Adrian Chadd b7d7ad0b90 Begin moving support for board MAC addresses over to being explicitly defined.
A lot of these dinky atheros based MIPS boards don't have a nice, well,
anything consistent defining their MAC addresses for things.

The Atheros reference design boards will happily put MAC addresses
into the wifi module calibration data like they should, and individual
ethernet MAC addresses into the calibration area in flash.
That makes my life easy - "hint.arge.X.eeprommac=<addr>" reads from
that flash address to extract a MAC, and everything works fine.

However, aside from some very well behaved vendors (eg the Carambola 2
board), everyone else does something odd.

eg:

* a MAC address in the environment (eg ubiquiti routerstation/RSPRO)
   that you derive arge0/arge1 MAC addresses from.
* a MAC address in flash that you derive arge0/arge1 MAC addresses from.
* The wifi devices having their own MAC addresses in calibration data,
  like normal.
* The wifi devices having a fixed, default or garbage value for a MAC
  address in calibration data, and it has to be derived from the
  system MAC.

So to support this complete nonsense of a situation, there needs to be
a few hacks:

* The "board" MAC address needs to be derived from somewhere and squirreled
  away.  For now it's either redboot or a MAC address stored in calibration
  flash.

* Then, a "map" set of hints to populate kenv with some MAC addresses
  that are derived/local, based on the board address.  Each board has
  a totally different idea of what you do to derive things, so each
  map entry has an "offset" (+ve or -ve) that's added to the board
  MAC address.

* Then if_arge (and later, if_ath) should check kenv for said hint and
  if it's found, use that rather than the EEPROM MAC address - which may
  be totally garbage and not actually work right.

In order to do this, I've undone some of the custom redboot expecting
hacks in if_arge and the stuff that magically adds one to the MAC
address supplied by the board - instead, as I continue to test this
out on more hardware, I'll update the hints file with a map explaining
(a) where the board MAC should come from, and (b) what offsets to use
for each device.

The aim is to have all of the tplink, dlink and other random hardware
we run on have valid MAC addresses at boot, so (a) people don't get
random B:S:Dx:x ethernet MACs, and (b) the wifi MAC is valid
so it works rather than trying to use an invalid address that
actually upsets systems (think: multicast bit set in BSSID.)

Tested:

* TP-Link TL_WDR3600 - subsequent commits will add the hints map
  and the if_ath support.

TODO:

* Since this is -HEAD, and I'm all for debugging, there's a lot of
  printf()s in here.  They'll eventually go under bootverbose.
* I'd like to turn the macaddr routines into something available
  to all drivers - too many places hand-roll random MAC addresses
  and parser stuff.  I'd rather it just be shared code.
  However, that'll require more formal review.
* More boards.
2015-03-28 23:40:29 +00:00
2015-03-25 21:53:17 +00:00
2015-03-27 18:23:06 +00:00
2014-06-02 00:21:42 +00:00
2014-12-31 10:00:43 +00:00

This is the top level of the FreeBSD source directory.  This file
was last revised on:
$FreeBSD$

For copyright information, please see the file COPYRIGHT in this
directory (additional copyright information also exists for some
sources in this tree - please see the specific source directories for
more information).

The Makefile in this directory supports a number of targets for
building components (or all) of the FreeBSD source tree, the most
commonly used one being ``world'', which rebuilds and installs
everything in the FreeBSD system from the source tree except the
kernel, the kernel-modules and the contents of /etc.  The ``world''
target should only be used in cases where the source tree has not
changed from the currently running version.  See:
http://www.freebsd.org/doc/en_US.ISO8859-1/books/handbook/makeworld.html
for more information, including setting make(1) variables.

The ``buildkernel'' and ``installkernel'' targets build and install
the kernel and the modules (see below).  Please see the top of
the Makefile in this directory for more information on the
standard build targets and compile-time flags.

Building a kernel is a somewhat more involved process, documentation
for which can be found at:
   http://www.freebsd.org/doc/en_US.ISO8859-1/books/handbook/kernelconfig.html
And in the config(8) man page.
Note: If you want to build and install the kernel with the
``buildkernel'' and ``installkernel'' targets, you might need to build
world before.  More information is available in the handbook.

The sample kernel configuration files reside in the sys/<arch>/conf
sub-directory (assuming that you've installed the kernel sources), the
file named GENERIC being the one used to build your initial installation
kernel.  The file NOTES contains entries and documentation for all possible
devices, not just those commonly used.  It is the successor of the ancient
LINT file, but in contrast to LINT, it is not buildable as a kernel but a
pure reference and documentation file.


Source Roadmap:
---------------
bin		System/user commands.

cddl		Various commands and libraries under the Common Development
		and Distribution License.

contrib		Packages contributed by 3rd parties.

crypto		Cryptography stuff (see crypto/README).

etc		Template files for /etc.

games		Amusements.

gnu		Various commands and libraries under the GNU Public License.
		Please see gnu/COPYING* for more information.

include		System include files.

kerberos5	Kerberos5 (Heimdal) package.

lib		System libraries.

libexec		System daemons.

release		Release building Makefile & associated tools.

rescue		Build system for statically linked /rescue utilities.

sbin		System commands.

secure		Cryptographic libraries and commands.

share		Shared resources.

sys		Kernel sources.

tools		Utilities for regression testing and miscellaneous tasks.

usr.bin		User commands.

usr.sbin	System administration commands.


For information on synchronizing your source tree with one or more of
the FreeBSD Project's development branches, please see:

  http://www.freebsd.org/doc/en_US.ISO8859-1/books/handbook/synching.html
Description
freebsd with flexible iflib nic queues
Readme 2.6 GiB
Languages
C 60.1%
C++ 26.1%
Roff 4.9%
Shell 3%
Assembly 1.7%
Other 3.7%