comparison MapRTTransformer.xml @ 14:317a5cb79894 draft default tip

planemo upload for repository https://github.com/galaxyproteomics/tools-galaxyp/tree/master/tools/openms commit 5c080b1e2b99f1c88f4557e9fec8c45c9d23b906
author galaxyp
date Fri, 14 Jun 2024 21:46:00 +0000
parents aec26bf377fb
children
comparison
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13:aec26bf377fb 14:317a5cb79894
1 <?xml version='1.0' encoding='UTF-8'?>
2 <!--This is a configuration file for the integration of a tools into Galaxy (https://galaxyproject.org/). This file was automatically generated using CTDConverter.--> 1 <!--This is a configuration file for the integration of a tools into Galaxy (https://galaxyproject.org/). This file was automatically generated using CTDConverter.-->
3 <!--Proposed Tool Section: [Map Alignment]--> 2 <!--Proposed Tool Section: [Map Alignment]-->
4 <tool id="MapRTTransformer" name="MapRTTransformer" version="@TOOL_VERSION@+galaxy@VERSION_SUFFIX@" profile="21.05"> 3 <tool id="MapRTTransformer" name="MapRTTransformer" version="@TOOL_VERSION@+galaxy@VERSION_SUFFIX@" profile="21.05">
5 <description>Applies retention time transformations to maps.</description> 4 <description>Applies retention time transformations to maps</description>
6 <macros> 5 <macros>
7 <token name="@EXECUTABLE@">MapRTTransformer</token> 6 <token name="@EXECUTABLE@">MapRTTransformer</token>
8 <import>macros.xml</import> 7 <import>macros.xml</import>
9 </macros> 8 </macros>
10 <expand macro="requirements"/> 9 <expand macro="requirements"/>
14 #import re 13 #import re
15 14
16 ## Preprocessing 15 ## Preprocessing
17 #if $in: 16 #if $in:
18 mkdir in && 17 mkdir in &&
19 ln -s '$in' 'in/${re.sub("[^\w\-_]", "_", $in.element_identifier)}.$gxy2omsext($in.ext)' && 18 cp '$in' 'in/${re.sub("[^\w\-_]", "_", $in.element_identifier)}.$gxy2omsext($in.ext)' &&
20 #end if 19 #end if
21 #if "out_FLAG" in str($OPTIONAL_OUTPUTS).split(',') 20 #if "out_FLAG" in str($OPTIONAL_OUTPUTS).split(',')
22 mkdir out && 21 mkdir out &&
23 #end if 22 #end if
24 mkdir trafo_in && 23 mkdir trafo_in &&
25 ln -s '$trafo_in' 'trafo_in/${re.sub("[^\w\-_]", "_", $trafo_in.element_identifier)}.$gxy2omsext($trafo_in.ext)' && 24 cp '$trafo_in' 'trafo_in/${re.sub("[^\w\-_]", "_", $trafo_in.element_identifier)}.$gxy2omsext($trafo_in.ext)' &&
26 #if "trafo_out_FLAG" in str($OPTIONAL_OUTPUTS).split(',') 25 #if "trafo_out_FLAG" in str($OPTIONAL_OUTPUTS).split(',')
27 mkdir trafo_out && 26 mkdir trafo_out &&
28 #end if 27 #end if
29 28
30 ## Main program call 29 ## Main program call
65 <inputs name="args_json" data_style="paths"/> 64 <inputs name="args_json" data_style="paths"/>
66 <configfile name="hardcoded_json"><![CDATA[{"log": "log.txt", "threads": "\${GALAXY_SLOTS:-1}", "no_progress": true}]]></configfile> 65 <configfile name="hardcoded_json"><![CDATA[{"log": "log.txt", "threads": "\${GALAXY_SLOTS:-1}", "no_progress": true}]]></configfile>
67 </configfiles> 66 </configfiles>
68 <inputs> 67 <inputs>
69 <param argument="-in" type="data" format="consensusxml,featurexml,idxml,mzml" optional="true" label="Input file to transform (separated by blanks)" help=" select consensusxml,featurexml,idxml,mzml data sets(s)"/> 68 <param argument="-in" type="data" format="consensusxml,featurexml,idxml,mzml" optional="true" label="Input file to transform (separated by blanks)" help=" select consensusxml,featurexml,idxml,mzml data sets(s)"/>
70 <param argument="-trafo_in" type="data" format="trafoxml" optional="false" label="Transformation to apply" help=" select trafoxml data sets(s)"/> 69 <param argument="-trafo_in" type="data" format="trafoxml" label="Transformation to apply" help=" select trafoxml data sets(s)"/>
71 <param argument="-invert" type="boolean" truevalue="true" falsevalue="false" checked="false" label="Invert transformation (approximatively) before applying it" help=""/> 70 <param argument="-invert" type="boolean" truevalue="true" falsevalue="false" checked="false" label="Invert transformation (approximatively) before applying it" help=""/>
72 <param argument="-store_original_rt" type="boolean" truevalue="true" falsevalue="false" checked="false" label="Store the original retention times (before transformation) as meta data in the output file" help=""/> 71 <param argument="-store_original_rt" type="boolean" truevalue="true" falsevalue="false" checked="false" label="Store the original retention times (before transformation) as meta data in the output file" help=""/>
73 <section name="model" title="Options to control the modeling of retention time transformations from data" help="" expanded="false"> 72 <section name="model" title="Options to control the modeling of retention time transformations from data" help="" expanded="false">
74 <param name="type" argument="-model:type" type="select" optional="true" label="Type of model" help=""> 73 <param name="type" argument="-model:type" type="select" label="Type of model" help="">
75 <option value="none" selected="true">none</option> 74 <option value="none" selected="true">none</option>
76 <option value="linear">linear</option> 75 <option value="linear">linear</option>
77 <option value="b_spline">b_spline</option> 76 <option value="b_spline">b_spline</option>
78 <option value="lowess">lowess</option> 77 <option value="lowess">lowess</option>
79 <option value="interpolated">interpolated</option> 78 <option value="interpolated">interpolated</option>
80 <expand macro="list_string_san" name="type"/> 79 <expand macro="list_string_san" name="type"/>
81 </param> 80 </param>
82 <section name="linear" title="Parameters for 'linear' model" help="" expanded="false"> 81 <section name="linear" title="Parameters for 'linear' model" help="" expanded="false">
83 <param name="symmetric_regression" argument="-model:linear:symmetric_regression" type="boolean" truevalue="true" falsevalue="false" checked="false" label="Perform linear regression on 'y - x' vs" help="'y + x', instead of on 'y' vs. 'x'"/> 82 <param name="symmetric_regression" argument="-model:linear:symmetric_regression" type="boolean" truevalue="true" falsevalue="false" checked="false" label="Perform linear regression on 'y - x' vs" help="'y + x', instead of on 'y' vs. 'x'"/>
84 <param name="x_weight" argument="-model:linear:x_weight" type="select" optional="true" label="Weight x values" help=""> 83 <param name="x_weight" argument="-model:linear:x_weight" type="select" label="Weight x values" help="">
85 <option value="1/x">1/x</option> 84 <option value="1/x">1/x</option>
86 <option value="1/x2">1/x2</option> 85 <option value="1/x2">1/x2</option>
87 <option value="ln(x)">ln(x)</option> 86 <option value="ln(x)">ln(x)</option>
88 <option value=""></option> 87 <option value="x" selected="true">x</option>
89 <expand macro="list_string_san" name="x_weight"/> 88 <expand macro="list_string_san" name="x_weight"/>
90 </param> 89 </param>
91 <param name="y_weight" argument="-model:linear:y_weight" type="select" optional="true" label="Weight y values" help=""> 90 <param name="y_weight" argument="-model:linear:y_weight" type="select" label="Weight y values" help="">
92 <option value="1/y">1/y</option> 91 <option value="1/y">1/y</option>
93 <option value="1/y2">1/y2</option> 92 <option value="1/y2">1/y2</option>
94 <option value="ln(y)">ln(y)</option> 93 <option value="ln(y)">ln(y)</option>
95 <option value=""></option> 94 <option value="y" selected="true">y</option>
96 <expand macro="list_string_san" name="y_weight"/> 95 <expand macro="list_string_san" name="y_weight"/>
97 </param> 96 </param>
98 <param name="x_datum_min" argument="-model:linear:x_datum_min" type="float" optional="true" value="1e-15" label="Minimum x value" help=""/> 97 <param name="x_datum_min" argument="-model:linear:x_datum_min" type="float" value="1e-15" label="Minimum x value" help=""/>
99 <param name="x_datum_max" argument="-model:linear:x_datum_max" type="float" optional="true" value="1000000000000000.0" label="Maximum x value" help=""/> 98 <param name="x_datum_max" argument="-model:linear:x_datum_max" type="float" value="1000000000000000.0" label="Maximum x value" help=""/>
100 <param name="y_datum_min" argument="-model:linear:y_datum_min" type="float" optional="true" value="1e-15" label="Minimum y value" help=""/> 99 <param name="y_datum_min" argument="-model:linear:y_datum_min" type="float" value="1e-15" label="Minimum y value" help=""/>
101 <param name="y_datum_max" argument="-model:linear:y_datum_max" type="float" optional="true" value="1000000000000000.0" label="Maximum y value" help=""/> 100 <param name="y_datum_max" argument="-model:linear:y_datum_max" type="float" value="1000000000000000.0" label="Maximum y value" help=""/>
102 </section> 101 </section>
103 <section name="b_spline" title="Parameters for 'b_spline' model" help="" expanded="false"> 102 <section name="b_spline" title="Parameters for 'b_spline' model" help="" expanded="false">
104 <param name="wavelength" argument="-model:b_spline:wavelength" type="float" optional="true" min="0.0" value="0.0" label="Determines the amount of smoothing by setting the number of nodes for the B-spline" help="The number is chosen so that the spline approximates a low-pass filter with this cutoff wavelength. The wavelength is given in the same units as the data; a higher value means more smoothing. '0' sets the number of nodes to twice the number of input points"/> 103 <param name="wavelength" argument="-model:b_spline:wavelength" type="float" min="0.0" value="0.0" label="Determines the amount of smoothing by setting the number of nodes for the B-spline" help="The number is chosen so that the spline approximates a low-pass filter with this cutoff wavelength. The wavelength is given in the same units as the data; a higher value means more smoothing. '0' sets the number of nodes to twice the number of input points"/>
105 <param name="num_nodes" argument="-model:b_spline:num_nodes" type="integer" optional="true" min="0" value="5" label="Number of nodes for B-spline fitting" help="Overrides 'wavelength' if set (to two or greater). A lower value means more smoothing"/> 104 <param name="num_nodes" argument="-model:b_spline:num_nodes" type="integer" min="0" value="5" label="Number of nodes for B-spline fitting" help="Overrides 'wavelength' if set (to two or greater). A lower value means more smoothing"/>
106 <param name="extrapolate" argument="-model:b_spline:extrapolate" type="select" optional="true" label="Method to use for extrapolation beyond the original data range" help="'linear': Linear extrapolation using the slope of the B-spline at the corresponding endpoint. 'b_spline': Use the B-spline (as for interpolation). 'constant': Use the constant value of the B-spline at the corresponding endpoint. 'global_linear': Use a linear fit through the data (which will most probably introduce discontinuities at the ends of the data range)"> 105 <param name="extrapolate" argument="-model:b_spline:extrapolate" type="select" label="Method to use for extrapolation beyond the original data range" help="'linear': Linear extrapolation using the slope of the B-spline at the corresponding endpoint. 'b_spline': Use the B-spline (as for interpolation). 'constant': Use the constant value of the B-spline at the corresponding endpoint. 'global_linear': Use a linear fit through the data (which will most probably introduce discontinuities at the ends of the data range)">
107 <option value="linear" selected="true">linear</option> 106 <option value="linear" selected="true">linear</option>
108 <option value="b_spline">b_spline</option> 107 <option value="b_spline">b_spline</option>
109 <option value="constant">constant</option> 108 <option value="constant">constant</option>
110 <option value="global_linear">global_linear</option> 109 <option value="global_linear">global_linear</option>
111 <expand macro="list_string_san" name="extrapolate"/> 110 <expand macro="list_string_san" name="extrapolate"/>
112 </param> 111 </param>
113 <param name="boundary_condition" argument="-model:b_spline:boundary_condition" type="integer" optional="true" min="0" max="2" value="2" label="Boundary condition at B-spline endpoints: 0 (value zero), 1 (first derivative zero) or 2 (second derivative zero)" help=""/> 112 <param name="boundary_condition" argument="-model:b_spline:boundary_condition" type="integer" min="0" max="2" value="2" label="Boundary condition at B-spline endpoints: 0 (value zero), 1 (first derivative zero) or 2 (second derivative zero)" help=""/>
114 </section> 113 </section>
115 <section name="lowess" title="Parameters for 'lowess' model" help="" expanded="false"> 114 <section name="lowess" title="Parameters for 'lowess' model" help="" expanded="false">
116 <param name="span" argument="-model:lowess:span" type="float" optional="true" min="0.0" max="1.0" value="0.666666666666667" label="Fraction of datapoints (f) to use for each local regression (determines the amount of smoothing)" help="Choosing this parameter in the range .2 to .8 usually results in a good fit"/> 115 <param name="span" argument="-model:lowess:span" type="float" min="0.0" max="1.0" value="0.666666666666667" label="Fraction of datapoints (f) to use for each local regression (determines the amount of smoothing)" help="Choosing this parameter in the range .2 to .8 usually results in a good fit"/>
117 <param name="num_iterations" argument="-model:lowess:num_iterations" type="integer" optional="true" min="0" value="3" label="Number of robustifying iterations for lowess fitting" help=""/> 116 <param name="num_iterations" argument="-model:lowess:num_iterations" type="integer" min="0" value="3" label="Number of robustifying iterations for lowess fitting" help=""/>
118 <param name="delta" argument="-model:lowess:delta" type="float" optional="true" value="-1.0" label="Nonnegative parameter which may be used to save computations (recommended value is 0.01 of the range of the input" help="e.g. for data ranging from 1000 seconds to 2000 seconds, it could be set to 10). Setting a negative value will automatically do this"/> 117 <param name="delta" argument="-model:lowess:delta" type="float" value="-1.0" label="Nonnegative parameter which may be used to save computations (recommended value is 0.01 of the range of the input" help="e.g. for data ranging from 1000 seconds to 2000 seconds, it could be set to 10). Setting a negative value will automatically do this"/>
119 <param name="interpolation_type" argument="-model:lowess:interpolation_type" type="select" optional="true" label="Method to use for interpolation between datapoints computed by lowess" help="'linear': Linear interpolation. 'cspline': Use the cubic spline for interpolation. 'akima': Use an akima spline for interpolation"> 118 <param name="interpolation_type" argument="-model:lowess:interpolation_type" type="select" label="Method to use for interpolation between datapoints computed by lowess" help="'linear': Linear interpolation. 'cspline': Use the cubic spline for interpolation. 'akima': Use an akima spline for interpolation">
120 <option value="linear">linear</option> 119 <option value="linear">linear</option>
121 <option value="cspline" selected="true">cspline</option> 120 <option value="cspline" selected="true">cspline</option>
122 <option value="akima">akima</option> 121 <option value="akima">akima</option>
123 <expand macro="list_string_san" name="interpolation_type"/> 122 <expand macro="list_string_san" name="interpolation_type"/>
124 </param> 123 </param>
125 <param name="extrapolation_type" argument="-model:lowess:extrapolation_type" type="select" optional="true" label="Method to use for extrapolation outside the data range" help="'two-point-linear': Uses a line through the first and last point to extrapolate. 'four-point-linear': Uses a line through the first and second point to extrapolate in front and and a line through the last and second-to-last point in the end. 'global-linear': Uses a linear regression to fit a line through all data points and use it for interpolation"> 124 <param name="extrapolation_type" argument="-model:lowess:extrapolation_type" type="select" label="Method to use for extrapolation outside the data range" help="'two-point-linear': Uses a line through the first and last point to extrapolate. 'four-point-linear': Uses a line through the first and second point to extrapolate in front and and a line through the last and second-to-last point in the end. 'global-linear': Uses a linear regression to fit a line through all data points and use it for interpolation">
126 <option value="two-point-linear">two-point-linear</option> 125 <option value="two-point-linear">two-point-linear</option>
127 <option value="four-point-linear" selected="true">four-point-linear</option> 126 <option value="four-point-linear" selected="true">four-point-linear</option>
128 <option value="global-linear">global-linear</option> 127 <option value="global-linear">global-linear</option>
129 <expand macro="list_string_san" name="extrapolation_type"/> 128 <expand macro="list_string_san" name="extrapolation_type"/>
130 </param> 129 </param>
131 </section> 130 </section>
132 <section name="interpolated" title="Parameters for 'interpolated' model" help="" expanded="false"> 131 <section name="interpolated" title="Parameters for 'interpolated' model" help="" expanded="false">
133 <param name="interpolation_type" argument="-model:interpolated:interpolation_type" type="select" optional="true" label="Type of interpolation to apply" help=""> 132 <param name="interpolation_type" argument="-model:interpolated:interpolation_type" type="select" label="Type of interpolation to apply" help="">
134 <option value="linear">linear</option> 133 <option value="linear">linear</option>
135 <option value="cspline" selected="true">cspline</option> 134 <option value="cspline" selected="true">cspline</option>
136 <option value="akima">akima</option> 135 <option value="akima">akima</option>
137 <expand macro="list_string_san" name="interpolation_type"/> 136 <expand macro="list_string_san" name="interpolation_type"/>
138 </param> 137 </param>
139 <param name="extrapolation_type" argument="-model:interpolated:extrapolation_type" type="select" optional="true" label="Type of extrapolation to apply: two-point-linear: use the first and last data point to build a single linear model, four-point-linear: build two linear models on both ends using the first two / last two points, global-linear: use all points to build a single linear model" help="Note that global-linear may not be continuous at the border"> 138 <param name="extrapolation_type" argument="-model:interpolated:extrapolation_type" type="select" label="Type of extrapolation to apply: two-point-linear: use the first and last data point to build a single linear model, four-point-linear: build two linear models on both ends using the first two / last two points, global-linear: use all points to build a single linear model" help="Note that global-linear may not be continuous at the border">
140 <option value="two-point-linear" selected="true">two-point-linear</option> 139 <option value="two-point-linear" selected="true">two-point-linear</option>
141 <option value="four-point-linear">four-point-linear</option> 140 <option value="four-point-linear">four-point-linear</option>
142 <option value="global-linear">global-linear</option> 141 <option value="global-linear">global-linear</option>
143 <expand macro="list_string_san" name="extrapolation_type"/> 142 <expand macro="list_string_san" name="extrapolation_type"/>
144 </param> 143 </param>
145 </section> 144 </section>
146 </section> 145 </section>
147 <expand macro="adv_opts_macro"> 146 <expand macro="adv_opts_macro">
148 <param argument="-force" type="boolean" truevalue="true" falsevalue="false" checked="false" label="Overrides tool-specific checks" help=""/> 147 <param argument="-force" type="boolean" truevalue="true" falsevalue="false" checked="false" label="Overrides tool-specific checks" help=""/>
149 <param argument="-test" type="hidden" optional="true" value="False" label="Enables the test mode (needed for internal use only)" help=""> 148 <param argument="-test" type="hidden" value="False" label="Enables the test mode (needed for internal use only)" help="" optional="true">
150 <expand macro="list_string_san" name="test"/> 149 <expand macro="list_string_san" name="test"/>
151 </param> 150 </param>
152 </expand> 151 </expand>
153 <param name="OPTIONAL_OUTPUTS" type="select" optional="true" multiple="true" label="Optional outputs"> 152 <param name="OPTIONAL_OUTPUTS" type="select" optional="true" multiple="true" label="Optional outputs">
154 <option value="out_FLAG">out (Output file (same file type as 'in'))</option> 153 <option value="out_FLAG">out (Output file (same file type as 'in'))</option>
168 </data> 167 </data>
169 <data name="ctd_out" format="xml" label="${tool.name} on ${on_string}: ctd"> 168 <data name="ctd_out" format="xml" label="${tool.name} on ${on_string}: ctd">
170 <filter>OPTIONAL_OUTPUTS is not None and "ctd_out_FLAG" in OPTIONAL_OUTPUTS</filter> 169 <filter>OPTIONAL_OUTPUTS is not None and "ctd_out_FLAG" in OPTIONAL_OUTPUTS</filter>
171 </data> 170 </data>
172 </outputs> 171 </outputs>
173 <tests><!-- TOPP_MapRTTransformer_1 --> 172 <tests>
173 <!-- TOPP_MapRTTransformer_1 -->
174 <test expect_num_outputs="2"> 174 <test expect_num_outputs="2">
175 <section name="adv_opts"> 175 <section name="adv_opts">
176 <param name="force" value="false"/> 176 <param name="force" value="false"/>
177 <param name="test" value="true"/> 177 <param name="test" value="true"/>
178 </section> 178 </section>
179 <param name="in" value="MapRTTransformer_1_input.featureXML"/> 179 <param name="in" value="MapRTTransformer_1_input.featureXML"/>
180 <output name="out" file="MapRTTransformer_1_output.featureXML" compare="sim_size" delta_frac="0.7" ftype="featurexml"/> 180 <output name="out" value="MapRTTransformer_1_output.featureXML" compare="sim_size" delta_frac="0.7" ftype="featurexml"/>
181 <param name="trafo_in" value="MapRTTransformer_trafo_linear.trafoXML"/> 181 <param name="trafo_in" value="MapRTTransformer_trafo_linear.trafoXML"/>
182 <param name="invert" value="false"/> 182 <param name="invert" value="false"/>
183 <param name="store_original_rt" value="false"/> 183 <param name="store_original_rt" value="false"/>
184 <section name="model"> 184 <section name="model">
185 <param name="type" value="none"/> 185 <param name="type" value="none"/>
186 <section name="linear"> 186 <section name="linear">
187 <param name="symmetric_regression" value="false"/> 187 <param name="symmetric_regression" value="false"/>
188 <param name="x_weight"/> 188 <param name="x_weight" value="x"/>
189 <param name="y_weight"/> 189 <param name="y_weight" value="y"/>
190 <param name="x_datum_min" value="1e-15"/> 190 <param name="x_datum_min" value="1e-15"/>
191 <param name="x_datum_max" value="1000000000000000.0"/> 191 <param name="x_datum_max" value="1000000000000000.0"/>
192 <param name="y_datum_min" value="1e-15"/> 192 <param name="y_datum_min" value="1e-15"/>
193 <param name="y_datum_max" value="1000000000000000.0"/> 193 <param name="y_datum_max" value="1000000000000000.0"/>
194 </section> 194 </section>
214 <output name="ctd_out" ftype="xml"> 214 <output name="ctd_out" ftype="xml">
215 <assert_contents> 215 <assert_contents>
216 <is_valid_xml/> 216 <is_valid_xml/>
217 </assert_contents> 217 </assert_contents>
218 </output> 218 </output>
219 <assert_stdout>
220 <has_text_matching expression="@EXECUTABLE@ took .* \(wall\), .* \(CPU\), .* \(system\), .* \(user\)(; Peak Memory Usage: 32 MB)?."/>
221 </assert_stdout>
219 </test> 222 </test>
220 <!-- TOPP_MapRTTransformer_2 --> 223 <!-- TOPP_MapRTTransformer_2 -->
221 <test expect_num_outputs="2"> 224 <test expect_num_outputs="2">
222 <section name="adv_opts"> 225 <section name="adv_opts">
223 <param name="force" value="false"/> 226 <param name="force" value="false"/>
224 <param name="test" value="true"/> 227 <param name="test" value="true"/>
225 </section> 228 </section>
226 <param name="in" value="MapRTTransformer_2_input.mzML"/> 229 <param name="in" value="MapRTTransformer_2_input.mzML"/>
227 <output name="out" file="MapRTTransformer_2_output.mzML" compare="sim_size" delta_frac="0.7" ftype="mzml"/> 230 <output name="out" value="MapRTTransformer_2_output.mzML" compare="sim_size" delta_frac="0.7" ftype="mzml"/>
228 <param name="trafo_in" value="MapRTTransformer_trafo_linear.trafoXML"/> 231 <param name="trafo_in" value="MapRTTransformer_trafo_linear.trafoXML"/>
229 <param name="invert" value="false"/> 232 <param name="invert" value="false"/>
230 <param name="store_original_rt" value="false"/> 233 <param name="store_original_rt" value="false"/>
231 <section name="model"> 234 <section name="model">
232 <param name="type" value="none"/> 235 <param name="type" value="none"/>
233 <section name="linear"> 236 <section name="linear">
234 <param name="symmetric_regression" value="false"/> 237 <param name="symmetric_regression" value="false"/>
235 <param name="x_weight"/> 238 <param name="x_weight" value="x"/>
236 <param name="y_weight"/> 239 <param name="y_weight" value="y"/>
237 <param name="x_datum_min" value="1e-15"/> 240 <param name="x_datum_min" value="1e-15"/>
238 <param name="x_datum_max" value="1000000000000000.0"/> 241 <param name="x_datum_max" value="1000000000000000.0"/>
239 <param name="y_datum_min" value="1e-15"/> 242 <param name="y_datum_min" value="1e-15"/>
240 <param name="y_datum_max" value="1000000000000000.0"/> 243 <param name="y_datum_max" value="1000000000000000.0"/>
241 </section> 244 </section>
261 <output name="ctd_out" ftype="xml"> 264 <output name="ctd_out" ftype="xml">
262 <assert_contents> 265 <assert_contents>
263 <is_valid_xml/> 266 <is_valid_xml/>
264 </assert_contents> 267 </assert_contents>
265 </output> 268 </output>
269 <assert_stdout>
270 <has_text_matching expression="@EXECUTABLE@ took .* \(wall\), .* \(CPU\), .* \(system\), .* \(user\)(; Peak Memory Usage: 32 MB)?."/>
271 </assert_stdout>
266 </test> 272 </test>
267 <!-- TOPP_MapRTTransformer_3 --> 273 <!-- TOPP_MapRTTransformer_3 -->
268 <test expect_num_outputs="2"> 274 <test expect_num_outputs="2">
269 <section name="adv_opts"> 275 <section name="adv_opts">
270 <param name="force" value="false"/> 276 <param name="force" value="false"/>
271 <param name="test" value="true"/> 277 <param name="test" value="true"/>
272 </section> 278 </section>
273 <param name="trafo_in" value="MapAlignerPoseClustering_1_trafo2.trafoXML"/> 279 <param name="trafo_in" value="MapAlignerPoseClustering_1_trafo2.trafoXML"/>
274 <output name="trafo_out" file="MapRTTransformer_3_trafo.trafoXML" compare="sim_size" delta_frac="0.7" ftype="trafoxml"/> 280 <output name="trafo_out" value="MapRTTransformer_3_trafo.trafoXML" compare="sim_size" delta_frac="0.7" ftype="trafoxml"/>
275 <param name="invert" value="true"/> 281 <param name="invert" value="true"/>
276 <param name="store_original_rt" value="false"/> 282 <param name="store_original_rt" value="false"/>
277 <section name="model"> 283 <section name="model">
278 <param name="type" value="none"/> 284 <param name="type" value="none"/>
279 <section name="linear"> 285 <section name="linear">
280 <param name="symmetric_regression" value="false"/> 286 <param name="symmetric_regression" value="false"/>
281 <param name="x_weight"/> 287 <param name="x_weight" value="x"/>
282 <param name="y_weight"/> 288 <param name="y_weight" value="y"/>
283 <param name="x_datum_min" value="1e-15"/> 289 <param name="x_datum_min" value="1e-15"/>
284 <param name="x_datum_max" value="1000000000000000.0"/> 290 <param name="x_datum_max" value="1000000000000000.0"/>
285 <param name="y_datum_min" value="1e-15"/> 291 <param name="y_datum_min" value="1e-15"/>
286 <param name="y_datum_max" value="1000000000000000.0"/> 292 <param name="y_datum_max" value="1000000000000000.0"/>
287 </section> 293 </section>
307 <output name="ctd_out" ftype="xml"> 313 <output name="ctd_out" ftype="xml">
308 <assert_contents> 314 <assert_contents>
309 <is_valid_xml/> 315 <is_valid_xml/>
310 </assert_contents> 316 </assert_contents>
311 </output> 317 </output>
318 <assert_stdout>
319 <has_text_matching expression="@EXECUTABLE@ took .* \(wall\), .* \(CPU\), .* \(system\), .* \(user\)(; Peak Memory Usage: 32 MB)?."/>
320 </assert_stdout>
312 </test> 321 </test>
313 <!-- TOPP_MapRTTransformer_4 --> 322 <!-- TOPP_MapRTTransformer_4 -->
314 <test expect_num_outputs="2"> 323 <test expect_num_outputs="2">
315 <section name="adv_opts"> 324 <section name="adv_opts">
316 <param name="force" value="false"/> 325 <param name="force" value="false"/>
317 <param name="test" value="true"/> 326 <param name="test" value="true"/>
318 </section> 327 </section>
319 <param name="in" value="MapRTTransformer_4_input.chrom.mzML"/> 328 <param name="in" value="MapRTTransformer_4_input.chrom.mzML"/>
320 <output name="out" file="MapRTTransformer_4_output.chrom.mzML" compare="sim_size" delta_frac="0.7" ftype="mzml"/> 329 <output name="out" value="MapRTTransformer_4_output.chrom.mzML" compare="sim_size" delta_frac="0.7" ftype="mzml"/>
321 <param name="trafo_in" value="MapRTTransformer_trafo_linear.trafoXML"/> 330 <param name="trafo_in" value="MapRTTransformer_trafo_linear.trafoXML"/>
322 <param name="invert" value="false"/> 331 <param name="invert" value="false"/>
323 <param name="store_original_rt" value="false"/> 332 <param name="store_original_rt" value="false"/>
324 <section name="model"> 333 <section name="model">
325 <param name="type" value="none"/> 334 <param name="type" value="none"/>
326 <section name="linear"> 335 <section name="linear">
327 <param name="symmetric_regression" value="false"/> 336 <param name="symmetric_regression" value="false"/>
328 <param name="x_weight"/> 337 <param name="x_weight" value="x"/>
329 <param name="y_weight"/> 338 <param name="y_weight" value="y"/>
330 <param name="x_datum_min" value="1e-15"/> 339 <param name="x_datum_min" value="1e-15"/>
331 <param name="x_datum_max" value="1000000000000000.0"/> 340 <param name="x_datum_max" value="1000000000000000.0"/>
332 <param name="y_datum_min" value="1e-15"/> 341 <param name="y_datum_min" value="1e-15"/>
333 <param name="y_datum_max" value="1000000000000000.0"/> 342 <param name="y_datum_max" value="1000000000000000.0"/>
334 </section> 343 </section>
354 <output name="ctd_out" ftype="xml"> 363 <output name="ctd_out" ftype="xml">
355 <assert_contents> 364 <assert_contents>
356 <is_valid_xml/> 365 <is_valid_xml/>
357 </assert_contents> 366 </assert_contents>
358 </output> 367 </output>
368 <assert_stdout>
369 <has_text_matching expression="@EXECUTABLE@ took .* \(wall\), .* \(CPU\), .* \(system\), .* \(user\)(; Peak Memory Usage: 32 MB)?."/>
370 </assert_stdout>
359 </test> 371 </test>
360 <!-- TOPP_MapRTTransformer_5 --> 372 <!-- TOPP_MapRTTransformer_5 -->
361 <test expect_num_outputs="2"> 373 <test expect_num_outputs="2">
362 <section name="adv_opts"> 374 <section name="adv_opts">
363 <param name="force" value="false"/> 375 <param name="force" value="false"/>
364 <param name="test" value="true"/> 376 <param name="test" value="true"/>
365 </section> 377 </section>
366 <param name="in" value="MapRTTransformer_1_input.featureXML"/> 378 <param name="in" value="MapRTTransformer_1_input.featureXML"/>
367 <output name="out" file="MapRTTransformer_5_output.featureXML" compare="sim_size" delta_frac="0.7" ftype="featurexml"/> 379 <output name="out" value="MapRTTransformer_5_output.featureXML" compare="sim_size" delta_frac="0.7" ftype="featurexml"/>
368 <param name="trafo_in" value="MapRTTransformer_trafo_none.trafoXML"/> 380 <param name="trafo_in" value="MapRTTransformer_trafo_none.trafoXML"/>
369 <param name="invert" value="false"/> 381 <param name="invert" value="false"/>
370 <param name="store_original_rt" value="false"/> 382 <param name="store_original_rt" value="false"/>
371 <section name="model"> 383 <section name="model">
372 <param name="type" value="none"/> 384 <param name="type" value="none"/>
373 <section name="linear"> 385 <section name="linear">
374 <param name="symmetric_regression" value="false"/> 386 <param name="symmetric_regression" value="false"/>
375 <param name="x_weight"/> 387 <param name="x_weight" value="x"/>
376 <param name="y_weight"/> 388 <param name="y_weight" value="y"/>
377 <param name="x_datum_min" value="1e-15"/> 389 <param name="x_datum_min" value="1e-15"/>
378 <param name="x_datum_max" value="1000000000000000.0"/> 390 <param name="x_datum_max" value="1000000000000000.0"/>
379 <param name="y_datum_min" value="1e-15"/> 391 <param name="y_datum_min" value="1e-15"/>
380 <param name="y_datum_max" value="1000000000000000.0"/> 392 <param name="y_datum_max" value="1000000000000000.0"/>
381 </section> 393 </section>
401 <output name="ctd_out" ftype="xml"> 413 <output name="ctd_out" ftype="xml">
402 <assert_contents> 414 <assert_contents>
403 <is_valid_xml/> 415 <is_valid_xml/>
404 </assert_contents> 416 </assert_contents>
405 </output> 417 </output>
418 <assert_stdout>
419 <has_text_matching expression="@EXECUTABLE@ took .* \(wall\), .* \(CPU\), .* \(system\), .* \(user\)(; Peak Memory Usage: 32 MB)?."/>
420 </assert_stdout>
406 </test> 421 </test>
407 <!-- TOPP_MapRTTransformer_6 --> 422 <!-- TOPP_MapRTTransformer_6 -->
408 <test expect_num_outputs="2"> 423 <test expect_num_outputs="2">
409 <section name="adv_opts"> 424 <section name="adv_opts">
410 <param name="force" value="false"/> 425 <param name="force" value="false"/>
411 <param name="test" value="true"/> 426 <param name="test" value="true"/>
412 </section> 427 </section>
413 <param name="in" value="MapRTTransformer_1_input.featureXML"/> 428 <param name="in" value="MapRTTransformer_1_input.featureXML"/>
414 <output name="out" file="MapRTTransformer_6_output.featureXML" compare="sim_size" delta_frac="0.7" ftype="featurexml"/> 429 <output name="out" value="MapRTTransformer_6_output.featureXML" compare="sim_size" delta_frac="0.7" ftype="featurexml"/>
415 <param name="trafo_in" value="MapRTTransformer_trafo_linear.trafoXML"/> 430 <param name="trafo_in" value="MapRTTransformer_trafo_linear.trafoXML"/>
416 <param name="invert" value="false"/> 431 <param name="invert" value="false"/>
417 <param name="store_original_rt" value="true"/> 432 <param name="store_original_rt" value="true"/>
418 <section name="model"> 433 <section name="model">
419 <param name="type" value="none"/> 434 <param name="type" value="none"/>
420 <section name="linear"> 435 <section name="linear">
421 <param name="symmetric_regression" value="false"/> 436 <param name="symmetric_regression" value="false"/>
422 <param name="x_weight"/> 437 <param name="x_weight" value="x"/>
423 <param name="y_weight"/> 438 <param name="y_weight" value="y"/>
424 <param name="x_datum_min" value="1e-15"/> 439 <param name="x_datum_min" value="1e-15"/>
425 <param name="x_datum_max" value="1000000000000000.0"/> 440 <param name="x_datum_max" value="1000000000000000.0"/>
426 <param name="y_datum_min" value="1e-15"/> 441 <param name="y_datum_min" value="1e-15"/>
427 <param name="y_datum_max" value="1000000000000000.0"/> 442 <param name="y_datum_max" value="1000000000000000.0"/>
428 </section> 443 </section>
448 <output name="ctd_out" ftype="xml"> 463 <output name="ctd_out" ftype="xml">
449 <assert_contents> 464 <assert_contents>
450 <is_valid_xml/> 465 <is_valid_xml/>
451 </assert_contents> 466 </assert_contents>
452 </output> 467 </output>
468 <assert_stdout>
469 <has_text_matching expression="@EXECUTABLE@ took .* \(wall\), .* \(CPU\), .* \(system\), .* \(user\)(; Peak Memory Usage: 32 MB)?."/>
470 </assert_stdout>
453 </test> 471 </test>
454 </tests> 472 </tests>
455 <help><![CDATA[Applies retention time transformations to maps. 473 <help><![CDATA[Applies retention time transformations to maps.
456 474
457 475
458 For more information, visit http://www.openms.de/doxygen/release/2.8.0/html/TOPP_MapRTTransformer.html]]></help> 476 For more information, visit https://openms.de/doxygen/release/3.1.0/html/TOPP_MapRTTransformer.html]]></help>
459 <expand macro="references"/> 477 <expand macro="references"/>
460 </tool> 478 </tool>