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planemo upload for repository https://github.com/BMCV/galaxy-image-analysis/tree/master/tools/image_math commit b356d76025941b691c156f8ff931cd759d35b107
author | imgteam |
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date | Sat, 09 Mar 2024 22:04:19 +0000 |
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children | f8b7770cbca5 |
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<tool id="image_math" name="Process images using arithmetic expressions" version="@TOOL_VERSION@+galaxy@VERSION_SUFFIX@" profile="23.0"> <description>with NumPy</description> <macros> <token name="@TOOL_VERSION@">1.26.4</token> <token name="@VERSION_SUFFIX@">0</token> </macros> <edam_operations> <edam_operation>operation_3443</edam_operation> </edam_operations> <requirements> <requirement type="package" version="1.26.4">numpy</requirement> <requirement type="package" version="0.22.0">scikit-image</requirement> </requirements> <command><![CDATA[ ## Inputs python '$__tool_directory__/image_math.py' --expression='$expression' #for $item in $inputs: --input='$item.name:$item.image' #end for ## Outputs --output='./result.tiff' ]]> </command> <inputs> <param argument="--expression" type="text" label="Expression" optional="false"> <validator type="regex">^[a-zA-Z0-9-_\*\+ \(\)/]+$</validator> </param> <repeat name="inputs" title="Input images" min="1"> <param name="image" type="data" format="png,tiff" label="Image" /> <param name="name" type="text" label="Variable for representation of the image within the expression" optional="false"> <validator type="regex">^[a-zA-Z_][a-zA-Z0-9_]*$</validator> </param> </repeat> </inputs> <outputs> <data format="tiff" name="result" from_work_dir="result.tiff" /> </outputs> <tests> <!-- Multiplication with a scalar --> <test> <param name="expression" value="input1 * 2" /> <repeat name="inputs"> <param name="image" value="input1.tiff" /> <param name="name" value="input1" /> </repeat> <output name="result" value="input1_times_2.tiff" ftype="tiff" compare="sim_size" delta="0" /> </test> <!-- Unary negation operator --> <test> <param name="expression" value="-input1" /> <repeat name="inputs"> <param name="image" value="input1.tiff" /> <param name="name" value="input1" /> </repeat> <output name="result" value="minus_input1.tiff" ftype="tiff" compare="sim_size" delta="0" /> </test> <!-- Binary addition, neutral element, addition with scalar --> <test> <param name="expression" value="input1 + input2 + 1" /> <repeat name="inputs"> <param name="image" value="input1.tiff" /> <param name="name" value="input1" /> </repeat> <repeat name="inputs"> <param name="image" value="minus_input1.tiff" /> <param name="name" value="input2" /> </repeat> <output name="result" value="ones.tiff" ftype="tiff" compare="sim_size" delta="0" /> </test> <!-- Parentheses --> <test> <param name="expression" value="(input1 + input2) / 2" /> <repeat name="inputs"> <param name="image" value="input1.tiff" /> <param name="name" value="input1" /> </repeat> <repeat name="inputs"> <param name="image" value="ones.tiff" /> <param name="name" value="input2" /> </repeat> <output name="result" value="half_of_input1_plus_one.tiff" ftype="tiff" compare="sim_size" delta="0" /> </test> <!-- Abs --> <test> <param name="expression" value="abs(input)" /> <repeat name="inputs"> <param name="image" value="input1.tiff" /> <param name="name" value="input" /> </repeat> <output name="result" value="input1_abs.tiff" ftype="tiff" compare="sim_size" delta="0" /> </test> </tests> <help> This tool processes images according to pixel-wise arithmetic expressions. The supported pixel-wise expressions are: - Addition, subtraction, multiplication, and division (``+``, ``-``, ``*``, ``/``) - Integer division (e.g., ``input // 2``) - Power (e.g., ``input ** 2``) - Negation (e.g., ``-input``) - Absolute values (e.g., ``abs(input)``) - Square root (e.g., ``sqrt(input)``) - Combinations of the above (also using parentheses) Examples: - **Negate an image.** Expression: ``-image`` where ``image`` is an arbitrary input image. - **Mean of two images.** Expression: ``(image1 + image2) / 2`` where ``image1`` and `image2` are two arbitrary input images. - **Perform division avoiding division-by-zero.** Expression: ``image1 / (abs(image2) + 1e-8)`` where ``image1`` and `image2` are two arbitrary input images. </help> <citations> <citation type="doi">10.1038/s41586-020-2649-2</citation> </citations> </tool>