WO2019223178A1 - Procédé et système de planification de tâches inter-plateformes, dispositif informatique et support d'informations - Google Patents

Procédé et système de planification de tâches inter-plateformes, dispositif informatique et support d'informations Download PDF

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Publication number
WO2019223178A1
WO2019223178A1 PCT/CN2018/104702 CN2018104702W WO2019223178A1 WO 2019223178 A1 WO2019223178 A1 WO 2019223178A1 CN 2018104702 W CN2018104702 W CN 2018104702W WO 2019223178 A1 WO2019223178 A1 WO 2019223178A1
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essbase
odi
scheduling
oracle
parameter
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PCT/CN2018/104702
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English (en)
Chinese (zh)
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刘斌
黄涛
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平安科技(深圳)有限公司
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Publication of WO2019223178A1 publication Critical patent/WO2019223178A1/fr

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/46Multiprogramming arrangements
    • G06F9/54Interprogram communication
    • G06F9/547Remote procedure calls [RPC]; Web services

Definitions

  • the present application relates to the technical field of task scheduling, and in particular, to a cross-platform task scheduling method, system, computer device, and storage medium.
  • ORACLE ODI Order Integrator
  • ESSBASE is a multi-dimensional database of BI software hyperion. Unlike a relational database in the usual sense, ESSBASE divides data into "blocks", and each data defines a different dimension.
  • a cross-platform task scheduling method includes:
  • S1 configure ORACLE ODI or ESSBASE parameter information for task scheduling, and store the parameter information in the scheduling platform database;
  • S3 Capture task information serving ORACLE ODI or ESSBASE scheduling conditions and the parameter information to splice into executable ODI ODI or ESSBASE scheduling tasks, and use ORACLE ODI or SSH in ESSBASE server to perform ORACLE ODI or ESSBASE scheduling tasks, Perform cross-platform task scheduling.
  • this application also provides a cross-platform task scheduling system, including:
  • the configuration unit is configured to configure ORACLE ODI or ESSBASE parameter information for task scheduling, and store the parameter information in a scheduling platform database;
  • the deployment unit is configured to use the Oracle ODI or ESSBASE execution template to deploy the Oracle ODI or ESSBASE execution template to convert the SSH in the scheduling platform server to the Oracle ODI or ESSBASE server to execute the Oracle ODI or ESSBASE server.
  • Task scheduling is configured to use the Oracle ODI or ESSBASE execution template to deploy the Oracle ODI or ESSBASE execution template to convert the SSH in the scheduling platform server to the Oracle ODI or ESSBASE server to execute the Oracle ODI or ESSBASE server.
  • the execution unit is configured to capture task information serving ORACLE or ODI or ESSBASE scheduling conditions and stitch the parameter information into executable ODI or ODI or ESSBASE scheduling tasks, and execute ORACLE or ODI using SSH in ORACLE or ESSBASE server Or ESSBASE scheduling tasks, cross-platform task scheduling.
  • the present application also provides a computer device including a memory and a processor.
  • the memory stores computer-readable instructions.
  • the processing causes the processing.
  • the processor performs the following steps:
  • S1 configure ORACLE ODI or ESSBASE parameter information for task scheduling, and store the parameter information in the scheduling platform database;
  • S3 Capture task information serving ORACLE ODI or ESSBASE scheduling conditions and the parameter information to splice into executable ODI ODI or ESSBASE scheduling tasks, and use ORACLE ODI or SSH in ESSBASE server to perform ORACLE ODI or ESSBASE scheduling tasks, Perform cross-platform task scheduling.
  • the present application also provides a storage medium storing computer-readable instructions.
  • the computer-readable instructions When the computer-readable instructions are executed by one or more processors, the one or more processors execute the following steps:
  • S1 configure ORACLE ODI or ESSBASE parameter information for task scheduling, and store the parameter information in the scheduling platform database;
  • S3 Capture task information serving ORACLE ODI or ESSBASE scheduling conditions and the parameter information to splice into executable ODI ODI or ESSBASE scheduling tasks, and use ORACLE ODI or SSH in ESSBASE server to perform ORACLE ODI or ESSBASE scheduling tasks, Perform cross-platform task scheduling.
  • Parameter information and store the parameter information in the scheduling platform database; set up a database table in the scheduling platform database, use the scheduling platform server to read SSH account information, help SSH log in to the scheduling platform server, and install python on the scheduling platform Program, use it to write ORACLE ODI or ESSBASE execution modules, and then deploy ORACLE ODI or ESSBASE execution templates, and then use it to convert SSH in the scheduling platform server to SSH in ORACLE ODI or ESSBASE server to execute ORACLE ODI or ESSBASE server Task scheduling; the scheduling platform server continuously polls the scheduling platform configuration library through ORACLE ODI or ESSBASE execution modules, grabs task information that serves ORACLE ODI or ESSBASE scheduling conditions, and obtains ORACLE ODI or ESSBASE scheduling conditions from the scheduling platform database of Parameter information.
  • the Oracle ODI or ESSBASE execution module will stitch the task information and parameter information into executable Oracle ODI or ESSBASE scheduling tasks.
  • Various types of tasks can form a complete dependency flow and data processing flow, which greatly saves the development manpower on scheduling and cross-platform tool dependency, which greatly facilitates the operation and maintenance personnel's batch operation and task monitoring of the entire data flow.
  • FIG. 1 is a flowchart of a cross-platform task scheduling method according to an embodiment of the present application
  • FIG. 3 is a flowchart of a deployment execution module according to an embodiment of the present application.
  • FIG. 5 is a schematic diagram of a cross-platform task scheduling system according to an embodiment of the present application.
  • FIG. 6 is a schematic diagram of configuration parameter information in an embodiment of the present application.
  • FIG. 7 is a schematic diagram of a deployment execution module in an embodiment of the present application.
  • FIG. 8 is a schematic diagram of performing a scheduling task in an embodiment of the present application.
  • this application provides a cross-platform task scheduling method, including:
  • Step S1 Configure the parameter information of Oracle ODI or ESSBASE for task scheduling, and store the parameter information in the database of the scheduling platform;
  • Step S2 Deploy the Oracle ODI or ESSBASE execution template and use the Oracle ODI or ESSBASE execution template to transfer the information in the scheduling platform server.
  • SSH is converted into Oracle or ODI or ESSBASE server to perform task scheduling in ORACLE ODI or ESSBASE server;
  • Step S3 Capture task information and parameter information serving ORACLE ODI or ESSBASE scheduling conditions and stitch them into executable ODI ODI Or ESSBASE scheduling tasks, and use Oracle ODI or SSH in the ESSBASE server to perform ORACLE ODI or ESSBASE scheduling tasks to perform cross-platform task scheduling.
  • ZooKeeper is an open and open source distributed application coordination service. It is an open source implementation of Google's Chubby and an important component of Hadoop and Hbase. ZooKeeper is a software that provides consistent services for distributed applications. The functions it can provide include configuration maintenance, domain name services, distributed synchronization, and group services. It can implement key services that are complex and error-prone, and will be easy to use. The interface and efficient and stable system are provided to users.
  • an Oracle database may be used as the scheduling platform database.
  • Oracle database is currently the world's leading relational database relational system. Its system is portable, easy to use, and powerful. It is suitable for various large, medium, small, and microcomputer environments. Storing the completed ODI or ODI or ESSBASE parameter information in the Oracle database can ensure the stability of ORACLE ODI or ESSBASE parameter information, and can adapt to the storage of parameter information of different reserves. When using the ORACLE ODI or ESSBASE execution module for grabbing, it can quickly locate the required ODILE or ESSBASE parameter information.
  • the scheduling platform server in this embodiment may select a Linux server.
  • the Linux server is a network server using the Linux system for business processing applications, such as network and system management, database management, and Web services. It is a server with high performance and open source.
  • the Linux server has excellent system stability and security. Because it uses a multi-user operating system, it has good flexibility and scalability. It can accommodate resources well regardless of the processor or machine architecture.
  • the software on the Linux server is free, so the Linux server can save costs in application development. Most user services can be developed more freely with Linux systems.
  • the ORACLE ODI or ESSBASE task scheduling method enables various types of tasks in the entire project to form a complete dependency flow and data processing flow, which greatly saves the development manpower in scheduling and cross-platform tool dependency, which greatly facilitates operation. Maintenance personnel monitor the batch operations and tasks of the entire data flow.
  • FIG. 2 is a flowchart of configuring parameter information according to an embodiment of the present application.
  • step S1 parameter information of ODILE or ESSBASE for task scheduling is configured through a parameter template table and a parameter routing table.
  • This embodiment Step S1 may include S101-S103:
  • Step S101 Set the Oracle database on the scheduling platform, and set the parameter template table and parameter routing table of ODILE or ESSBASE in the parameter routing table.
  • the parameter routing table is based on the historical record stored in the Oracle database, and one parameter corresponds to one record.
  • the generated form as shown in Table 1 below, when generating the parameter template table, according to the historical records of parameters such as task name, date, and time type stored in the Oracle database, a parameter template table is generated by using one parameter corresponding to one record;
  • the parameter routing table includes how many parameter items each parameter has and a path for obtaining information under each parameter item, and the parameter routing table is shown in Table 2 below;
  • Step S102 Select the number of parameters and parameter names required by the Oracle ODI or ESSBASE task when scheduling, and configure according to the parameter routing table to obtain the parameter item corresponding to the parameter name; for example, the parameter name is "date ", Then in the parameter template table shown in Table 1 above," date "is positioned as the parameter item” inc_time ";
  • Step S103 Configure the parameter information under the parameter item according to the parameter routing table; for example, the parameter item is "inc_time”, and according to the parameter routing table shown in Table 2 above, it can be known according to "inc_time” "Inc_time” contains two item categories, "inc_start” and "inc_end”.
  • ORACLE ODI or ESSBASE parameter information provides preparation conditions for splicing into executable ODI OESS or ESSBASE scheduling tasks.
  • FIG. 3 is a flowchart of deploying an execution module according to an embodiment of the present application.
  • step S2 read the SSH account information, log in to SSH to the scheduling platform server, and use the python program on the scheduling platform to use It compiles Oracle ODI or ESSBASE execution modules, deploys ORACLE ODI or ESSBASE execution modules, and then uses the ORACLE ODI or ESSBASE execution modules to convert SSH in the scheduling platform into ORACLE ODI or ESSBASE servers.
  • step S2 may include S201-S203;
  • Step S201 setting a database table in the database of the scheduling platform, where the database table stores SSH account information, and the scheduling platform server reads the SSH account information from the database table to help SSH login to the scheduling platform server;
  • the SSH account information includes ORACLE ODI or ESSBASE server IP information, user information, and password information.
  • the database table is shown in Table 3 below:
  • the dispatch platform server reads according to the information shown in Table 3 above, reads the corresponding dispatch platform server name according to "Server_name”, reads the IP information of the dispatch platform server, account based on "Server_ip", “Server_user” and “Server_pwd”. Information and password information.
  • Step S202 Install a python program on the scheduling platform, and use the python program to write an Oracle ODI or ESSBASE execution module. After SSH logging in to the scheduling platform server, upload the ORACLE ODI or ESSBASE execution module program to the scheduling platform server using SSH Secure Shell. To complete the deployment of the Oracle ODI or ESSBASE execution module;
  • the python program in this embodiment is free software.
  • the source code and interpreter CPython follow the CPL protocol, and its syntax is concise and clear.
  • Python has a rich and powerful library that can easily link various modules (especially C / C ++) made in other languages. Install a Python program on the scheduling platform. You can use this program to quickly and easily write ORACLE ODI or ESSBASE execution modules.
  • Step S203 Use ORACLE ODI or ESSBASE execution module to convert SSH logged in to the scheduling platform server into ORACLE ODI or ESSBASE server.
  • the Oracle ODI or ESSBASE execution module inherits the base class of the scheduling platform to implement functions such as Oracle ODI or ESSBASE task execution, abnormal return, log recording, error log extraction, and number of recorded logs.
  • it can implement scheduling
  • the SSH in the platform server is converted into OSSH in Oracle ODI or ESSBASE server to achieve the connection between ORACLE ODI and ESSBASE scheduling tasks.
  • the SSH in the scheduling platform server is converted into the SSH in ORACLE ODI or ESSBASE server, and an execution component is provided for the next step of ORACLE ODI or ESSBASE task scheduling.
  • FIG. 4 is a flowchart of executing a scheduling task according to an embodiment of the present application.
  • the executable ODI or ESSBASE scheduling task is spliced and executed by using ORACLE or SSH in the ESSBASE server.
  • step S3 includes S301-S303;
  • Step S301 Fill in a deployment document of a scheduled ORACLE or ESSBASE task schedule on a scheduling platform.
  • Step S302 Import the deployment document into a web interface through a scheduling platform, and store information in the imported deployment document into a scheduling platform configuration library.
  • the deployment document in this embodiment is filled with an EXCEL-type deployment document, and records information such as the server name, program path, scheduling time, and scheduling frequency corresponding to the Oracle ODI or ESSBASE task. After filling in the deployment document, you can import it to the web interface and import it as a web page.
  • Step S303 The scheduling platform server continuously polls the scheduling platform configuration library through the Oracle ODI or ESSBASE execution module, grabs task information serving the scheduling conditions of ORACLE ODI or ESSBASE, and obtains from the database of the scheduling platform that meets the ODI or ESSBASE scheduling conditions.
  • the Oracle ODI or ESSBASE execution module will stitch the task information and parameter information into executable Oracle ODI or ESSBASE scheduling tasks, and use ORACLE ODI or SSH in the ESSBASE server to perform Oracle ODI or ESSBASE scheduling tasks.
  • ORACLE ODI or SSH in the ESSBASE server to execute ORACLE ODI or ESSBASE scheduling tasks to achieve cross-platform task scheduling of ORACLE ODI and ESSBASE tasks.
  • the embodiment of the present application also provides a cross-platform task scheduling system, as shown in FIG. 5, including: a configuration unit, configured to configure ORACLE ODI or ESSBASE parameter information for task scheduling, and parameter information Stored in the scheduling platform database; the deployment unit is set to deploy ORACLE ODI or ESSBASE execution templates and use it to convert SSH in the scheduling platform server to SSH in ORACLE ODI or ESSBASE server to perform tasks in ORACLE ODI or ESSBASE server Scheduling; execution unit, which is set to capture task information and parameter information that serve the scheduling conditions of Oracle ODI or ESSBASE and stitch them into executable Oracle ODI or ESSBASE scheduling tasks, and execute ORACLE ODI or ESSBASE by using ORACLE or SSH in the ESSBASE server Schedule tasks and perform cross-platform task scheduling.
  • a configuration unit configured to configure ORACLE ODI or ESSBASE parameter information for task scheduling, and parameter information Stored in the scheduling platform database
  • the deployment unit
  • FIG. 6 is a schematic diagram of configuration parameter information according to an embodiment of the present application.
  • the configuration unit includes a setting module configured to set an Oracle database on a scheduling platform and set a parameter template table of ORACLE ODI or ESSBASE therein. And parameter routing table.
  • the parameter routing table is a table generated by using a parameter corresponding to a record according to the historical records stored in the Oracle database.
  • the parameter routing table contains how many parameter items each parameter has and how many The path for obtaining information under each parameter; the parameter acquisition module is set to the number of parameters and parameter names required by the selected ODILE or ESSBASE task for scheduling, and is configured according to the parameter routing table to obtain the parameters corresponding to the parameter name Item; a configuration parameter information module configured to configure parameter information under the parameter item according to a parameter routing table.
  • FIG. 7 is a schematic diagram of a deployment execution module according to an embodiment of the present application.
  • the execution module includes a login module configured to set a database table in a scheduling platform database.
  • the database table stores SSH account information. Read the SSH account information in the database table to help SSH login to the scheduling platform server; deploy the execution module, set to install a python program on the scheduling platform, and use the python program to write ORACLE ODI or ESSBASE execution modules, and SSH to log in to the scheduling platform server Then upload the ORACLE ODI or ESSBASE execution module program to the scheduling platform server using SSH Secure Shell to complete the deployment of the ODILE or ESSBASE execution module; the conversion module is set to use ORACLE ODI or ESSBASE execution module to log in to the dispatch platform server SSH into ODI or ODI or ESSBASE server.
  • FIG. 8 is a schematic diagram of executing a scheduling task according to an embodiment of the present application. As shown in FIG. 8, it includes: a filling module configured to fill in a deployment file of a predetermined format type ORACLE ODI or ESSBASE task scheduling on a scheduling platform; import and save Module, set to import the deployment document to the web interface through the dispatch platform, and store the information in the imported deployment document to the dispatch platform configuration library; execute the dispatch task module, set to the dispatch platform server to execute the module via ORACLE ODI or ESSBASE Constantly poll the scheduling platform configuration library, grab the task information that serves the ODI or ESSBASE scheduling conditions, and obtain parameter information that meets the ODILE or ESSBASE scheduling conditions from the scheduling platform database.
  • a filling module configured to fill in a deployment file of a predetermined format type ORACLE ODI or ESSBASE task scheduling on a scheduling platform
  • import and save Module set to import the deployment document to the web interface through the dispatch platform, and store the information in the
  • the ORACLE ODI or ESSBASE execution module will The task information and parameter information are spliced into executable Oracle ODI or ESSBASE scheduling tasks, and Oracle ODI or SSH in the ESSBASE server is used to perform ORACLE ODI or ESSBASE scheduling tasks.
  • the scheduling platform adopts a distributed application coordination service ZooKeeper, a scheduling platform database is preset on ZooKeeper, and parameter information of ORACLE ODI or ESSBASE is stored.
  • the computer device includes a memory, a processor, and computer-readable instructions stored on the memory and executable on the processor.
  • the processor implements the computer-readable instructions to implement the foregoing. Steps in the cross-platform task scheduling method in each embodiment.
  • the present application also provides a storage medium storing computer-readable instructions.
  • the computer-readable instructions are executed by one or more processors, the one or more processors execute the steps in the foregoing embodiments. Steps in a platform task scheduling method.
  • the computer program can be stored in a computer-readable storage medium.
  • the storage medium may be a non-volatile storage medium such as a magnetic disk, an optical disc, a read-only memory (ROM), or a random access memory (Random Access Memory, RAM).

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Abstract

La présente invention concerne un procédé et un système de planification de tâches inter-plateformes, un dispositif informatique et un support d'informations. Le procédé consiste : à configurer des informations de paramètre d'une planification de tâche et à mémoriser ces dernières dans une base de données de plateforme de planification ; à déployer un modèle d'exécution et à utiliser ce dernier pour convertir un SSH dans un serveur de plateforme de planification en SSH dans un serveur ORACLE ODI ou ESSBASE afin d'exécuter une planification de tâche ; et à saisir des informations de tâche servant de condition de planification et des informations de paramètre, à les joindre à une tâche de planification exécutable, et à utiliser le SSH dans le serveur ORACLE ODI ou ESSBASE pour exécuter la tâche de planification afin d'effectuer une planification de tâche inter-plateformes. Selon le procédé, un flux dépendant complet et un flux de traitement de données peuvent être formés pour différents types de tâches dans l'ensemble du projet, ce qui permet d'économiser de manière significative la main d'œuvre de développement sur laquelle des outils de planification et de plateforme croisée reposent, et de faciliter pour le personnel d'exploitation et de maintenance la réalisation d'opérations par lots et d'une surveillance de tâche sur l'ensemble du flux de données.
PCT/CN2018/104702 2018-05-21 2018-09-08 Procédé et système de planification de tâches inter-plateformes, dispositif informatique et support d'informations WO2019223178A1 (fr)

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