Before starting, Its better to clean up the existing minishift
minishift delete --force
rm $HOME/.minishift/certs/* -rf
| Jenkins shell script: | |
| #!/bin/sh | |
| ## Begin script generated by mjsWriteDockerRunScript.m | |
| # embed the Matlab job as JSON | |
| JOB_JSON="{\"cleanupCommand\": \"\",\"diskGB\": null,\"jobCommand\": [\"cd(fullfile(tbLocateToolbox(''sa-labs-analysis-core''), ''src\/test\/matlab''));\",\"tbAssertTestsPass()\"],\"memoryGB\": null,\"name\": \"testSALabsAnalysisCore\",\"setupCommand\": \"\",\"toolboxCommand\": \"tbUse(''sa-labs-analysis-core'')\"}" | |
| # find where Matlab is installed, dynamically | |
| MATLAB_LINK="$(which matlab)" | |
| MATLAB_EXECUTABLE="$(readlink -f "$MATLAB_LINK")" |
Move files from one git repo to another (not a clone), preserving history
git log --pretty=email --patch-with-stat --reverse -- path/to/file_or_folder | (cd /path/to/new_repository && git am)| function [status, result, fullCommand] = tbSystem(command, varargin) | |
| % Run a comand with system() and a clean environment. | |
| % | |
| % [status, result] = tbSystem(command) locates the given command on | |
| % the system PATH, then invokes the command. Clears the shell environment | |
| % beforehand, so unusual environment variables set by Matlab can be | |
| % ignored. | |
| % | |
| % tbSystem( ... 'echo', echo) specifies whether to echo system command | |
| % output to the Matlab Command Window (true) or hide it (false). The |
| %% Startup script for use with the Toolbox Toolbox. | |
| % | |
| % Here is a sample startup.m for works with the ToolboxToolbox. You | |
| % should copy this file to your system outside of the ToolboxToolbox | |
| % folder. You should rename this file to "startup.m". You should edit | |
| % Your startup.m with the correct toolboxToolboxDir, and any Matlab | |
| % preferences you wish to change for your local machine. | |
| % | |
| % This sample is focused on the ToolboxToolbox. You can include additional | |
| % startup actions, if you wish. |
| <table style="height: 389px; font-family: verdana; float: left;font-size:12px" border="1" width="453" cellspacing="10" cellpadding="2"> | |
| <tbody> | |
| <tr> | |
| <td><strong>Date</strong></td> | |
| <td><strong>Time</strong></td> | |
| <td><strong>Session</strong></td> | |
| </tr> | |
| <!-- Start Of January --> | |
| <tr> | |
| <td valign="top"><strong>04 January</strong><strong></strong></td> |
| function out = cell2gobjects(c) | |
| out = gobjects(size(c)); | |
| if numel(c) == 1 | |
| return | |
| end | |
| for i = 1 : numel(c) | |
| out(i) = c{i}; |
| % Nonlinear Signal Transfer from Mouse Rods to Bipolar Cells and Implications for Visual Sensitivity | |
| % Neuron, Vol. 34, 773–785, May 30, 2002, Copyright 2002 by Cell Press | |
| function simulate() | |
| % delcare all constants for function handles | |
| sigma_d = 0.27; | |
| sigma_a = 0.33; | |
| mean_amlpitude_rod_response = 1; |