Revision befb1b3c2703897c5b8ffb0044dc5d0e5f27c5d7 authored by Reinette Chatre on 19 September 2018, 17:29:06 UTC, committed by Thomas Gleixner on 28 September 2018, 20:44:53 UTC
It is possible that a failure can occur during the scheduling of a
pinned event. The initial portion of perf_event_read_local() contains
the various error checks an event should pass before it can be
considered valid. Ensure that the potential scheduling failure
of a pinned event is checked for and have a credible error.

Suggested-by: Peter Zijlstra <peterz@infradead.org>
Signed-off-by: Reinette Chatre <reinette.chatre@intel.com>
Signed-off-by: Thomas Gleixner <tglx@linutronix.de>
Acked-by: Peter Zijlstra (Intel) <peterz@infradead.org>
Cc: fenghua.yu@intel.com
Cc: tony.luck@intel.com
Cc: acme@kernel.org
Cc: gavin.hindman@intel.com
Cc: jithu.joseph@intel.com
Cc: dave.hansen@intel.com
Cc: hpa@zytor.com
Cc: stable@vger.kernel.org
Link: https://lkml.kernel.org/r/6486385d1f30336e9973b24c8c65f5079543d3d3.1537377064.git.reinette.chatre@intel.com

1 parent c307aaf
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gcc-plugins.txt
=========================
GCC plugin infrastructure
=========================


Introduction
============

GCC plugins are loadable modules that provide extra features to the
compiler [1]_. They are useful for runtime instrumentation and static analysis.
We can analyse, change and add further code during compilation via
callbacks [2]_, GIMPLE [3]_, IPA [4]_ and RTL passes [5]_.

The GCC plugin infrastructure of the kernel supports all gcc versions from
4.5 to 6.0, building out-of-tree modules, cross-compilation and building in a
separate directory.
Plugin source files have to be compilable by both a C and a C++ compiler as well
because gcc versions 4.5 and 4.6 are compiled by a C compiler,
gcc-4.7 can be compiled by a C or a C++ compiler,
and versions 4.8+ can only be compiled by a C++ compiler.

Currently the GCC plugin infrastructure supports only the x86, arm, arm64 and
powerpc architectures.

This infrastructure was ported from grsecurity [6]_ and PaX [7]_.

--

.. [1] https://gcc.gnu.org/onlinedocs/gccint/Plugins.html
.. [2] https://gcc.gnu.org/onlinedocs/gccint/Plugin-API.html#Plugin-API
.. [3] https://gcc.gnu.org/onlinedocs/gccint/GIMPLE.html
.. [4] https://gcc.gnu.org/onlinedocs/gccint/IPA.html
.. [5] https://gcc.gnu.org/onlinedocs/gccint/RTL.html
.. [6] https://grsecurity.net/
.. [7] https://pax.grsecurity.net/


Files
=====

**$(src)/scripts/gcc-plugins**

	This is the directory of the GCC plugins.

**$(src)/scripts/gcc-plugins/gcc-common.h**

	This is a compatibility header for GCC plugins.
	It should be always included instead of individual gcc headers.

**$(src)/scripts/gcc-plugin.sh**

	This script checks the availability of the included headers in
	gcc-common.h and chooses the proper host compiler to build the plugins
	(gcc-4.7 can be built by either gcc or g++).

**$(src)/scripts/gcc-plugins/gcc-generate-gimple-pass.h,
$(src)/scripts/gcc-plugins/gcc-generate-ipa-pass.h,
$(src)/scripts/gcc-plugins/gcc-generate-simple_ipa-pass.h,
$(src)/scripts/gcc-plugins/gcc-generate-rtl-pass.h**

	These headers automatically generate the registration structures for
	GIMPLE, SIMPLE_IPA, IPA and RTL passes. They support all gcc versions
	from 4.5 to 6.0.
	They should be preferred to creating the structures by hand.


Usage
=====

You must install the gcc plugin headers for your gcc version,
e.g., on Ubuntu for gcc-4.9::

	apt-get install gcc-4.9-plugin-dev

Enable a GCC plugin based feature in the kernel config::

	CONFIG_GCC_PLUGIN_CYC_COMPLEXITY = y

To compile only the plugin(s)::

	make gcc-plugins

or just run the kernel make and compile the whole kernel with
the cyclomatic complexity GCC plugin.


4. How to add a new GCC plugin
==============================

The GCC plugins are in $(src)/scripts/gcc-plugins/. You can use a file or a directory
here. It must be added to $(src)/scripts/gcc-plugins/Makefile,
$(src)/scripts/Makefile.gcc-plugins and $(src)/arch/Kconfig.
See the cyc_complexity_plugin.c (CONFIG_GCC_PLUGIN_CYC_COMPLEXITY) GCC plugin.
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