Randall Spangler 7964fa2bdc Remove duplicate KBD_IRQ_L signals
The SERIRQ signal will now be high-Z on the EC, which removes a
leakage path.  This requires the BIOS to use PM3 for its keyboard IRQ.

BUG=chrome-os-partner:24424
BRANCH=rambi
TEST=boot system; keyboard still works

Change-Id: I0acf425125ced11a9ef6da58ee49979b83c92d5c
Signed-off-by: Randall Spangler <rspangler@chromium.org>
Reviewed-on: https://chromium-review.googlesource.com/181718
2014-01-08 02:19:33 +00:00
2014-01-08 02:19:33 +00:00
2014-01-08 02:19:33 +00:00
2014-01-07 04:53:20 +00:00
2013-04-29 23:31:28 -07:00
2012-05-11 09:11:52 -07:00
2013-12-19 00:12:24 +00:00
2013-12-27 07:50:56 +00:00
2011-12-08 19:18:06 +00:00

In the most general case, the flash layout looks something like this:

  +---------------------+
  | Reserved for EC use |
  +---------------------+

  +---------------------+
  |     Vblock B        |
  +---------------------+
  |  RW firmware B      |
  +---------------------+

  +---------------------+
  |     Vblock A        |
  +---------------------+
  |  RW firmware A      |
  +---------------------+

  +---------------------+
  |       FMAP          |
  +---------------------+
  |   Public root key   |
  +---------------------+
  |  Read-only firmware |
  +---------------------+


BIOS firmware (and kernel) put the vblock info at the start of each image
where it's easy to find. The Blizzard EC expects the firmware vector table
to come first, so we have to put the vblock at the end. This means we have
to know where to look for it, but that's built into the FMAP and the RO
firmware anyway, so that's not an issue.

The RO firmware doesn't need a vblock of course, but it does need some
reserved space for vboot-related things.

Using SHA256/RSA4096, the vblock is 2468 bytes (0x9a4), while the public
root key is 1064 bytes (0x428) and the current FMAP is 644 bytes (0x284). If
we reserve 4K at the top of each FW image, that should give us plenty of
room for vboot-related stuff.
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