pSma, RSMA_RESTORE_REBOOT, pVnode->state.committed) < 0) {
goto _err;
}
}
......@@ -148,12 +148,14 @@ int32_t smaClose(SSma *pSma) {
/**
* @brief rsma env restore
*
* @param pSma
* @return int32_t
*
* @param pSma
* @param type
* @param committedVer
* @return int32_t
*/
static int32_t rsmaRestore(SSma *pSma) {
int32_t tdRsmaRestore(SSma *pSma, int8_t type, int64_t committedVer) {
ASSERT(VND_IS_RSMA(pSma->pVnode));
return tdProcessRSmaRestoreImpl(pSma);
return tdProcessRSmaRestoreImpl(pSma, type, committedVer);
}
\ No newline at end of file
......@@ -38,16 +38,15 @@ static SRSmaInfo *tdGetRSmaInfoBySuid(SSma *pSma, int64_t suid);
static int32_t tdRSmaFetchAndSubmitResult(SRSmaInfoItem *pItem, STSchema *pTSchema, int64_t suid, SRSmaStat *pStat,
int8_t blkType);
static void tdRSmaFetchTrigger(void *param, void *tmrId);
static void tdRSmaQTaskInfoGetFName(int32_t vid, int64_t version, char *outputName);
static int32_t tdRSmaQTaskInfoIterInit(SRSmaQTaskInfoIter *pIter, STFile *pTFile);
static int32_t tdRSmaQTaskInfoIterNextBlock(SRSmaQTaskInfoIter *pIter, bool *isFinish);
static int32_t tdRSmaQTaskInfoRestore(SSma *pSma, SRSmaQTaskInfoIter *pIter);
static int32_t tdRSmaQTaskInfoRestore(SSma *pSma, int8_t type, SRSmaQTaskInfoIter *pIter);
static int32_t tdRSmaQTaskInfoItemRestore(SSma *pSma, const SRSmaQTaskInfoItem *infoItem);
static int32_t tdRSmaRestoreQTaskInfoInit(SSma *pSma, int64_t *nTables);
static int32_t tdRSmaRestoreQTaskInfoReload(SSma *pSma, int64_t *committed);
static int32_t tdRSmaRestoreTSDataReload(SSma *pSma, int64_t committed);
static int32_t tdRSmaRestoreQTaskInfoReload(SSma *pSma, int8_t type, int64_t qTaskFileVer);
static int32_t tdRSmaRestoreTSDataReload(SSma *pSma);
static SRSmaInfo *tdGetRSmaInfoByItem(SRSmaInfoItem *pItem) {
// adapt accordingly if definition of SRSmaInfo update
......@@ -77,10 +76,14 @@ struct SRSmaQTaskInfoIter {
int32_t nBufPos;
};
static void tdRSmaQTaskInfoGetFName(int32_t vgId, int64_t version, char *outputName) {
void tdRSmaQTaskInfoGetFileName(int32_t vgId, int64_t version, char *outputName) {
tdGetVndFileName(vgId, NULL, VNODE_RSMA_DIR, TD_QTASKINFO_FNAME_PREFIX, version, outputName);
}
void tdRSmaQTaskInfoGetFullName(int32_t vgId, int64_t version, const char *path, char *outputName) {
tdGetVndFileName(vgId, path, VNODE_RSMA_DIR, TD_QTASKINFO_FNAME_PREFIX, version, outputName);
}
static FORCE_INLINE int32_t tdRSmaQTaskInfoContLen(int32_t lenWithHead) {
return lenWithHead - RSMA_QTASKINFO_HEAD_LEN;
}
......@@ -89,7 +92,7 @@ static FORCE_INLINE void tdRSmaQTaskInfoIterDestroy(SRSmaQTaskInfoIter *pIter) {
void tdFreeQTaskInfo(qTaskInfo_t *taskHandle, int32_t vgId, int32_t level) {
// Note: free/kill may in RC
if (!taskHandle) return;
if (!taskHandle || !(*taskHandle)) return;
qTaskInfo_t otaskHandle = atomic_load_ptr(taskHandle);
if (otaskHandle && atomic_val_compare_exchange_ptr(taskHandle, otaskHandle, NULL)) {
smaDebug("vgId:%d, free qTaskInfo_t %p of level %d", vgId, otaskHandle, level);
......@@ -125,7 +128,7 @@ void *tdFreeRSmaInfo(SSma *pSma, SRSmaInfo *pInfo, bool isDeepFree) {
}
}
if (isDeepFree) {
taosMemoryFree(pInfo->pTSchema);
taosMemoryFreeClear(pInfo->pTSchema);
}
taosMemoryFree(pInfo);
}
......@@ -316,9 +319,13 @@ int32_t tdProcessRSmaCreateImpl(SSma *pSma, SRSmaParam *param, int64_t suid, con
pRSmaInfo = taosHashGet(RSMA_INFO_HASH(pStat), &suid, sizeof(tb_uid_t));
if (pRSmaInfo) {
ASSERT(0); // TODO: free original pRSmaInfo if exists abnormally
smaDebug("vgId:%d, rsma info already exists for table %s, %" PRIi64, SMA_VID(pSma), tbName, suid);
return TSDB_CODE_SUCCESS;
// TODO: free original pRSmaInfo if exists abnormally
tdFreeRSmaInfo(pSma, *(SRSmaInfo **)pRSmaInfo, true);
if (taosHashRemove(RSMA_INFO_HASH(pStat), &suid, sizeof(tb_uid_t)) < 0) {
terrno = TSDB_CODE_RSMA_REMOVE_EXISTS;
goto _err;
}
smaWarn("vgId:%d, remove the rsma info already exists for table %s, %" PRIi64, SMA_VID(pSma), tbName, suid);
}
// from write queue: single thead
......@@ -597,10 +604,10 @@ static int32_t tdRSmaFetchAndSubmitResult(SRSmaInfoItem *pItem, STSchema *pTSche
#endif
STsdb *sinkTsdb = (pItem->level == TSDB_RETENTION_L1 ? pSma->pRSmaTsdb[0] : pSma->pRSmaTsdb[1]);
SSubmitReq *pReq = NULL;
// TODO: the schema update should be handled
// TODO: the schema update should be handled later(TD-17965)
if (buildSubmitReqFromDataBlock(&pReq, pResult, pTSchema, SMA_VID(pSma), suid) < 0) {
smaError("vgId:%d, build submit req for rsma stable %" PRIi64 " level %" PRIi8 " failed since %s", SMA_VID(pSma),
suid, pItem->level, terrstr());
smaError("vgId:%d, build submit req for rsma stable %" PRIi64 " level %" PRIi8 " failed since %s",
SMA_VID(pSma), suid, pItem->level, terrstr());
goto _err;
}
......@@ -619,7 +626,7 @@ static int32_t tdRSmaFetchAndSubmitResult(SRSmaInfoItem *pItem, STSchema *pTSche
} else if (terrno == 0) {
smaDebug("vgId:%d, no rsma %" PRIi8 " data fetched yet", SMA_VID(pSma), pItem->level);
} else {
smaDebug("vgId:%d, no rsma %" PRIi8 " data fetched since %s", SMA_VID(pSma), pItem->level, tstrerror(terrno));
smaDebug("vgId:%d, no rsma %" PRIi8 " data fetched since %s", SMA_VID(pSma), pItem->level, terrstr());
}
}
......@@ -645,7 +652,7 @@ static int32_t tdExecuteRSmaImpl(SSma *pSma, const void *pMsg, int32_t inputType
pItem->taskInfo, suid);
if (qSetMultiStreamInput(pItem->taskInfo, pMsg, 1, inputType) < 0) { // INPUT__DATA_SUBMIT
smaError("vgId:%d, rsma % " PRIi8 " qSetStreamInput failed since %s", SMA_VID(pSma), level, tstrerror(terrno));
smaError("vgId:%d, rsma %" PRIi8 " qSetStreamInput failed since %s", SMA_VID(pSma), level, tstrerror(terrno));
return TSDB_CODE_FAILED;
}
......@@ -869,24 +876,23 @@ _err:
return TSDB_CODE_FAILED;
}
static int32_t tdRSmaRestoreQTaskInfoReload(SSma *pSma, int64_t *committed) {
static int32_t tdRSmaRestoreQTaskInfoReload(SSma *pSma, int8_t type, int64_t qTaskFileVer) {
SVnode *pVnode = pSma->pVnode;
STFile tFile = {0};
char qTaskInfoFName[TSDB_FILENAME_LEN] = {0};
tdRSmaQTaskInfoGetFName(TD_VID(pVnode), pVnode->state.committed, qTaskInfoFName);
tdRSmaQTaskInfoGetFileName(TD_VID(pVnode), qTaskFileVer, qTaskInfoFName);
if (tdInitTFile(&tFile, tfsGetPrimaryPath(pVnode->pTfs), qTaskInfoFName) < 0) {
goto _err;
}
if (!taosCheckExistFile(TD_TFILE_FULL_NAME(&tFile))) {
*committed = 0;
if (pVnode->state.committed > 0) {
smaWarn("vgId:%d, rsma restore for version %" PRIi64 ", not start as %s not exist", TD_VID(pVnode),
pVnode->state.committed, TD_TFILE_FULL_NAME(&tFile));
if (qTaskFileVer > 0) {
smaWarn("vgId:%d, restore rsma task %" PRIi8 " for version %" PRIi64 ", not start as %s not exist",
TD_VID(pVnode), type, qTaskFileVer, TD_TFILE_FULL_NAME(&tFile));
} else {
smaDebug("vgId:%d, rsma restore for version %" PRIi64 ", no need as %s not exist", TD_VID(pVnode),
pVnode->state.committed, TD_TFILE_FULL_NAME(&tFile));
smaDebug("vgId:%d, restore rsma task %" PRIi8 " for version %" PRIi64 ", no need as %s not exist", TD_VID(pVnode),
type, qTaskFileVer, TD_TFILE_FULL_NAME(&tFile));
}
return TSDB_CODE_SUCCESS;
}
......@@ -911,7 +917,7 @@ static int32_t tdRSmaRestoreQTaskInfoReload(SSma *pSma, int64_t *committed) {
goto _err;
}
if (tdRSmaQTaskInfoRestore(pSma, &fIter) < 0) {
if (tdRSmaQTaskInfoRestore(pSma, type, &fIter) < 0) {
tdRSmaQTaskInfoIterDestroy(&fIter);
tdCloseTFile(&tFile);
tdDestroyTFile(&tFile);
......@@ -922,13 +928,13 @@ static int32_t tdRSmaRestoreQTaskInfoReload(SSma *pSma, int64_t *committed) {
tdCloseTFile(&tFile);
tdDestroyTFile(&tFile);
// restored successfully from committed
*committed = pVnode->state.committed;
// restored successfully from committed or sync
smaInfo("vgId:%d, restore rsma task %" PRIi8 " for version %" PRIi64 ", qtaskinfo reload succeed", TD_VID(pVnode),
type, qTaskFileVer);
return TSDB_CODE_SUCCESS;
_err:
smaError("vgId:%d, rsma restore for version %" PRIi64 ", qtaskinfo reload failed since %s", TD_VID(pVnode),
pVnode->state.committed, terrstr());
smaError("vgId:%d, restore rsma task %" PRIi8 " for version %" PRIi64 ", qtaskinfo reload failed since %s",
TD_VID(pVnode), type, qTaskFileVer, terrstr());
return TSDB_CODE_FAILED;
}
......@@ -936,15 +942,14 @@ _err:
* @brief reload ts data from checkpoint
*
* @param pSma
* @param committed restore from committed version
* @return int32_t
*/
static int32_t tdRSmaRestoreTSDataReload(SSma *pSma, int64_t committed) {
static int32_t tdRSmaRestoreTSDataReload(SSma *pSma) {
// NOTHING TODO: the data would be restored from the unified WAL replay procedure
return TSDB_CODE_SUCCESS;
}
int32_t tdProcessRSmaRestoreImpl(SSma *pSma) {
int32_t tdProcessRSmaRestoreImpl(SSma *pSma, int8_t type, int64_t qtaskFileVer) {
// step 1: iterate all stables to restore the rsma env
int64_t nTables = 0;
if (tdRSmaRestoreQTaskInfoInit(pSma, &nTables) < 0) {
......@@ -952,24 +957,24 @@ int32_t tdProcessRSmaRestoreImpl(SSma *pSma) {
}
if (nTables <= 0) {
smaDebug("vgId:%d, no need to restore rsma task since no tables", SMA_VID(pSma));
smaDebug("vgId:%d, no need to restore rsma task %" PRIi8 " since no tables", SMA_VID(pSma), type);
return TSDB_CODE_SUCCESS;
}
// step 2: retrieve qtaskinfo items from the persistence file(rsma/qtaskinfo) and restore
int64_t committed = -1;
if (tdRSmaRestoreQTaskInfoReload(pSma, &committed) < 0) {
if (tdRSmaRestoreQTaskInfoReload(pSma, type, qtaskFileVer) < 0) {
goto _err;
}
// step 3: reload ts data from checkpoint
if (tdRSmaRestoreTSDataReload(pSma, committed) < 0) {
if (tdRSmaRestoreTSDataReload(pSma) < 0) {
goto _err;
}
smaInfo("vgId:%d, restore rsma task %" PRIi8 " from qtaskf %" PRIi64 " succeed", SMA_VID(pSma), type, qtaskFileVer);
return TSDB_CODE_SUCCESS;
_err:
smaError("vgId:%d, failed to restore rsma task since %s", SMA_VID(pSma), terrstr());
smaError("vgId:%d, restore rsma task %" PRIi8 "from qtaskf %" PRIi64 " failed since %s", SMA_VID(pSma), type,
qtaskFileVer, terrstr());
return TSDB_CODE_FAILED;
}
......@@ -1098,7 +1103,7 @@ static int32_t tdRSmaQTaskInfoIterNextBlock(SRSmaQTaskInfoIter *pIter, bool *isF
return TSDB_CODE_SUCCESS;
}
static int32_t tdRSmaQTaskInfoRestore(SSma *pSma, SRSmaQTaskInfoIter *pIter) {
static int32_t tdRSmaQTaskInfoRestore(SSma *pSma, int8_t type, SRSmaQTaskInfoIter *pIter) {
while (1) {
// block iter
bool isFinish = false;
......@@ -1114,7 +1119,7 @@ static int32_t tdRSmaQTaskInfoRestore(SSma *pSma, SRSmaQTaskInfoIter *pIter) {
pIter->qBuf = taosDecodeFixedI32(pIter->qBuf, &qTaskInfoLenWithHead);
if (qTaskInfoLenWithHead < RSMA_QTASKINFO_HEAD_LEN) {
terrno = TSDB_CODE_TDB_FILE_CORRUPTED;
smaError("vgId:%d, restore rsma qtaskinfo file %s failed since %s", SMA_VID(pSma),
smaError("vgId:%d, restore rsma task %" PRIi8 " from qtaskinfo file %s failed since %s", SMA_VID(pSma), type,
TD_TFILE_FULL_NAME(pIter->pTFile), terrstr());
return TSDB_CODE_FAILED;
}
......@@ -1127,8 +1132,8 @@ static int32_t tdRSmaQTaskInfoRestore(SSma *pSma, SRSmaQTaskInfoIter *pIter) {
infoItem.qTaskInfo = pIter->qBuf;
infoItem.len = tdRSmaQTaskInfoContLen(qTaskInfoLenWithHead);
// do the restore job
smaDebug("vgId:%d, restore the qtask info %s offset:%" PRIi64 "\n", SMA_VID(pSma),
TD_TFILE_FULL_NAME(pIter->pTFile), pIter->offset - pIter->nBytes + pIter->nBufPos);
smaDebug("vgId:%d, restore rsma task %" PRIi8 " from qtaskinfo file %s offset:%" PRIi64 "\n", SMA_VID(pSma),
type, TD_TFILE_FULL_NAME(pIter->pTFile), pIter->offset - pIter->nBytes + pIter->nBufPos);
tdRSmaQTaskInfoItemRestore(pSma, &infoItem);
pIter->qBuf = POINTER_SHIFT(pIter->qBuf, infoItem.len);
......@@ -1172,7 +1177,7 @@ int32_t tdRSmaPersistExecImpl(SRSmaStat *pRSmaStat, SHashObj *pInfoHash) {
#if 0
if (pRSmaStat->commitAppliedVer > 0) {
char qTaskInfoFName[TSDB_FILENAME_LEN];
tdRSmaQTaskInfoGetFName(vid, pRSmaStat->commitAppliedVer, qTaskInfoFName);
tdRSmaQTaskInfoGetFileName(vid, pRSmaStat->commitAppliedVer, qTaskInfoFName);
if (tdInitTFile(&tFile, tfsGetPrimaryPath(pVnode->pTfs), qTaskInfoFName) < 0) {
smaError("vgId:%d, rsma persit, init %s failed since %s", vid, qTaskInfoFName, terrstr());
goto _err;
......@@ -1217,7 +1222,7 @@ int32_t tdRSmaPersistExecImpl(SRSmaStat *pRSmaStat, SHashObj *pInfoHash) {
if (!isFileCreated) {
char qTaskInfoFName[TSDB_FILENAME_LEN];
tdRSmaQTaskInfoGetFName(vid, pRSmaStat->commitAppliedVer, qTaskInfoFName);
tdRSmaQTaskInfoGetFileName(vid, pRSmaStat->commitAppliedVer, qTaskInfoFName);
if (tdInitTFile(&tFile, tfsGetPrimaryPath(pVnode->pTfs), qTaskInfoFName) < 0) {
smaError("vgId:%d, rsma persit, init %s failed since %s", vid, qTaskInfoFName, terrstr());
goto _err;
......@@ -1331,6 +1336,7 @@ static void tdRSmaFetchTrigger(void *param, void *tmrId) {
SSDataBlock dataBlock = {.info.type = STREAM_GET_ALL};
qSetMultiStreamInput(pItem->taskInfo, &dataBlock, 1, STREAM_INPUT__DATA_BLOCK);
tdRSmaFetchAndSubmitResult(pItem, pRSmaInfo->pTSchema, pRSmaInfo->suid, pStat, STREAM_INPUT__DATA_BLOCK);
tdCleanupStreamInputDataBlock(pItem->taskInfo);
tdUnRefRSmaInfo(pSma, pRSmaInfo);
// atomic_store_8(&pItem->triggerStat, TASK_TRIGGER_STAT_ACTIVE);
......@@ -1357,3 +1363,20 @@ static void tdRSmaFetchTrigger(void *param, void *tmrId) {
_end:
tdReleaseSmaRef(smaMgmt.rsetId, pItem->refId, __func__, __LINE__);
}
int32_t smaDoRetention(SSma *pSma, int64_t now) {
int32_t code = TSDB_CODE_SUCCESS;
if (VND_IS_RSMA(pSma->pVnode)) {
return code;
}
for (int32_t i = 0; i < TSDB_RETENTION_L2; ++i) {
if (pSma->pRSmaTsdb[i]) {
code = tsdbDoRetention(pSma->pRSmaTsdb[i], now);
if (code) goto _end;
}
}
_end:
return code;
}
\ No newline at end of file
......@@ -35,6 +35,7 @@ struct SRsmaSnapReader {
int32_t rsmaSnapReaderOpen(SSma* pSma, int64_t sver, int64_t ever, SRsmaSnapReader** ppReader) {
int32_t code = 0;
SVnode* pVnode = pSma->pVnode;
SRsmaSnapReader* pReader = NULL;
// alloc
......@@ -47,6 +48,7 @@ int32_t rsmaSnapReaderOpen(SSma* pSma, int64_t sver, int64_t ever, SRsmaSnapRead
pReader->sver = sver;
pReader->ever = ever;
// rsma1/rsma2
for (int32_t i = 0; i < TSDB_RETENTION_L2; ++i) {
if (pSma->pRSmaTsdb[i]) {
code = tsdbSnapReaderOpen(pSma->pRSmaTsdb[i], sver, ever, i == 0 ? SNAP_DATA_RSMA1 : SNAP_DATA_RSMA2,
......@@ -56,23 +58,98 @@ int32_t rsmaSnapReaderOpen(SSma* pSma, int64_t sver, int64_t ever, SRsmaSnapRead
}
}
}
// qtaskinfo
// 1. add ref to qtaskinfo.v${ever} if exists and then start to replicate
char qTaskInfoFullName[TSDB_FILENAME_LEN];
tdRSmaQTaskInfoGetFullName(TD_VID(pVnode), ever, tfsGetPrimaryPath(pVnode->pTfs), qTaskInfoFullName);
if (!taosCheckExistFile(qTaskInfoFullName)) {
smaInfo("vgId:%d, vnode snapshot rsma reader for qtaskinfo not need as %s not exists", TD_VID(pVnode),
qTaskInfoFullName);
} else {
pReader->pQTaskFReader = taosMemoryCalloc(1, sizeof(SQTaskFReader));
if (!pReader->pQTaskFReader) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
TdFilePtr qTaskF = taosOpenFile(qTaskInfoFullName, TD_FILE_READ);
if (!qTaskF) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
pReader->pQTaskFReader->pReadH = qTaskF;
#if 0
SQTaskFile* pQTaskF = &pReader->pQTaskFReader->fTask;
pQTaskF->nRef = 1;
#endif
}
*ppReader = pReader;
smaInfo("vgId:%d, vnode snapshot rsma reader opened succeed", SMA_VID(pSma));
smaInfo("vgId:%d, vnode snapshot rsma reader opened %s succeed", TD_VID(pVnode), qTaskInfoFullName);
return TSDB_CODE_SUCCESS;
_err:
smaError("vgId:%d, vnode snapshot rsma reader opened failed since %s", SMA_VID(pSma), tstrerror(code));
smaError("vgId:%d, vnode snapshot rsma reader opened failed since %s", TD_VID(pVnode), tstrerror(code));
return TSDB_CODE_FAILED;
}
static int32_t rsmaSnapReadQTaskInfo(SRsmaSnapReader* pReader, uint8_t** ppData) {
int32_t code = 0;
SSma* pSma = pReader->pSma;
static int32_t rsmaSnapReadQTaskInfo(SRsmaSnapReader* pReader, uint8_t** ppBuf) {
int32_t code = 0;
SSma* pSma = pReader->pSma;
int64_t n = 0;
uint8_t* pBuf = NULL;
SQTaskFReader* qReader = pReader->pQTaskFReader;
if (!qReader->pReadH) {
*ppBuf = NULL;
smaInfo("vgId:%d, vnode snapshot rsma reader qtaskinfo, readh is empty", SMA_VID(pSma));
return 0;
}
int64_t size = 0;
if (taosFStatFile(qReader->pReadH, &size, NULL) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
// seek
if (taosLSeekFile(qReader->pReadH, 0, SEEK_SET) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
ASSERT(!(*ppBuf));
// alloc
*ppBuf = taosMemoryCalloc(1, sizeof(SSnapDataHdr) + size);
if (!(*ppBuf)) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
// read
n = taosReadFile(qReader->pReadH, POINTER_SHIFT(*ppBuf, sizeof(SSnapDataHdr)), size);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
} else if (n != size) {
code = TSDB_CODE_FILE_CORRUPTED;
goto _err;
}
smaInfo("vgId:%d, vnode snapshot rsma read qtaskinfo, size:%" PRIi64, SMA_VID(pSma), size);
SSnapDataHdr* pHdr = (SSnapDataHdr*)(*ppBuf);
pHdr->type = SNAP_DATA_QTASK;
pHdr->size = size;
_exit:
smaInfo("vgId:%d, vnode snapshot rsma read qtaskinfo succeed", SMA_VID(pSma));
return code;
_err:
*ppBuf = NULL;
smaError("vgId:%d, vnode snapshot rsma read qtaskinfo failed since %s", SMA_VID(pSma), tstrerror(code));
return code;
}
......@@ -108,14 +185,14 @@ int32_t rsmaSnapRead(SRsmaSnapReader* pReader, uint8_t** ppData) {
// read qtaskinfo file
if (!pReader->qTaskDone) {
smaInfo("vgId:%d, vnode snapshot rsma qtaskinfo not done", SMA_VID(pReader->pSma));
code = rsmaSnapReadQTaskInfo(pReader, ppData);
if (code) {
goto _err;
} else {
pReader->qTaskDone = 1;
if (*ppData) {
goto _exit;
} else {
pReader->qTaskDone = 1;
}
}
}
......@@ -140,11 +217,11 @@ int32_t rsmaSnapReaderClose(SRsmaSnapReader** ppReader) {
}
if (pReader->pQTaskFReader) {
// TODO: close for qtaskinfo
taosCloseFile(&pReader->pQTaskFReader->pReadH);
taosMemoryFreeClear(pReader->pQTaskFReader);
smaInfo("vgId:%d, vnode snapshot rsma reader closed for qTaskInfo", SMA_VID(pReader->pSma));
}
smaInfo("vgId:%d, vnode snapshot rsma reader closed", SMA_VID(pReader->pSma));
taosMemoryFreeClear(*ppReader);
......@@ -171,6 +248,7 @@ struct SRsmaSnapWriter {
int32_t rsmaSnapWriterOpen(SSma* pSma, int64_t sver, int64_t ever, SRsmaSnapWriter** ppWriter) {
int32_t code = 0;
SRsmaSnapWriter* pWriter = NULL;
SVnode* pVnode = pSma->pVnode;
// alloc
pWriter = (SRsmaSnapWriter*)taosMemoryCalloc(1, sizeof(*pWriter));
......@@ -182,6 +260,7 @@ int32_t rsmaSnapWriterOpen(SSma* pSma, int64_t sver, int64_t ever, SRsmaSnapWrit
pWriter->sver = sver;
pWriter->ever = ever;
// rsma1/rsma2
for (int32_t i = 0; i < TSDB_RETENTION_L2; ++i) {
if (pSma->pRSmaTsdb[i]) {
code = tsdbSnapWriterOpen(pSma->pRSmaTsdb[i], sver, ever, &pWriter->pDataWriter[i]);
......@@ -192,8 +271,25 @@ int32_t rsmaSnapWriterOpen(SSma* pSma, int64_t sver, int64_t ever, SRsmaSnapWrit
}
// qtaskinfo
// TODO
SQTaskFWriter* qWriter = (SQTaskFWriter*)taosMemoryCalloc(1, sizeof(SQTaskFWriter));
qWriter->pSma = pSma;
char qTaskInfoFullName[TSDB_FILENAME_LEN];
tdRSmaQTaskInfoGetFullName(TD_VID(pVnode), 0, tfsGetPrimaryPath(pVnode->pTfs), qTaskInfoFullName);
TdFilePtr qTaskF = taosCreateFile(qTaskInfoFullName, TD_FILE_CREATE | TD_FILE_WRITE | TD_FILE_TRUNC);
if (!qTaskF) {
code = TAOS_SYSTEM_ERROR(errno);
smaError("vgId:%d, rsma snapshot writer open %s failed since %s", TD_VID(pSma->pVnode), qTaskInfoFullName, tstrerror(code));
goto _err;
}
qWriter->pWriteH = qTaskF;
int32_t fnameLen = strlen(qTaskInfoFullName) + 1;
qWriter->fname = taosMemoryCalloc(1, fnameLen);
strncpy(qWriter->fname, qTaskInfoFullName, fnameLen);
pWriter->pQTaskFWriter = qWriter;
smaDebug("vgId:%d, rsma snapshot writer open succeed for %s", TD_VID(pSma->pVnode), qTaskInfoFullName);
// snapWriter
*ppWriter = pWriter;
smaInfo("vgId:%d, rsma snapshot writer open succeed", TD_VID(pSma->pVnode));
......@@ -208,18 +304,39 @@ _err:
int32_t rsmaSnapWriterClose(SRsmaSnapWriter** ppWriter, int8_t rollback) {
int32_t code = 0;
SRsmaSnapWriter* pWriter = *ppWriter;
SVnode* pVnode = pWriter->pSma->pVnode;
if (rollback) {
ASSERT(0);
// code = tsdbFSRollback(pWriter->pTsdb->pFS);
// if (code) goto _err;
// TODO: rsma1/rsma2
// qtaskinfo
if(pWriter->pQTaskFWriter) {
taosRemoveFile(pWriter->pQTaskFWriter->fname);
}
} else {
// rsma1/rsma2
for (int32_t i = 0; i < TSDB_RETENTION_L2; ++i) {
if (pWriter->pDataWriter[i]) {
code = tsdbSnapWriterClose(&pWriter->pDataWriter[i], rollback);
if (code) goto _err;
}
}
// qtaskinfo
if (pWriter->pQTaskFWriter) {
char qTaskInfoFullName[TSDB_FILENAME_LEN];
tdRSmaQTaskInfoGetFullName(TD_VID(pVnode), pWriter->ever, tfsGetPrimaryPath(pVnode->pTfs), qTaskInfoFullName);
if (taosRenameFile(pWriter->pQTaskFWriter->fname, qTaskInfoFullName) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
smaInfo("vgId:%d, vnode snapshot rsma writer rename %s to %s", SMA_VID(pWriter->pSma),
pWriter->pQTaskFWriter->fname, qTaskInfoFullName);
// rsma restore
if ((code = tdRsmaRestore(pWriter->pSma, RSMA_RESTORE_SYNC, pWriter->ever)) < 0) {
goto _err;
}
smaInfo("vgId:%d, vnode snapshot rsma writer restore from %s succeed", SMA_VID(pWriter->pSma), qTaskInfoFullName);
}
}
smaInfo("vgId:%d, vnode snapshot rsma writer close succeed", SMA_VID(pWriter->pSma));
......@@ -261,26 +378,23 @@ _err:
}
static int32_t rsmaSnapWriteQTaskInfo(SRsmaSnapWriter* pWriter, uint8_t* pData, uint32_t nData) {
int32_t code = 0;
if (pWriter->pQTaskFWriter == NULL) {
// SDelFile* pDelFile = pWriter->fs.pDelFile;
// // reader
// if (pDelFile) {
// code = tsdbDelFReaderOpen(&pWriter->pDelFReader, pDelFile, pTsdb, NULL);
// if (code) goto _err;
// code = tsdbReadDelIdx(pWriter->pDelFReader, pWriter->aDelIdxR, NULL);
// if (code) goto _err;
// }
// // writer
// SDelFile delFile = {.commitID = pWriter->commitID, .offset = 0, .size = 0};
// code = tsdbDelFWriterOpen(&pWriter->pDelFWriter, &delFile, pTsdb);
// if (code) goto _err;
int32_t code = 0;
SQTaskFWriter* qWriter = pWriter->pQTaskFWriter;
if (qWriter && qWriter->pWriteH) {
SSnapDataHdr* pHdr = (SSnapDataHdr*)pData;
int64_t size = pHdr->size;
ASSERT(size == (nData - sizeof(SSnapDataHdr)));
int64_t contLen = taosWriteFile(qWriter->pWriteH, pHdr->data, size);
if (contLen != size) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
} else {
smaInfo("vgId:%d, vnode snapshot rsma write qtaskinfo is not needed", SMA_VID(pWriter->pSma));
}
smaInfo("vgId:%d, vnode snapshot rsma write qtaskinfo succeed", SMA_VID(pWriter->pSma));
smaInfo("vgId:%d, vnode snapshot rsma write qtaskinfo %s succeed", SMA_VID(pWriter->pSma), qWriter->fname);
_exit:
return code;
......
......@@ -216,9 +216,11 @@ int32_t tqProcessOffsetCommitReq(STQ* pTq, char* msg, int32_t msgLen) {
if (offset.val.type == TMQ_OFFSET__LOG) {
STqHandle* pHandle = taosHashGet(pTq->handles, offset.subKey, strlen(offset.subKey));
if (walRefVer(pHandle->pRef, offset.val.version) < 0) {
ASSERT(0);
return -1;
if (pHandle) {
if (walRefVer(pHandle->pRef, offset.val.version) < 0) {
ASSERT(0);
return -1;
}
}
}
......@@ -280,8 +282,6 @@ static int32_t tqInitDataRsp(SMqDataRsp* pRsp, const SMqPollReq* pReq, int8_t su
return 0;
}
static int32_t tqInitMetaRsp(SMqMetaRsp* pRsp, const SMqPollReq* pReq) { return 0; }
int32_t tqProcessPollReq(STQ* pTq, SRpcMsg* pMsg) {
SMqPollReq* pReq = pMsg->pCont;
int64_t consumerId = pReq->consumerId;
......@@ -317,7 +317,7 @@ int32_t tqProcessPollReq(STQ* pTq, SRpcMsg* pMsg) {
char buf[80];
tFormatOffset(buf, 80, &reqOffset);
tqDebug("tmq poll: consumer %ld (epoch %d), subkey %s, recv poll req in vg %d, req offset %s", consumerId,
tqDebug("tmq poll: consumer %" PRId64 " (epoch %d), subkey %s, recv poll req in vg %d, req offset %s", consumerId,
pReq->epoch, pHandle->subKey, TD_VID(pTq->pVnode), buf);
SMqDataRsp dataRsp = {0};
......@@ -348,8 +348,8 @@ int32_t tqProcessPollReq(STQ* pTq, SRpcMsg* pMsg) {
}
} else if (reqOffset.type == TMQ_OFFSET__RESET_LATEST) {
tqOffsetResetToLog(&dataRsp.rspOffset, walGetLastVer(pTq->pVnode->pWal));
tqDebug("tmq poll: consumer %ld, subkey %s, vg %d, offset reset to %ld", consumerId, pHandle->subKey,
TD_VID(pTq->pVnode), dataRsp.rspOffset.version);
tqDebug("tmq poll: consumer %" PRId64 ", subkey %s, vg %d, offset reset to %" PRId64, consumerId,
pHandle->subKey, TD_VID(pTq->pVnode), dataRsp.rspOffset.version);
if (tqSendDataRsp(pTq, pMsg, pReq, &dataRsp) < 0) {
code = -1;
}
......@@ -386,6 +386,7 @@ int32_t tqProcessPollReq(STQ* pTq, SRpcMsg* pMsg) {
}
if (pHandle->execHandle.subType != TOPIC_SUB_TYPE__COLUMN) {
ASSERT(fetchOffsetNew.type == TMQ_OFFSET__LOG);
int64_t fetchVer = fetchOffsetNew.version + 1;
pCkHead = taosMemoryMalloc(sizeof(SWalCkHead) + 2048);
if (pCkHead == NULL) {
......@@ -398,7 +399,7 @@ int32_t tqProcessPollReq(STQ* pTq, SRpcMsg* pMsg) {
while (1) {
consumerEpoch = atomic_load_32(&pHandle->epoch);
if (consumerEpoch > reqEpoch) {
tqWarn("tmq poll: consumer %ld (epoch %d), subkey %s, vg %d offset %" PRId64
tqWarn("tmq poll: consumer %" PRId64 " (epoch %d), subkey %s, vg %d offset %" PRId64
", found new consumer epoch %d, discard req epoch %d",
consumerId, pReq->epoch, pHandle->subKey, TD_VID(pTq->pVnode), fetchVer, consumerEpoch, reqEpoch);
break;
......@@ -461,22 +462,6 @@ int32_t tqProcessPollReq(STQ* pTq, SRpcMsg* pMsg) {
goto OVER;
}
}
taosMemoryFree(pCkHead);
#if 0
} else if (fetchOffsetNew.type == TMQ_OFFSET__SNAPSHOT_DATA) {
tqInfo("retrieve using snapshot actual offset: uid %" PRId64 " ts %" PRId64, fetchOffsetNew.uid, fetchOffsetNew.ts);
if (tqScanSnapshot(pTq, &pHandle->execHandle, &dataRsp, fetchOffsetNew, workerId) < 0) {
ASSERT(0);
}
// 4. send rsp
if (tqSendDataRsp(pTq, pMsg, pReq, &dataRsp) < 0) {
code = -1;
}
#endif
} else if (fetchOffsetNew.type == TMQ_OFFSET__SNAPSHOT_META) {
ASSERT(0);
}
OVER:
......@@ -532,7 +517,10 @@ int32_t tqProcessVgChangeReq(STQ* pTq, char* msg, int32_t msgLen) {
// todo lock
STqHandle* pHandle = taosHashGet(pTq->handles, req.subKey, strlen(req.subKey));
if (pHandle == NULL) {
ASSERT(req.oldConsumerId == -1);
if (req.oldConsumerId != -1) {
tqError("vgId:%d, build new consumer handle %s for consumer %d, but old consumerId is %ld", req.vgId, req.subKey,
req.newConsumerId, req.oldConsumerId);
}
ASSERT(req.newConsumerId != -1);
STqHandle tqHandle = {0};
pHandle = &tqHandle;
......@@ -595,7 +583,7 @@ int32_t tqProcessVgChangeReq(STQ* pTq, char* msg, int32_t msgLen) {
taosArrayDestroy(tbUidList);
}
taosHashPut(pTq->handles, req.subKey, strlen(req.subKey), pHandle, sizeof(STqHandle));
tqDebug("try to persist handle %s consumer %ld", req.subKey, pHandle->consumerId);
tqDebug("try to persist handle %s consumer %" PRId64, req.subKey, pHandle->consumerId);
if (tqMetaSaveHandle(pTq, req.subKey, pHandle) < 0) {
// TODO
ASSERT(0);
......@@ -614,31 +602,26 @@ int32_t tqProcessVgChangeReq(STQ* pTq, char* msg, int32_t msgLen) {
return 0;
}
int32_t tqProcessTaskDeployReq(STQ* pTq, char* msg, int32_t msgLen) {
SStreamTask* pTask = taosMemoryCalloc(1, sizeof(SStreamTask));
if (pTask == NULL) {
return -1;
}
SDecoder decoder;
tDecoderInit(&decoder, (uint8_t*)msg, msgLen);
if (tDecodeSStreamTask(&decoder, pTask) < 0) {
ASSERT(0);
}
tDecoderClear(&decoder);
int32_t tqExpandTask(STQ* pTq, SStreamTask* pTask) {
int32_t code = 0;
ASSERT(pTask->isDataScan == 0 || pTask->isDataScan == 1);
if (pTask->isDataScan == 0 && pTask->sinkType == TASK_SINK__NONE) {
ASSERT(taosArrayGetSize(pTask->childEpInfo) != 0);
}
pTask->execStatus = TASK_EXEC_STATUS__IDLE;
pTask->schedStatus = TASK_SCHED_STATUS__INACTIVE;
pTask->inputQueue = streamQueueOpen();
pTask->outputQueue = streamQueueOpen();
if (pTask->inputQueue == NULL || pTask->outputQueue == NULL) {
code = -1;
goto FAIL;
}
pTask->inputStatus = TASK_INPUT_STATUS__NORMAL;
pTask->outputStatus = TASK_OUTPUT_STATUS__NORMAL;
if (pTask->inputQueue == NULL || pTask->outputQueue == NULL) goto FAIL;
pTask->pMsgCb = &pTq->pVnode->msgCb;
// exec
......@@ -683,15 +666,35 @@ int32_t tqProcessTaskDeployReq(STQ* pTq, char* msg, int32_t msgLen) {
tqInfo("deploy stream task on vg %d, task id %d, child id %d", TD_VID(pTq->pVnode), pTask->taskId,
pTask->selfChildId);
taosHashPut(pTq->pStreamTasks, &pTask->taskId, sizeof(int32_t), &pTask, sizeof(void*));
FAIL:
if (pTask->inputQueue) streamQueueClose(pTask->inputQueue);
if (pTask->outputQueue) streamQueueClose(pTask->outputQueue);
// TODO free executor
return code;
}
int32_t tqProcessTaskDeployReq(STQ* pTq, char* msg, int32_t msgLen) {
SStreamTask* pTask = taosMemoryCalloc(1, sizeof(SStreamTask));
if (pTask == NULL) {
return -1;
}
SDecoder decoder;
tDecoderInit(&decoder, (uint8_t*)msg, msgLen);
if (tDecodeSStreamTask(&decoder, pTask) < 0) {
ASSERT(0);
goto FAIL;
}
tDecoderClear(&decoder);
/*SMeta* pMeta = pTq->pVnode->pMeta;*/
/*tdbTbUpsert(pMeta->pTaskIdx, &pTask->taskId, sizeof(int32_t), msg, msgLen, &pMeta->txn);*/
if (tqExpandTask(pTq, pTask) < 0) {
goto FAIL;
}
taosHashPut(pTq->pStreamTasks, &pTask->taskId, sizeof(int32_t), &pTask, sizeof(void*));
return 0;
FAIL:
if (pTask->inputQueue) streamQueueClose(pTask->inputQueue);
if (pTask->outputQueue) streamQueueClose(pTask->outputQueue);
if (pTask) taosMemoryFree(pTask);
return -1;
}
......@@ -714,7 +717,7 @@ int32_t tqProcessStreamTrigger(STQ* pTq, SSubmitReq* pReq, int64_t ver) {
SStreamTask* pTask = *(SStreamTask**)pIter;
if (!pTask->isDataScan) continue;
qDebug("data submit enqueue stream task: %d, ver: %ld", pTask->taskId, ver);
qDebug("data submit enqueue stream task: %d, ver: %" PRId64, pTask->taskId, ver);
if (!failed) {
if (streamTaskInput(pTask, (SStreamQueueItem*)pSubmit) < 0) {
......@@ -722,7 +725,7 @@ int32_t tqProcessStreamTrigger(STQ* pTq, SSubmitReq* pReq, int64_t ver) {
continue;
}
if (streamLaunchByWrite(pTask, TD_VID(pTq->pVnode)) < 0) {
if (streamSchedExec(pTask) < 0) {
qError("stream task launch failed, task id %d", pTask->taskId);
continue;
}
......@@ -752,13 +755,14 @@ int32_t tqProcessTaskRunReq(STQ* pTq, SRpcMsg* pMsg) {
}
}
int32_t tqProcessTaskDispatchReq(STQ* pTq, SRpcMsg* pMsg) {
int32_t tqProcessTaskDispatchReq(STQ* pTq, SRpcMsg* pMsg, bool exec) {
ASSERT(0);
char* msgStr = pMsg->pCont;
char* msgBody = POINTER_SHIFT(msgStr, sizeof(SMsgHead));
int32_t msgLen = pMsg->contLen - sizeof(SMsgHead);
SStreamDispatchReq req;
SDecoder decoder;
tDecoderInit(&decoder, msgBody, msgLen);
tDecoderInit(&decoder, (uint8_t*)msgBody, msgLen);
tDecodeStreamDispatchReq(&decoder, &req);
int32_t taskId = req.taskId;
SStreamTask** ppTask = (SStreamTask**)taosHashGet(pTq->pStreamTasks, &taskId, sizeof(int32_t));
......@@ -767,7 +771,7 @@ int32_t tqProcessTaskDispatchReq(STQ* pTq, SRpcMsg* pMsg) {
.info = pMsg->info,
.code = 0,
};
streamProcessDispatchReq(*ppTask, &req, &rsp);
streamProcessDispatchReq(*ppTask, &req, &rsp, exec);
return 0;
} else {
return -1;
......@@ -825,16 +829,6 @@ int32_t tqProcessTaskDropReq(STQ* pTq, char* msg, int32_t msgLen) {
// launch exec to free memory
// remove from hash
return 0;
#if 0
int32_t code = taosHashRemove(pTq->pStreamTasks, &pReq->taskId, sizeof(int32_t));
// set status dropping
ASSERT(code == 0);
if (code == 0) {
// sendrsp
}
return code;
#endif
}
int32_t tqProcessTaskRetrieveReq(STQ* pTq, SRpcMsg* pMsg) {
......@@ -863,3 +857,37 @@ int32_t tqProcessTaskRetrieveRsp(STQ* pTq, SRpcMsg* pMsg) {
//
return 0;
}
void vnodeEnqueueStreamMsg(SVnode* pVnode, SRpcMsg* pMsg) {
STQ* pTq = pVnode->pTq;
char* msgStr = pMsg->pCont;
char* msgBody = POINTER_SHIFT(msgStr, sizeof(SMsgHead));
int32_t msgLen = pMsg->contLen - sizeof(SMsgHead);
int32_t code = 0;
SStreamDispatchReq req;
SDecoder decoder;
tDecoderInit(&decoder, msgBody, msgLen);
if (tDecodeStreamDispatchReq(&decoder, &req) < 0) {
code = TSDB_CODE_MSG_DECODE_ERROR;
goto FAIL;
}
int32_t taskId = req.taskId;
SStreamTask** ppTask = (SStreamTask**)taosHashGet(pTq->pStreamTasks, &taskId, sizeof(int32_t));
if (ppTask) {
SRpcMsg rsp = {
.info = pMsg->info,
.code = 0,
};
streamProcessDispatchReq(*ppTask, &req, &rsp, false);
return;
}
FAIL:
if (pMsg->info.handle == NULL) return;
SRpcMsg rsp = {
.code = code,
.info = pMsg->info,
};
tmsgSendRsp(&rsp);
}
......@@ -111,7 +111,8 @@ int64_t tqScan(STQ* pTq, const STqHandle* pHandle, SMqDataRsp* pRsp, STqOffsetVa
}
if (pRsp->blockNum == 0 && pOffset->type == TMQ_OFFSET__SNAPSHOT_DATA) {
tqDebug("vgId: %d, tsdb consume over, switch to wal, ver %ld", TD_VID(pTq->pVnode), pHandle->snapshotVer + 1);
tqDebug("vgId: %d, tsdb consume over, switch to wal, ver %" PRId64, TD_VID(pTq->pVnode),
pHandle->snapshotVer + 1);
tqOffsetResetToLog(pOffset, pHandle->snapshotVer);
qStreamPrepareScan(task, pOffset);
continue;
......
......@@ -92,7 +92,7 @@ int32_t tqMetaRestoreHandle(STQ* pTq) {
handle.execHandle.execDb.pFilterOutTbUid =
taosHashInit(64, taosGetDefaultHashFunction(TSDB_DATA_TYPE_BIGINT), false, HASH_NO_LOCK);
}
tqDebug("tq restore %s consumer %ld vgId:%d", handle.subKey, handle.consumerId, TD_VID(pTq->pVnode));
tqDebug("tq restore %s consumer %" PRId64 " vgId:%d", handle.subKey, handle.consumerId, TD_VID(pTq->pVnode));
taosHashPut(pTq->handles, pKey, kLen, &handle, sizeof(STqHandle));
}
......@@ -132,7 +132,7 @@ int32_t tqMetaSaveHandle(STQ* pTq, const char* key, const STqHandle* pHandle) {
tEncodeSize(tEncodeSTqHandle, pHandle, vlen, code);
ASSERT(code == 0);
tqDebug("tq save %s(%d) consumer %ld vgId:%d", pHandle->subKey, strlen(pHandle->subKey), pHandle->consumerId,
tqDebug("tq save %s(%d) consumer %" PRId64 " vgId:%d", pHandle->subKey, strlen(pHandle->subKey), pHandle->consumerId,
TD_VID(pTq->pVnode));
void* buf = taosMemoryCalloc(1, vlen);
......
......@@ -37,7 +37,7 @@ int32_t tqOffsetReaderOpen(STQ* pTq, int64_t sver, int64_t ever, STqOffsetReader
pReader->sver = sver;
pReader->ever = ever;
tqInfo("vgId:%d vnode snapshot tq offset reader opened", TD_VID(pTq->pVnode));
tqInfo("vgId:%d, vnode snapshot tq offset reader opened", TD_VID(pTq->pVnode));
*ppReader = pReader;
return 0;
......@@ -109,7 +109,7 @@ int32_t tqOffsetWriterOpen(STQ* pTq, int64_t sver, int64_t ever, STqOffsetWriter
return code;
_err:
tqError("vgId:%d tq snapshot writer open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
tqError("vgId:%d, tq snapshot writer open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
*ppWriter = NULL;
return code;
}
......
......@@ -136,31 +136,6 @@ int32_t tqSendExecReq(STQ* pTq, STqHandle* pHandle) {
return 0;
}
int32_t tqEnqueueAll(STQ* pTq, SSubmitReq* pReq) {
void* pIter = NULL;
SStreamDataSubmit* pSubmit = streamDataSubmitNew(pReq);
if (pSubmit == NULL) {
return -1;
}
while (1) {
pIter = taosHashIterate(pTq->handles, pIter);
if (pIter == NULL) break;
STqHandle* pHandle = (STqHandle*)pIter;
if (tqEnqueue(pHandle, pSubmit) < 0) {
continue;
}
int8_t execStatus = atomic_load_8(&pHandle->pushHandle.execStatus);
if (execStatus == TASK_EXEC_STATUS__IDLE || execStatus == TASK_EXEC_STATUS__CLOSING) {
tqSendExecReq(pTq, pHandle);
}
}
streamDataSubmitRefDec(pSubmit);
return 0;
}
int32_t tqPushMsgNew(STQ* pTq, void* msg, int32_t msgLen, tmsg_t msgType, int64_t ver, SRpcHandleInfo handleInfo) {
if (msgType != TDMT_VND_SUBMIT) return 0;
void* pIter = NULL;
......
......@@ -137,7 +137,7 @@ int32_t tqNextBlock(STqReader* pReader, SFetchRet* ret) {
ret->offset.type = TMQ_OFFSET__LOG;
ret->offset.version = pReader->ver;
ret->fetchType = FETCH_TYPE__NONE;
tqDebug("return offset %ld, no more valid", ret->offset.version);
tqDebug("return offset %" PRId64 ", no more valid", ret->offset.version);
ASSERT(ret->offset.version >= 0);
return -1;
}
......@@ -169,7 +169,7 @@ int32_t tqNextBlock(STqReader* pReader, SFetchRet* ret) {
ret->offset.version = pReader->ver;
ASSERT(pReader->ver >= 0);
ret->fetchType = FETCH_TYPE__NONE;
tqDebug("return offset %ld, processed finish", ret->offset.version);
tqDebug("return offset %" PRId64 ", processed finish", ret->offset.version);
return 0;
}
}
......
......@@ -117,7 +117,7 @@ SSubmitReq* tdBlockToSubmit(const SArray* pBlocks, const STSchema* pTSchema, boo
for (int32_t i = 0; i < sz; i++) {
SSDataBlock* pDataBlock = taosArrayGet(pBlocks, i);
blkHead->numOfRows = htons(pDataBlock->info.rows);
blkHead->numOfRows = htonl(pDataBlock->info.rows);
blkHead->sversion = htonl(pTSchema->version);
// TODO
blkHead->suid = htobe64(suid);
......
......@@ -52,13 +52,13 @@ int32_t tqSnapReaderOpen(STQ* pTq, int64_t sver, int64_t ever, STqSnapReader** p
goto _err;
}
tqInfo("vgId:%d vnode snapshot tq reader opened", TD_VID(pTq->pVnode));
tqInfo("vgId:%d, vnode snapshot tq reader opened", TD_VID(pTq->pVnode));
*ppReader = pReader;
return code;
_err:
tqError("vgId:%d vnode snapshot tq reader open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
tqError("vgId:%d, vnode snapshot tq reader open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
*ppReader = NULL;
return code;
}
......@@ -113,14 +113,14 @@ int32_t tqSnapRead(STqSnapReader* pReader, uint8_t** ppData) {
pHdr->size = vLen;
memcpy(pHdr->data, pVal, vLen);
tqInfo("vgId:%d vnode snapshot tq read data, version:%" PRId64 " subKey: %s vLen:%d", TD_VID(pReader->pTq->pVnode),
tqInfo("vgId:%d, vnode snapshot tq read data, version:%" PRId64 " subKey: %s vLen:%d", TD_VID(pReader->pTq->pVnode),
handle.snapshotVer, handle.subKey, vLen);
_exit:
return code;
_err:
tqError("vgId:%d vnode snapshot tq read data failed since %s", TD_VID(pReader->pTq->pVnode), tstrerror(code));
tqError("vgId:%d, vnode snapshot tq read data failed since %s", TD_VID(pReader->pTq->pVnode), tstrerror(code));
return code;
}
......@@ -154,7 +154,7 @@ int32_t tqSnapWriterOpen(STQ* pTq, int64_t sver, int64_t ever, STqSnapWriter** p
return code;
_err:
tqError("vgId:%d tq snapshot writer open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
tqError("vgId:%d, tq snapshot writer open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
*ppWriter = NULL;
return code;
}
......@@ -182,7 +182,7 @@ int32_t tqSnapWriterClose(STqSnapWriter** ppWriter, int8_t rollback) {
return code;
_err:
tqError("vgId:%d tq snapshot writer close failed since %s", TD_VID(pWriter->pTq->pVnode), tstrerror(code));
tqError("vgId:%d, tq snapshot writer close failed since %s", TD_VID(pWriter->pTq->pVnode), tstrerror(code));
return code;
}
......@@ -204,6 +204,6 @@ int32_t tqSnapWrite(STqSnapWriter* pWriter, uint8_t* pData, uint32_t nData) {
_err:
tDecoderClear(pDecoder);
tqError("vgId:%d vnode snapshot tq write failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
tqError("vgId:%d, vnode snapshot tq write failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
return code;
}
/*
* 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/>.
*/
#include "meta.h"
#include "tdbInt.h"
#include "tq.h"
// STqSnapReader ========================================
struct STqSnapReader {
STQ* pTq;
int64_t sver;
int64_t ever;
TBC* pCur;
};
int32_t tqSnapReaderOpen(STQ* pTq, int64_t sver, int64_t ever, STqSnapReader** ppReader) {
int32_t code = 0;
STqSnapReader* pReader = NULL;
// alloc
pReader = (STqSnapReader*)taosMemoryCalloc(1, sizeof(STqSnapReader));
if (pReader == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
pReader->pTq = pTq;
pReader->sver = sver;
pReader->ever = ever;
// impl
code = tdbTbcOpen(pTq->pExecStore, &pReader->pCur, NULL);
if (code) {
taosMemoryFree(pReader);
goto _err;
}
code = tdbTbcMoveToFirst(pReader->pCur);
if (code) {
taosMemoryFree(pReader);
goto _err;
}
tqInfo("vgId:%d vnode snapshot tq reader opened", TD_VID(pTq->pVnode));
*ppReader = pReader;
return code;
_err:
tqError("vgId:%d vnode snapshot tq reader open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
*ppReader = NULL;
return code;
}
int32_t tqSnapReaderClose(STqSnapReader** ppReader) {
int32_t code = 0;
tdbTbcClose((*ppReader)->pCur);
taosMemoryFree(*ppReader);
*ppReader = NULL;
return code;
}
int32_t tqSnapRead(STqSnapReader* pReader, uint8_t** ppData) {
int32_t code = 0;
const void* pKey = NULL;
const void* pVal = NULL;
int32_t kLen = 0;
int32_t vLen = 0;
SDecoder decoder;
STqHandle handle;
*ppData = NULL;
for (;;) {
if (tdbTbcGet(pReader->pCur, &pKey, &kLen, &pVal, &vLen)) {
goto _exit;
}
tDecoderInit(&decoder, (uint8_t*)pVal, vLen);
tDecodeSTqHandle(&decoder, &handle);
tDecoderClear(&decoder);
if (handle.snapshotVer <= pReader->sver && handle.snapshotVer >= pReader->ever) {
tdbTbcMoveToNext(pReader->pCur);
break;
} else {
tdbTbcMoveToNext(pReader->pCur);
}
}
ASSERT(pVal && vLen);
*ppData = taosMemoryMalloc(sizeof(SSnapDataHdr) + vLen);
if (*ppData == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
SSnapDataHdr* pHdr = (SSnapDataHdr*)(*ppData);
pHdr->type = SNAP_DATA_TQ_HANDLE;
pHdr->size = vLen;
memcpy(pHdr->data, pVal, vLen);
tqInfo("vgId:%d vnode snapshot tq read data, version:%" PRId64 " subKey: %s vLen:%d", TD_VID(pReader->pTq->pVnode),
handle.snapshotVer, handle.subKey, vLen);
_exit:
return code;
_err:
tqError("vgId:%d vnode snapshot tq read data failed since %s", TD_VID(pReader->pTq->pVnode), tstrerror(code));
return code;
}
// STqSnapWriter ========================================
struct STqSnapWriter {
STQ* pTq;
int64_t sver;
int64_t ever;
TXN txn;
};
int32_t tqSnapWriterOpen(STQ* pTq, int64_t sver, int64_t ever, STqSnapWriter** ppWriter) {
int32_t code = 0;
STqSnapWriter* pWriter;
// alloc
pWriter = (STqSnapWriter*)taosMemoryCalloc(1, sizeof(*pWriter));
if (pWriter == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
pWriter->pTq = pTq;
pWriter->sver = sver;
pWriter->ever = ever;
if (tdbTxnOpen(&pWriter->txn, 0, tdbDefaultMalloc, tdbDefaultFree, NULL, 0) < 0) {
ASSERT(0);
}
*ppWriter = pWriter;
return code;
_err:
tqError("vgId:%d tq snapshot writer open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
*ppWriter = NULL;
return code;
}
int32_t tqSnapWriterClose(STqSnapWriter** ppWriter, int8_t rollback) {
int32_t code = 0;
STqSnapWriter* pWriter = *ppWriter;
STQ* pTq = pWriter->pTq;
if (rollback) {
ASSERT(0);
} else {
code = tdbCommit(pWriter->pTq->pMetaStore, &pWriter->txn);
if (code) goto _err;
}
taosMemoryFree(pWriter);
*ppWriter = NULL;
// restore from metastore
if (tqMetaRestoreHandle(pTq) < 0) {
goto _err;
}
return code;
_err:
tqError("vgId:%d tq snapshot writer close failed since %s", TD_VID(pWriter->pTq->pVnode), tstrerror(code));
return code;
}
int32_t tqSnapWrite(STqSnapWriter* pWriter, uint8_t* pData, uint32_t nData) {
int32_t code = 0;
STQ* pTq = pWriter->pTq;
SDecoder decoder = {0};
SDecoder* pDecoder = &decoder;
STqHandle handle;
tDecoderInit(pDecoder, pData + sizeof(SSnapDataHdr), nData - sizeof(SSnapDataHdr));
code = tDecodeSTqHandle(pDecoder, &handle);
if (code) goto _err;
code = tqMetaSaveHandle(pTq, handle.subKey, &handle);
if (code < 0) goto _err;
tDecoderClear(pDecoder);
return code;
_err:
tDecoderClear(pDecoder);
tqError("vgId:%d vnode snapshot tq write failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
return code;
}
/*
* 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/>.
*/
#include "meta.h"
#include "tdbInt.h"
#include "tq.h"
// STqSnapReader ========================================
struct STqSnapReader {
STQ* pTq;
int64_t sver;
int64_t ever;
TBC* pCur;
};
int32_t tqSnapReaderOpen(STQ* pTq, int64_t sver, int64_t ever, STqSnapReader** ppReader) {
int32_t code = 0;
STqSnapReader* pReader = NULL;
// alloc
pReader = (STqSnapReader*)taosMemoryCalloc(1, sizeof(STqSnapReader));
if (pReader == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
pReader->pTq = pTq;
pReader->sver = sver;
pReader->ever = ever;
// impl
code = tdbTbcOpen(pTq->pExecStore, &pReader->pCur, NULL);
if (code) {
taosMemoryFree(pReader);
goto _err;
}
code = tdbTbcMoveToFirst(pReader->pCur);
if (code) {
taosMemoryFree(pReader);
goto _err;
}
tqInfo("vgId:%d vnode snapshot tq reader opened", TD_VID(pTq->pVnode));
*ppReader = pReader;
return code;
_err:
tqError("vgId:%d vnode snapshot tq reader open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
*ppReader = NULL;
return code;
}
int32_t tqSnapReaderClose(STqSnapReader** ppReader) {
int32_t code = 0;
tdbTbcClose((*ppReader)->pCur);
taosMemoryFree(*ppReader);
*ppReader = NULL;
return code;
}
int32_t tqSnapRead(STqSnapReader* pReader, uint8_t** ppData) {
int32_t code = 0;
const void* pKey = NULL;
const void* pVal = NULL;
int32_t kLen = 0;
int32_t vLen = 0;
SDecoder decoder;
STqHandle handle;
*ppData = NULL;
for (;;) {
if (tdbTbcGet(pReader->pCur, &pKey, &kLen, &pVal, &vLen)) {
goto _exit;
}
tDecoderInit(&decoder, (uint8_t*)pVal, vLen);
tDecodeSTqHandle(&decoder, &handle);
tDecoderClear(&decoder);
if (handle.snapshotVer <= pReader->sver && handle.snapshotVer >= pReader->ever) {
tdbTbcMoveToNext(pReader->pCur);
break;
} else {
tdbTbcMoveToNext(pReader->pCur);
}
}
ASSERT(pVal && vLen);
*ppData = taosMemoryMalloc(sizeof(SSnapDataHdr) + vLen);
if (*ppData == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
SSnapDataHdr* pHdr = (SSnapDataHdr*)(*ppData);
pHdr->type = SNAP_DATA_TQ_HANDLE;
pHdr->size = vLen;
memcpy(pHdr->data, pVal, vLen);
tqInfo("vgId:%d vnode snapshot tq read data, version:%" PRId64 " subKey: %s vLen:%d", TD_VID(pReader->pTq->pVnode),
handle.snapshotVer, handle.subKey, vLen);
_exit:
return code;
_err:
tqError("vgId:%d vnode snapshot tq read data failed since %s", TD_VID(pReader->pTq->pVnode), tstrerror(code));
return code;
}
// STqSnapWriter ========================================
struct STqSnapWriter {
STQ* pTq;
int64_t sver;
int64_t ever;
TXN txn;
};
int32_t tqSnapWriterOpen(STQ* pTq, int64_t sver, int64_t ever, STqSnapWriter** ppWriter) {
int32_t code = 0;
STqSnapWriter* pWriter;
// alloc
pWriter = (STqSnapWriter*)taosMemoryCalloc(1, sizeof(*pWriter));
if (pWriter == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
pWriter->pTq = pTq;
pWriter->sver = sver;
pWriter->ever = ever;
if (tdbTxnOpen(&pWriter->txn, 0, tdbDefaultMalloc, tdbDefaultFree, NULL, 0) < 0) {
ASSERT(0);
}
*ppWriter = pWriter;
return code;
_err:
tqError("vgId:%d tq snapshot writer open failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
*ppWriter = NULL;
return code;
}
int32_t tqSnapWriterClose(STqSnapWriter** ppWriter, int8_t rollback) {
int32_t code = 0;
STqSnapWriter* pWriter = *ppWriter;
STQ* pTq = pWriter->pTq;
if (rollback) {
ASSERT(0);
} else {
code = tdbCommit(pWriter->pTq->pMetaStore, &pWriter->txn);
if (code) goto _err;
}
taosMemoryFree(pWriter);
*ppWriter = NULL;
// restore from metastore
if (tqMetaRestoreHandle(pTq) < 0) {
goto _err;
}
return code;
_err:
tqError("vgId:%d tq snapshot writer close failed since %s", TD_VID(pWriter->pTq->pVnode), tstrerror(code));
return code;
}
int32_t tqSnapWrite(STqSnapWriter* pWriter, uint8_t* pData, uint32_t nData) {
int32_t code = 0;
STQ* pTq = pWriter->pTq;
SDecoder decoder = {0};
SDecoder* pDecoder = &decoder;
STqHandle handle;
tDecoderInit(pDecoder, pData + sizeof(SSnapDataHdr), nData - sizeof(SSnapDataHdr));
code = tDecodeSTqHandle(pDecoder, &handle);
if (code) goto _err;
code = tqMetaSaveHandle(pTq, handle.subKey, &handle);
if (code < 0) goto _err;
tDecoderClear(pDecoder);
return code;
_err:
tDecoderClear(pDecoder);
tqError("vgId:%d vnode snapshot tq write failed since %s", TD_VID(pTq->pVnode), tstrerror(code));
return code;
}
......@@ -71,7 +71,7 @@ int tsdbOpen(SVnode *pVnode, STsdb **ppTsdb, const char *dir, STsdbKeepCfg *pKee
goto _err;
}
tsdbDebug("vgId:%d, tsdb is opened for %s, days:%d, keep:%d,%d,%d", TD_VID(pVnode), pTsdb->path, pTsdb->keepCfg.days,
tsdbDebug("vgId:%d, tsdb is opened at %s, days:%d, keep:%d,%d,%d", TD_VID(pVnode), pTsdb->path, pTsdb->keepCfg.days,
pTsdb->keepCfg.keep0, pTsdb->keepCfg.keep1, pTsdb->keepCfg.keep2);
*ppTsdb = pTsdb;
......
......@@ -408,6 +408,10 @@ static int32_t tsdbReaderCreate(SVnode* pVnode, SQueryTableDataCond* pCond, STsd
goto _end;
}
if (VND_IS_TSMA(pVnode)) {
tsdbDebug("vgId:%d, tsma is selected to query", TD_VID(pVnode));
}
initReaderStatus(&pReader->status);
pReader->pTsdb = getTsdbByRetentions(pVnode, pCond->twindows.skey, pVnode->config.tsdbCfg.retentions, idstr, &level);
......@@ -1197,7 +1201,7 @@ static int32_t buildDataBlockFromBuf(STsdbReader* pReader, STableBlockScanInfo*
setComposedBlockFlag(pReader, true);
double elapsedTime = (taosGetTimestampUs() - st) / 1000.0;
tsdbDebug("%p build data block from cache completed, elapsed time:%.2f ms, numOfRows:%d, brange: %" PRId64
tsdbDebug("%p build data block from cache completed, elapsed time:%.2f ms, numOfRows:%d, brange:%" PRId64
" - %" PRId64 " %s",
pReader, elapsedTime, pBlock->info.rows, pBlock->info.window.skey, pBlock->info.window.ekey,
pReader->idStr);
......@@ -1906,20 +1910,19 @@ static STsdb* getTsdbByRetentions(SVnode* pVnode, TSKEY winSKey, SRetention* ret
++level;
}
int32_t vgId = TD_VID(pVnode);
const char* str = (idStr != NULL) ? idStr : "";
if (level == TSDB_RETENTION_L0) {
*pLevel = TSDB_RETENTION_L0;
tsdbDebug("vgId:%d, rsma level %d is selected to query %s", vgId, TSDB_RETENTION_L0, str);
tsdbDebug("vgId:%d, rsma level %d is selected to query %s", TD_VID(pVnode), TSDB_RETENTION_L0, str);
return VND_RSMA0(pVnode);
} else if (level == TSDB_RETENTION_L1) {
*pLevel = TSDB_RETENTION_L1;
tsdbDebug("vgId:%d, rsma level %d is selected to query %s", vgId, TSDB_RETENTION_L1, str);
tsdbDebug("vgId:%d, rsma level %d is selected to query %s", TD_VID(pVnode), TSDB_RETENTION_L1, str);
return VND_RSMA1(pVnode);
} else {
*pLevel = TSDB_RETENTION_L2;
tsdbDebug("vgId:%d, rsma level %d is selected to query %s", vgId, TSDB_RETENTION_L2, str);
tsdbDebug("vgId:%d, rsma level %d is selected to query %s", TD_VID(pVnode), TSDB_RETENTION_L2, str);
return VND_RSMA2(pVnode);
}
}
......@@ -2647,7 +2650,7 @@ int32_t tsdbReaderOpen(SVnode* pVnode, SQueryTableDataCond* pCond, SArray* pTabl
return code;
_err:
tsdbError("failed to create data reader, code: %s %s", tstrerror(code), pReader->idStr);
tsdbError("failed to create data reader, code:%s %s", tstrerror(code), pReader->idStr);
return code;
}
......
......@@ -1215,11 +1215,11 @@ int32_t tsdbSnapWrite(STsdbSnapWriter* pWriter, uint8_t* pData, uint32_t nData)
}
_exit:
tsdbDebug("vgId:%d, tsdb snapshow write for %s succeed", TD_VID(pWriter->pTsdb->pVnode), pWriter->pTsdb->path);
tsdbDebug("vgId:%d, tsdb snapshot write for %s succeed", TD_VID(pWriter->pTsdb->pVnode), pWriter->pTsdb->path);
return code;
_err:
tsdbError("vgId:%d, tsdb snapshow write for %s failed since %s", TD_VID(pWriter->pTsdb->pVnode), pWriter->pTsdb->path,
tsdbError("vgId:%d, tsdb snapshot write for %s failed since %s", TD_VID(pWriter->pTsdb->pVnode), pWriter->pTsdb->path,
tstrerror(code));
return code;
}
......@@ -111,7 +111,7 @@ int tsdbScanAndConvertSubmitMsg(STsdb *pTsdb, SSubmitReq *pMsg) {
// pBlock->sversion = htonl(pBlock->sversion);
// pBlock->dataLen = htonl(pBlock->dataLen);
// pBlock->schemaLen = htonl(pBlock->schemaLen);
// pBlock->numOfRows = htons(pBlock->numOfRows);
// pBlock->numOfRows = htonl(pBlock->numOfRows);
#if 0
if (pBlock->tid <= 0 || pBlock->tid >= pMeta->maxTables) {
......
......@@ -40,7 +40,7 @@ int vnodeOpenBufPool(SVnode *pVnode, int64_t size) {
pVnode->pPool = pPool;
}
vDebug("vgId:%d, vnode buffer pool is opened, pool size: %" PRId64, TD_VID(pVnode), size);
vDebug("vgId:%d, vnode buffer pool is opened, size:%" PRId64, TD_VID(pVnode), size);
return 0;
}
......
......@@ -95,19 +95,19 @@ int vnodeSaveInfo(const char *dir, const SVnodeInfo *pInfo) {
// save info to a vnode_tmp.json
pFile = taosOpenFile(fname, TD_FILE_CREATE | TD_FILE_WRITE | TD_FILE_TRUNC);
if (pFile == NULL) {
vError("failed to open info file: %s for write: %s", fname, terrstr());
vError("failed to open info file:%s for write:%s", fname, terrstr());
terrno = TAOS_SYSTEM_ERROR(errno);
return -1;
}
if (taosWriteFile(pFile, data, strlen(data)) < 0) {
vError("failed to write info file: %s data: %s", fname, terrstr());
vError("failed to write info file:%s data:%s", fname, terrstr());
terrno = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
if (taosFsyncFile(pFile) < 0) {
vError("failed to fsync info file: %s error: %s", fname, terrstr());
vError("failed to fsync info file:%s error:%s", fname, terrstr());
terrno = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
......@@ -117,7 +117,7 @@ int vnodeSaveInfo(const char *dir, const SVnodeInfo *pInfo) {
// free info binary
taosMemoryFree(data);
vInfo("vgId:%d, vnode info is saved, fname: %s", pInfo->config.vgId, fname);
vInfo("vgId:%d, vnode info is saved, fname:%s", pInfo->config.vgId, fname);
return 0;
......
......@@ -55,7 +55,7 @@ int vnodeInit(int nthreads) {
vnodeGlobal.threads = taosMemoryCalloc(nthreads, sizeof(TdThread));
if (vnodeGlobal.threads == NULL) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
vError("failed to init vnode module since: %s", tstrerror(terrno));
vError("failed to init vnode module since:%s", tstrerror(terrno));
return -1;
}
......
......@@ -23,13 +23,13 @@ int vnodeCreate(const char *path, SVnodeCfg *pCfg, STfs *pTfs) {
// check config
if (vnodeCheckCfg(pCfg) < 0) {
vError("vgId:%d, failed to create vnode since: %s", pCfg->vgId, tstrerror(terrno));
vError("vgId:%d, failed to create vnode since:%s", pCfg->vgId, tstrerror(terrno));
return -1;
}
// create vnode env
if (tfsMkdirAt(pTfs, path, (SDiskID){0}) < 0) {
vError("vgId:%d, failed to create vnode since: %s", pCfg->vgId, tstrerror(terrno));
vError("vgId:%d, failed to create vnode since:%s", pCfg->vgId, tstrerror(terrno));
return -1;
}
......
......@@ -194,7 +194,7 @@ int32_t vnodeSnapRead(SVSnapReader *pReader, uint8_t **ppData, uint32_t *nData)
if (*ppData) {
goto _exit;
} else {
pReader->tsdbDone = 1;
pReader->rsmaDone = 1;
code = rsmaSnapReaderClose(&pReader->pRsmaReader);
if (code) goto _err;
}
......@@ -373,18 +373,9 @@ int32_t vnodeSnapWrite(SVSnapWriter *pWriter, uint8_t *pData, uint32_t nData) {
case SNAP_DATA_STREAM_STATE: {
} break;
case SNAP_DATA_RSMA1:
case SNAP_DATA_RSMA2: {
// rsma1/rsma2
if (pWriter->pRsmaSnapWriter == NULL) {
code = rsmaSnapWriterOpen(pVnode->pSma, pWriter->sver, pWriter->ever, &pWriter->pRsmaSnapWriter);
if (code) goto _err;
}
code = rsmaSnapWrite(pWriter->pRsmaSnapWriter, pData, nData);
if (code) goto _err;
} break;
case SNAP_DATA_RSMA2:
case SNAP_DATA_QTASK: {
// qtask for rsma
// rsma1/rsma2/qtask for rsma
if (pWriter->pRsmaSnapWriter == NULL) {
code = rsmaSnapWriterOpen(pVnode->pSma, pWriter->sver, pWriter->ever, &pWriter->pRsmaSnapWriter);
if (code) goto _err;
......
......@@ -262,7 +262,7 @@ int32_t vnodeProcessWriteMsg(SVnode *pVnode, SRpcMsg *pMsg, int64_t version, SRp
return 0;
_err:
vError("vgId:%d, process %s request failed since %s, version: %" PRId64, TD_VID(pVnode), TMSG_INFO(pMsg->msgType),
vError("vgId:%d, process %s request failed since %s, version:%" PRId64, TD_VID(pVnode), TMSG_INFO(pMsg->msgType),
tstrerror(terrno), version);
return -1;
}
......@@ -296,7 +296,7 @@ int32_t vnodeProcessQueryMsg(SVnode *pVnode, SRpcMsg *pMsg) {
}
int32_t vnodeProcessFetchMsg(SVnode *pVnode, SRpcMsg *pMsg, SQueueInfo *pInfo) {
vTrace("message in fetch queue is processing");
vTrace("vgId:%d, msg:%p in fetch queue is processing", pVnode->config.vgId, pMsg);
if ((pMsg->msgType == TDMT_SCH_FETCH || pMsg->msgType == TDMT_VND_TABLE_META || pMsg->msgType == TDMT_VND_TABLE_CFG ||
pMsg->msgType == TDMT_VND_BATCH_META) &&
!vnodeIsLeader(pVnode)) {
......@@ -330,7 +330,8 @@ int32_t vnodeProcessFetchMsg(SVnode *pVnode, SRpcMsg *pMsg, SQueueInfo *pInfo) {
case TDMT_STREAM_TASK_RUN:
return tqProcessTaskRunReq(pVnode->pTq, pMsg);
case TDMT_STREAM_TASK_DISPATCH:
return tqProcessTaskDispatchReq(pVnode->pTq, pMsg);
// return tqProcessTaskDispatchReq(pVnode->pTq, pMsg, pInfo->workerId != 0);
return tqProcessTaskDispatchReq(pVnode->pTq, pMsg, true);
case TDMT_STREAM_TASK_RECOVER:
return tqProcessTaskRecoverReq(pVnode->pTq, pMsg);
case TDMT_STREAM_RETRIEVE:
......@@ -378,6 +379,9 @@ static int32_t vnodeProcessTrimReq(SVnode *pVnode, int64_t version, void *pReq,
code = tsdbDoRetention(pVnode->pTsdb, trimReq.timestamp);
if (code) goto _exit;
code = smaDoRetention(pVnode->pSma, trimReq.timestamp);
if (code) goto _exit;
_exit:
return code;
}
......@@ -433,14 +437,10 @@ static int32_t vnodeProcessCreateStbReq(SVnode *pVnode, int64_t version, void *p
goto _err;
}
// taosMemoryFree(req.schemaRow.pSchema);
// taosMemoryFree(req.schemaTag.pSchema);
tDecoderClear(&coder);
return 0;
_err:
taosMemoryFree(req.schemaRow.pSchema);
taosMemoryFree(req.schemaTag.pSchema);
tDecoderClear(&coder);
return -1;
}
......@@ -487,6 +487,11 @@ static int32_t vnodeProcessCreateTbReq(SVnode *pVnode, int64_t version, void *pR
goto _exit;
}
if ((terrno = grantCheck(TSDB_GRANT_TABLE)) < 0) {
rcode = -1;
goto _exit;
}
// validate hash
sprintf(tbName, "%s.%s", pVnode->config.dbname, pCreateReq->name);
if (vnodeValidateTableHash(pVnode, tbName) < 0) {
......@@ -837,6 +842,13 @@ static int32_t vnodeProcessSubmitReq(SVnode *pVnode, int64_t version, void *pReq
goto _exit;
}
if ((terrno = grantCheck(TSDB_GRANT_TABLE)) < 0) {
pRsp->code = terrno;
tDecoderClear(&decoder);
taosArrayDestroy(createTbReq.ctb.tagName);
goto _exit;
}
if (metaCreateTable(pVnode->pMeta, version, &createTbReq) < 0) {
if (terrno != TSDB_CODE_TDB_TABLE_ALREADY_EXIST) {
submitBlkRsp.code = terrno;
......@@ -901,14 +913,13 @@ _exit:
tdProcessRSmaSubmit(pVnode->pSma, pReq, STREAM_INPUT__DATA_SUBMIT);
}
vDebug("successful submit in vg %d version %ld", pVnode->config.vgId, version);
vDebug("vgId:%d, submit success, index:%" PRId64, pVnode->config.vgId, version);
return 0;
}
static int32_t vnodeProcessCreateTSmaReq(SVnode *pVnode, int64_t version, void *pReq, int32_t len, SRpcMsg *pRsp) {
SVCreateTSmaReq req = {0};
SDecoder coder;
SDecoder coder = {0};
if (pRsp) {
pRsp->msgType = TDMT_VND_CREATE_SMA_RSP;
......
......@@ -19,9 +19,8 @@
#define BATCH_DISABLE 1
static inline bool vnodeIsMsgBlock(tmsg_t type) {
return (type == TDMT_VND_CREATE_TABLE) || (type == TDMT_VND_CREATE_TABLE) || (type == TDMT_VND_CREATE_TABLE) ||
(type == TDMT_VND_ALTER_TABLE) || (type == TDMT_VND_DROP_TABLE) || (type == TDMT_VND_UPDATE_TAG_VAL) ||
(type == TDMT_VND_ALTER_REPLICA);
return (type == TDMT_VND_CREATE_TABLE) || (type == TDMT_VND_ALTER_TABLE) || (type == TDMT_VND_DROP_TABLE) ||
(type == TDMT_VND_UPDATE_TAG_VAL) || (type == TDMT_VND_ALTER_REPLICA);
}
static inline bool vnodeIsMsgWeak(tmsg_t type) { return false; }
......@@ -325,16 +324,7 @@ int32_t vnodeProcessSyncMsg(SVnode *pVnode, SRpcMsg *pMsg, SRpcMsg **pRsp) {
return -1;
}
#if 1
do {
char *syncNodeStr = sync2SimpleStr(pVnode->sync);
static int64_t vndTick = 0;
if (++vndTick % 10 == 1) {
vGTrace("vgId:%d, sync trace msg:%s, %s", syncGetVgId(pVnode->sync), TMSG_INFO(pMsg->msgType), syncNodeStr);
}
taosMemoryFree(syncNodeStr);
} while (0);
#endif
vGTrace("vgId:%d, sync msg:%p will be processed, type:%s", pVnode->config.vgId, pMsg, TMSG_INFO(pMsg->msgType));
if (syncNodeStrategy(pSyncNode) == SYNC_STRATEGY_NO_SNAPSHOT) {
if (pMsg->msgType == TDMT_SYNC_TIMEOUT) {
......@@ -458,6 +448,8 @@ int32_t vnodeProcessSyncMsg(SVnode *pVnode, SRpcMsg *pMsg, SRpcMsg **pRsp) {
}
}
vTrace("vgId:%d, sync msg:%p is processed, type:%s code:0x%x", pVnode->config.vgId, pMsg, TMSG_INFO(pMsg->msgType),
code);
syncNodeRelease(pSyncNode);
if (code != 0 && terrno == 0) {
terrno = TSDB_CODE_SYN_INTERNAL_ERROR;
......@@ -518,15 +510,15 @@ static void vnodeSyncCommitMsg(SSyncFSM *pFsm, const SRpcMsg *pMsg, SFsmCbMeta c
rpcMsg.info.conn.applyTerm = cbMeta.term;
vInfo("vgId:%d, commit-cb is excuted, fsm:%p, index:%" PRId64 ", term:%" PRIu64 ", msg-index:%" PRId64
", isWeak:%d, code:%d, state:%d %s, msgtype:%d %s",
", weak:%d, code:%d, state:%d %s, type:%s",
syncGetVgId(pVnode->sync), pFsm, cbMeta.index, cbMeta.term, rpcMsg.info.conn.applyIndex, cbMeta.isWeak,
cbMeta.code, cbMeta.state, syncUtilState2String(cbMeta.state), pMsg->msgType, TMSG_INFO(pMsg->msgType));
cbMeta.code, cbMeta.state, syncUtilState2String(cbMeta.state), TMSG_INFO(pMsg->msgType));
tmsgPutToQueue(&pVnode->msgCb, APPLY_QUEUE, &rpcMsg);
} else {
SRpcMsg rsp = {.code = cbMeta.code, .info = pMsg->info};
vError("vgId:%d, sync commit error, msgtype:%d,%s, index:%ld, error:0x%X, errmsg:%s", syncGetVgId(pVnode->sync),
pMsg->msgType, TMSG_INFO(pMsg->msgType), cbMeta.index, cbMeta.code, tstrerror(cbMeta.code));
vError("vgId:%d, commit-cb execute error, type:%s, index:%" PRId64 ", error:0x%x %s", syncGetVgId(pVnode->sync),
TMSG_INFO(pMsg->msgType), cbMeta.index, cbMeta.code, tstrerror(cbMeta.code));
if (rsp.info.handle != NULL) {
tmsgSendRsp(&rsp);
}
......@@ -537,10 +529,9 @@ static void vnodeSyncCommitMsg(SSyncFSM *pFsm, const SRpcMsg *pMsg, SFsmCbMeta c
static void vnodeSyncPreCommitMsg(SSyncFSM *pFsm, const SRpcMsg *pMsg, SFsmCbMeta cbMeta) {
if (cbMeta.isWeak == 1) {
SVnode *pVnode = pFsm->data;
vTrace("vgId:%d, pre-commit-cb is excuted, fsm:%p, index:%" PRId64
", isWeak:%d, code:%d, state:%d %s, msgtype:%d %s",
vTrace("vgId:%d, pre-commit-cb is excuted, fsm:%p, index:%" PRId64 ", weak:%d, code:%d, state:%d %s, type:%s",
syncGetVgId(pVnode->sync), pFsm, cbMeta.index, cbMeta.isWeak, cbMeta.code, cbMeta.state,
syncUtilState2String(cbMeta.state), pMsg->msgType, TMSG_INFO(pMsg->msgType));
syncUtilState2String(cbMeta.state), TMSG_INFO(pMsg->msgType));
if (cbMeta.code == 0) {
SRpcMsg rpcMsg = {.msgType = pMsg->msgType, .contLen = pMsg->contLen};
......@@ -552,8 +543,8 @@ static void vnodeSyncPreCommitMsg(SSyncFSM *pFsm, const SRpcMsg *pMsg, SFsmCbMet
tmsgPutToQueue(&pVnode->msgCb, APPLY_QUEUE, &rpcMsg);
} else {
SRpcMsg rsp = {.code = cbMeta.code, .info = pMsg->info};
vError("vgId:%d, sync pre-commit error, msgtype:%d,%s, error:0x%X, errmsg:%s", syncGetVgId(pVnode->sync),
pMsg->msgType, TMSG_INFO(pMsg->msgType), cbMeta.code, tstrerror(cbMeta.code));
vError("vgId:%d, pre-commit-cb execute error, type:%s, error:0x%x %s", syncGetVgId(pVnode->sync),
TMSG_INFO(pMsg->msgType), cbMeta.code, tstrerror(cbMeta.code));
if (rsp.info.handle != NULL) {
tmsgSendRsp(&rsp);
}
......@@ -563,9 +554,9 @@ static void vnodeSyncPreCommitMsg(SSyncFSM *pFsm, const SRpcMsg *pMsg, SFsmCbMet
static void vnodeSyncRollBackMsg(SSyncFSM *pFsm, const SRpcMsg *pMsg, SFsmCbMeta cbMeta) {
SVnode *pVnode = pFsm->data;
vTrace("vgId:%d, rollback-cb is excuted, fsm:%p, index:%" PRId64 ", isWeak:%d, code:%d, state:%d %s, msgtype:%d %s",
vTrace("vgId:%d, rollback-cb is excuted, fsm:%p, index:%" PRId64 ", weak:%d, code:%d, state:%d %s, type:%s",
syncGetVgId(pVnode->sync), pFsm, cbMeta.index, cbMeta.isWeak, cbMeta.code, cbMeta.state,
syncUtilState2String(cbMeta.state), pMsg->msgType, TMSG_INFO(pMsg->msgType));
syncUtilState2String(cbMeta.state), TMSG_INFO(pMsg->msgType));
}
#define USE_TSDB_SNAPSHOT
......@@ -620,10 +611,10 @@ static int32_t vnodeSnapshotStartWrite(struct SSyncFSM *pFsm, void *pParam, void
do {
int32_t itemSize = tmsgGetQueueSize(&pVnode->msgCb, pVnode->config.vgId, APPLY_QUEUE);
if (itemSize == 0) {
vDebug("vgId:%d, apply queue is empty, start write snapshot", pVnode->config.vgId);
vInfo("vgId:%d, start write vnode snapshot since apply queue is empty", pVnode->config.vgId);
break;
} else {
vDebug("vgId:%d, %d items in apply queue, write snapshot later", pVnode->config.vgId);
vInfo("vgId:%d, write vnode snapshot later since %d items in apply queue", pVnode->config.vgId);
taosMsleep(10);
}
} while (true);
......@@ -639,10 +630,11 @@ static int32_t vnodeSnapshotStartWrite(struct SSyncFSM *pFsm, void *pParam, void
static int32_t vnodeSnapshotStopWrite(struct SSyncFSM *pFsm, void *pWriter, bool isApply, SSnapshot *pSnapshot) {
#ifdef USE_TSDB_SNAPSHOT
SVnode *pVnode = pFsm->data;
vDebug("vgId:%d, stop write snapshot, isApply:%d", pVnode->config.vgId, isApply);
vInfo("vgId:%d, stop write vnode snapshot, apply:%d, index:%" PRId64 " term:%" PRIu64 " config:%" PRId64,
pVnode->config.vgId, isApply, pSnapshot->lastApplyIndex, pSnapshot->lastApplyTerm, pSnapshot->lastConfigIndex);
int32_t code = vnodeSnapWriterClose(pWriter, !isApply, pSnapshot);
vDebug("vgId:%d, apply snapshot to vnode, code:0x%x", pVnode->config.vgId, code);
vInfo("vgId:%d, apply vnode snapshot finished, code:0x%x", pVnode->config.vgId, code);
return code;
#else
taosMemoryFree(pWriter);
......@@ -653,8 +645,9 @@ static int32_t vnodeSnapshotStopWrite(struct SSyncFSM *pFsm, void *pWriter, bool
static int32_t vnodeSnapshotDoWrite(struct SSyncFSM *pFsm, void *pWriter, void *pBuf, int32_t len) {
#ifdef USE_TSDB_SNAPSHOT
SVnode *pVnode = pFsm->data;
vDebug("vgId:%d, continue write vnode snapshot, len:%d", pVnode->config.vgId, len);
int32_t code = vnodeSnapWrite(pWriter, pBuf, len);
vTrace("vgId:%d, write snapshot, len:%d", pVnode->config.vgId, len);
vDebug("vgId:%d, continue write vnode snapshot finished, len:%d", pVnode->config.vgId, len);
return code;
#else
return 0;
......@@ -715,7 +708,7 @@ int32_t vnodeSyncOpen(SVnode *pVnode, char *path) {
}
setPingTimerMS(pVnode->sync, 5000);
setElectTimerMS(pVnode->sync, 1300);
setElectTimerMS(pVnode->sync, 2800);
setHeartbeatTimerMS(pVnode->sync, 900);
return 0;
}
......
......@@ -395,9 +395,8 @@ TEST(testCase, tSma_Data_Insert_Query_Test) {
pBlk->uid = htobe64(tbUid);
pBlk->suid = htobe64(tbUid);
pBlk->sversion = htonl(schemaVer);
pBlk->padding = htonl(0);
pBlk->schemaLen = htonl(0);
pBlk->numOfRows = htons(mockRowNum);
pBlk->numOfRows = htonl(mockRowNum);
pBlk->dataLen = htonl(mockRowNum * mockRowLen);
for (uint32_t r = 0; r < mockRowNum; ++r) {
pRow = (STSRow *)POINTER_SHIFT(pBlk, sizeof(SSubmitBlk) + r * mockRowLen);
......
此差异已折叠。
......@@ -192,6 +192,26 @@ char* buildRetension(SArray* pRetension) {
return p1;
}
static const char* cacheModelStr(int8_t cacheModel) {
switch (cacheModel) {
case TSDB_CACHE_MODEL_NONE:
return TSDB_CACHE_MODEL_NONE_STR;
case TSDB_CACHE_MODEL_LAST_ROW:
return TSDB_CACHE_MODEL_LAST_ROW_STR;
case TSDB_CACHE_MODEL_LAST_VALUE:
return TSDB_CACHE_MODEL_LAST_VALUE_STR;
case TSDB_CACHE_MODEL_BOTH:
return TSDB_CACHE_MODEL_BOTH_STR;
default:
break;
}
return TSDB_CACHE_MODEL_NONE_STR;
}
static const char* strictStr(int8_t strict) {
return TSDB_DB_STRICT_ON == strict ? TSDB_DB_STRICT_ON_STR : TSDB_DB_STRICT_OFF_STR;
}
static void setCreateDBResultIntoDataBlock(SSDataBlock* pBlock, char* dbFName, SDbCfgInfo* pCfg) {
blockDataEnsureCapacity(pBlock, 1);
pBlock->info.rows = 1;
......@@ -222,14 +242,15 @@ static void setCreateDBResultIntoDataBlock(SSDataBlock* pBlock, char* dbFName, S
char* retentions = buildRetension(pCfg->pRetensions);
len += sprintf(buf2 + VARSTR_HEADER_SIZE,
"CREATE DATABASE `%s` BUFFER %d CACHEMODEL %d COMP %d DURATION %dm "
"FSYNC %d MAXROWS %d MINROWS %d KEEP %dm,%dm,%dm PAGES %d PAGESIZE %d PRECISION '%s' REPLICA %d "
"STRICT %d WAL %d VGROUPS %d SINGLE_STABLE %d",
dbFName, pCfg->buffer, pCfg->cacheLast, pCfg->compression, pCfg->daysPerFile, pCfg->walFsyncPeriod,
pCfg->maxRows, pCfg->minRows, pCfg->daysToKeep0, pCfg->daysToKeep1, pCfg->daysToKeep2, pCfg->pages,
pCfg->pageSize, prec, pCfg->replications, pCfg->strict, pCfg->walLevel, pCfg->numOfVgroups,
1 == pCfg->numOfStables);
len += sprintf(
buf2 + VARSTR_HEADER_SIZE,
"CREATE DATABASE `%s` BUFFER %d CACHEMODEL '%s' COMP %d DURATION %dm "
"WAL_FSYNC_PERIOD %d MAXROWS %d MINROWS %d KEEP %dm,%dm,%dm PAGES %d PAGESIZE %d PRECISION '%s' REPLICA %d "
"STRICT '%s' WAL_LEVEL %d VGROUPS %d SINGLE_STABLE %d",
dbFName, pCfg->buffer, cacheModelStr(pCfg->cacheLast), pCfg->compression, pCfg->daysPerFile, pCfg->walFsyncPeriod,
pCfg->maxRows, pCfg->minRows, pCfg->daysToKeep0, pCfg->daysToKeep1, pCfg->daysToKeep2, pCfg->pages,
pCfg->pageSize, prec, pCfg->replications, strictStr(pCfg->strict), pCfg->walLevel, pCfg->numOfVgroups,
1 == pCfg->numOfStables);
if (retentions) {
len += sprintf(buf2 + VARSTR_HEADER_SIZE + len, " RETENTIONS %s", retentions);
......@@ -383,21 +404,21 @@ int32_t appendTagValues(char* buf, int32_t* len, STableCfg* pCfg) {
return TSDB_CODE_SUCCESS;
}
void appendTableOptions(char* buf, int32_t* len, STableCfg* pCfg) {
void appendTableOptions(char* buf, int32_t* len, SDbCfgInfo* pDbCfg, STableCfg* pCfg) {
if (pCfg->commentLen > 0) {
*len += sprintf(buf + VARSTR_HEADER_SIZE + *len, " COMMENT '%s'", pCfg->pComment);
} else if (0 == pCfg->commentLen) {
*len += sprintf(buf + VARSTR_HEADER_SIZE + *len, " COMMENT ''");
}
if (pCfg->watermark1 > 0) {
if (NULL != pDbCfg->pRetensions && pCfg->watermark1 > 0) {
*len += sprintf(buf + VARSTR_HEADER_SIZE + *len, " WATERMARK %" PRId64 "a", pCfg->watermark1);
if (pCfg->watermark2 > 0) {
*len += sprintf(buf + VARSTR_HEADER_SIZE + *len, ", %" PRId64 "a", pCfg->watermark2);
}
}
if (pCfg->delay1 > 0) {
if (NULL != pDbCfg->pRetensions && pCfg->delay1 > 0) {
*len += sprintf(buf + VARSTR_HEADER_SIZE + *len, " MAX_DELAY %" PRId64 "a", pCfg->delay1);
if (pCfg->delay2 > 0) {
*len += sprintf(buf + VARSTR_HEADER_SIZE + *len, ", %" PRId64 "a", pCfg->delay2);
......@@ -405,7 +426,7 @@ void appendTableOptions(char* buf, int32_t* len, STableCfg* pCfg) {
}
int32_t funcNum = taosArrayGetSize(pCfg->pFuncs);
if (funcNum > 0) {
if (NULL != pDbCfg->pRetensions && funcNum > 0) {
*len += sprintf(buf + VARSTR_HEADER_SIZE + *len, " ROLLUP(");
for (int32_t i = 0; i < funcNum; ++i) {
char* pFunc = taosArrayGet(pCfg->pFuncs, i);
......@@ -419,7 +440,7 @@ void appendTableOptions(char* buf, int32_t* len, STableCfg* pCfg) {
}
}
static int32_t setCreateTBResultIntoDataBlock(SSDataBlock* pBlock, char* tbName, STableCfg* pCfg) {
static int32_t setCreateTBResultIntoDataBlock(SSDataBlock* pBlock, SDbCfgInfo* pDbCfg, char* tbName, STableCfg* pCfg) {
int32_t code = 0;
blockDataEnsureCapacity(pBlock, 1);
pBlock->info.rows = 1;
......@@ -439,7 +460,7 @@ static int32_t setCreateTBResultIntoDataBlock(SSDataBlock* pBlock, char* tbName,
len += sprintf(buf2 + VARSTR_HEADER_SIZE + len, ") TAGS (");
appendTagFields(buf2, &len, pCfg);
len += sprintf(buf2 + VARSTR_HEADER_SIZE + len, ")");
appendTableOptions(buf2, &len, pCfg);
appendTableOptions(buf2, &len, pDbCfg, pCfg);
} else if (TSDB_CHILD_TABLE == pCfg->tableType) {
len += sprintf(buf2 + VARSTR_HEADER_SIZE, "CREATE TABLE `%s` USING `%s` (", tbName, pCfg->stbName);
appendTagNameFields(buf2, &len, pCfg);
......@@ -449,7 +470,7 @@ static int32_t setCreateTBResultIntoDataBlock(SSDataBlock* pBlock, char* tbName,
return code;
}
len += sprintf(buf2 + VARSTR_HEADER_SIZE + len, ")");
appendTableOptions(buf2, &len, pCfg);
appendTableOptions(buf2, &len, pDbCfg, pCfg);
} else {
len += sprintf(buf2 + VARSTR_HEADER_SIZE, "CREATE TABLE `%s` (", tbName);
appendColumnFields(buf2, &len, pCfg);
......@@ -465,7 +486,7 @@ static int32_t setCreateTBResultIntoDataBlock(SSDataBlock* pBlock, char* tbName,
static int32_t execShowCreateTable(SShowCreateTableStmt* pStmt, SRetrieveTableRsp** pRsp) {
SSDataBlock* pBlock = buildCreateTbResultDataBlock();
int32_t code = setCreateTBResultIntoDataBlock(pBlock, pStmt->tableName, pStmt->pCfg);
int32_t code = setCreateTBResultIntoDataBlock(pBlock, pStmt->pDbCfg, pStmt->tableName, pStmt->pTableCfg);
if (code) {
return code;
}
......@@ -473,7 +494,7 @@ static int32_t execShowCreateTable(SShowCreateTableStmt* pStmt, SRetrieveTableRs
}
static int32_t execShowCreateSTable(SShowCreateTableStmt* pStmt, SRetrieveTableRsp** pRsp) {
STableCfg* pCfg = (STableCfg*)pStmt->pCfg;
STableCfg* pCfg = (STableCfg*)pStmt->pTableCfg;
if (TSDB_SUPER_TABLE != pCfg->tableType) {
terrno = TSDB_CODE_TSC_NOT_STABLE_ERROR;
return terrno;
......
......@@ -88,8 +88,11 @@ bool isResultRowClosed(SResultRow* pResultRow);
struct SResultRowEntryInfo* getResultEntryInfo(const SResultRow* pRow, int32_t index, const int32_t* offset);
static FORCE_INLINE SResultRow* getResultRowByPos(SDiskbasedBuf* pBuf, SResultRowPosition* pos) {
static FORCE_INLINE SResultRow* getResultRowByPos(SDiskbasedBuf* pBuf, SResultRowPosition* pos, bool forUpdate) {
SFilePage* bufPage = (SFilePage*)getBufPage(pBuf, pos->pageId);
if (forUpdate) {
setBufPageDirty(bufPage, true);
}
SResultRow* pRow = (SResultRow*)((char*)bufPage + pos->offset);
return pRow;
}
......
......@@ -224,6 +224,7 @@ typedef struct SOperatorInfo {
struct SOperatorInfo** pDownstream; // downstram pointer list
int32_t numOfDownstream; // number of downstream. The value is always ONE expect for join operator
SOperatorFpSet fpSet;
int16_t resultDataBlockId;
} SOperatorInfo;
typedef enum {
......@@ -843,6 +844,7 @@ void initBasicInfo(SOptrBasicInfo* pInfo, SSDataBlock* pBlock);
void cleanupBasicInfo(SOptrBasicInfo* pInfo);
int32_t initExprSupp(SExprSupp* pSup, SExprInfo* pExprInfo, int32_t numOfExpr);
void cleanupExprSupp(SExprSupp* pSup);
void destroyExprInfo(SExprInfo* pExpr, int32_t numOfExprs);
int32_t initAggInfo(SExprSupp *pSup, SAggSupporter* pAggSup, SExprInfo* pExprInfo, int32_t numOfCols, size_t keyBufSize,
const char* pkey);
void initResultSizeInfo(SResultInfo * pResultInfo, int32_t numOfRows);
......
......@@ -225,7 +225,7 @@ int32_t dataBlockToSubmit(SDataInserterHandle* pInserter, SSubmitReq** pReq) {
}
blkHead->dataLen = htonl(dataLen);
blkHead->numOfRows = htons(rows);
blkHead->numOfRows = htonl(rows);
ret->length += sizeof(SSubmitBlk) + dataLen;
blkHead = POINTER_SHIFT(blkHead, sizeof(SSubmitBlk) + dataLen);
......
......@@ -632,7 +632,7 @@ SExprInfo* createExprInfo(SNodeList* pNodeList, SNodeList* pGroupKeys, int32_t*
tListLen(pExp->pExpr->_function.functionName));
#if 1
// todo refactor: add the parameter for tbname function
if (strcmp(pExp->pExpr->_function.functionName, "tbname") == 0) {
if (!pFuncNode->pParameterList && (strcmp(pExp->pExpr->_function.functionName, "tbname") == 0)) {
pFuncNode->pParameterList = nodesMakeList();
ASSERT(LIST_LENGTH(pFuncNode->pParameterList) == 0);
SValueNode* res = (SValueNode*)nodesMakeNode(QUERY_NODE_VALUE);
......@@ -953,7 +953,7 @@ STimeWindow getActiveTimeWindow(SDiskbasedBuf* pBuf, SResultRowInfo* pResultRowI
return w;
}
w = getResultRowByPos(pBuf, &pResultRowInfo->cur)->win;
w = getResultRowByPos(pBuf, &pResultRowInfo->cur, false)->win;
// in case of typical time window, we can calculate time window directly.
if (w.skey > ts || w.ekey < ts) {
......
......@@ -83,6 +83,7 @@ static int32_t doSetStreamBlock(SOperatorInfo* pOperator, void* input, size_t nu
taosArrayClear(p->pDataBlock);
taosArrayAddAll(p->pDataBlock, pDataBlock->pDataBlock);
taosArrayPush(pInfo->pBlockLists, &p);
}
pInfo->blockType = STREAM_INPUT__DATA_BLOCK;
} else {
......@@ -93,6 +94,29 @@ static int32_t doSetStreamBlock(SOperatorInfo* pOperator, void* input, size_t nu
}
}
void tdCleanupStreamInputDataBlock(qTaskInfo_t tinfo) {
SExecTaskInfo* pTaskInfo = (SExecTaskInfo*)tinfo;
if (!pTaskInfo || !pTaskInfo->pRoot || pTaskInfo->pRoot->numOfDownstream <= 0) {
return;
}
SOperatorInfo* pOptrInfo = pTaskInfo->pRoot->pDownstream[0];
if (pOptrInfo->operatorType == QUERY_NODE_PHYSICAL_PLAN_STREAM_SCAN) {
SStreamScanInfo* pInfo = pOptrInfo->info;
if (pInfo->blockType == STREAM_INPUT__DATA_BLOCK) {
for (int32_t i = 0; i < taosArrayGetSize(pInfo->pBlockLists); ++i) {
SSDataBlock* p = *(SSDataBlock**)taosArrayGet(pInfo->pBlockLists, i);
taosArrayDestroy(p->pDataBlock);
taosMemoryFreeClear(p);
}
} else {
ASSERT(0);
}
} else {
ASSERT(0);
}
}
int32_t qSetMultiStreamInput(qTaskInfo_t tinfo, const void* pBlocks, size_t numOfBlocks, int32_t type) {
if (tinfo == NULL) {
return TSDB_CODE_QRY_APP_ERROR;
......@@ -104,7 +128,7 @@ int32_t qSetMultiStreamInput(qTaskInfo_t tinfo, const void* pBlocks, size_t numO
SExecTaskInfo* pTaskInfo = (SExecTaskInfo*)tinfo;
int32_t code = doSetStreamBlock(pTaskInfo->pRoot, (void**)pBlocks, numOfBlocks, type, GET_TASKID(pTaskInfo));
int32_t code = doSetStreamBlock(pTaskInfo->pRoot, (void*)pBlocks, numOfBlocks, type, GET_TASKID(pTaskInfo));
if (code != TSDB_CODE_SUCCESS) {
qError("%s failed to set the stream block data", GET_TASKID(pTaskInfo));
} else {
......@@ -605,7 +629,7 @@ int32_t qStreamPrepareScan(qTaskInfo_t tinfo, const STqOffsetVal* pOffset) {
#if 0
if (tOffsetEqual(pOffset, &pTaskInfo->streamInfo.lastStatus) &&
pInfo->tqReader->pWalReader->curVersion != pOffset->version) {
qError("prepare scan ver %ld actual ver %ld, last %ld", pOffset->version,
qError("prepare scan ver %" PRId64 " actual ver %" PRId64 ", last %" PRId64, pOffset->version,
pInfo->tqReader->pWalReader->curVersion, pTaskInfo->streamInfo.lastStatus.version);
ASSERT(0);
}
......@@ -636,8 +660,8 @@ int32_t qStreamPrepareScan(qTaskInfo_t tinfo, const STqOffsetVal* pOffset) {
#ifndef NDEBUG
qDebug("switch to next table %ld (cursor %d), %ld rows returned", uid, pTableScanInfo->currentTable,
pInfo->pTableScanOp->resultInfo.totalRows);
qDebug("switch to next table %" PRId64 " (cursor %d), %" PRId64 " rows returned", uid,
pTableScanInfo->currentTable, pInfo->pTableScanOp->resultInfo.totalRows);
pInfo->pTableScanOp->resultInfo.totalRows = 0;
#endif
......@@ -669,8 +693,8 @@ int32_t qStreamPrepareScan(qTaskInfo_t tinfo, const STqOffsetVal* pOffset) {
pTableScanInfo->cond.twindows.skey = oldSkey;
pTableScanInfo->scanTimes = 0;
qDebug("tsdb reader offset seek to uid %ld ts %ld, table cur set to %d , all table num %d", uid, ts,
pTableScanInfo->currentTable, tableSz);
qDebug("tsdb reader offset seek to uid %" PRId64 " ts %" PRId64 ", table cur set to %d , all table num %d", uid,
ts, pTableScanInfo->currentTable, tableSz);
/*}*/
} else {
......
......@@ -764,7 +764,13 @@ SOperatorInfo* createPartitionOperatorInfo(SOperatorInfo* downstream, SPartition
uint32_t defaultBufsz = 0;
getBufferPgSize(pResBlock->info.rowSize, &defaultPgsz, &defaultBufsz);
int32_t code = createDiskbasedBuf(&pInfo->pBuf, defaultPgsz, defaultBufsz, pTaskInfo->id.str, TD_TMP_DIR_PATH);
if (!osTempSpaceAvailable()) {
terrno = TSDB_CODE_NO_AVAIL_DISK;
pTaskInfo->code = terrno;
qError("Create partition operator info failed since %s", terrstr(terrno));
goto _error;
}
int32_t code = createDiskbasedBuf(&pInfo->pBuf, defaultPgsz, defaultBufsz, pTaskInfo->id.str, tsTempDir);
if (code != TSDB_CODE_SUCCESS) {
goto _error;
}
......
......@@ -1493,6 +1493,11 @@ static void destroyStreamScanOperatorInfo(void* param, int32_t numOfOutput) {
if (pStreamScan->pColMatchInfo) {
taosArrayDestroy(pStreamScan->pColMatchInfo);
}
if (pStreamScan->pPseudoExpr) {
destroyExprInfo(pStreamScan->pPseudoExpr, pStreamScan->numOfPseudoExpr);
taosMemoryFreeClear(pStreamScan->pPseudoExpr);
}
updateInfoDestroy(pStreamScan->pUpdateInfo);
blockDataDestroy(pStreamScan->pRes);
blockDataDestroy(pStreamScan->pUpdateRes);
......
......@@ -247,7 +247,12 @@ SLHashObj* tHashInit(int32_t inMemPages, int32_t pageSize, _hash_fn_t fn, int32_
return NULL;
}
int32_t code = createDiskbasedBuf(&pHashObj->pBuf, pageSize, inMemPages * pageSize, 0, TD_TMP_DIR_PATH);
if (!osTempSpaceAvailable()) {
terrno = TSDB_CODE_NO_AVAIL_DISK;
printf("tHash Init failed since %s", terrstr(terrno));
return NULL;
}
int32_t code = createDiskbasedBuf(&pHashObj->pBuf, pageSize, inMemPages * pageSize, 0, tsTempDir);
if (code != 0) {
terrno = code;
return NULL;
......
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