File processing method and device, equipment, storage medium and program product

By creating artboards for cutting files in the template machine CAM software and achieving synchronous configuration, the problem of cumbersome image processing in the existing technology is solved, and file processing efficiency and production efficiency are improved.

CN120386771APending Publication Date: 2025-07-29SUZHOU INOVANCE TECH CO LTD
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Patent Information

Application Number
CN202510433940.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-07-29

AI Technical Summary

Technical Problem

When the existing template machine CAM software processes multi-part and multi-size sheet-cut files, it is necessary to process each sheet-cut images separately, resulting in cumbersome operations and inefficient file processing.

Method used

Display multiple clip images of the clip file in the file processing interface, and create artboards for each clip image separately. By selecting the target clipboard, synchronous configuration of at least two target clip images, including synchronous setting of processing reference points and sewing parameters, and finally converting the needle diagram file into a processing file of the template machine.

Benefits of technology

The synchronous configuration of batch processing of multiple clipped images is realized, which reduces the cumbersome operation, improves file processing efficiency, simplifies operational processes, and improves production efficiency.

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Abstract

The invention discloses a file processing method and device, equipment, a storage medium and a program product, and relates to the technical field of sewing, the method comprises the following steps: in response to an import operation for a cut-part file, displaying a plurality of cut-part images in the cut-part file in a working area of a file processing interface; in response to a drawing board creation operation for each cut-part image, creating a drawing board for each cut-part image, so that each cut-part image is correspondingly placed on each drawing board, i.e., each cut-part image is separated by the created drawing board; and in response to the editing operation for the selected at least two target drawing boards, performing synchronous configuration on the target cut-part images corresponding to the at least two target drawing boards, namely, enabling a user to realize batch configuration on the target cut-part images corresponding to the at least two target drawing boards in a form of selecting the target drawing boards, so that the user experience is improved, and the user experience is improved. The cut-part images do not need to be repeatedly processed separately, so that the operation complexity is reduced, and the file processing efficiency is improved.
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Description

Technical Field

[0001] This application relates to the field of sewing technology, and particularly to a file processing method, apparatus, device, storage medium, and program product. Background Art

[0002] The template machine CAM (Computer Aided Manufacturing) software is usually used for processing cut piece files. Since multiple cut piece images (including sewing lines) in the cut piece files imported into the software are usually displayed in the form of lines, when configuring a certain cut piece image, other cut piece images need to be deleted to complete the configuration.

[0003] In the sewing industry, cut piece files of multiple parts of a whole garment and cut piece files of multiple sizes of a whole garment are relatively common. In these cut piece files, there are usually multiple cut piece images with the same processing requirements. However, the above software can only separately and repeatedly process each cut piece image, resulting in cumbersome operations and low file processing efficiency. Summary of the Invention

[0004] The main objective of this application is to provide a file processing method, apparatus, device, storage medium, and program product, aiming to solve the technical problem of low file processing efficiency.

[0005] To achieve the above objective, this application proposes a file processing method, and the method includes:

[0006] In response to an import operation for a cut piece file, display multiple cut piece images in the cut piece file in the work area of the file processing interface;

[0007] In response to a drawing board creation operation for each of the cut piece images, create a drawing board for each of the cut piece images, so that each of the cut piece images is respectively placed on each of the drawing boards;

[0008] In response to an editing operation for at least two selected target drawing boards, synchronously configure the target cut piece images corresponding to the at least two target drawing boards.

[0009] In an embodiment, the step of, in response to an editing operation for at least two selected target drawing boards, synchronously configuring the target cut piece images corresponding to the at least two target drawing boards includes:

[0010] In response to a selection operation for the at least two target drawing boards, display a parameter configuration interface for the at least two target cut piece images on the control panel of the file processing interface;

[0011] In response to an editing operation on the parameter configuration interface, synchronously configure the target cut piece images corresponding to the at least two target drawing boards.

[0012] In one embodiment, the parameter configuration interface includes a processing parameter configuration area, and the processing parameter configuration area includes a default configuration control for a reference point and a sewing parameter configuration window. The step of synchronously configuring the target cut piece images corresponding to the at least two target drawing boards in response to an editing operation on the parameter configuration interface includes:

[0013] In response to a triggering operation on the default configuration control, synchronously configure the processing reference point of the target cut piece image on the template machine;

[0014] In response to an input operation on the sewing parameter configuration window, synchronously configure the sewing parameters of the target cut piece image on the template machine.

[0015] In one embodiment, after the step of synchronously configuring the target cut piece images corresponding to the at least two selected target drawing boards in response to an editing operation on the at least two selected target drawing boards, the method further includes:

[0016] In response to a confirmation operation on the sewing parameters, determine the stitch path diagram file;

[0017] In response to a save operation on the cut piece image after synchronous configuration, convert the stitch path diagram file into a processing file for the template machine.

[0018] In one embodiment, the step of converting the stitch path diagram file into a processing file for the template machine in response to a save operation on the cut piece image after synchronous configuration includes:

[0019] In response to a save operation on the cut piece image after synchronous configuration, display a file save interface;

[0020] In response to a confirmation save operation on the checked cut piece images in the file save interface, convert the stitch path diagram file into a processing file for the template machine.

[0021] In one embodiment, the parameter configuration interface further includes a drawing board design area. Before the step of synchronously configuring the target cut piece images corresponding to the at least two selected target drawing boards in response to an editing operation on the at least two selected target drawing boards, the method further includes:

[0022] In response to an editing operation on the drawing board name in the drawing board design area, determine a custom drawing board name;

[0023] The step of converting the stitch path diagram file into a processing file for a template machine in response to a confirmation save operation for the selected cut piece images in the file saving interface includes:

[0024] In response to the confirmation save operation for the selected cut piece images, use the custom drawing board name as the file name, and based on this file name, convert the stitch path diagram file into a processing file for a template machine.

[0025] In one embodiment, the step of displaying multiple cut piece images in the cut piece file in the work area of the file processing interface in response to an import operation for the cut piece file includes:

[0026] In response to the import operation for the cut piece file, display multiple cut piece images in the cut piece file on a preset drawing board in the work area.

[0027] In one embodiment, the step of creating a drawing board for each of the cut piece images in response to a drawing board creation operation for each of the cut piece images, so that each of the cut piece images is respectively placed on each of the drawing boards includes:

[0028] In response to a drag operation of dragging a selected cut piece image to a blank area outside the preset drawing board, display the selected cut piece image in the blank area;

[0029] In response to an editing operation on the selected cut piece image in the blank area, display a first shortcut menu;

[0030] In response to a selection operation for the drawing board creation option in the first shortcut menu, based on the frame size of the selected cut piece image, create a drawing board for the selected cut piece image in the blank area, so that each of the cut piece images is respectively placed on each of the drawing boards.

[0031] In one embodiment, the step of creating a drawing board for each of the cut piece images in response to a drawing board creation operation for each of the cut piece images, so that each of the cut piece images is respectively placed on each of the drawing boards further includes:

[0032] In response to a drawing board creation operation for each of the cut piece images, create a corresponding number of drawing boards in a blank area outside the preset drawing board according to the number of cut piece images in the cut piece file;

[0033] In response to a drag operation of dragging a selected cut piece image to the drawing board, place the selected cut piece image correspondingly on the drawing board, so that each of the cut piece images is respectively placed on each of the drawing boards.

[0034] In one embodiment, the step of correspondingly placing the selected cut piece image on the drawing board in response to the dragging operation of dragging the selected cut piece image to the drawing board includes:

[0035] In response to the dragging operation of dragging the selected cut piece image to within the preset hot zone range of the drawing board, based on the material frame line of the selected cut piece image and the boundary line of the corresponding drawing board, align the selected cut piece image and its corresponding drawing board to correspondingly place the selected cut piece image on the drawing board.

[0036] In one embodiment, the step of correspondingly creating a drawing board for each cut piece image in response to the drawing board creation operation for each cut piece image so that each cut piece image is correspondingly placed on each drawing board includes:

[0037] In response to the editing operation on the preset drawing board, display a second shortcut menu;

[0038] In response to the selection operation on the drawing board splitting option in the second shortcut menu, based on the material frame lines of each cut piece image, identify the edge lines of each cut piece image through a preset closed-loop graphic recognition algorithm, and based on the edge lines, crop the preset drawing board to obtain multiple drawing boards and each cut piece image correspondingly placed on each drawing board.

[0039] In addition, to achieve the above object, the present application also proposes a file processing device, where the file processing device includes:

[0040] An import module, configured to display multiple cut piece images in the cut piece file in the working area of the file processing interface in response to the import operation on the cut piece file;

[0041] A creation module, configured to correspondingly create a drawing board for each cut piece image in response to the drawing board creation operation for each cut piece image so that each cut piece image is correspondingly placed on each drawing board;

[0042] A synchronization configuration module, configured to synchronously configure the target cut piece images corresponding to at least two target drawing boards in response to the editing operation on the at least two selected target drawing boards.

[0043] In addition, to achieve the above object, the present application also proposes a file processing device, where the device includes: a memory, a processor, and a computer program stored on the memory and executable on the processor, and the computer program is configured to implement the steps of the file processing method as described above.

[0044] In addition, to achieve the above object, the present application further provides a storage medium, which is a computer-readable storage medium. A computer program is stored on the storage medium, and when the computer program is executed by a processor, the steps of the file processing method described above are implemented.

[0045] In addition, to achieve the above object, the present application further provides a computer program product, which includes a computer program. When the computer program is executed by a processor, the steps of the file processing method described above are implemented.

[0046] One or more technical solutions proposed by the present application have at least the following technical effects:

[0047] In response to an import operation for a cut piece file, the present application displays multiple cut piece images in the cut piece file in the working area of the file processing interface; in response to a drawing board creation operation for each cut piece image, a drawing board is created for each cut piece image, so that each cut piece image is respectively placed on each drawing board, that is, each cut piece image is separated by the created drawing board; in response to an editing operation for at least two selected target drawing boards, synchronous configuration is performed on the target cut piece images corresponding to the at least two target drawing boards, that is, the user can realize batch configuration of the target cut piece images corresponding to the at least two target drawing boards by selecting the target drawing boards, without separately performing repeated processing on each cut piece image, reducing the complexity of operations and improving the file processing efficiency. Description of the Drawings

[0048] The drawings here are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present application, and are used together with the specification to explain the principles of the present application.

[0049] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, for those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0050] Figure 1 It is a schematic flowchart provided for the first embodiment of the file processing method of the present application;

[0051] Figure 2 It is a schematic flowchart provided for the second embodiment of the file processing method of the present application;

[0052] Figure 3 It is a schematic diagram of the first scenario provided for the first embodiment of the file processing method of the present application;

[0053] Figure 4 It is a schematic diagram of the second scenario provided for the second embodiment of the file processing method of the present application;

[0054] Figure 5 This is the schematic diagram of the third scenario provided by the third embodiment of the method for processing application documents;

[0055] Figure 6 This is the schematic diagram of the fourth scenario provided by the third embodiment of the method for processing application documents;

[0056] Figure 7 This is the schematic diagram of the module structure of the document processing device according to the embodiment of the present application;

[0057] Figure 8 This is the schematic diagram of the device structure of the hardware operating environment involved in the document processing method according to the embodiment of the present application.

[0058] The implementation, functional features and advantages of the present application will be further described in conjunction with the embodiments with reference to the accompanying drawings. Specific Embodiments

[0059] It should be understood that the specific embodiments described herein are only used to explain the technical solutions of the present application and are not used to limit the present application.

[0060] For a better understanding of the technical solutions of the present application, the following will be described in detail in conjunction with the accompanying drawings of the specification and specific embodiments.

[0061] It should be noted that the execution subject of this embodiment can be a computing service device with data processing, network communication and program running functions, such as a tablet computer, a personal computer, a mobile phone, etc., or an electronic device, a document processing device, etc. that can implement the above functions. Hereinafter, the document processing device will be taken as an example to describe this embodiment and the following embodiments.

[0062] Based on this, the embodiment of the present application provides a document processing method, referring to Figure 1 , Figure 1 This is the flowchart of the first embodiment of the document processing method of the present application.

[0063] In this embodiment, the document processing method includes steps S10 to S30:

[0064] Step S10, in response to the import operation for the cut piece file, display multiple cut piece images in the cut piece file in the working area of the document processing interface;

[0065] Step S20, in response to the operation of creating a drawing board for each cut piece image, create a drawing board for each cut piece image respectively, so that each cut piece image is respectively placed on each drawing board;

[0066] It should be noted that since the template machine CAM software is usually used for processing cut piece files, and multiple cut piece images (including sewing lines) in the cut piece files imported into the software are usually displayed in the form of lines. When configuring a certain cut piece image, other cut piece images need to be deleted to complete the configuration. In the sewing industry, cut piece files of multiple parts of a whole garment and cut piece files of multiple sizes of a whole garment are relatively common. In these cut piece files, the processing requirements of multiple cut piece images are usually the same. However, the above-mentioned template machine CAM software can only separately and repeatedly process each cut piece image, resulting in cumbersome operations and low file processing efficiency.

[0067] This embodiment aims to provide a file processing method, enabling users to perform batch editing operations in the form of selecting drawing boards, thereby completing batch processing of multiple cut piece images in the cut piece file, without separately and repeatedly processing each cut piece image, reducing the cumbersome degree of operations, and improving the file processing efficiency. This file processing method is applied to a file processing device or a file processing equipment. Hereinafter, the file processing device is taken as an example for illustration. Among them, the file processing device or the file processing equipment has a display screen.

[0068] Specifically, referring to Figure 2 , the file processing device, in response to an import operation for the cut piece file, displays multiple cut piece images in the cut piece file in the working area of the file processing interface. That is, when the user imports the cut piece file through the file processing device, the file processing device displays multiple cut piece images in the cut piece file in the working area of the file processing interface.

[0069] For example, the file processing device displays the contour lines and sewing lines of each cut piece in layers in the working area of the file processing interface (where each sewing line is a primitive).

[0070] Furthermore, the user can trigger a drawing board creation operation for each cut piece image in the file processing interface (for example, by clicking the drawing board creation button displayed in the file processing interface, or by clicking the drawing board creation function that pops up when right-clicking after selecting each cut piece image). The file processing device, in response to the drawing board creation operation for each cut piece image, creates a drawing board for each cut piece image respectively, so that each cut piece image is respectively placed on each drawing board, that is, each cut piece image corresponds to a drawing board respectively. Refer to Figure 3 .

[0071] It can be understood that through the form of creating a drawing board, the cut piece images displayed on the drawing board are independent of each other in the working area. The user can edit each cut piece image separately without affecting other cut piece images.

[0072] Step S30: In response to an editing operation on at least two selected target drawing boards, synchronously configure the target cutting piece images corresponding to the at least two target drawing boards.

[0073] Further, the user can select at least two target drawing boards from the drawing boards and trigger an editing operation on the at least two target drawing boards. Since each cutting piece image is respectively placed on each drawing board, by triggering the editing operation on the at least two target drawing boards, the synchronous configuration of the target cutting piece images corresponding to the at least two target drawing boards can be realized; that is, through the batch editing operation on the at least two target drawing boards, the batch configuration operation of the at least two cutting piece images is realized, improving the operation convenience, so as to obtain the cutting piece images after batch configuration.

[0074] Among them, the editing operation on the at least two target drawing boards includes a selection operation or a configuration operation on the at least two target drawing boards.

[0075] Specifically, the specific implementation manner of synchronously configuring the target cutting piece images corresponding to the at least two selected target drawing boards in response to the editing operation can be:

[0076] In response to the selection operation on the at least two target drawing boards, display a parameter configuration interface for the at least two target cutting piece images on the control panel of the file processing interface; in response to the editing operation on the parameter configuration interface, synchronously configure the target cutting piece images corresponding to the at least two target drawing boards.

[0077] It can be understood that since the at least two target cutting piece images are placed on the at least two target drawing boards, the user can select the at least two target cutting piece images to be processed by selecting the at least two target drawing boards; in order to improve the user's convenience, the file processing device displays a parameter configuration interface for the at least two target cutting piece images on the control panel of the file processing interface in response to the selection operation on the at least two target drawing boards; that is, after the user selects the target drawing board to be processed, the parameter configuration interface can be seen at the control panel without the user having to search for the parameter configuration interface again.

[0078] Further, the user can perform a synchronous configuration operation on the at least two target cutting piece images on the parameter configuration interface as needed, so as to obtain the cutting piece images after synchronous configuration.

[0079] Among them, the parameter configuration interface includes a processing parameter configuration area, a cutting piece attribute setting area, etc. The processing parameter configuration area includes a default configuration control for the reference point and a sewing parameter configuration window, etc.

[0080] Specifically, the specific implementation manner of synchronously configuring the target cutting piece images corresponding to the at least two target drawing boards in response to the editing operation on the parameter configuration interface can be:

[0081] In response to a triggering operation on the default configuration control, synchronously configure the processing reference points of the target piece image on the template machine; in response to an input operation on the sewing parameter configuration window, synchronously configure the sewing parameters of the target piece image on the template machine.

[0082] It should be noted that since the template machine usually starts sewing based on a set starting point during sewing, at least two processing reference points of the target piece images on the template machine need to be correspondingly set with this starting point to ensure that there is no sewing deviation during the processing of the template machine.

[0083] Refer to Figure 2 , in order to ensure that all piece images can be positioned and sewn according to a unified standard in the template machine (that is, sewn based on the same processing coordinate system), in this embodiment, a default configuration control for the reference point can be set in the parameter configuration interface. When the user batch selects multiple piece images or all piece images, by triggering the default configuration control of the reference point (refer to Figure 4 ), a batch reference-free operation (an operation of batch setting the processing reference points of at least two target piece images on the template machine) is performed, that is, the processing reference points of at least two target piece images on the template machine are set as the default reference points, realizing the synchronous configuration of the processing reference points of the target piece images on the template machine.

[0084] Specifically, after the user clicks the default configuration control, a prompt message (such as "Reference-free successful", etc.) can pop up on the file processing interface to prompt that the default reference point has been successfully applied to at least two target piece images; at the same time, after the user clicks the default configuration control, the file processing device recognizes the frame lines of at least two target piece images, and adjusts the positions of at least two target piece images based on the frame lines to align them with the reference points (for example, aligning the upper left corner position of the frame line with the center of the reference coordinate axis). After the reference point is successfully set, the drawing board automatically shrinks to align with the frame line and removes the frame line, refer to Figure 3 .

[0085] In addition, refer to Figure 2 , the user can also flexibly select piece images according to the processing technology requirements; specifically, a piece image that needs to be set with process parameters separately can be selected (for example: collar), or multiple piece images that need to be set with the same process parameters can be selected (for example: left sleeve, right sleeve).

[0086] After the user selects the piece images to be processed (at least two target piece images), through the sewing parameter configuration window (refer to Figure 3, the sewing parameters can be configured by clicking on the layer setting control to open the sewing parameter configuration window and inputting information. The configured sewing parameters will be applied to the selected piece images in batches to obtain the sewing parameters of at least two target piece images on the template machine, realizing the synchronous configuration of the sewing parameters of the target piece images on the template machine, thereby completing the batch configuration of multiple piece images in the piece file, without the need to separately and repeatedly process each piece image, reducing the complexity of operations and improving the file processing efficiency.

[0087] Among them, the sewing parameters can be parameters such as stitch length, reverse sewing method, function code instructions, etc.

[0088] In this embodiment, the file processing device, in response to importing a piece file, displays multiple piece images in the piece file in the work area of the file processing interface. In response to the operation of creating a drawing board for each piece image, a drawing board is created for each piece image respectively, so that each piece image is respectively placed on each drawing board, and each piece image is separated by the created drawing board. In response to the editing operation on at least two target piece images corresponding to at least one selected target drawing board in the drawing board, the synchronous configuration of the target piece images corresponding to at least two target drawing boards is performed, enabling the user to realize batch editing operations by selecting the form of the drawing board, thereby completing the batch processing of multiple piece images in the piece file, simplifying the operation process, saving operation steps; breaking the original complex working mode of repeated editing and improving the file processing efficiency.

[0089] Based on the first embodiment of the present application, in the second embodiment of the present application, the same or similar content as in the above-mentioned first embodiment can be referred to the above introduction and will not be repeated hereinafter. On this basis, after step S10, it is also possible to:

[0090] In response to the confirmation operation for the sewing parameters, determine the stitch path diagram file; in response to the save operation for the piece images after synchronous configuration, convert the stitch path diagram file into a processing file for the template machine.

[0091] It should be noted that the current template machine CAM software needs to separately set the process parameters for each piece image to obtain the stitch path diagram file corresponding to the single piece image. Further, it is necessary to separately save the piece image to obtain a separate processing file for the template machine (a file containing sewing needle points that can be recognized by the template machine), then process other piece images and save them separately, with repeated operations, resulting in a long time-consuming.

[0092] In this embodiment, it is only necessary to batch confirm the sewing parameters of the piece images after synchronous configuration and batch save the piece images after synchronous configuration, then a stitch path diagram file containing the sewing parameters of the piece images after synchronous configuration can be obtained, and the stitch path diagram file is batch converted into a processing file for the template machine.

[0093] Specifically, if in response to a confirmation operation for sewing parameters, it is confirmed that the user has completed the parameter setting for the cut piece image, the file processing device can convert the cut piece image composed of lines into a stitch path diagram file.

[0094] In addition, in response to a save operation for the cut piece image after synchronization configuration, a specific implementation manner of converting the stitch path diagram file into a processing file for the template machine can be:

[0095] In response to a save operation for the cut piece image after synchronization configuration, display a file save interface; in response to a confirmation save operation for the cut piece image selected in the file save interface, convert the stitch path diagram file into a processing file for the template machine.

[0096] It should be noted that in response to a save operation for the cut piece image after synchronization configuration, the file processing device can display a file save interface, and by default, all drawing boards are in a selected state in the file save interface. If the user needs to save the cut piece images corresponding to all drawing boards, the user can directly click to save. If the user only wants to save the cut piece images corresponding to some drawing boards, the user can cancel the selection of the unnecessary drawing boards, and complete the saving of multiple cut piece images at one time. Refer to Figure 4 ; when the user clicks buttons such as uploading to the cloud or confirming save to trigger the confirmation save operation, the file processing device can perform format conversion processing on the stitch path diagram file to obtain a processing file for the template machine.

[0097] In the actual application process, the template machine can process the corresponding garment cut pieces according to the processing file for the template machine (including processing instructions and sewing stitch points), and put into production quickly. This can improve the production efficiency of the garment sewing factory.

[0098] In order to facilitate the user to clearly understand the current editing object when editing at least two target cut piece images displayed on the target drawing board, the parameter configuration interface can also set a drawing board design area. Before the step of synchronously configuring the target cut piece images corresponding to at least two target drawing boards in response to an editing operation for the selected at least two target drawing boards, it can also:

[0099] In response to an editing operation for the drawing board name in the drawing board design area, determine a custom drawing board name.

[0100] During the process of file saving, it can be default that the processing file for the template machine is named with the default name when the drawing board is created (for example, drawing board 1, drawing board 2, etc.). If the user has such a need, the user can modify the default name of the drawing board in the working area, or can also modify the default name of the drawing board in the file save interface.

[0101] Specifically, the user can perform an editing operation on the default name in the design area of the drawing board, that is, the user can customize the name and view the name of the drawing board in the details.

[0102] In order to facilitate the user to clearly and simply associate the saved cutting image with the edited cutting image when editing the target cutting image or saving the cutting image after synchronizing the configuration, a specific implementation manner of converting the stitch diagram file into a processing file of the template machine in response to the confirmation save operation for the checked cutting image in the file save interface can be:

[0103] In response to the confirmation save operation for the checked cutting image, use the customized drawing board name as the file name, and based on the file name, convert the stitch diagram file into a processing file of the template machine.

[0104] It should be noted that when the user confirms to save the checked cutting image, the file processing device can use the customized drawing board name as the file name, so that when the user confirms to save the checked cutting image, the cutting image to be saved can be clearly and simply associated with the edited cutting image. For example, when editing, the customized drawing board name of one of the target drawing boards is "left sleeve", and when the file is saved, the file name of the processing file of the template machine corresponding to one of the target cutting images is also "left sleeve". This is convenient for the user to find or identify whether the corresponding cutting image needs to be saved, etc. Further, based on the file name, the stitch diagram file is converted into a processing file of the template machine, avoiding omissions of cutting images caused by human negligence, and facilitating file verification based on the file name.

[0105] In this embodiment, by batch-saving the configured cutting images, the processing file of the template machine is quickly obtained, breaking the original complex working mode of saving cutting images one by one, and improving the file processing efficiency.

[0106] Based on the first embodiment and the second embodiment of the present application, in the third embodiment of the present application, the same or similar content as that in the above-mentioned first embodiment can be referred to the above introduction and will not be repeated hereinafter. On this basis, the specific implementation manner of step S10 can be:

[0107] In response to the import operation for the cutting file, display multiple cutting images in the cutting file on the preset drawing board in the work area.

[0108] In order to improve the guidance for the user to create a drawing board for the cutting image after importing the cutting file, in this embodiment, the file processing device displays multiple cutting images in the cutting file on the preset drawing board in the work area in response to the import operation for the cutting file, referring to Figure 5, all the cut-piece images in the cut-piece file (for example, the cut-piece file of a down jacket includes cut-piece images of multiple parts such as the front placket, back placket, left sleeve, right sleeve, collar, pocket, etc.) are displayed on the same preset drawing board.

[0109] Compared with the way of creating prompts or creating selections through the drawing board, by displaying multiple cut-piece images in the cut-piece file on the preset drawing board in the work area, the concept of the drawing board is directly provided to the user, enabling the user to quickly find the function of creating the drawing board after importing the cut-piece file and improving the user experience.

[0110] Specifically, in response to the drawing board creation operation for each cut-piece image, the specific implementation of creating a drawing board for each cut-piece image so that each cut-piece image is respectively placed on each drawing board can be:

[0111] In response to the drag operation of dragging the selected cut-piece image to the blank area outside the preset drawing board, the selected cut-piece image is displayed in the blank area; in response to the editing operation on the selected cut-piece image in the blank area, the first quick menu is displayed; in response to the selection operation for the drawing board creation option in the first quick menu, based on the frame size of the selected cut-piece image, a drawing board is created for the selected cut-piece image in the blank area so that each cut-piece image is respectively placed on each drawing board.

[0112] Refer to Figure 6 , the user can drag any one of the selected images (selected cut-piece images) among the multiple cut-piece images to the blank area outside the preset drawing board, and the selected cut-piece image is displayed in the blank area; thereafter, in response to the editing operation on the selected cut-piece image in the blank area (including the action of keeping dragging the selected cut-piece image and the right-click operation after selecting the layer), the first quick menu is displayed.

[0113] Among them, the first quick menu includes drawing board creation operations, layer addition operations, cut-piece deletion operations, etc., refer to Figure 6 ; by selecting the drawing board creation option in the first quick menu, the file processing device creates a drawing board for the selected cut-piece image in the blank area based on the frame size of the selected cut-piece image, and realizes placing each cut-piece image on each drawing board respectively.

[0114] Among them, the frame size is the outermost border of each cut-piece image; a drawing board with the same frame size as the selected cut-piece image can be created in the blank area according to the frame size of the selected cut-piece image, and the selected cut-piece image is placed in the created drawing board.

[0115] Continuously repeat the above operations to create separate drawing boards for the cut-piece images of each part in the cut-piece file, and place the cut-piece images of each part in separate drawing boards respectively, refer to Figure 3; and determine whether all the cut piece images are placed into the drawing board. If all are placed, subsequent operations can be performed. If not all are placed, other cut piece images not placed into the drawing board can be deleted, referring to Figure 2 , which is convenient for the user to perform subsequent operations.

[0116] In addition, in response to the drawing board creation operation for each cut piece image, a specific implementation manner of creating a drawing board for each cut piece image so that each cut piece image is respectively placed on each drawing board can be:

[0117] In response to the drawing board creation operation for each cut piece image, according to the number of cut piece images in the cut piece file, create the corresponding number of drawing boards in the blank area outside the preset drawing board; in response to the dragging operation of dragging the selected cut piece image to the drawing board, place the selected cut piece image correspondingly on the drawing board so that each cut piece image is respectively placed on each drawing board.

[0118] To improve the drawing board creation efficiency, when the file processing device detects the drawing board creation operation for each cut piece image, according to the number of cut piece images in the cut piece file, create the corresponding number of drawing boards in the blank area outside the preset drawing board, without the user having to create a drawing board for each cut piece image separately, thus improving the user experience.

[0119] Furthermore, the user can select any one of the multiple cut piece images and drag it (the selected cut piece image) to the drawing board, so as to place the selected cut piece image correspondingly on the drawing board; repeat the above operation to place all the cut piece images into separate drawing boards respectively, which is convenient for the user to perform subsequent operations.

[0120] To improve the intelligence of the display when the user drags the selected cut piece image to the drawing board, a specific implementation manner of placing the selected cut piece image correspondingly on the drawing board in response to the dragging operation of dragging the selected cut piece image to the drawing board can be:

[0121] In response to the dragging operation of dragging the selected cut piece image to the preset hot zone range of the drawing board, align the selected cut piece image and its corresponding drawing board based on the material frame line of the selected cut piece image and the boundary line of the corresponding drawing board, so as to place the selected cut piece image correspondingly on the drawing board.

[0122] For example, when the user drags the selected cut piece image to the preset hot zone range of the drawing board, the file processing device automatically recognizes the material frame line of the selected cut piece image and the boundary line of the corresponding drawing board, and aligns the selected cut piece image and its corresponding drawing board, thereby ensuring the accuracy of the display position of the selected cut piece image on the drawing board and realizing the accurate placement of the selected cut piece image on the drawing board.

[0123] Further, in order to improve the efficiency and convenience of creating drawing boards, in response to the drawing board creation operation for each cut piece image, a specific implementation manner of creating a drawing board for each cut piece image so that each cut piece image is respectively placed on each drawing board may also be:

[0124] In response to an editing operation on a preset drawing board, display a second shortcut menu; in response to a selection operation on the drawing board splitting option in the second shortcut menu, based on the material frame lines of each cut piece image, through a preset closed-loop graphic recognition algorithm, identify the edge lines of each cut piece image, and based on the edge lines, cut the preset drawing board to obtain multiple drawing boards and each cut piece image respectively placed on each drawing board.

[0125] Specifically, the user can view the second shortcut menu (including the drawing board splitting option, the drawing board deletion option, etc.) by selecting the drawing board and select the drawing board splitting option, and the file processing device then identifies the edge lines of each cut piece image based on the material frame lines of each cut piece image through a preset closed-loop graphic recognition algorithm.

[0126] Among them, the preset closed-loop graphic recognition algorithm can be obtained by iteratively training a preset neural network model based on historical closed-loop images and edge line labels.

[0127] Since each current cut piece image is on the preset drawing board, only by cutting the preset drawing board based on the identified edge lines, multiple drawing boards and each cut piece image respectively placed on each drawing board can be obtained, which shows an automatic and batch drawing board creation operation, without the need to repeat, and the operations of creating the drawing board and displaying the cut piece image are completed at one time, improving the file processing efficiency.

[0128] In this embodiment, through the above method, the drawing board is created and the cut piece image is displayed, which is convenient for the user to batch select and batch process each cut piece image, and improves the file processing efficiency.

[0129] This application also provides a file processing device. Please refer to Figure 7 , the file processing device includes:

[0130] An import module 10, configured to display multiple cut piece images in the cut piece file in the working area of the file processing interface in response to an import operation on the cut piece file;

[0131] A creation module 20, configured to create a drawing board for each cut piece image respectively in response to a drawing board creation operation for each cut piece image so that each cut piece image is respectively placed on each drawing board;

[0132] A synchronization configuration module 30, configured to perform synchronization configuration on the target cut piece images corresponding to at least two target drawing boards in response to an editing operation on the selected at least two target drawing boards.

[0133] In one embodiment, the synchronization configuration module 30 includes:

[0134] A first display sub-module, configured to display a parameter configuration interface of at least two target cut piece images on a control panel of a file processing interface in response to a selection operation for at least two target drawing boards;

[0135] A first synchronization configuration sub-module, configured to perform synchronous configuration on target cut piece images corresponding to at least two target drawing boards in response to an editing operation on the parameter configuration interface.

[0136] In one embodiment, the parameter configuration interface includes a processing parameter configuration area, and the processing parameter configuration area includes a default configuration control for a reference point and a sewing parameter configuration window. The first synchronization configuration sub-module includes:

[0137] A first synchronization configuration unit, configured to perform synchronous configuration on a processing reference point of a target cut piece image on a template machine in response to a triggering operation on the default configuration control;

[0138] A second synchronization configuration determination unit, configured to perform synchronous configuration on sewing parameters of a target cut piece image on a template machine in response to an input operation on the sewing parameter configuration window.

[0139] In one embodiment, after the step of performing synchronous configuration on target cut piece images corresponding to at least two selected target drawing boards in response to an editing operation on the at least two selected target drawing boards, the file processing device further includes:

[0140] A first determination module, configured to determine a stitch path drawing file in response to a confirmation operation on sewing parameters;

[0141] A file conversion module, configured to convert the stitch path drawing file into a processing file of a template machine in response to a save operation on the cut piece images after synchronous configuration.

[0142] In one embodiment, the file conversion module further includes:

[0143] A display sub-module, configured to display a file save interface in response to a save operation on the cut piece images after synchronous configuration;

[0144] A save sub-module, configured to convert the stitch path drawing file into a processing file of a template machine in response to a confirmation save operation on the cut piece images checked in the file save interface.

[0145] In one embodiment, the parameter configuration interface further includes a drawing board design area. Before the step of performing synchronous configuration on target cut piece images corresponding to at least two selected target drawing boards in response to an editing operation on the at least two selected target drawing boards, the file processing device further includes:

[0146] A second determination module, configured to determine a custom drawing board name in response to an editing operation on the drawing board name in the drawing board design area;

[0147] Among them, the file conversion module includes:

[0148] A file conversion module sub-module, configured to, in response to a confirmation and save operation on the selected cut piece image, use the custom drawing board name as the file name, and based on the file name, convert the stitch diagram file into a processing file for a template machine.

[0149] In one embodiment, the import module 10 includes:

[0150] A second display sub-module, configured to display multiple cut piece images in the cut piece file on a preset drawing board in the work area in response to an import operation on the cut piece file.

[0151] In one embodiment, the creation module 20 includes:

[0152] A third display sub-module, configured to display the selected cut piece image in the blank area in response to a drag operation of dragging the selected cut piece image to a blank area outside the preset drawing board;

[0153] A fourth display sub-module, configured to display a first quick menu in response to an editing operation on the selected cut piece image in the blank area;

[0154] A fifth display sub-module, configured to, in response to a selection operation on the drawing board creation option in the first quick menu, create a drawing board for the selected cut piece image in the blank area based on the frame size of the selected cut piece image, so that each cut piece image is respectively placed on each drawing board.

[0155] In one embodiment, the creation module 20 further includes:

[0156] A sixth display sub-module, configured to create corresponding numbers of drawing boards in the blank area outside the preset drawing board according to the number of cut piece images in the cut piece file in response to a drawing board creation operation on each cut piece image;

[0157] A seventh display sub-module, configured to place the selected cut piece image corresponding on the drawing board in response to a drag operation of dragging the selected cut piece image to the drawing board, so that each cut piece image is respectively placed on each drawing board.

[0158] In one embodiment, the seventh display sub-module includes:

[0159] An alignment unit, configured to align the selected cut piece image and its corresponding drawing board based on the frame line of the selected cut piece image and the boundary line of the corresponding drawing board in response to a drag operation of dragging the selected cut piece image to within the preset hot zone range of the drawing board, so as to place the selected cut piece image corresponding on the drawing board.

[0160] In one embodiment, the creation module 20 includes:

[0161] An eighth display sub-module, configured to display a second quick menu in response to an editing operation on a preset drawing board;

[0162] A cropping sub-module, configured to, in response to a selection operation on the drawing board splitting option in the second quick menu, identify the edge lines of each cut piece image based on the material frame lines of each cut piece image through a preset closed-loop graphic recognition algorithm, and crop the preset drawing board based on the edge lines to obtain a plurality of drawing boards and each cut piece image respectively placed on each drawing board.

[0163] The document processing device provided by the present application adopts the document processing method in the above embodiment, and can solve the technical problem of low document processing efficiency. Compared with the prior art, the beneficial effects of the document processing device provided by the present application are the same as those of the document processing method provided by the above embodiment, and other technical features in the document processing device are the same as the features disclosed in the method of the above embodiment, which will not be elaborated here.

[0164] The present application provides a document processing device, which includes: at least one processor; and a memory communicatively connected to the at least one processor; wherein, the memory stores instructions executable by the at least one processor, and the instructions are executed by the at least one processor so that the at least one processor can execute the document processing method in the first embodiment above.

[0165] Next, refer to Figure 8 , which shows a schematic structural diagram of a document processing device suitable for implementing the embodiments of the present application. The document processing device in the embodiments of the present application may include, but is not limited to, mobile terminals such as mobile phones, tablet computers, laptop computers, digital broadcast receivers, PDAs (Personal Digital Assistants), PMPs (Portable Media Players), in-vehicle terminals (such as in-vehicle navigation terminals), etc., and fixed terminals such as digital TVs, desktop computers, etc. Figure 8 The shown document processing device is only an example, and should not bring any limitation to the functions and usage scopes of the embodiments of the present application.

[0166] As Figure 8As shown, the document processing device may include a processing device 1001 (such as a central processing unit, a graphics processing unit, etc.), which may perform various appropriate actions and processes according to a program stored in a read-only memory (ROM: Read Only Memory) 1002 or a program loaded from a storage device 1003 into a random access memory (RAM: Random Access Memory) 1004. In the RAM 1004, various programs and data required for the operation of the document processing device are also stored. The processing device 1001, the ROM 1002, and the RAM 1004 are connected to each other through a bus 1005. An input / output (I / O) interface 1006 is also connected to the bus. Generally, the following systems may be connected to the I / O interface 1006: an input device 1007 including, for example, a touch screen, a touchpad, a keyboard, a mouse, an image sensor, a microphone, an accelerometer, a gyroscope, etc.; an output device 1008 including, for example, a liquid crystal display (LCD: Liquid Crystal Display), a speaker, a vibrator, etc.; a storage device 1003 including, for example, a magnetic tape, a hard disk, etc.; and a communication device 1009. The communication device 1009 may allow the document processing device to communicate with other devices wirelessly or wiredly to exchange data. Although the figure shows a document processing device having various systems, it should be understood that it is not required to implement or have all the systems shown. Instead, more or fewer systems may be implemented or had.

[0167] In particular, according to the embodiments disclosed in the present application, the processes described above with reference to the flowcharts may be implemented as computer software programs. For example, the embodiments disclosed in the present application include a computer program product, which includes a computer program carried on a computer-readable medium, and the computer program includes program codes for performing the methods shown in the flowcharts. In such an embodiment, the computer program may be downloaded and installed from a network through the communication device, or installed from the storage device 1003, or installed from the ROM 1002. When the computer program is executed by the processing device 1001, the above-mentioned functions defined in the methods of the embodiments disclosed in the present application are executed.

[0168] The document processing device provided by the present application adopts the document processing method in the above-mentioned embodiment, and can solve the technical problem of low document processing efficiency. Compared with the prior art, the beneficial effects of the document processing device provided by the present application are the same as those of the document processing method provided by the above-mentioned embodiment, and other technical features in the document processing device are the same as those disclosed in the method of the previous embodiment, and will not be elaborated here.

[0169] It should be understood that each part disclosed in this application can be implemented by hardware, software, firmware, or a combination thereof. In the description of the above embodiments, specific features, structures, materials, or characteristics can be combined in a suitable manner in any one or more embodiments or examples.

[0170] As described above, the above is only the specific implementation manner of this application, but the protection scope of this application is not limited thereto. Any person skilled in the art within the technical scope disclosed in this application can easily think of changes or substitutions, which should all be covered by the protection scope of this application. Therefore, the protection scope of this application should be subject to the protection scope of the claims.

[0171] This application provides a computer-readable storage medium with computer-readable program instructions (i.e., computer programs) stored thereon, and the computer-readable program instructions are used to execute the file processing method in the above embodiments.

[0172] The computer-readable storage medium provided by this application can be, for example, a USB flash drive, but is not limited to electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems, devices, or any combination of the above. More specific examples of computer-readable storage media can include, but are not limited to: electrical connections with one or more wires, portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM) or flash memory, optical fibers, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination of the above. In this embodiment, the computer-readable storage medium can be any tangible medium that contains or stores a program, and this program can be used by or combined with an instruction execution system, device, or device. The program code contained on the computer-readable storage medium can be transmitted by any appropriate medium, including but not limited to: wires, optical cables, RF (Radio Frequency), etc., or any suitable combination of the above.

[0173] The above computer-readable storage medium can be included in the file processing device; or it can exist separately without being assembled into the file processing device.

[0174] The above computer-readable storage medium carries one or more programs. When the above one or more programs are executed by the file processing device, the file processing device is caused to: execute the above file processing method.

[0175] Computer program code for performing the operations of this application can be written in one or more programming languages or combinations thereof. The above-mentioned programming languages include object-oriented programming languages such as Java, Smalltalk, C++, and also include conventional procedural programming languages such as the "C" language or similar programming languages. The program code can be executed entirely on the user's computer, partially on the user's computer, executed as an independent software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In the case of a remote computer, the remote computer can be connected to the user's computer through any kind of network, including a local area network (LAN) or a wide area network (WAN), or it can be connected to an external computer (for example, by connecting through the Internet using an Internet service provider).

[0176] The flowcharts and block diagrams in the accompanying drawings illustrate the possible architectures, functions, and operations of the systems, methods, and computer program products according to the various embodiments of this application. In this regard, each block in the flowchart or block diagram may represent a module, a program segment, or a part of code that contains one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions marked in the blocks may occur in a different order than that marked in the accompanying drawings. For example, two consecutive blocks shown may actually be executed substantially in parallel, and they may sometimes be executed in the reverse order, depending on the functions involved. It should also be noted that each block in the block diagram and / or flowchart, and the combination of blocks in the block diagram and / or flowchart, can be implemented by a dedicated hardware-based system for performing the specified functions or operations, or can be implemented by a combination of dedicated hardware and computer instructions.

[0177] The modules described in the embodiments of this application can be implemented in software or in hardware. Among them, the name of the module does not constitute a limitation on the unit itself in some cases.

[0178] The readable storage medium provided by this application is a computer-readable storage medium. The computer-readable storage medium stores computer-readable program instructions (i.e., computer programs) for performing the above-mentioned file processing method, and can solve the technical problem of low file processing efficiency. Compared with the prior art, the beneficial effects of the computer-readable storage medium provided by this application are the same as those of the file processing method provided by the above embodiments, and will not be elaborated here.

[0179] The present application also provides a computer program product, including a computer program which, when executed by a processor, implements the steps of the file processing method as described above.

[0180] The computer program product provided by the present application can solve the technical problem of low file processing efficiency. Compared with the prior art, the beneficial effects of the computer program product provided by the present application are the same as those of the file processing method provided by the above embodiments, and will not be elaborated herein.

[0181] The above are only partial embodiments of the present application, and thus do not limit the patent scope of the present application. Any equivalent structural transformation made under the technical concept of the present application by using the content of the specification and drawings of the present application, or any direct / indirect application in other related technical fields, is included in the patent protection scope of the present application.

Claims

1. A file processing method, characterized in that, The method described above includes: In response to an import operation for a cut piece file, displaying a plurality of cut piece images in the cut piece file in the work area of the file processing interface; In response to a drawing board creation operation for each of the cut piece images, creating a drawing board for each of the cut piece images respectively, so that each of the cut piece images is respectively placed on each of the drawing boards; In response to an editing operation for at least two selected target drawing boards, synchronously configuring the target cut piece images corresponding to the at least two target drawing boards.

2. The method according to claim 1, wherein The step of, in response to an editing operation for at least two selected target drawing boards, synchronously configuring the target cut piece images corresponding to the at least two target drawing boards, includes: In response to a selection operation for the at least two target drawing boards, displaying a parameter configuration interface for the at least two target cut piece images on the control panel of the file processing interface; In response to an editing operation for the parameter configuration interface, synchronously configuring the target cut piece images corresponding to the at least two target drawing boards.

3. The method according to claim 2, wherein The parameter configuration interface includes a processing parameter configuration area, and the processing parameter configuration area includes a default configuration control for a reference point and a sewing parameter configuration window. The step of, in response to an editing operation for the parameter configuration interface, synchronously configuring the target cut piece images corresponding to the at least two target drawing boards, includes: In response to a triggering operation for the default configuration control, synchronously configuring the processing reference point of the target cut piece image on the template machine; In response to an input operation for the sewing parameter configuration window, synchronously configuring the sewing parameters of the target cut piece image on the template machine.

4. The method according to claim 3, wherein After the step of, in response to an editing operation for at least two selected target drawing boards, synchronously configuring the target cut piece images corresponding to the at least two target drawing boards, it further includes: In response to a confirmation operation for the sewing parameters, determining a stitch path drawing file; In response to a save operation for the cut piece images after synchronous configuration, converting the stitch path drawing file into a processing file for the template machine.

5. The method according to claim 4, characterized in that The step of, in response to a save operation for the cut piece images after synchronous configuration, converting the stitch path drawing file into a processing file for the template machine, includes: In response to a save operation for the cut piece images after synchronous configuration, displaying a file save interface; In response to a confirmation save operation for the cut piece images checked in the file save interface, converting the stitch path drawing file into a processing file for the template machine.

6. The method according to claim 5, wherein The parameter configuration interface further includes a drawing board design area. Before the step of, in response to an editing operation for at least two selected target drawing boards, synchronously configuring the target cut piece images corresponding to the at least two target drawing boards, it further includes: In response to an editing operation for the drawing board name in the drawing board design area, determining a custom drawing board name; The step of, in response to a confirmation save operation for the cut piece images checked in the file save interface, converting the stitch path drawing file into a processing file for the template machine, includes: In response to a confirmation save operation for the selected cut piece image, use the custom drawing board name as the file name, and based on the file name, convert the needle path drawing file into a processing file for the template machine.

7. The method according to any one of claims 1 to 3, characterized in that, The step of displaying a plurality of cut piece images in the cut piece file in the work area of the file processing interface in response to an import operation for the cut piece file includes: In response to an import operation for the cut piece file, display a plurality of cut piece images in the cut piece file on a preset drawing board in the work area.

8. The method according to claim 7, wherein The step of creating a drawing board for each of the cut piece images in response to a drawing board creation operation for each of the cut piece images, so that each of the cut piece images is respectively placed on each of the drawing boards includes: In response to a drag operation of dragging a selected cut piece image to a blank area outside the preset drawing board, display the selected cut piece image in the blank area; In response to an edit operation on the selected cut piece image in the blank area, display a first shortcut menu; In response to a selection operation for the drawing board creation option in the first shortcut menu, create a drawing board for the selected cut piece image in the blank area based on the material frame size of the selected cut piece image, so that each of the cut piece images is respectively placed on each of the drawing boards.

9. The method according to claim 7, wherein The step of creating a drawing board for each of the cut piece images in response to a drawing board creation operation for each of the cut piece images, so that each of the cut piece images is respectively placed on each of the drawing boards further includes: In response to a drawing board creation operation for each of the cut piece images, create a corresponding number of drawing boards in a blank area outside the preset drawing board according to the number of cut piece images in the cut piece file; In response to a drag operation of dragging a selected cut piece image to the drawing board, place the selected cut piece image correspondingly on the drawing board, so that each of the cut piece images is respectively placed on each of the drawing boards.

10. The method according to claim 9, characterized in that, The step of placing the selected cut piece image correspondingly on the drawing board in response to a drag operation of dragging the selected cut piece image to the drawing board includes: In response to a drag operation of dragging a selected cut piece image to within a preset hot zone range of the drawing board, align the selected cut piece image and its corresponding drawing board based on the material frame line of the selected cut piece image and the boundary line of the corresponding drawing board, so as to place the selected cut piece image correspondingly on the drawing board.

11. The method according to claim 7, wherein The step of creating a drawing board for each of the cut piece images in response to a drawing board creation operation for each of the cut piece images, so that each of the cut piece images is respectively placed on each of the drawing boards includes: In response to an edit operation on the preset drawing board, display a second shortcut menu; In response to a selection operation for the drawing board splitting option in the second shortcut menu, identify the edge lines of each of the cut piece images through a preset closed-loop graphic recognition algorithm based on the material frame lines of each of the cut piece images, and crop the preset drawing board based on the edge lines to obtain a plurality of drawing boards and each of the cut piece images respectively placed on each of the drawing boards.

12. A file processing device, characterized in that, The device includes: An import module, configured to display a plurality of cut piece images in the cut piece file in a work area of a file processing interface in response to an import operation for the cut piece file; A creation module, configured to create a drawing board for each of the cut piece images respectively in response to a drawing board creation operation for each of the cut piece images, so that each of the cut piece images is respectively placed on each of the drawing boards; A synchronization configuration module, configured to perform synchronization configuration on target cut piece images corresponding to at least two target drawing boards in response to an editing operation for the at least two selected target drawing boards.

13. A document processing device, characterized in that, The device includes: a memory, a processor, and a computer program stored on the memory and executable on the processor, the computer program being configured to implement the steps of the file processing method according to any one of claims 1 to 11.

14. A storage medium, characterized in that, The storage medium is a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, the steps of the file processing method according to any one of claims 1 to 11 are implemented.

15. A computer program product, characterized in that, The computer program product includes a computer program, and when the computer program is executed by a processor, the steps of the file processing method according to any one of claims 1 to 11 are implemented.