Add the ability to parse the XML output of the Jacoco tool.
Jacoco (www.eclemma.org/jacoco) is a Java coverage tool.
Add and integrate a class for the parser and
include a test which utilizes the new parser.
The coverage.py tool writes out an XML that conforms to the Cobertura
Coverage tool standard. Rename the cmParsePythonCoverage files to
instead be cmParseCoberturaCoverage.
By default, Intel compiler coverage tools generate HTML files as
reports, but the option -txtlcov can be given to codecov to output a
coverage file with LCov format.
To use Intel coverage:
* build the project with coverage flags
* run the application
* run profmerge
* run codecov
The output file will be "build_dir/CodeCoverage/SRCFILEDIR.LCOV".
Ask users to compile with -prof-dir${BUILD_DIR} instead of searching
the entire build tree recursively to find coverage files.
Casts from std::string -> cmStdString were high on the list of things
taking up time. Avoid such implicit casts across function calls by just
using std::string everywhere.
The comment that the symbol name is too long is no longer relevant since
modern debuggers alias the templates anyways and the size is a
non-issue since the underlying methods are generated since it's
inherited.
This assumes that coverage.py has been run in such a way to produce its
standard XML output. This uses the Cobertura schema and should be somewhat
generalizable.
This converts the CMake license to a pure 3-clause OSI-approved BSD
License. We drop the previous license clause requiring modified
versions to be plainly marked. We also update the CMake copyright to
cover the full development time range.
This teaches ctest_coverage() to remove any existing CoverageLog-*.xml
when it creates new coverage results. Otherwise the next ctest_submit()
may submit old coverage log files which unnecessarily.
This teaches CTest to process coverage information only for object files
in targets containing labels of interest. This change also improves
loading of global coverage information by globbing only in each target
support directory instead of the entire build tree.
This generalizes the previous CMakeFiles/LabelFiles.txt created at the
top of the build tree to a CMakeFiles/TargetDirectories.txt file. It
lists the target support directories for all targets in the project.
Labels can still be loaded by looking for Labels.txt files in each
target directory.
This teaches CTest to include source file labels in coverage dashboard
submissions. The labels for each source are the union of the LABELS
property from the source file and all the targets in which it is built.