CN106293897A - Assembly automatic dispatching system - Google Patents

Assembly automatic dispatching system Download PDF

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Publication number
CN106293897A
CN106293897A CN201510249656.1A CN201510249656A CN106293897A CN 106293897 A CN106293897 A CN 106293897A CN 201510249656 A CN201510249656 A CN 201510249656A CN 106293897 A CN106293897 A CN 106293897A
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assembly
flow process
offset correction
module
standard value
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CN201510249656.1A
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CN106293897B (en
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俞松
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Hitachi Ltd
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Hitachi Ltd
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Abstract

A kind of assembly automatic dispatching system, comprises: editor module, is configured to editing component flow process;Standard value arranges module, is configured to arrange the standard value of the execution result of the operation of assembly flow process;Perform module, be configured to executive module flow process;Perform results contrast module, be configured to execution result and the standard value of comparing component flow operations, thus judge to perform between result and standard value with or without skew;Offset correction module, it is configured to generate for the offset correction flow process revising skew, wherein, when performing results contrast module and judging to perform to offset between result and standard value, offset correction module generates offset correction flow process, and perform offset correction flow process, so that perform between execution result and the standard value that results contrast module is the most obtained further without skew;When performing results contrast module and judging to perform nothing skew between result and standard value, the assembly flow process of assembly automatic dispatching terminates.

Description

Assembly automatic dispatching system
Technical field
The present invention relates generally to operation (being equivalent to assembly) automated management field, configurable execution result in operation automation Standard and the method revising standard deviation.
Background technology
Currently, along with the IT system of deepening continuously of information technology, enterprise and mechanism is the most complicated, on the one hand, IT system Operation, the difficulty of maintenance and management continue to increase, become a kind of burden of enterprise.On the other hand, business event is to IT The dependency of system is increasingly stronger, and IT has become as the core of a lot of operation flow, even some business and relies operation Basis.The Consolidation and development of business or even the expansion of new business are often had great expectations of IT system by enterprise.In this context, Operation automation management instrument arises at the historic moment, and its main target is exactly the management of IT system to be closely linked to business objective, IT O&M can not only be allowed to become stability and high efficiency, more make manually to be liberated.
For concrete operation process aspect, operation automation management instrument made the operation of a lot of operation system of company by Realize automatization, intelligentized operation according to the flow process that predefined is good, and these operations can be allowed to be managed collectively, from And substantially increase work efficiency.But the situation that in some cases, especially assembly flow performing result and expection are not inconsistent Under, system manager can revise this skew more easily in the urgent need to there being a kind of method.
Now there is a following patent in this field:
Patent-1: Chinese patent 201410267171.0, " the operation automation dispatching patcher of a kind of bank "
Patent-1: this known example discloses the operation automation dispatching patcher of a kind of bank, system is divided into displaying management level, system One dispatch layer and operation process three levels and realize the automatic dispatching work of the operation to overall bank.Automatic dispatching system By the main frame of two platform independent as the maincenter of job scheduling, one is the management of main territory, and one is the management backup of main territory, and both are parallel Run, and can backup each other.By on pipe server, make TWS slitless connection IBM Tivoli Netcool network monitoring System, and this is optional.The fault-tolerant agency of TWS automatically dispatches the various operations being issued to open platform from the management of main territory, By unified lot size scheduling management instrument, can cross-platform scheduling batch processing job.And pass through reporting system, it is achieved to work The various job schedulings management of industry automatic dispatching system.
Known technology provides a kind of cross-platform job scheduling system, has involved multiple object, the core of known example Being only scheduling, it does not relate to any point of operation itself.And the present invention is about assembly flow process (being equivalent to work network) Itself: the standard value of output attribute is arranged, and after assembly flow performing is complete, result meets expects then to be highlighted (occur partially Move), and the method providing the component drift correction flow process revising skew.The invention provides storage assembly for storing flow process simultaneously And the knowledge base of assembly, and how retrieval component and the method for assembly flow process from these knowledge bases.
Summary of the invention
The present invention provides a kind of assembly automatic dispatching system, it is characterised in that comprise: editor module, is configured to compile Collect assembly flow process;Standard value arranges module, is configured to arrange the standard value of the execution result of the operation of described assembly flow process; Perform module, be configured to perform described assembly flow process;Perform results contrast module, be configured to assembly stream described in comparison The execution result of the operation of journey and described standard value, thus judge to perform between result and described standard value with or without skew;Partially Move correcting module, be configured to the offset correction flow process generated for revising skew, wherein, when described execution results contrast When module judges to perform to offset between result and described standard value, described offset correction module generates offset correction flow process, And perform described offset correction flow process, so that perform results contrast module execution result the most obtained further and institute State between standard value without skew;When described execution results contrast module judges to perform between result and described standard value without skew Time, the described assembly flow process of described assembly automatic dispatching terminates.
In this assembly automatic dispatching system, when described execution results contrast module judges to perform result and described standard value Between when offsetting, then be highlighted between the execution result of gained and described standard value the assembly flow process offset.
The present invention is that in automated job environment, operating process can arrange standard value, when the execution result of operating process occurs partially During condition of shifting one's love, those assembly flow processs offset with standard value the most highlighted, system automatically generates or points out user newly-built partially Move and revise flow process, after performing these offset correction flow processs, be finally reached the purpose that execution result is carried out standard deviation correction.
In this assembly automatic dispatching system, assembly flow process includes the logical relation between assembly, described assembly and assembly Flow definition file, wherein, the number of described assembly is more than zero, and the number of described logical relation is more than zero, Further, described editor module is by selecting assembly and logical relation to carry out editing component flow process.
This assembly automatic dispatching system comprises further: base module, is configured to comprise Component Gallery and assembly flow process Storehouse, described Component Gallery comprises more than one assembly, and described assembly flow process storehouse comprises more than one assembly flow process, wherein, when When described execution results contrast module judges to perform to offset between result and described standard value, it is judged that described base module In whether there is the assembly flow process being used as described offset correction flow process, if described base module exists be used as described The assembly flow process of offset correction flow process, then select described in be used as the assembly flow process of described offset correction flow process as described partially Move and revise flow process, and perform described offset correction flow process;It is used as described skew repaiies if described base module does not exist The assembly flow process of positive flow process, then judge whether there is the assembly needed for described offset correction flow process in described base module, If described base module exists the assembly needed for described offset correction flow process, then generate described offset correction flow process, so Rear execution described offset correction flow process, if described base module does not exist the assembly needed for described offset correction flow process, Then it is manually entered and generates described offset correction flow process, then perform described offset correction flow process;When described execution result ratio When relatively module judges to perform nothing skew between result and described standard value, the described assembly flow process of described assembly automatic dispatching Terminate.
The invention provides the knowledge base of storage assembly for storing flow process and assembly, and how retrieval component and group from base module The method of part flow process.
This assembly automatic dispatching system comprises further: performs result and checks module, is configured to check and display module The execution state of flow process and execution result.
Checking module by performing result, system manager can clear, intuitively arrive holding of desired assembly flow process Row state and execution result, thus the implementation status of assembly flow process is had comprehensively understanding.
In this assembly automatic dispatching system, described standard value is threshold value class standard value.
In this assembly automatic dispatching system, described standard value is non-threshold class standard value.
In the present invention, standard value can be arbitrary form, for example, it may be the threshold value class standard value of such as 80%, also It can be the non-threshold class standard value of such as Yes/No.
In this assembly automatic dispatching system, it is judged that whether described base module exists and is used as described offset correction The method of the assembly flow process of flow process comprises the steps of
Judge whether described base module exists assembly flow process,
If there is not assembly flow process in described base module, the most described method terminates and judged result is described Base module does not exist the assembly flow process being used as described offset correction flow process,
If described base module exists assembly flow process, then read the assembly flow process not being retrieved, an input Assembly flow process search key, and the assembly process name of the assembly flow process not being retrieved described in determining whether whether with institute State assembly flow process search key consistent,
When described assembly process name is consistent with described assembly flow process search key, the most described method terminates, And judged result be the described assembly flow process not being retrieved be the assembly flow process being used as described offset correction flow process,
When described assembly process name and described assembly flow process search key are inconsistent, then judge described in not by Whether the assembly flow process retrieved is last the assembly flow process in described base module,
If the described assembly flow process not being retrieved is last assembly in described base module Flow process, the most described method terminates and judged result is not exist in described base module to be used as described offset correction The assembly flow process of flow process,
If the described assembly flow process not being retrieved is not last group in described base module Part flow process, then return to the described step judging whether to there is assembly flow process in described base module of described method.
Utilize said method, the assembly flow process as offset correction flow process can be retrieved from base module.
In this assembly automatic dispatching system, it is judged that whether described base module exists described offset correction flow process institute The method of the assembly needed comprises the steps of
Judge whether described base module exists assembly,
If there is not assembly in described base module, the most described method terminates and judged result is described knowledge Library module does not exist the assembly needed for described offset correction flow process,
If described base module exists assembly, then read an assembly not being retrieved, input module retrieval Keyword, and the assembly name of the assembly not being retrieved described in determining whether is the most consistent with described assembly search key,
When described assembly name is consistent with described assembly search key, the most described method terminates and judges Result is the assembly that the described assembly not being retrieved is selected as needed for described offset correction flow process,
When described assembly name and described assembly search key are inconsistent, then it was not retrieved described in judgement Whether assembly is last assembly in described base module,
If the described assembly not being retrieved is last assembly in described base module, then institute The method of stating terminates and judged result is to there is not the assembly needed for described offset correction flow process in described base module,
If the described assembly not being retrieved is not last assembly in described base module, then Return to the described step judging whether to there is assembly in described base module of described method.
Utilize said method, the assembly needed for offset correction flow process can be retrieved from base module.
In this assembly automatic dispatching system, the method generating described offset correction flow process comprises the steps of
Whether determination component is last assembly needed for described offset correction flow process,
If assembly is not last assembly needed for described offset correction flow process, then judge whether that needs are manually entered With newly-built assembly,
When need not be manually entered with newly-built assembly, from described base module, selecting assembly, then return Whether the described determination component returning to described method is the step of last assembly needed for described offset correction flow process,
When needs are manually entered with newly-built assembly, it is manually entered with newly-built assembly, then returnes to described side Whether the described determination component of method is the step of last assembly needed for described offset correction flow process,
If assembly is last assembly needed for described offset correction flow process, then perform assembly flow definition file is determined Justice, the most described method terminates.
Utilize the offset correction flow process generated by said method, in the case of assembly flow performing result and expection are not inconsistent, System manager can revise this skew easily, until assembly flow performing result reaches expected results.
Accompanying drawing explanation
The specific embodiment of the present invention is described in detail below in conjunction with accompanying drawing.
Fig. 1 shows the integrated stand composition of assembly automatic dispatching system according to an embodiment of the invention;
Fig. 2 shows hardware composition diagram according to an embodiment of the invention;
Fig. 3 shows to arrange according to an embodiment of the invention and performs result standard value and revise the flow chart of skew;
Fig. 4 shows and arranges the flow chart performing result standard value according to an embodiment of the invention;
Fig. 5 shows and arranges the flow chart performing result standard value according to an embodiment of the invention;
Whether Fig. 6 shows to exist in judgemental knowledge library module according to an embodiment of the invention and is used as offset correction flow process The flow chart of assembly flow process;
Fig. 7 shows whether there is the group needed for offset correction flow process in judgemental knowledge library module according to an embodiment of the invention The flow chart of part;
Fig. 8 shows the flow chart generating offset correction flow process according to an embodiment of the invention;
Fig. 9 shows the schematic diagram of base module according to an embodiment of the invention;
Figure 10 shows that the detection CPU according to the first embodiment of the present invention uses component flow diagram;
Figure 11 shows the useless program assembly flow chart of the closedown according to the first embodiment of the present invention;
Figure 12 shows the program list flow chart according to the first embodiment of the present invention;
Figure 13 shows newly-built virtual machine component flow diagram according to the second embodiment of the present invention;
Figure 14 shows expansion virtual machine memory space component drawings in base module according to the second embodiment of the present invention;
Figure 15 shows DB Backup component flow diagram according to the third embodiment of the invention.
Detailed description of the invention
Referring to the drawings the detailed description of the invention of the present invention is illustrated.
In the present invention, assembly is carried out IT and uses the ultimate unit of operation, is used operating program file, group by carrying out IT Part definition file is constituted, and this carries out IT and uses operating program file (that is, code line, script etc.) to be optional;Group Part flow process is that assembly is according to certain order composition, including assembly or assembly flow definition file, this assembly flow definition file Including the title of assembly flow process, property value etc..
The integrated stand composition of assembly automatic dispatching system according to an embodiment of the invention is shown with reference to Fig. 1, Fig. 1.? In Fig. 1, comprise: editor module 101, for performing definition and the operation of operating assembly flow process, be configured to editing component Flow process, assembly flow process includes the logical relation between assembly, assembly and assembly flow definition file, wherein, the number of assembly Mesh is more than zero, and the number of logical relation is more than zero, and, editor module is by selecting assembly and logical relation Carrying out editing component flow process, in the present invention, logical relation is such as flow arrow;Standard value arranges module 102, is configured Become to arrange the standard value of operating assembly flow performing result;Perform module 103, be configured to perform the execution of assembly flow process; Perform result check module 104, for check and the execution state of display module flow process and perform result;Perform result ratio Relatively module 105, is configured to execution result and the standard value of the operation of comparing component flow process, thus judge to perform result and With or without skew between standard value, once offset, be highlighted the operating assembly flow process of skew, wherein, highlighted refer to by Assembly flow process different colours shows;Offset correction module 106, is configured to generate for the offset correction stream revising skew Journey, offset correction module 106 is used to revise the assembly flow process of standard deviation, it is generally the case that offset correction assembly flow process Come from the assembly flow process in knowledge base or assembly;Base module 107, is configured to comprise Component Gallery and assembly flow process storehouse, Component Gallery comprises more than one assembly, and assembly flow process storehouse comprises more than one assembly flow process, i.e. base module 107 is The warehouse being made up of assembly and assembly flow process.Generally, the assembly in knowledge base and assembly flow process come from operating assembly In flow process or skew rest and reorganization assembly flow process.
Wherein, when performing results contrast module and judging to perform to offset between result and standard value, offset correction module is raw Become offset correction flow process, and perform offset correction flow process, so that performing obtained by results contrast module compares further Perform between result and standard value without skew;Judge to perform between result and standard value without skew when performing results contrast module Time, the assembly flow process of assembly automatic dispatching terminates.
With reference now to Fig. 2, Fig. 2, show hardware composition diagram according to an embodiment of the invention.In fig. 2, comprise as follows Parts:
200 computers, full name: electronic computer, it is commonly called as computer, is that one can be run according to program, automatically, at a high speed Process the modernization intelligent electronic device of mass data.
201 mainboard modules, are platforms of all parts work in computer, and it closely connects all parts of computer Being connected together, all parts is carried out data transmission by mainboard.It is to say, " transport hub " important in computer is all On mainboard, the stability influence of its work the stability of complete machine work.
202CPU module, i.e. central processing unit, be arithmetic core and the control core of a computer.Its function is mainly Data in interpretive machine instruction and process computer software.CPU is delayed by arithmetical unit, controller, depositor, high speed Deposit and realize the bus of data, control and the state of contact between them and constitute.As the core of whole system, CPU is also The performance element that whole system is the highest, therefore CPU has become the core component determining computing power.
203 memory modules, are again internal storage or random access memory (RAM), in being divided into DDR internal memory and SDRAM Depositing, internal memory belongs to electronic type storage device, and it is made up of circuit board and chip, and feature is that volume is little, and speed is fast, has the electricity can Deposit, empty without electricity, i.e. computer can store data when open state in internal memory, will automatically empty all numbers therein after shutdown According to.Set in the present invention is i.e. stored in this.
204 hard disc modules, hard disk belongs to external memory storage, and mechanical hard disk is made up of metal magnetic sheet, and magnetic sheet has memory function, So the data stored up on magnetic sheet, no matter in start, or shutdown, all without loss.Work network/operation in the present invention Definition, performs, and status information is i.e. stored in this.
205 interface module, are the network components being operated in data link layer, are to connect computer and transmission medium in LAN Interface, the physical connection between local network transport medium can not only be realized and the signal of telecommunication mates, further relate to the transmission of frame with Reception, encapsulation and opening, medium access control, coding and decoding and the function etc. of data buffer storage of data of frame.Network interface card Effect act as the bridge between computer and netting twine, it is used to set up LAN and be connected to the visual plant of internet One of.
206 display apparatus modules, its effect is that result complete for computer disposal is shown.It is an outut device, is Computer must one of indispensable parts.
207 input equipment modules, for word, numeral etc. are passed to computer, location and computer on screen rapidly Manipulation.
Arrange according to an embodiment of the invention with reference to Fig. 3 explanation and perform result standard value and revise the flow process of skew.Fig. 3 shows Show to arrange according to an embodiment of the invention and performed result standard value and revise the flow chart of skew.Flow process in Fig. 3 is as follows:
301 judge current operation assembly process standard collection arranges to identify whether to be 1, i.e. judge whether to need to arrange standard value, If not=> terminates, if=> performs 302 steps.
302 standard values that operating assembly flow process is set.Such as, threshold value class standard value in an embodiment of the present invention is 80%.But, standard value is not limited to be analogous to the threshold value class of the 80% of the present embodiment, and can be other types, All in this way or no non-threshold class.Further, for threshold value class, this threshold value can select, for example, First it is to select>,<,>=,≤or an interval of combination of the above, next fills out concrete numerical value.
303 perform operating assembly flow process.
The output attribute value of 304 determination component flow processs is the most consistent with standard set value, if not (such as, in the present embodiment 79%)=> terminates, if (such as, 81% in the present embodiment)=> performs 305 steps.
305 highlighted current operation assembly flow processs.
Whether there is required component flow process in 306 judgemental knowledge storehouses as offset correction flow process, if not=> performs 308 steps, If=> performs 307 steps.
307 select this assembly flow process as offset correction flow process.
Whether there is required component in 308 judgemental knowledge storehouses can be used by offset correction flow process, and if not=> performs 310 steps Suddenly, if=> performs 309 steps.
309 generate offset correction flow process.
310 manually generate offset correction flow process.
311 perform current offset correction flow process.
With reference now to Fig. 4, Fig. 4, show and the flow chart performing result standard value is set according to an embodiment of the invention.And And, Fig. 4 is further illustrating the step 302 in Fig. 3.Flow process in Fig. 4 is as follows:
401 read the output attribute information being not provided with standard value.
402 judge whether to need established standards value, if not=> to perform 406 steps, if=> performs 403 steps.
403 determine whether threshold values class standard value, and if not=> performs 405 steps, if=> performs 404 steps.
404 set threshold values class standard value.
405 set non-threshold values class standard value.
406 determine whether last outputting standard value.
With reference now to Fig. 5, Fig. 5, show and the flow chart performing result standard value is set according to an embodiment of the invention.And And, Fig. 5 is also to the further illustrating of non-threshold class situation in the step 302 in Fig. 3.Flow process in Fig. 5 is as follows:
501 set non-threshold values class standard value performs 502 steps as "Yes", if not=>, if=> performs 503 steps.
502 established standards values are "No".
503 established standards values are "Yes".
With reference now to Fig. 6, Fig. 6, show according to an embodiment of the invention whether judgemental knowledge library module to exist and be used as The flow chart of the assembly flow process of offset correction flow process.Fig. 6 is further illustrating the step 306 in Fig. 3.In Fig. 6 Flow process is as follows:
Whether with the presence of assembly flow process in 601 judgemental knowledge storehouses, if not=> terminates, if=> executed in parallel 602 and 603 Step.
602 read an assembly flow process not being retrieved.
603 are manually entered assembly flow process search key.
604 judge that this assembly process name is the most consistent with assembly flow process search key, if=> terminates, if not=> performs 605 steps.
605 judge whether this assembly flow process is last assembly flow process in knowledge base, and if not=> performs 601 steps, if Be=> terminates.
With reference now to Fig. 7, Fig. 7, show that whether there is skew in judgemental knowledge library module according to an embodiment of the invention repaiies The flow chart of the assembly needed for positive flow process.Fig. 7 is further illustrating the step 308 in Fig. 3.Flow process in Fig. 7 is such as Under:
Whether with the presence of assembly in 701 judgemental knowledge storehouses, if not=> terminates, if=> executed in parallel 702 and 703 step.
702 read an assembly not being retrieved.
703 are manually entered assembly search key.
704 judge that this assembly name is the most consistent with assembly search key.
705 select current component flow process.
706 judge whether this assembly flow process is last assembly flow process in knowledge base, and if not=> performs 701 steps, if Be=> terminates.
With reference now to Fig. 8, Fig. 8, show the flow chart generating offset correction flow process according to an embodiment of the invention.Fig. 8 It is further illustrating the step 309 in Fig. 3.Flow process in Fig. 7 is as follows:
801 judge whether it is last assembly of offset correction requirements of process, and if not=> performs 802 steps, if=> Perform 805 steps.
802 judge whether to be manually entered with newly-built assembly, and if not=> performs 803 steps, if=> performs 804 steps.
803 select assembly from knowledge base.
804 are manually entered with newly-built assembly.
805 definitions component flow definition files.
With reference now to Fig. 9, Fig. 9, show the schematic diagram of base module according to an embodiment of the invention.Such as institute in Fig. 9 Showing, the knowledge base (Repository) in Fig. 9 is the warehouse being made up of assembly and assembly flow process.Assembly is carried out IT and uses The ultimate unit of operation, is used operating program file by carrying out IT, and component definition file is constituted.Assembly flow process is by assembly According to certain order composition, including assembly or assembly flow definition file.
First embodiment
Assembly flow process ready-made in knowledge base can be as offset correction flow process.Main contents in the present embodiment are detection cpu Utilization rate, when the utilization rate of cpu is more than or equal to criteria threshold (such as, 80%), takes measures on customs clearance.Assume to know Know assembly flow process ready-made in storehouse as offset correction flow process.
With reference now to Figure 10, the first embodiment of the present invention is described.Figure 10 shows according to the first embodiment of the present invention Detection CPU uses component flow diagram.Detection cpu uses assembly flow process to be used assembly to constitute by a detection cpu.Wherein, Detection cpu uses assembly to be made up of component definition file and detection cpu utilization rate script.
With reference now to Figure 11, the first embodiment of the present invention is described.Figure 11 shows according to the first embodiment of the present invention Close useless program assembly flow chart.In knowledge base, there is the useless program assembly flow process of closedown, as shown in figure 11, close Useless program assembly flow process is closed useless program assembly by one and is constituted.Wherein, useless program assembly is closed by component definition.
File and the useless program assembly script of closedown are constituted.
Closing useless procedure script and close the program of required closedown according to program list, this list is as shown in figure 12.Figure 12 show the program list flow chart according to the first embodiment of the present invention.
Detection cpu assembly flow process (later referred to as A) information:
Regular set arranges mark: 1
The regular set of A arranges threshold values: 80%, and the details of setting are: more than or equal to 80%
The actual motion value of A: 82%
Assume: Component Gallery has ready-made assembly flow process as offset correction flow process
According to: configuration performs result standard and revises standard deviation main flow, and running is as follows:
Start to judge the regular set of A arranges to identify whether to be 1, actually detected the regular set of A is then set to for 1, setting Details are: the runtime value of CPU is more than or equal to 80%, performs A subsequently, it is judged that the output attribute of A whether with standard set value one Cause (judging that whether the standard value of A is more than 80%), when the actual motion value of A is 82%, the most highlighted A.In judgemental knowledge storehouse There is required assembly flow process as offset correction flow process, owing to Component Gallery having ready-made assembly flow process as offset correction stream Journey, then directly select offset correction flow process, next performs offset correction flow process, to reach the purpose of repairing standard skew.
According to reading attribute information, arranging the value handling process of regular set, running is as follows:
Read A standard value output attribute information, the standard set value of A is set, first judge A the need of arranging standard value, Then deciding whether the standard value for threshold values class, set the standard value of A, the standard value of A sets type as threshold values class, if Putting details is: the runtime value of CPU is more than or equal to 80%.
According to whether there is required component flow process in judgemental knowledge storehouse as offset correction flow process, running is as follows:
Whether with the presence of assembly flow process in knowledge base, practical situation is really with the presence of assembly flow process, reads one and is not retrieved The assembly flow process crossed, input: closing useless program assembly flow process, this assembly process name is the most consistent with search key, Until the assembly flow process in knowledge base has all been retrieved.
Second embodiment
Knowledge base there is no ready-made assembly flow process as revising flow process, but have required component as offset correction assembly flow process Assembly.Main contents in embodiment are newly-built virtual machine, take corresponding measure when not becoming merit.
Newly-built virtual machine assembly flow process, as shown in figure 13.Figure 13 shows newly-built void according to the second embodiment of the present invention Intend thermomechanical components flow chart.
Newly-built virtual machine assembly flow process is made up of a newly-built virtual machine assembly and an initialization of virtual machine OS assembly.Wherein, Newly-built virtual machine assembly is made up of component definition file and newly-built virtual machine script, and initialization of virtual machine OS assembly is fixed by assembly Justice file river initialization of virtual this composition of under-chassis.
In knowledge base, there is no ready-made assembly flow process as revising flow process, but have required component as offset correction assembly flow process Assembly, as shown in figure 14.Figure 14 shows expansion virtual machine in base module according to the second embodiment of the present invention Memory space component drawings.
Newly-built virtual machine assembly flow process (later referred to as B) information:
Regular set arranges mark: 1
The regular set of B arranges threshold values: no, and the details of setting are: newly-built virtual machine standard value: no
The practical operation situation of B: memory space inadequate causes newly-built virtual machine unsuccessful
Assume: knowledge base there is no ready-made assembly flow process as revising flow process, but have required component as offset correction assembly The assembly of flow process.
According to: configuration performs result standard and revises standard deviation main flow, and running is as follows:
Start to judge the regular set of B arranges to identify whether to be 1, actually detected the regular set of B is then set to for 1, setting Details are: newly-built virtual machine standard value: no, perform B subsequently, it is judged that the output attribute of B is the most consistent with standard set value, when The actual fortune situation of B is memory space inadequate when causing newly-built virtual machine unsuccessful, the most highlighted B.In judgemental knowledge storehouse The assembly flow process needed is as offset correction flow process, owing to Component Gallery there is no ready-made assembly flow process as offset correction flow process, Then needing to generate offset correction flow process, subsequent execution offset correction flow process, to reach the purpose of repairing standard skew.
According to reading attribute information, arranging the value handling process of regular set, running is as follows:
Read B standard value output attribute information, the standard set value of B is set, first judge B the need of arranging standard value, Then deciding whether the standard value for threshold values class, B is actual is non-threshold values class standard value, sets the non-threshold values class standard value of B, Arranging details is: set newly-built virtual machine standard value: "No".
According to whether there is required component flow process in judgemental knowledge storehouse as offset correction flow process, running is as follows:
Whether with the presence of assembly flow process in knowledge base, practical situation is not have assembly flow process, reads one and was not retrieved Assembly flow process, input: expand the newly-built virtual machine of memory space, such as, become 10G from 8G, whether this assembly process name It is the most consistent with search key, until the assembly flow process in knowledge base has all been retrieved.
Whether there is required component flow process in knowledge base as offset correction flow chart, running is as follows:
Whether first determine whether in knowledge base with the presence of assembly, practical intelligence storehouse exists required component, read one and be not retrieved The assembly crossed, virtual machine memory space assembly is expanded in input, it is judged that this assembly name is the most consistent with search key, and selecting should Assembly, by above flow process, till selecting all of assembly.
According to the flow chart of generation offset correction flow process, running is as follows:
First judge whether it is last assembly of offset correction requirements of process, if whether, then judge whether to need craft Newly-built assembly, if the most directly directly selected from knowledge base, if if directly manual the most newly-built, until all of group Part is newly-built to be completed, the definition file of last definitions component flow process.
3rd embodiment
Knowledge base there is no ready-made assembly flow process as revising flow process, there is no required component as offset correction assembly flow process yet Assembly.The main contents of the present embodiment are: DB Backup, take corresponding measure when not becoming merit, and wherein, this does not becomes Merit can be interrupted causing backup failure by such as network.
Figure 15 shows DB Backup component flow diagram according to the third embodiment of the invention.
Database component flow process is made up of a DB Backup assembly.Wherein, Test database backup assembly is by component definition File and DB Backup script are constituted.
Knowledge base there is no ready-made assembly flow process as revising flow process, there is no required component as offset correction assembly flow process yet Assembly.
DB Backup assembly flow process (later referred to as C) information:
Regular set arranges mark: 1
The regular set of C arranges details: complete DB Backup standard value: no
The practical operation situation of C is: network interrupts causing backup failure
Assume: knowledge base there is no ready-made assembly flow process as revising flow process, also there is no required component as offset correction group The assembly of part flow process
According to: configuration performs result standard and revises standard deviation main flow, and running is as follows:
Start to judge the regular set of C arranges to identify whether to be 1, actually detected the regular set of C is then set to for 1, setting Details are: complete DB Backup standard value: no, perform C subsequently, it is judged that the output attribute of C whether with standard set value one Cause, when the practical operation situation of C is: network interrupts causing backup failure, the most highlighted C.Judgemental knowledge storehouse have required Assembly flow process, as offset correction flow process, owing to not having ready-made assembly flow process in Component Gallery as offset correction flow process, does not has yet There is ready-made assembly as used by offset correction flow process, then manually generate offset correction flow process, next perform offset correction stream Journey, to reach the purpose of repairing standard skew.
It is above further illustrating the step 310 in Fig. 3, and belongs to known technology.
According to reading attribute information, arranging the value handling process of regular set, running is as follows:
Read C standard value output attribute information, the standard set value of C is set, first judge C the need of arranging standard value, Then deciding whether the standard value for threshold values class, set the standard value of C, the standard value of C sets type as non-threshold values class, Arranging details is: complete DB Backup standard value: "No".
According to arranging threshold values class standard value flow process, running is as follows:
According to whether there is required component flow process in judgemental knowledge storehouse as offset correction flow process, running is as follows:
Whether with the presence of assembly flow process in knowledge base, practical situation is to exist without required component flow process, reads one and is not retrieved The assembly flow process crossed, input: repair network and interrupt & DB Backup assembly flow process, whether this assembly process name closes with retrieval Key word is the most consistent, until the assembly flow process in knowledge base has all been retrieved.
Whether there is required component in knowledge base as offset correction flow chart, running is as follows:
Whether first determine whether in knowledge base with the presence of assembly, practical intelligence storehouse exists required component, read one and be not retrieved The assembly crossed, network interrupt module is repaired in input, it is judged that this assembly name is the most consistent with search key, selects this assembly, By above flow process, till selecting all of assembly.
The principle of above-described embodiment only illustrative present invention and effect thereof, not for limiting the present invention.Any it is familiar with this Above-described embodiment all can be modified under the spirit and the scope of the present invention or change by the personage of technology.Therefore, Art has usually intellectual such as completed under technological thought without departing from disclosed spirit All equivalence modify or change, must be contained by the claim of the present invention.

Claims (10)

1. an assembly automatic dispatching system, it is characterised in that comprise:
Editor module, is configured to editing component flow process;
Standard value arranges module, is configured to arrange the standard value of the execution result of the operation of described assembly flow process;
Perform module, be configured to perform described assembly flow process;
Perform results contrast module, be configured to the execution result of the operation of assembly flow process described in comparison and described standard value, Thus judge to perform between result and described standard value with or without skew;
Offset correction module, is configured to generate for revising the offset correction flow process of skew, wherein,
When described execution results contrast module judges to perform to offset between result and described standard value, described offset correction Module generates offset correction flow process, and performs described offset correction flow process so that perform results contrast module further than Without skew between execution result and described standard value obtained by relatively;
When described execution results contrast module judges to perform nothing skew between result and described standard value, described assembly is automatic The described assembly flow process changing scheduling terminates.
2. assembly automatic dispatching system as claimed in claim 1, it is characterised in that
Assembly flow process includes the logical relation between assembly, described assembly and assembly flow definition file, wherein, described group The number of part is more than zero, and the number of described logical relation is more than zero, and,
Described editor module carrys out editing component flow process by selecting assembly and logical relation.
3. assembly automatic dispatching system as claimed in claim 1 or 2, it is characterised in that comprise further:
Base module, is configured to comprise Component Gallery and assembly flow process storehouse, and described Component Gallery comprises more than one assembly, Described assembly flow process storehouse comprises more than one assembly flow process, wherein,
When described execution results contrast module judges to perform to offset between result and described standard value, it is judged that described knowledge Whether library module exists the assembly flow process being used as described offset correction flow process,
If described base module exists the assembly flow process being used as described offset correction flow process, then select described quilt As the assembly flow process of described offset correction flow process as described offset correction flow process, and perform described offset correction flow process;
If described base module does not exist the assembly flow process being used as described offset correction flow process, then judge described Whether base module exists the assembly needed for described offset correction flow process,
If described base module exists the assembly needed for described offset correction flow process, then generate described skew Revise flow process, then perform described offset correction flow process,
If described base module does not exist the assembly needed for described offset correction flow process, then it is manually entered also Generate described offset correction flow process, then perform described offset correction flow process;
When described execution results contrast module judges to perform nothing skew between result and described standard value, described assembly is automatic The described assembly flow process changing scheduling terminates.
4. assembly automatic dispatching system as claimed in claim 1, it is characterised in that comprise further:
Perform result and check module, be configured to check the execution state of also display module flow process and perform result.
5. assembly automatic dispatching system as claimed in claim 1, it is characterised in that
When described execution results contrast module judges to perform to offset between result and described standard value, then it is highlighted institute The assembly flow process offset between the execution result and the described standard value that obtain.
6. assembly automatic dispatching system as claimed in claim 1, it is characterised in that
Described standard value is threshold value class standard value.
7. assembly automatic dispatching system as claimed in claim 1, it is characterised in that
Described standard value is non-threshold class standard value.
8. assembly automatic dispatching system as claimed in claim 3, it is characterised in that judge in described base module The method of the assembly flow process whether existence is used as described offset correction flow process comprises the steps of
Judge whether described base module exists assembly flow process,
If there is not assembly flow process in described base module, the most described method terminates and judged result is described Base module does not exist the assembly flow process being used as described offset correction flow process,
If described base module exists assembly flow process, then read the assembly flow process not being retrieved, an input Assembly flow process search key, and the assembly process name of the assembly flow process not being retrieved described in determining whether whether with institute State assembly flow process search key consistent,
When described assembly process name is consistent with described assembly flow process search key, the most described method terminates, And judged result be the described assembly flow process not being retrieved be the assembly flow process being used as described offset correction flow process,
When described assembly process name and described assembly flow process search key are inconsistent, then judge described in not by Whether the assembly flow process retrieved is last the assembly flow process in described base module,
If the described assembly flow process not being retrieved is last assembly in described base module Flow process, the most described method terminates and judged result is not exist in described base module to be used as described offset correction The assembly flow process of flow process,
If the described assembly flow process not being retrieved is not last group in described base module Part flow process, then return to the described step judging whether to there is assembly flow process in described base module of described method.
9. assembly automatic dispatching system as claimed in claim 3, it is characterised in that judge in described base module The method of the assembly needed for whether there is described offset correction flow process comprises the steps of
Judge whether described base module exists assembly,
If there is not assembly in described base module, the most described method terminates and judged result is described knowledge Library module does not exist the assembly needed for described offset correction flow process,
If described base module exists assembly, then read an assembly not being retrieved, input module retrieval Keyword, and the assembly name of the assembly not being retrieved described in determining whether is the most consistent with described assembly search key,
When described assembly name is consistent with described assembly search key, the most described method terminates and judges Result is the assembly that the described assembly not being retrieved is selected as needed for described offset correction flow process,
When described assembly name and described assembly search key are inconsistent, then it was not retrieved described in judgement Whether assembly is last assembly in described base module,
If the described assembly not being retrieved is last assembly in described base module, then institute The method of stating terminates and judged result is to there is not the assembly needed for described offset correction flow process in described base module,
If the described assembly not being retrieved is not last assembly in described base module, then Return to the described step judging whether to there is assembly in described base module of described method.
10. assembly automatic dispatching system as claimed in claim 3, it is characterised in that generate described offset correction stream The method of journey comprises the steps of
Whether determination component is last assembly needed for described offset correction flow process,
If assembly is not last assembly needed for described offset correction flow process, then judge whether that needs are manually entered With newly-built assembly,
When need not be manually entered with newly-built assembly, from described base module, selecting assembly, then return Whether the described determination component returning to described method is the step of last assembly needed for described offset correction flow process,
When needs are manually entered with newly-built assembly, it is manually entered with newly-built assembly, then returnes to described side Whether the described determination component of method is the step of last assembly needed for described offset correction flow process,
If assembly is last assembly needed for described offset correction flow process, then perform assembly flow definition file Definition, the most described method terminates.
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