Scalable vector graphic image reorganization method and reorganization apparatus
A vector graphics and zooming technology, which is applied to vector format still image data, still image data retrieval, special data processing applications, etc., can solve the problem of low processing efficiency of scalable vector graphics images, and achieve the goal of improving loading efficiency and positioning accuracy Effect
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Embodiment 1
[0025] This embodiment provides a method for recombining scalable vector graphics images, refer to figure 1 , Shows a flowchart 100 of an embodiment of a method for recombining a scalable vector graphics image. The recombination method 100 in this embodiment includes the following steps:
[0026] Step 101: Obtain a scalable vector graphic image;
[0027] In practice, the scalable vector graphic image is usually stored in a picture server. When processing a certain scalable vector graphic image, it is necessary to download the scalable vector graphic image locally from the picture server.
[0028] Step 102: Decompose the scalable vector graphics image into image units, and obtain location information of the image units;
[0029] To perform the corresponding processing on the scalable vector graphics image, the scalable vector graphics image needs to be decomposed into the set image units, and then each image unit is processed separately. At the same time, in order to ensure the consist...
Embodiment 2
[0065] This embodiment and embodiment 1 belong to the same inventive concept, and this embodiment provides a recombination device for scalable vector graphics, reference figure 2 , Shows a structural diagram of a recombination device 200 for scalable vector graphics images. The recombination device 200 in this embodiment includes:
[0066] The image acquisition unit 201 is used to acquire a scalable vector graphic image;
[0067] In practice, the scalable vector graphic image is usually stored in a picture server. When processing a certain scalable vector graphic image, it is necessary to download the scalable vector graphic image locally from the picture server.
[0068] The position information obtaining unit 202 is configured to decompose the scalable vector graphics image into image units and obtain the position information of the image units;
[0069] To perform the corresponding processing on the scalable vector graphics image, the scalable vector graphics image needs to be deco...
Embodiment 3
[0104] The following describes this application in detail through a practical scenario.
[0105] The scalable vector graphic image of this embodiment uses a humanoid image, such as image 3 As shown, processing a humanoid image is taken as an example to explain this application in detail. The specific operation steps include:
[0106] Step 301: Obtain a humanoid image;
[0107] Step 302: Decompose the humanoid image into image units, and obtain location information of the image units;
[0108] Use the area dividing line ( image 3 The dotted line in the middle) is drawn, and the designated part includes the area of the set part. The settings here will be extracted as image units. image 3 In, the region dividing line is used to select the leg figure of the human image. First, the region dividing line is used to draw the area containing the leg figure (that is, the designated part), and then the leg figure (that is, the setting part) is extracted from it, such as Figure 4 Shown. Si...
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