Pre-occupation investment resource supervision method, device and equipment and storage medium

By generating identification marks for pre-occupied resources and creating resource supervision sub-nodes, the problem of automatic identification and supervision of pre-occupied resources in existing technologies is solved, achieving efficient automated supervision and reducing the error rate.

CN121146898APending Publication Date: 2025-12-16CHINA CONSTRUCTION BANK +1
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Patent Information

Application Number
CN202511265669.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-05
Publication Date
2025-12-16

AI Technical Summary

Technical Problem

In existing technologies, resources paid in advance to obtain priority exchange rights for the subject matter cannot be automatically identified and monitored, resulting in complex, time-consuming, and error-prone manual monitoring operations, which affects the efficiency of monitoring.

Method used

By generating identification marks for pre-occupied resources and creating resource supervision sub-nodes, the system automatically identifies and records the flow information of pre-occupied resources, thereby achieving automated supervision of pre-occupied resources.

Benefits of technology

It improves the efficiency of pre-allocated resources supervision, reduces the error rate, and enables pre-allocated resources to obtain the same automated supervision capabilities in the pre-transaction stage as in the formal transaction stage.

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Abstract

The invention provides a pre-occupation input resource supervision method and device, equipment and a storage medium, and relates to the technical field of resource management. According to the specific technical scheme, the method comprises the following steps of: obtaining pre-occupation protocol information, wherein the pre-occupation protocol information is used for recording a pre-occupation object and a corresponding pre-occupation input resource; and generating a pre-occupation input resource identification identifier based on the pre-occupation protocol information. And according to the identifier, creating a pre-occupied input resource supervision sub-node in a resource supervision node for correlating and recording the identification identifier and circulation information of the pre-occupied input resource, the resource supervision node being used for recording ownership exchange resources of the pre-occupied object. And in response to the circulation operation of pre-occupying the input resources, the circulation information is updated in real time through the supervision child node. According to the invention, the pre-occupied input resource identification identifier can be generated to identify the pre-occupied input resource, and the circulation information of the pre-occupied input resource is recorded by creating the pre-occupied input resource supervision sub-node, so that the supervision efficiency of the pre-occupied input resource is improved.
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Description

TECHNICAL FIELD

[0001] Embodiments of the present application relate to the technical field of resource management, and in particular to a pre-occupancy input resource supervision method, device, equipment and storage medium. BACKGROUND

[0002] The exchange resource supervision refers to the supervision and management system implemented to ensure the security of resources in the process of transferring the ownership of the target object in the process of resource and target object exchange. The specific exchange resources include: resources paid in advance to obtain the priority exchange right of the target object and resources paid to obtain the ownership of the target object.

[0003] For the resources paid to obtain the ownership of the target object, the supervision system can identify the resources according to the target object exchange agreement and automatically supervise them.

[0004] And for the resources paid in advance to obtain the priority exchange right of the target object, because it belongs to the pre-occupation link of the target object exchange, it is deployed in the resources agreed by the target object exchange agreement. Therefore, the resources cannot be automatically identified and supervised. Therefore, it mainly relies on manual supervision. However, the manual supervision method is complex, time-consuming and has a high error rate, which affects the low efficiency of the supervision of the resources. SUMMARY

[0005] Embodiments of the present application provide a pre-occupancy input resource supervision method, device, equipment and storage medium, which automatically identifies the pre-occupancy input resources by pre-occupancy input resource identification marks, and records the flow information of the pre-occupancy input resources by creating resource supervision sub-nodes, so as to automatically identify and supervise the pre-occupancy input resources, reduce the supervision error rate of the pre-occupancy input resources, and improve the supervision efficiency of the pre-occupancy input resources.

[0006] To achieve the above purpose, embodiments of the present application adopt the following technical solutions:

[0007] In a first aspect, a pre-occupancy input resource supervision method is provided, which includes: obtaining pre-occupation agreement information, the pre-occupation agreement information being used to record pre-occupation objects and their corresponding pre-occupancy input resources. Generating a pre-occupancy input resource identification mark based on the pre-occupation agreement information. Creating a pre-occupancy input resource supervision sub-node in the resource supervision node according to the mark, the resource supervision sub-node being used to associate and record the identification mark and the flow information of the pre-occupancy input resources, and the resource supervision node being used to record the ownership exchange resources of the pre-occupation objects. In response to the flow operation of the pre-occupancy input resources, updating the flow information of the pre-occupancy input resources through the supervision sub-node.

[0008] The pre-occupation input resource monitoring method provided by the application can identify the pre-occupation input resource corresponding to the pre-occupation agreement information through the pre-occupation input resource identification mark. Further, the pre-occupation input resource monitoring sub-node is created in the resource monitoring node through the pre-occupation input resource identification mark, so that the pre-occupation input resource monitoring sub-node can record the flow operation of the pre-occupation input resource, thereby realizing the tracking and monitoring of the pre-occupation input resource. Compared with the related manual monitoring pre-occupation input resource mode, the application realizes the automatic identification and automatic monitoring of the pre-occupation input resource through the pre-occupation input resource identification mark and the resource monitoring sub-node, effectively solves the problems of low operation efficiency and high error risk in the manual monitoring mode, so that the pre-occupation input resource can obtain the same automatic monitoring capability as the formal transaction link in the pre-transaction link, thereby improving the comprehensiveness and efficiency of resource monitoring.

[0009] In a possible implementation manner of the first aspect, the pre-occupation agreement information includes attribute information of the pre-occupation object, attribute information of the pre-occupation input resource, pre-occupation party identification of the pre-occupation object, and supply party identification of the pre-occupation object. The attribute information of the pre-occupation object includes a type of the pre-occupation object, location information of the pre-occupation object, and an identification mark of the pre-occupation object. The attribute information of the pre-occupation input resource includes a type of the pre-occupation input resource and a quantitative index of the pre-occupation input resource.

[0010] It should be understood that by refining the pre-occupation agreement information into the attribute information of the pre-occupation object, the attribute information of the pre-occupation input resource, and the pre-occupation party identification of the pre-occupation object and the supply party identification of the pre-occupation object, the pre-occupation input resource identification mark generated according to the pre-occupation agreement information can more accurately mark the pre-occupation input resource.

[0011] In a further possible implementation form of the first aspect, before the recording, by the pre-occupied input resource supervision sub-node, the flow information of the pre-occupied input resource in response to the flow operation of the pre-occupied input resource, the method further includes: obtaining an order generation request information sent by a back-end server of a resource receiving terminal; the order generation request information includes a to-be-verified pre-occupied input resource identification; in response to the order generation request information, generating a resource in-flow order based on the order generation request information and sending the resource in-flow order to the back-end server of the resource receiving terminal in a case where the to-be-verified pre-occupied input resource identification meets preset conditions; determining, in response to in-flow confirmation information of the pre-occupied input resource in the resource in-flow order sent by the back-end server of the resource receiving terminal, that the in-flow operation of the pre-occupied input resource is received; the flow operation includes the in-flow operation; and the recording, by the pre-occupied input resource supervision sub-node, the flow information of the pre-occupied input resource in response to the flow operation of the pre-occupied input resource includes: determining, in response to the in-flow operation of the pre-occupied input resource, the pre-occupied input resource supervision sub-node corresponding to the to-be-verified pre-occupied input resource identification. The flow information of the pre-occupied input resource is recorded in the pre-occupied input resource supervision sub-node corresponding to the to-be-verified pre-occupied input resource identification.

[0012] It should be understood that, by adding the to-be-verified pre-occupied input resource identification in the order generation request information, the pre-occupied input resource to be in-flowed can be associated with the pre-occupied input resource through the to-be-verified pre-occupied input resource identification, so that the pre-occupied input resource can be in-flowed through the resource receiving terminal like the right exchange resource. Moreover, the pre-occupied input resource supervision sub-node associated with the to-be-verified pre-occupied input resource identification can also realize the recording and supervision of the in-flowed pre-occupied input resource flow operation. Compared with the related manual supervision process, the identification and verification process of the manual in-flowed pre-occupied input resource of the resource receiving terminal can be optimized, and the supervision efficiency of the pre-occupied input resource can be improved.

[0013] In a further possible implementation form of the first aspect, before the recording, by the pre-occupied input resource supervision sub-node, the flow information of the pre-occupied input resource in response to the flow operation of the pre-occupied input resource, the method further includes: determining, in response to in-flow confirmation information of the pre-occupied input resource pushed by a resource management institution server and the to-be-verified pre-occupied input resource identification, that the in-flow operation of the pre-occupied input resource is received; the flow operation includes the in-flow operation. The recording, by the pre-occupied input resource supervision sub-node, the flow information of the pre-occupied input resource in response to the flow operation of the pre-occupied input resource includes: determining, in response to the in-flow operation of the pre-occupied input resource, the pre-occupied input resource supervision sub-node corresponding to the to-be-verified pre-occupied input resource identification. The flow information of the pre-occupied input resource is recorded in the pre-occupied input resource supervision sub-node corresponding to the to-be-verified pre-occupied input resource identification.

[0014] It should be understood that, by the to-be-verified pre-occupancy input resource identification, the pre-occupancy input resource corresponding to the incoming confirmation information can be associated with the pre-occupancy input resource supervision sub-node, so that the pre-occupancy input resource supervision sub-node can automatically identify the pre-occupancy input resource pushed by the resource management institution server. Compared with the mode of manual docking of the resource management institution, checking the pre-occupancy input resource and the pre-occupancy agreement information one by one in the related manual supervision, the lag of information transmission and the human error are reduced, and the timeliness and reliability of the pre-occupancy input resource circulation supervision are effectively improved.

[0015] In a possible implementation of the first aspect, the preset condition comprises that the pre-occupancy input resource identification in the created pre-occupancy input resource supervision sub-node comprises the to-be-verified pre-occupancy input resource identification. The pre-occupancy agreement information corresponding to the to-be-verified pre-occupancy input resource identification has the pre-occupancy input resource to be merged.

[0016] It should be understood that the verification process (preset condition verification) of the to-be-verified pre-occupancy input resource identification is actually the identification of the pre-occupancy input resource, which ensures that the input pre-occupancy input resource and the pre-occupancy agreement information are consistent by confirming the matching and the to-be-merged state of the pre-occupancy input resource with the created supervision sub-node.

[0017] In a possible implementation of the first aspect, the method further comprises: in response to the supervision state of the target pre-occupancy object being switched from the ownership not transferred to the ownership transferred, determining the target pre-occupancy input resource identification corresponding to the pre-occupancy agreement information corresponding to the target pre-occupancy object. Based on the target pre-occupancy input resource identification, determining the target pre-occupancy input resource supervision sub-node from the created pre-occupancy input resource supervision sub-node. Converting the pre-occupancy input resource recorded in the target pre-occupancy input resource supervision sub-node into the ownership exchange resource and recording in the resource supervision node.

[0018] It should be understood that, through the target pre-occupancy object (included in the pre-occupancy agreement information), the corresponding target pre-occupancy input resource identification can be associated. Further, when the ownership state of the target pre-occupancy object changes, the target pre-occupancy input resource supervision sub-node can be associated by the target pre-occupancy input resource identification, so that the pre-occupancy input resource in the sub-node is converted into the ownership exchange resource, and the continuous supervision of the pre-occupancy input resource in the supervision process is realized.

[0019] The second aspect provides a supervision device, and the method comprises: comprising an acquisition module and a processing module.

[0020] The acquisition module is configured to acquire pre-occupancy agreement information. The pre-occupancy agreement information is used to record pre-occupancy objects and pre-occupancy input resources corresponding to the pre-occupancy objects.

[0021] The processing module is configured to generate a pre-occupation input resource identification based on the pre-occupation agreement information. The pre-occupation input resource identification is used to create a pre-occupation input resource supervision sub-node in the resource supervision node. The resource supervision node is configured to record the ownership exchange resource of the pre-occupation object. The pre-occupation input resource supervision sub-node is configured to associate and record the flow information of the pre-occupation input resource corresponding to the pre-occupation input resource identification and the pre-occupation object. The ownership exchange resource refers to a resource used for exchanging the ownership of the pre-occupation object. In response to the flow operation of the pre-occupation input resource, the flow information of the pre-occupation input resource is recorded through the pre-occupation input resource supervision sub-node.

[0022] In a third aspect, an electronic device is provided. The method includes a memory and at least one processor. The memory is in communication with the processor. The memory is configured to store computer program code including computer instructions. When the processor executes the computer instructions, the electronic device performs the method of the first aspect and any possible implementation manner thereof.

[0023] In a fourth aspect, a computer readable storage medium is provided. The computer readable storage medium stores computer instructions. When the computer instructions are executed by a processor, the method of the first aspect and any possible implementation manner thereof is implemented.

[0024] In a fifth aspect, a computer program product is provided. When the computer program product is run on a computer / executed by a processor of a computer, the method of the first aspect and any possible implementation manner thereof is implemented. The computer can be the electronic device of the third aspect and any possible implementation manner thereof.

[0025] It can be understood that the beneficial effects achieved by the supervision device of the second aspect, the electronic device of the third aspect, the computer readable storage medium of the fourth aspect, and the computer program product of the fifth aspect can refer to the beneficial effects of the first aspect and any possible implementation manner thereof, which will not be described herein again. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 A scenario architecture schematic diagram of a pre-occupation input resource supervision method provided by the embodiments of the present application;

[0027] Figure 2 A flowchart of a pre-occupation input resource supervision method provided by the embodiments of the present application;

[0028] Figure 3 A flowchart of a pre-occupation input resource supervision method based on resource receiving terminal convergence provided by the embodiments of the present application;

[0029] Figure 4A resource import order generation flow schematic diagram provided for an embodiment of the present application;

[0030] Figure 5 A flow schematic diagram of recording resource import operation based on resource receiving terminal provided for an embodiment of the present application;

[0031] Figure 6 A pre-occupancy input resource supervision method based on resource management agency server import flow schematic diagram provided for an embodiment of the present application;

[0032] Figure 7 A resource import flow schematic diagram based on resource management agency server provided for an embodiment of the present application;

[0033] Figure 8 A pre-occupancy input resource conversion into right ownership exchange resource flow schematic diagram provided for an embodiment of the present application;

[0034] Figure 9 A composition schematic diagram of a supervision device provided for an embodiment of the present application;

[0035] Figure 10 A composition schematic diagram of an electronic device provided for an embodiment of the present application. DETAILED DESCRIPTION

[0036] Hereinafter, the terms "first" and "second" are only used for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the embodiments, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0037] The exemplary embodiments will be described in detail below with reference to the drawings. In the following description, the same numbers are used to designate the same elements, unless otherwise specified, and the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of devices and methods consistent with some aspects of the present application, as detailed in the appended claims.

[0038] In the technical solutions provided by the embodiments of the present application, the collection, storage, use, processing, transmission, provision and disclosure of information such as financial data or user data involved in the technical solutions comply with the provisions of relevant laws and regulations, and do not violate public order and good customs.

[0039] It should be noted that in the embodiments of the present application, some software, components, models and other prior art solutions may be mentioned, which should be considered as exemplary, and the purpose is only to illustrate the feasibility of the implementation of the technical solutions of the present application, but it does not mean that the applicant has or will necessarily use the solution.

[0040] In the process of monitoring the resources paid in advance for obtaining the priority exchange right of the target object, manual identification and monitoring are usually used, but due to the large number of flow subjects involved in the resources, the difficulty of manual identification is increased. In addition, the type of the resources exchanged with the target object is actually the same in nature, which is easy to cause confusion in resource classification, thereby causing difficulty in manual monitoring. As shown above, it is difficult to manually monitor the resources, and the monitoring efficiency is low.

[0041] Therefore, how to effectively monitor the pre-occupied input resources is a problem to be solved at present.

[0042] Therefore, the embodiments of the present application provide a pre-occupied input resource monitoring method, which generates a pre-occupied input resource identification mark and a pre-occupied input resource monitoring node based on pre-occupied agreement information, so that the pre-occupied input resource monitoring node can identify and record the pre-occupied input resource through the pre-occupied input resource identification mark. Thus, automatic monitoring of pre-occupied input resources is realized. Errors caused by manual intervention can be reduced, and the efficiency of pre-occupied input resource monitoring can be improved.

[0043] Wherein, "monitoring" can also be understood and replaced by "controlling" or "monitoring" and other descriptions, without limitation.

[0044] The pre-occupied input resource monitoring method provided by the embodiments of the present application can be applied to a monitoring system. The computing device can be a server cluster composed of multiple servers, or a single server, or a computer, or a processor or processing chip in a server or computer. The embodiments of the present application do not limit the specific device form of the monitoring system.

[0045] In an exemplary embodiment, the present application also provides a scenario architecture diagram of a pre-occupied input resource monitoring method, as shown in Figure 1 The specific contents include: a pre-occupied party 110, a pre-occupied object supplier 111, a monitoring system 112, a pre-occupied agreement 113, and an exchange agreement 114.

[0046] First, the pre-occupied party 110 and the pre-occupied object supplier 111 generate the pre-occupied agreement 113 based on the attribute information of the pre-occupied object, and upload the pre-occupied agreement information to the monitoring system 112.

[0047] Secondly, the supervisory system 112 generates the pre-occupancy input resource identification according to the pre-occupancy agreement 113, and creates a pre-occupancy input resource supervision sub-node in the resource supervision node.

[0048] Then, the pre-occupant 110 inputs the pre-occupancy input resource into the resource receiving terminal or the resource management institution server according to the pre-occupancy input resource identification.

[0049] The supervisory system 112 records the flow information of the pre-occupancy input resource input by the pre-occupant 110 through the created pre-occupancy input resource supervision sub-node in response to the input confirmation information sent by the back-end server of the resource receiving terminal or the resource management institution server.

[0050] Finally, the pre-occupant 110 and the pre-occupant object supplier 111 generate an exchange agreement 114 based on the pre-occupancy agreement 113. The supervisory system 110 supervises the ownership exchange resource input by the pre-occupant 111 UI based on the exchange agreement 114.

[0051] In some embodiments, the scenario can be a house ownership exchange scenario. In this case, the pre-occupant object can be a house, the pre-occupancy input resource can be a subscription resource, the pre-occupancy agreement can be a house subscription agreement, and the ownership exchange resource can be a house exchange agreement.

[0052] In addition, the resource supervision node in the supervisory system 112 can be a house supervision account, and the pre-occupancy input resource supervision sub-node can be a sub-account of the house supervision account.

[0053] In other embodiments, the scenario can be a high-computing power cluster resource reservation scenario. In this case, the pre-occupant object can be a graphic processing unit (GPU) cluster computing power resource in a unit time (such as a dedicated computing power node for AI model training), the pre-occupancy input resource can be a computing power reservation resource, and the pre-occupancy agreement can be a computing power resource pre-occupancy agreement. The resource supervision node in the supervisory system 112 can be a total scheduling center of computing power resources (recording the ownership and allocation state of the whole cluster computing power), and the pre-occupancy input resource supervision sub-node can be a dedicated supervision unit of the total scheduling center bound to the reserved computing power.

[0054] The embodiments of the present application do not limit the specific application scenarios of the pre-occupancy input resource supervision method, the specific content of the pre-occupancy agreement information, and the specific form of the pre-occupant object.

[0055] The pre-occupancy input resource supervision method provided by the embodiments of the present application is applied to the supervisory system in Figure 2 , and specifically includes the following content:

[0056] S101, obtaining pre-occupancy agreement information.

[0057] The pre-occupancy agreement information is used to record pre-occupancy objects and pre-occupancy input resources corresponding to the pre-occupancy objects.

[0058] The pre-occupancy agreement information refers to agreement information formed between a supplier of a pre-occupancy object and a pre-occupant for clarifying exchange intentions for the pre-occupancy object and corresponding pre-occupancy input resources.

[0059] The pre-occupancy input resource refers to a resource paid in advance for obtaining a pre-occupancy priority exchange right.

[0060] In some embodiments, the pre-occupancy agreement information includes attribute information of the pre-occupancy object, attribute information of the pre-occupancy input resource, an identifier of the pre-occupant of the pre-occupancy object, and an identifier of the supplier of the pre-occupancy object.

[0061] The attribute information of the pre-occupancy object includes a type of the pre-occupancy object, location information of the pre-occupancy object, and an identification identifier of the pre-occupancy object. The attribute information of the pre-occupancy input resource includes a type of the pre-occupancy input resource and a quantitative indicator of the pre-occupancy input resource.

[0062] Specifically, the type of the pre-occupancy object refers to a category and a form of the pre-occupancy object. The location information of the pre-occupancy object refers to information for clarifying a spatial or logical distribution location of the pre-occupancy object, for accurately positioning a specific pre-occupancy object. The identification identifier of the pre-occupancy object refers to an identifier for uniquely distinguishing the pre-occupancy object, which has uniqueness and exclusivity.

[0063] For example, in a housing right exchange scenario, the type of the pre-occupancy object can specifically be a residential house, an apartment, or an office building, etc. The location information of the pre-occupancy object is a specific address of the house.

[0064] For another example, in a computing power resource reservation scenario, the type of the pre-occupancy object can specifically be a GPU cluster cloud server instance storage resource. The location information of the pre-occupancy object is a physical machine room address or a logical network node location of the cloud server instance.

[0065] Specifically, the type of the pre-occupancy input resource refers to a form or property of the pre-occupancy input resource. The quantitative indicator of the pre-occupancy input resource is a quantification of a specific value of the pre-occupancy input resource.

[0066] For example, the type of the pre-occupancy input resource can be divided into physical resources (such as real estate, etc.), virtual resources, etc. The quantitative indicator of the pre-occupancy input resource corresponding to the type of the pre-occupancy input resource can be a quantity specification or an entity value of the entity asset type. The equity level, quantity, and validity period of the virtual resource, etc. The specific form of the type and the quantitative indicator of the pre-occupancy input resource is not limited in the embodiments of the present application.

[0067] In a possible implementation, the supervision system provides a client with picture recognition and text recognition functions for a pre-occupancy object supplier to access. The pre-occupancy object supplier can recognize a paper pre-occupancy agreement through the client and obtain pre-occupancy agreement information.

[0068] In another possible implementation, the client provided by the supervision system supports generation of an electronic pre-occupancy agreement. In this case, after the exchange parties of the pre-occupancy object formulate an electronic pre-occupancy agreement, the client can directly send pre-occupancy agreement information to the supervision system.

[0069] S102, generating a pre-occupancy input resource identification corresponding to the pre-occupancy agreement information.

[0070] In a possible implementation, the pre-occupancy object identification, pre-occupancy party identification, supplier identification, and agreement formulation timestamp in the pre-occupancy agreement information can be spliced in a fixed format and then subjected to SHA-256 algorithm for hash operation to generate the pre-occupancy input resource identification.

[0071] For example, if the pre-occupancy object identification is "FANG-2023-001" (the unique code of a set of houses), the pre-occupancy party identification is "USER-0089" (a house buyer ID), the supplier identification is "DEV-003" (a developer ID), and the agreement formulation timestamp is "20010101010101" (1:01:01 on January 1, 2001), the string "FANG-2023-001USER-0089DEV-00320240615143022" is obtained by splicing in the fixed format of "pre-occupancy object identification + pre-occupancy party identification + supplier identification + timestamp", and then the SHA-256 algorithm is used for hash operation on the string to generate a unique string similar to "a7b3c9d1e5f2g8h4j6k0l2m9n1p3q5r7s8t0u2v4w6x8y0z9", which is the pre-occupancy input resource identification corresponding to the pre-occupancy agreement.

[0072] In another possible implementation, the pre-occupancy input resource identification can be obtained by combining fixed fields intercepted from the pre-occupancy object identification, pre-occupancy object identification, pre-occupancy party identification, supplier identification, and device number of the supervision system according to a fixed rule.

[0073] For example, the identification of the pre-occupied object is "SERVER-2024-056" (the code of a certain server), the pre-occupied party is identified as "ENT-789" (enterprise user identification), the supplier is identified as "CLOUD-123" (cloud service provider identification), the device number of the regulatory system is "SV-REG-6789", and the fixed rule is "the last three digits of the pre-occupied object identification + the first three digits of the pre-occupied party identification + the middle three digits of the supplier identification + the last four digits of the device number". Then, "056" "ENT" "OUD" "6789" are obtained after interception, and the pre-occupied input resource identification "056ENTOUD6789" is generated after combination.

[0074] S103, creating a pre-occupied input resource regulatory sub-node in the resource regulatory node based on the pre-occupied input resource identification.

[0075] The resource regulatory node is used to record the ownership exchange resource of the pre-occupied object. The pre-occupied input resource regulatory sub-node is used to associate and record the pre-occupied input resource identification and the flow information of the pre-occupied input resource corresponding to the pre-occupied object. The ownership exchange resource refers to the resource used to exchange the ownership of the pre-occupied object.

[0076] In some embodiments, the resource regulatory node can also be referred to as a resource regulatory account, which is used to record the flow information of the resource.

[0077] For example, in the housing ownership exchange scenario, the resource regulatory node is specifically a regulatory account. After generating the pre-occupied input resource identification (such as the subscription code), the regulatory system will create a corresponding sub-account under the regulatory account as the pre-occupied input resource regulatory sub-node. The sub-account name format is "regulatory account number + pre-occupied input resource identification last six digits" (such as "JY2023001-0618001"), and the pre-occupied input resource identification is bound to the sub-account.

[0078] The sub-account (also referred to as "subordinate account") is an auxiliary account attached to the regulatory account, mainly used for independent management of the flow of pre-occupied input resources. The ownership of the resource and the regulatory rules are still subject to the regulatory account, but it has a separate recording and operation space.

[0079] In one possible implementation, the regulatory system can create different pre-occupied input resource regulatory sub-nodes based on different pre-occupied agreements. That is, the regulatory system can construct a maintenance list of pre-occupied input resource regulatory sub-nodes. Each time a pre-occupied input resource identification is generated and an associated pre-occupied input resource regulatory sub-node is created, it can be stored in the maintenance list for subsequent association query of the pre-occupied input resource regulatory sub-node.

[0080] S104, in response to the flow operation of the pre-occupied input resource, recording the flow information of the pre-occupied input resource through the pre-occupied input resource supervision sub-node.

[0081] A possible implementation, when the pre-occupied input resource occurs flow operation, the supervision system first associates the corresponding pre-occupied input resource identification through the operation triggered certificate, and then locates to the uniquely bound pre-occupied input resource supervision sub-node according to the identification, and then writes the flow details into the log module of the sub-node according to the preset data format (including operation type, timestamp, resource quantitative index, operator, associated certificate number and other fields), and synchronously updates the current state of the sub-node, and generates an unforgeable flow record hash value, which is chained with the historical record of the sub-node, to ensure the traceability and integrity of the flow information.

[0082] For example, the flow operation of the pre-occupied input resource includes: import, freeze, transfer and conversion, etc.

[0083] For example, when the pre-occupied input resource is subscription resource, when the supervision system receives the transfer operation, the flow information recorded in the corresponding pre-occupied input resource supervision sub-node can include: the type of transfer operation, operation initiation time, certificate number triggering transfer, resource quantitative index, operator information, transfer path, completion status of transfer operation, remaining resource quantitative index of supervision sub-node after transfer, and reason for transfer.

[0084] The pre-occupied input resource supervision method provided by the application can identify the pre-occupied input resource corresponding to the pre-occupied agreement information through the pre-occupied input resource identification by obtaining the pre-occupied agreement information and generating the corresponding pre-occupied input resource identification. Further, the pre-occupied input resource supervision sub-node is created in the resource supervision node through the pre-occupied input resource identification, so that the pre-occupied input resource supervision sub-node can record the flow operation of the pre-occupied input resource, thereby realizing the tracking and supervision of the pre-occupied input resource. Compared with the related manual supervision mode of pre-occupied input resource, the application realizes automatic identification and automatic supervision of pre-occupied input resource through pre-occupied input resource identification and resource supervision sub-node, effectively solves the problems of low operation efficiency and high error risk in manual supervision mode, so that the pre-occupied input resource can obtain the same automatic supervision ability as the formal transaction link in the pre-transaction link, and the efficiency of resource supervision is effectively improved.

[0085] In some embodiments, the precondition for supervising the pre-occupied input resource is that the supervision system can identify the pre-occupied input resource. That is, the import operation of the pre-occupied input resource is identified.

[0086] In a possible implementation, the operation of merging the pre-occupied input resource can be initiated by the resource receiving terminal, in which case the process of recording the operation of merging the pre-occupied input resource is as shown in FIG. 8. Figure 3

[0087] In the process of FIG. 8, steps S201-S203 are the pre-operation of step S104 (that is, merging the pre-occupied input resource by the resource receiving terminal), and steps S204-S205 are the specific process of step S104.

[0088] S201: Obtain order generation request information sent by a back-end server of the resource receiving terminal.

[0089] The order generation request information includes a pre-occupied input resource identification to be verified.

[0090] The resource receiving terminal refers to a terminal that can merge the received resource into the supervision system.

[0091] The order generation request information is used to request a resource merging order from the supervision system. Specifically, after the supervision system verifies the order generation request information, it means that the supervision system can identify the pre-occupied agreement information corresponding to the pre-occupied input resource identification to be verified and the pre-occupied input resource to be merged.

[0092] For example, the resource receiving terminal can be a point of sale machine (POS). An operator (for example, a pre-occupied object supplier) inputs the pre-occupied input resource identification to be verified, so that the back-end server of the resource receiving terminal can generate order generation request information based on the back-end server.

[0093] In a possible implementation, step S201 can be performed after step S102. Specifically, after the resource exchange parties obtain the pre-occupied input resource identification generated by the supervision system based on the pre-occupied agreement information, the pre-occupied input resource identification to be verified is input in the resource receiving terminal, and the order generation request information is sent to the supervision system.

[0094] S202: In response to the order generation request information, if the pre-occupied input resource identification to be verified meets a preset condition, generate a resource merging order based on the order generation request information and send the resource merging order to the back-end server of the resource receiving terminal.

[0095] In some embodiments, the preset condition can include that the pre-occupied input resource identification to be verified is included in the pre-occupied input resource identification in the created pre-occupied input resource supervision sub-node, and the pre-occupied agreement information corresponding to the pre-occupied input resource identification to be verified has the pre-occupied input resource to be merged.

[0096] ​Specifically, the pre-occupancy input resource identification in the created pre-occupancy input resource supervision sub-node includes a to-be-verified pre-occupancy input resource identification, which is verified to be created by the supervision system. It indicates that the supervision system can identify the to-be-verified identification and can use the pre-occupancy input resource supervision sub-node to supervise the pre-occupancy input resource corresponding to the to-be-verified identification.

[0097] The pre-occupancy agreement information corresponding to the to-be-verified pre-occupancy input resource identification has to-be-inflow pre-occupancy input resources, which is used to confirm whether the pre-occupancy agreement information corresponding to the to-be-verified pre-occupancy input resource identification has to-be-inflow pre-occupancy input resources. This condition avoids the situation that the order generation does not match the actual resource state due to the fact that the resources have been inflowed in advance, the resources to be inflowed are not agreed, or the resource inflow obligation has been fulfilled, thereby ensuring the necessity, accuracy, and compliance of the resource inflow operation.

[0098] In some embodiments, the resource inflow order includes attribute information of the pre-occupancy object, a quantitative indicator of the to-be-inflow pre-occupancy input resource, an identifier of the pre-occupant, and an identifier of the pre-occupancy object supplier.

[0099] For example, in the housing ownership exchange scenario, the resource inflow order includes location information of the purchased house, a house type of the purchased house, a house supplier identifier, a purchaser identifier, and the like. The embodiments of the present application do not limit the specific content of the resource inflow order.

[0100] For example, as shown in Figure 4 FIG. 1 is a schematic diagram of a resource inflow order generation process provided by an embodiment of the present application. Specifically, the process includes the following steps:

[0101] 1. Send a to-be-verified pre-occupancy input resource identification.

[0102] The resource receiving terminal receives the to-be-verified pre-occupancy input resource identification input by the pre-occupancy object supplier of the resource receiving terminal, and sends the to-be-verified pre-occupancy input resource identification to the back-end server of the resource receiving terminal.

[0103] 2. Send order generation request information.

[0104] The back-end server of the resource receiving terminal generates order generation request information based on the to-be-verified pre-occupancy input resource identification, device information of the resource receiving terminal, and information of the resource exchange parties.

[0105] 3. Verify whether the to-be-verified pre-occupancy input resource identification is valid.

[0106] That is, the to-be-verified pre-occupancy input resource identification is included in the pre-occupancy input resource identification in the created pre-occupancy input resource supervision sub-node in the pre-set condition.

[0107] If the verification fails, prompt that the to-be-verified pre-occupancy input resource identification does not exist.

[0108] 4. Verify whether the to-be-merged pre-occupancy input resource exists.

[0109] That is, in the aforementioned preset conditions: the pre-occupancy protocol information corresponding to the to-be-verified pre-occupancy input resource identification has the to-be-merged pre-occupancy input resource.

[0110] If the verification fails, prompt that the to-be-merged pre-occupancy input resource does not exist.

[0111] 5. Generate a resource merging order.

[0112] If both step 3 and step 4 are verified successfully, generate a resource merging order based on the order generation request information and the pre-occupancy protocol information corresponding to the to-be-verified pre-occupancy input resource identification.

[0113] 6. Return the resource merging order.

[0114] Send the resource merging order to the back-end server of the resource receiving terminal. The back-end server of the resource receiving terminal sends the resource merging order to the resource receiving terminal. The resource receiving terminal displays the resource merging order to the resource exchange parties.

[0115] S203, in response to the merging confirmation information of the pre-occupancy input resource in the resource merging order from the back-end server of the resource receiving terminal, determine that the merging operation of the pre-occupancy input resource is received.

[0116] Among them, the flow operation includes the merging operation.

[0117] In some embodiments, the merging confirmation information can include a quantitative indicator of the merging pre-occupancy input resource, and the to-be-verified pre-occupancy input resource identification.

[0118] Specifically, the pre-occupant inputs the pre-occupancy input resource into the supervision system through the resource receiving terminal after checking and confirming that the information in the resource merging order confirmed by the resource receiving terminal is correct. After receiving the pre-occupancy input resource, the back-end server of the resource receiving terminal sends the merging confirmation information to the supervision system. The supervision system determines the merging operation of the pre-occupancy input resource according to the received merging confirmation information.

[0119] In some embodiments, the back-end server of the resource receiving terminal can be a sub-module of the supervision system, that is, its functions are integrated into the overall architecture of the supervision system as an execution unit of the supervision system to handle the resource merging operation.

[0120] S204, in response to the merging operation of the pre-occupancy input resource, determine the pre-occupancy input resource supervision sub-node corresponding to the to-be-verified pre-occupancy input resource identification.

[0121] Specifically, after receiving the import operation of the pre-occupied input resource (equivalent to identifying the pre-occupied input resource), the supervision system can match the pre-occupied input resource identification included in the order generation request information in all pre-occupied input resource supervision sub-nodes stored in the supervision system. Since each pre-occupied input resource supervision sub-node is associated with a unique pre-occupied input resource identification, and the correspondence between the two has been established and stored in the database of the supervision system during the pre-occupied agreement formulation and pre-occupied input resource identification generation, the supervision system can quickly locate the supervision sub-node that completely matches the to-be-verified identification.

[0122] In this process, the supervision system can associate the pre-occupied input resource with the pre-occupied input resource supervision sub-node through the to-be-verified pre-occupied input resource identification, thereby achieving automatic supervision of the pre-occupied input resource.

[0123] S205, record the flow information of the pre-occupied input resource in the pre-occupied input resource supervision sub-node corresponding to the to-be-verified pre-occupied input resource identification.

[0124] For example, as described above, the import operation of the pre-occupied input resource can be recorded in the pre-occupied input resource supervision sub-node corresponding to the to-be-verified pre-occupied input resource identification. The recorded content can include: the initiation time of the import operation, the resource receiving terminal information corresponding to the operation (for example, the resource receiving terminal is a POS machine, and the terminal number is POS-20231015002), the confirmation record of the pre-occupied party initiating the import operation (such as the electronic voucher number of the pre-occupied party completing the signature confirmation on the terminal), the path information of the resource import, the completion status of the import operation (such as “success” and the transaction serial number TX20231015000123 returned by the system), and the time when the supervision system receives the import confirmation information from the back-end server.

[0125] For another example, when the pre-occupied input resource returns, the recorded content in the corresponding pre-occupied input resource supervision sub-node can include: the initiation time of the resource return operation, the approval information corresponding to the operation, the quantitative index of the returned resource, the path information of the resource return, and the remaining quantitative index of the pre-occupied input resource after the resource return.

[0126] For example, the process of recording the import operation of the resource receiving terminal to the back-end server of the supervision system is shown in Figure 5 , which specifically includes:

[0127] 1. Import the pre-occupied input resource.

[0128] After verifying the resource voucher provided by the pre-occupied party, the resource receiving terminal transfers the pre-occupied input resource in the resource voucher to its back-end server.

[0129] 2. Receiving the pre-occupied input resource, and sending the import confirmation information.

[0130] After receiving the import pre-occupied input resource, the back-end server of the resource receiving terminal sends the import confirmation information to the supervision system.

[0131] 3. Verifying whether the resource import order corresponding to the import confirmation information exists.

[0132] If the verification fails, the back-end server of the resource receiving terminal is prompted that the resource import order does not exist.

[0133] 4. Verifying whether the import pre-occupied input resource exists.

[0134] The supervision system verifies whether the import pre-occupied input resource exists in the back-end server of the resource receiving terminal according to the import confirmation information.

[0135] If the verification fails, the back-end server of the resource receiving terminal is prompted that the import pre-occupied input resource does not exist.

[0136] 5. Updating the order status.

[0137] If both step 3 and step 4 are verified successfully, the completion status of the resource import order corresponding to the import confirmation information is updated.

[0138] 6. Recording the imported pre-occupied input resource.

[0139] Based on the pre-occupied input resource supervision sub-node corresponding to the pre-occupied input resource identification of the to-be-verified pre-occupied input resource, the import operation of the imported pre-occupied input resource is recorded.

[0140] 7. Returning the import success information.

[0141] It should be understood that by adding the to-be-verified pre-occupied input resource identification in the order generation request information, the to-be-imported pre-occupied input resource can be associated through the to-be-verified pre-occupied input resource identification, so that the pre-occupied input resource can be imported through the resource receiving terminal like the right exchange resource. Moreover, through the pre-occupied input resource supervision sub-node associated by the to-be-verified pre-occupied input resource identification, the record and supervision of the import pre-occupied input resource flow operation can also be realized. Compared with the related manual supervision process, the identification and verification process of manual pre-occupied input resource import of the resource receiving terminal can be optimized, and the supervision efficiency of the pre-occupied input resource can be improved.

[0142] A possible implementation manner, the import operation of the pre-occupied input resource can be initiated by the resource management institution server, in which case, the process of recording the import operation of the pre-occupied input resource is as shown in Figure 6 .

[0143] The step S301 is a pre-operation of the step S104 (i.e. the pre-occupied input resource is imported by the resource management mechanism server), and the steps S302-S303 are specific processes of the step S104.

[0144] S301, in response to the pre-occupied input resource import confirmation information pushed by the resource management mechanism server and the to-be-verified pre-occupied input resource identification, determining that the pre-occupied input resource import operation is received.

[0145] The flow operation includes the import operation.

[0146] The resource management mechanism server refers to a storage and management server of the pre-occupied input resource of the pre-occupied party. The resource management mechanism server transfers the pre-occupied input resource of the pre-occupied party specified by the pre-occupied party to the resource management unit under the supervision system through the resource transfer operation.

[0147] In some embodiments, the resource transfer operation includes the to-be-verified pre-occupied input resource identification input by the pre-occupied party.

[0148] In some embodiments, the import confirmation information includes the push path of the pre-occupied input resource, the quantitative index of the pre-occupied input resource, the pre-occupied party identification, the push time of the pre-occupied input resource, etc.

[0149] In a possible implementation, when the supervision system receives the import confirmation information, the supervision system can verify the import confirmation information (i.e. according to the to-be-verified pre-occupied input resource identification to identify the pushed pre-occupied input resource), according to the verification result, determine the pre-occupied input resource import operation is received, or reject the pre-occupied input resource import operation.

[0150] S302, in response to the pre-occupied input resource import operation, in the case that the to-be-verified pre-occupied input resource identification satisfies the preset condition, determining the pre-occupied input resource supervision sub-node corresponding to the to-be-verified pre-occupied input resource identification in the order generation request information.

[0151] Specifically, the preset condition can refer to the introduction of the preset condition in the above S202, which will not be described in detail here.

[0152] S303, recording the flow information of the pre-occupied input resource in the pre-occupied input resource supervision sub-node corresponding to the to-be-verified pre-occupied input resource identification in the order generation request information.

[0153] The steps S302-S303 can refer to the specific introduction of the steps S204-S205 described above. Here, no longer detailed.

[0154] For example, the process of recording the pre-occupied input resource import operation pushed by the resource management mechanism server by the supervision system is as followsFigure 7 As shown, specifically includes:

[0155] 1, send pre-occupancy input resource into the command.

[0156] Pre-occupancy object terminal to resource management agency server sends pre-occupancy input resource into the command. Pre-occupancy head resource into the command also includes the pre-occupancy input resource identification to be verified.

[0157] 2, receive pre-occupancy input resource, send into the confirmation information and the pre-occupancy input resource identification to be verified.

[0158] Pre-occupancy input resource into the command indicates that the resource management agency server according to the quantitative index of pre-occupancy input resource into the command, to the supervision system for resource into. And send into the confirmation message to the supervision system.

[0159] 3, verify whether the pre-occupancy input resource identification to be verified exists.

[0160] The supervision system first verifies whether the pre-occupancy input resource identification to be verified exists.

[0161] If the verification fails, prompt the resource into the order does not exist.

[0162] 4, verify whether the pre-occupancy agreement information exists pre-occupancy input resource to be into.

[0163] In the case of successful verification of pre-occupancy input resource identification to be verified, the pre-occupancy agreement information corresponding to the pre-occupancy input resource identification to be verified is verified to determine whether it exists pre-occupancy input resource to be into.

[0164] If the verification fails, prompt the pre-occupancy input resource to be into does not exist.

[0165] 5, verify whether the pre-occupancy input resource into exists.

[0166] In the case of both step 3 and step 4 are successful, verify whether the pre-occupancy input resource into exists.

[0167] If the verification fails, prompt the pre-occupancy input resource into does not exist.

[0168] 6, record the pre-occupancy input resource into.

[0169] The supervision system determines the corresponding pre-occupancy input resource supervision subnode based on the pre-occupancy input resource identification to be verified. The pre-occupancy input resource into the operation is recorded through the pre-occupancy input resource supervision subnode.

[0170] 7, return into the confirmation information.

[0171] It should be understood that by identifying the pre-occupied input resource to be verified, the pre-occupied input resource corresponding to the import confirmation information can be associated with the pre-occupied input resource supervision sub-node, so that the pre-occupied input resource supervision sub-node can automatically identify the pre-occupied input resource pushed by the resource management institution server. Compared with the mode of manual docking of resource management institutions, checking pre-occupied input resources and pre-occupied agreement information one by one in related manual supervision, the lag of information transmission and human operation errors are reduced, and the timeliness and reliability of pre-occupied input resource circulation supervision are effectively improved.

[0172] In some embodiments, the supervision system can also convert the nature of the pre-occupied input resource according to the stage of resource exchange to meet the resource supervision needs of different stages. In this case, as shown in Figure 8 the pre-occupied input resource supervision method further comprises:

[0173] S401, in response to the supervision state of the target pre-occupied object being switched from ownership not transferred to ownership transferred, determining the target pre-occupied input resource identification corresponding to the target pre-occupied object corresponding to the pre-occupied agreement information.

[0174] Specifically, the ownership state of the target pre-occupied object can include: ownership not transferred state and ownership transferred.

[0175] The ownership not transferred state means that the core rights such as ownership and use right of the target pre-occupied object still belong to the supplier, the pre-occupied party only obtains the pre-occupied qualification of the object according to the pre-occupied agreement, and the disposal right of the object is still dominated by the supplier. The ownership has not been transferred, and the pre-occupied party has not completed the legal or agreed ownership change procedure. While the ownership transferred means that the core rights such as ownership and use right of the target pre-occupied object have been formally changed to the pre-occupied party through legal procedure or agreement, and the pre-occupied party becomes the legal subject of the object, and has the complete right to occupy, use, benefit and dispose of it.

[0176] When the supervision state of the target pre-occupied object is switched from ownership not transferred to ownership transferred, it means that the ownership transfer condition of the target pre-occupied object has been reached, in this case, the actual supervision purpose of the pre-occupied input resource supervision has been reached, and the supervision system can convert it into the ownership exchange resource for supervision.

[0177] One possible implementation, the ownership state of the target pre-occupied object can be modified by a competent authority (such as a real estate registration center, a property rights trading center, etc.), and a state switching notification information is sent to the supervision system. After receiving the notification information, the supervision system verifies the identity of the sender, the integrity of the notification information, and confirms that the ownership state of the target pre-occupied object has been switched after the verification is passed, and then associates the target pre-occupied input resource identification from the pre-occupied agreement information corresponding to the target pre-occupied object.

[0178] S402, determine the target pre-occupation input resource supervision sub-node from the created pre-occupation input resource supervision sub-node based on the target pre-occupation input resource identification.

[0179] S403, convert the pre-occupation input resource recorded in the target pre-occupation input resource supervision sub-node into a right-exchange resource and record it in the resource supervision node.

[0180] In one possible implementation, the supervision system first locates the corresponding target pre-occupation input resource supervision sub-node based on the target pre-occupation input resource identification, extracts the complete information of the pre-occupation input resource recorded in the sub-node (including resource type, quantitative index, flow record, associated pre-occupation agreement number, etc.), and then converts these information according to the standard data format of the right-exchange resource. After the conversion is completed, the supervision system will transmit the generated right-exchange resource information to the resource supervision node, and create a new record entry in the resource supervision node, which records the source of the right-exchange resource (i.e. the identification of the corresponding target pre-occupation input resource supervision sub-node), the conversion time, the correspondence between the resource attributes before and after the conversion, and the associated target pre-occupation object right transfer certificate number, etc.

[0181] In addition, the supervision system will mark the state of "converted into right-exchange resource" in the target pre-occupation input resource supervision sub-node, and keep the log of the conversion operation (including operation time, operator, system instruction number, etc.), ensuring that the conversion process is traceable, and realizing the seamless connection between the pre-occupation input resource and the right-exchange resource in the supervision system.

[0182] It should be understood that the target pre-occupation object (included in the pre-occupation agreement information) can be associated with the corresponding target pre-occupation input resource identification. Further, when the right status of the target pre-occupation object changes, the target pre-occupation input resource supervision sub-node can be associated with the target pre-occupation input resource identification, so as to convert the pre-occupation input resource in the sub-node into a right-exchange resource, and realize the continuous supervision of the pre-occupation input resource in the supervision process.

[0183] Figure 9 A structural schematic diagram of a resource supervision device provided by an embodiment of the present application is shown in FIG. 1. As shown in the figure, the resource supervision device includes an acquisition module 901 and a processing module 902. Figure 9

[0184] The acquisition module 901 is configured to acquire pre-occupation agreement information. The pre-occupation agreement information is used to record pre-occupation objects and the pre-occupation input resources corresponding to the pre-occupation objects.

[0185] ​The processing module 902 is configured to generate a pre-occupancy input resource identification based on the pre-occupancy agreement information. Based on the pre-occupancy input resource identification, a pre-occupancy input resource supervision sub-node is created in the resource supervision node. The resource supervision node is configured to record the ownership exchange resource of the pre-occupancy object. The pre-occupancy input resource supervision sub-node is configured to record the flow information of the pre-occupancy input resource corresponding to the pre-occupancy input resource identification and the pre-occupancy object. The ownership exchange resource refers to a resource used for exchanging the ownership of the pre-occupancy object. In response to the flow operation of the pre-occupancy input resource, the flow information of the pre-occupancy input resource is recorded through the pre-occupancy input resource supervision sub-node.

[0186] In a possible implementation, the pre-occupancy agreement information includes attribute information of the pre-occupancy object, attribute information of the pre-occupancy input resource, an identifier of a pre-occupancy party of the pre-occupancy object, and an identifier of a supplier of the pre-occupancy object. The attribute information of the pre-occupancy object includes a type of the pre-occupancy object, location information of the pre-occupancy object, and an identification of the pre-occupancy object. The attribute information of the pre-occupancy input resource includes a type of the pre-occupancy input resource and a quantitative indicator of the pre-occupancy input resource.

[0187] In a possible implementation, the processing module 901 is further configured to obtain order generation request information sent by a back-end server of a resource receiving terminal. The order generation request information includes a pre-occupancy input resource identification to be verified. In response to the order generation request information, in a case where the pre-occupancy input resource identification to be verified meets a preset condition, the processing module 901 generates a resource in-flow order based on the order generation request information and sends the resource in-flow order to the back-end server of the resource receiving terminal. In response to in-flow confirmation information of the pre-occupancy input resource in the resource in-flow order sent by the back-end server of the resource receiving terminal, the processing module 901 determines that the in-flow operation of the pre-occupancy input resource is received. The flow operation includes the in-flow operation. The processing module 901 is specifically configured to determine, in response to the in-flow operation of the pre-occupancy input resource, a pre-occupancy input resource supervision sub-node corresponding to the pre-occupancy input resource identification to be verified. The processing module 901 records the flow information of the pre-occupancy input resource in the pre-occupancy input resource supervision sub-node corresponding to the pre-occupancy input resource identification to be verified.

[0188] In a possible implementation, the processing module 901 is further configured to determine, in response to in-flow confirmation information of the pre-occupancy input resource pushed by a resource management institution server and the pre-occupancy input resource identification to be verified, that the in-flow operation of the pre-occupancy input resource is received. The flow operation includes the in-flow operation. The processing module 901 is specifically configured to determine, in response to the in-flow operation of the pre-occupancy input resource, a pre-occupancy input resource supervision sub-node corresponding to the pre-occupancy input resource identification to be verified. The processing module 901 records the flow information of the pre-occupancy input resource in the pre-occupancy input resource supervision sub-node corresponding to the pre-occupancy input resource identification to be verified.

[0189] In a possible implementation, the preset condition comprises: the created pre-occupied input resource identification in the pre-occupied input resource supervision sub-node comprises a pre-occupied input resource identification to be verified. The pre-occupied input resource identification to be verified corresponds to pre-occupied agreement information that exists in a pre-occupied input resource to be merged.

[0190] In a possible implementation, the processing module 901 is further configured to: in response to the supervision state of the target pre-occupied object being switched from the ownership not being transferred to the ownership being transferred, determine a target pre-occupied input resource identification corresponding to the target pre-occupied object corresponding pre-occupied agreement information. Based on the target pre-occupied input resource identification, determine a target pre-occupied input resource supervision sub-node from the created pre-occupied input resource supervision sub-node. Convert the pre-occupied input resource recorded in the target pre-occupied input resource supervision sub-node into an ownership exchange resource and record the ownership exchange resource in the resource supervision node.

[0191] The resource supervision apparatus provided by the embodiments of the present application can perform the method shown in the method embodiments, and the implementation principles and beneficial effects can refer to the related description in the method embodiments, which will not be repeated here.

[0192] Figure 10 A structural schematic diagram of an electronic device is provided in the embodiments of the present application. As shown in the figure, the electronic device comprises a memory 1001, a transceiver 1002 and at least one processor 1003. Figure 10

[0193] The transceiver 1002 is used to interact with other devices to realize the sending and receiving of data. For example, in the embodiments of the present application, the transceiver 1002 can be specifically used to acquire the order generation request information sent by the management server of the resource receiving terminal.

[0194] The memory 1001 is used to store computer program code, which comprises computer instructions. The computer instructions run in the above-mentioned electronic device, and are used to implement the method shown in the above-mentioned method embodiments. For example, the memory can include a random access memory (RAM), and can also include a non-volatile memory (NVM), such as at least one disk memory, and can also be a U disk, a mobile hard disk, a read-only memory, a magnetic disk or an optical disk, etc.

[0195] ​The processor 1003 can be a general processor, including a central processing unit (CPU), a network processor (NP), etc. The processor 1003 can also be a digital signal processor (DSP), an application specific integrated circuit (ASIC), a field programmable gate array (FPGA) or other programmable logic device, discrete gate or transistor logic, discrete hardware components. The processor 1003 can also be other general processors. The general processor can be a microprocessor or the processor can also be any conventional processor.

[0196] The memory 1001, the transceiver 1002 and the processor 1003 are communicatively connected. For example, the memory 1001, the transceiver 1002 can be connected with the processor 1003 through a system bus and complete communication among each other. The system bus can be a peripheral component interconnect (PCI) bus or an extended industry standard architecture (EISA) bus, an industry standard architecture (ISA) bus, etc. The system bus can be divided into an address bus, a data bus, a control bus, etc. For the convenience of representation, only one thick line is used in the figure, but it does not mean that there is only one bus or only one type of bus.

[0197] Optionally, the memory 1001 can be independent or integrated with the processor 1003. When the memory 1001 is independently arranged, the memory 1001 and the processor 1003 are connected through a system bus.

[0198] The embodiment of the present application further provides a chip for running instructions, which is used for executing the technical solutions of the pre-occupying input resource monitoring method in the above embodiment.

[0199] The embodiment of the present application further provides a computer readable storage medium, which stores computer instructions. When the computer instructions are executed by a processor, the technical solutions of the pre-occupying input resource monitoring method in the above embodiment are implemented. Specifically, when the computer instructions are executed by the processor, the pre-occupying input resource monitoring device can execute the technical solutions of the pre-occupying input resource monitoring method in the above embodiment.

[0200] The embodiment of the present application further provides a computer program product, which comprises a computer program stored in a computer readable storage medium, at least one processor can read the computer program from the computer readable storage medium, and the at least one processor can implement the technical solution of the pre-occupancy input resource supervision method in the above embodiment when executing the computer program.

[0201] The computer readable storage medium can be realized by any type of volatile or nonvolatile storage devices or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic storage, flash memory, magnetic disk or optical disk. The computer readable storage medium can be any available medium that can be accessed by a general or special purpose computer.

[0202] An exemplary computer readable storage medium is coupled to the processor, so that the processor can read information from the storage medium and write information to the computer readable storage medium. Of course, the computer readable storage medium can also be an integral part of the processor. The processor and the computer readable storage medium can be located in an application specific integrated circuit (ASIC). Of course, the processor and the computer readable storage medium can also exist as discrete components in an electronic control unit or a host device, and the embodiment of the present application does not limit this.

[0203] In several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. For example, the device embodiments described above are merely illustrative, for example, the division of the modules is only a logical function division, and actual implementation can have another division manner, for example, a plurality of modules can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the displayed or discussed ones can be indirect coupling or communication connection through some interfaces, devices or modules, and can be electrical, mechanical or other forms.

[0204] The modules described as separate components may or may not be physically separate, and the components shown as modules may or may not be physical units, i.e., may be located in one place, or may be distributed to multiple network units. Part or all of the modules can be selected according to actual needs to implement the embodiments of the present application.

[0205] In addition, the functional modules in each embodiment of the present application can be integrated in one processing unit, or each module can be physically present alone, or two or more modules can be integrated in one unit. The unit formed by the above modules can be realized in the form of hardware or in the form of hardware plus software functional units.

[0206] The integrated modules realized in the form of software functional modules can be stored in a computer readable storage medium. The software functional modules stored in a storage medium include a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor to execute part of the steps of the method of each embodiment of the present application.

[0207] It should be understood that the steps of the method disclosed in the embodiments of the present application can be directly embodied as hardware processor execution, or executed by a combination of hardware and software modules in the processor.

[0208] Those of ordinary skill in the art can understand that all or part of the steps of the above-mentioned method embodiments can be completed by program instruction related hardware. The aforementioned program can be stored in a computer readable storage medium. The program, when executed, executes steps including the above-mentioned method embodiments; and the aforementioned storage medium includes ROM, RAM, magnetic or optical disk, and various media that can store program codes.

[0209] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the above embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the above embodiments, or make equivalent replacements for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A method for monitoring pre-occupied resources, characterized in that, The methods include: Obtain pre-occupancy agreement information; the pre-occupancy agreement information is used to record the pre-occupancy object and the pre-occupancy investment resources corresponding to the pre-occupancy object; Generate a pre-reservation resource identification identifier corresponding to the pre-reservation agreement information; Based on the pre-occupied resource identification identifier, a pre-occupied resource supervision sub-node is created in the resource supervision node; the resource supervision node is used to record the ownership exchange resources of the pre-occupied object; the pre-occupied resource supervision sub-node is used to associate and record the flow information of the pre-occupied resource identification identifier and the pre-occupied resource corresponding to the pre-occupied object; the ownership exchange resources refer to the resources used to exchange the ownership of the pre-occupied object; In response to the transfer operation of the pre-allocated resources, the transfer information of the pre-allocated resources is recorded through the pre-allocated resources supervision sub-node.

2. The method according to claim 1, characterized in that, The pre-occupancy agreement information includes: attribute information of the pre-occupied object, attribute information of the pre-occupied resources, the pre-occupier identifier of the pre-occupied object, and the supplier identifier of the pre-occupied object; The attribute information of the pre-occupied object includes: the type of the pre-occupied object, the location information of the pre-occupied object, and the identification identifier of the pre-occupied object; The attribute information of the pre-occupied investment resources includes: the type of the pre-occupied investment resources and the quantitative indicators of the pre-occupied investment resources.

3. The method according to claim 1, characterized in that, Before recording the flow information of the pre-allocated resources through the pre-allocated resource monitoring sub-node in response to the flow operation of the pre-allocated resources, the method further includes: Obtain order generation request information sent by the backend server of the resource receiving terminal; the order generation request information includes an identifier for the pre-allocated resources to be verified. In response to the order generation request information, if the identification identifier of the pre-occupied resource to be verified meets the preset conditions, a resource import order is generated based on the order generation request information and sent to the backend server of the resource receiving terminal; In response to the backend server of the resource receiving terminal's confirmation information regarding the pre-reserved resources in the resource import order, it is determined that the import operation of the pre-reserved resources has been received; the circulation operation includes the import operation. The response to the transfer operation of the pre-allocated resources, the pre-allocated resources monitoring sub-node records the transfer information of the pre-allocated resources, including: In response to the inflow operation of the pre-occupied resources, determine the pre-occupied resource supervision sub-node corresponding to the identification identifier of the pre-occupied resources to be verified; The flow information of the pre-occupied resources is recorded in the pre-occupied resource supervision sub-node corresponding to the pre-occupied resource identification identifier to be verified.

4. The method according to claim 1, characterized in that, Before recording the flow information of the pre-allocated resources through the pre-allocated resource monitoring sub-node in response to the flow operation of the pre-allocated resources, the method further includes: In response to the confirmation information of the pre-reserved investment resources and the identification identifier of the pre-reserved investment resources to be verified pushed by the resource management agency server, it is determined that the pre-reserved investment resource import operation has been received; the circulation operation includes the import operation. The response to the transfer operation of the pre-allocated resources, the pre-allocated resources monitoring sub-node records the transfer information of the pre-allocated resources, including: In response to the import operation of the pre-reserved investment resources, if the identification identifier of the pre-reserved investment resources to be verified meets the preset conditions, the pre-reserved investment resource supervision sub-node corresponding to the identification identifier of the pre-reserved investment resources to be verified in the order generation request information is determined. The flow information of the pre-reserved resources is recorded in the pre-reserved resource supervision sub-node corresponding to the pre-reserved resource identification identifier in the order generation request information.

5. The method according to claim 3 or 4, characterized in that, The preset conditions include: The pre-occupied resource identification identifier in the created pre-occupied resource supervision sub-node includes the pre-occupied resource identification identifier to be verified; The pre-reservation protocol information corresponding to the pre-reservation resource identification identifier to be verified contains pre-reservation resources to be imported.

6. The method according to claim 1, characterized in that, The method further includes: In response to the change in the regulatory status of the target pre-occupied object from ownership not transferred to ownership transferred, the target pre-occupied resource identification identifier corresponding to the pre-occupied agreement information of the target pre-occupied object is determined; Based on the target pre-occupied resource identification identifier, determine the target pre-occupied resource supervision sub-node from the already created pre-occupied resource supervision sub-nodes; The pre-occupied resources recorded in the target pre-occupied resource supervision sub-node are converted into ownership exchange resources and recorded in the resource supervision node.

7. A monitoring device, characterized in that, include: Acquisition module and processing module; The acquisition module is used to acquire pre-occupancy agreement information; The pre-occupancy agreement information is used to record the pre-occupancy object and the pre-occupancy investment resources corresponding to the pre-occupancy object; The processing module is used to generate a pre-occupied resource identification identifier corresponding to the pre-occupied protocol information based on the pre-occupied protocol information. Based on the pre-occupied resource identification identifier, a pre-occupied resource supervision sub-node is created in the resource supervision node; the resource supervision node is used to record the ownership exchange resources of the pre-occupied object; the pre-occupied resource supervision sub-node is used to associate and record the flow information of the pre-occupied resource identification identifier and the pre-occupied resource corresponding to the pre-occupied object; the ownership exchange resources refer to the resources used to exchange the ownership of the pre-occupied object; in response to the flow operation of the pre-occupied resource, the flow information of the pre-occupied resource is recorded through the pre-occupied resource supervision sub-node.

8. An electronic device, characterized in that, include: A memory and at least one processor; the memory is communicatively connected to the processor; the memory is used to store computer program code, the computer program code including computer instructions; when the processor executes the computer instructions, the electronic device performs the method as described in any one of claims 1-6.

9. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores computer instructions that, when executed by a processor, are used to implement the method as described in any one of claims 1-6.

10. A computer program product, characterized in that, When the computer program product is run on a computer / executed by the computer's processor, it implements the method as described in any one of claims 1-6.