Uploaded image for project: 'XWiki Platform'
  1. XWiki Platform
  2. XWIKI-20637

Image overlaps lists when using start alignment and a mix with text wrap and the start alignment

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Details

    • Bug
    • Resolution: Unresolved
    • Major
    • None
    • 14.4.7, 11.10.1, 14.10
    • None
    • Unknown

    Description

      Steps to reproduce the issue:

      • on XWiki 11.10.1 (reproducing on 14.10, 14.4.7 as well), with the following syntax:
        [[image:EP.png||height="300" style="float:left" width="300"]]
        
        * item one
        * item two
        * item three
        
        1. item one
        1. item two
        1. item three
        
      • that was obtained by adding an image aligned to the left using the old image editor, like this:


      Result - the issue reproduces, the list markers are overlapped on the image:

      Another test with a more complex mixed list: 
      1. On a local 14.4.7, CKEditor Integration 1.64.8, using the new image dialog, go to the Sandbox page and upload an image next to the mixed list. This is the look of the mixed list before adding the image:

      2. On the image Advanced settings step, select Start alignment and Insert:

      3. Result:

      4. Here is a second result while I reuploaded the image next to the mixed list, with Text Wrap and Start checked

      5. The same problem happens even with the old image dialogue, when choosing to align the image to the left

       PS: Reproduce also with a start alignment:

      [[Creep data and designer's aid for assessing preliminary designs>>image:image2.png||data-xwiki-image-style-alignment="start"]]
      
      1. only the leading edge of the rotor blade could theoretically reach stagnation temperature and chordwise conduction in the metal would prevent even the local temperature there from reaching xxx
      1. even in 'uncooled' turbines (those with no cooling passages in the blades), some cooling air is bled from the compressor and passed over the turbine disc and blade roots: the metal temperature will therefore be appreciably less than 1100 K near the root· radius for which the stresses have been estimated.
      

       

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              mleduc Manuel Leduc
              AndreeaChirica Andreea Chirica
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                Created:
                Updated: