Mercurial > hg > xemacs-beta
view modules/README @ 5040:3daf9fc57cd4
fixes to test harness to allow backtracing/debugging of failures
-------------------- ChangeLog entries follow: --------------------
tests/ChangeLog addition:
2010-02-20 Ben Wing <ben@xemacs.org>
* automated/test-harness.el:
* automated/test-harness.el (test-harness-bug-expected): New.
* automated/test-harness.el (test-harness-unexpected-error-enter-debugger): New.
* automated/test-harness.el (test-harness-assertion-failure-enter-debugger): New.
* automated/test-harness.el (test-harness-unexpected-error-show-backtrace): New.
* automated/test-harness.el (test-harness-assertion-failure-show-backtrace): New.
* automated/test-harness.el (test-harness-assertion-failure-do-debug): New.
* automated/test-harness.el (test-harness-unexpected-error-do-debug): New.
* automated/test-harness.el (test-harness-unexpected-error-condition-handler): New.
* automated/test-harness.el (test-harness-error-wrap): New.
* automated/test-harness.el (test-harness-from-buffer):
New variables that allow a backtrace to be displayed and/or the
debugger to be entered when an assertion failure or unexpected error
occurs. By default, debugging occurs when interactive and debug-on-error
is set, and backtrace-displaying occurs either
(a) when stack-trace-on-error is set, or (b) always, when an unexpected
error occurs. (However, no backtracing or debugging occurs when a bug
is expected.)
| author | Ben Wing <ben@xemacs.org> |
|---|---|
| date | Sat, 20 Feb 2010 20:04:44 -0600 |
| parents | 25e260cb7994 |
| children | da1365dd3f07 |
line wrap: on
line source
This directory contains a number of XEmacs dynamic modules. These modules can be loaded directly with the command 'M-x load-module'. However, the preferred method of loading a module is to issue a "(require 'module-name)" command to the Lisp interpreter. This will store information so that a later "(unload-feature 'module-name)" can succeed. To compile one of these modules, simply enter the desired directory, type 'configure', and then 'make'. If you are building the module for an installed XEmacs, then 'make install' will place the module in the appropriate directory for XEmacs to find it later (assuming you have permission to write to that directory). A subsequent 'load-module' or 'require' will then load the module, as described above. Each of these demonstrates different features and limitations of the XEmacs module loading technology. For a complete discussion on XEmacs dynamic modules, please consult the XEmacs Module Writers Guide, which can be found in the ../info directory. For those wanting to get started with module writing, please see the 'sample' directory. It contains two subdirectories: internal and external. The 'internal' subdirectory contains the framework needed to migrate some core piece of XEmacs functionality into code that can either be compiled into the core or built as a separate module. The 'external' subdirectory contains the somewhat simpler framework needed to build a module separately from XEmacs. These should be considered starting places for module writing.
