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r: 232658
b: refs/heads/master
c: fd96d0d
h: refs/heads/master
v: v3
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Greg Kroah-Hartman committed Jan 23, 2011
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2 changes: 1 addition & 1 deletion [refs]
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@@ -1,2 +1,2 @@
---
refs/heads/master: 50d64676d132a8a72a1a1657d7b3e6efa53da1ac
refs/heads/master: fd96d0d8d8079b1ea7a7e8943a4da9dfc9621124
4 changes: 2 additions & 2 deletions trunk/CREDITS
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Expand Up @@ -2811,8 +2811,8 @@ D: CDROM driver "sonycd535" (Sony CDU-535/531)
N: Stelian Pop
E: stelian@popies.net
P: 1024D/EDBB6147 7B36 0E07 04BC 11DC A7A0 D3F7 7185 9E7A EDBB 6147
D: sonypi, meye drivers, mct_u232 usb serial hacks
S: Paris, France
D: random kernel hacks
S: Paimpont, France

N: Pete Popov
E: pete_popov@yahoo.com
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4 changes: 4 additions & 0 deletions trunk/Documentation/ABI/stable/thermal-notification
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What: A notification mechanism for thermal related events
Description:
This interface enables notification for thermal related events.
The notification is in the form of a netlink event.
9 changes: 9 additions & 0 deletions trunk/Documentation/ABI/testing/sysfs-class-led
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Expand Up @@ -26,3 +26,12 @@ Description:
scheduler is chosen. Trigger specific parameters can appear in
/sys/class/leds/<led> once a given trigger is selected.

What: /sys/class/leds/<led>/inverted
Date: January 2011
KernelVersion: 2.6.38
Contact: Richard Purdie <rpurdie@rpsys.net>
Description:
Invert the LED on/off state. This parameter is specific to
gpio and backlight triggers. In case of the backlight trigger,
it is usefull when driving a LED which is intended to indicate
a device in a standby like state.
6 changes: 6 additions & 0 deletions trunk/Documentation/ABI/testing/sysfs-platform-ideapad-laptop
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@@ -0,0 +1,6 @@
What: /sys/devices/platform/ideapad/camera_power
Date: Dec 2010
KernelVersion: 2.6.37
Contact: "Ike Panhc <ike.pan@canonical.com>"
Description:
Control the power of camera module. 1 means on, 0 means off.
21 changes: 17 additions & 4 deletions trunk/Documentation/DocBook/80211.tmpl
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Expand Up @@ -268,10 +268,6 @@
!Finclude/net/mac80211.h ieee80211_ops
!Finclude/net/mac80211.h ieee80211_alloc_hw
!Finclude/net/mac80211.h ieee80211_register_hw
!Finclude/net/mac80211.h ieee80211_get_tx_led_name
!Finclude/net/mac80211.h ieee80211_get_rx_led_name
!Finclude/net/mac80211.h ieee80211_get_assoc_led_name
!Finclude/net/mac80211.h ieee80211_get_radio_led_name
!Finclude/net/mac80211.h ieee80211_unregister_hw
!Finclude/net/mac80211.h ieee80211_free_hw
</chapter>
Expand Down Expand Up @@ -382,6 +378,23 @@
</para>
</partintro>

<chapter id="led-support">
<title>LED support</title>
<para>
Mac80211 supports various ways of blinking LEDs. Wherever possible,
device LEDs should be exposed as LED class devices and hooked up to
the appropriate trigger, which will then be triggered appropriately
by mac80211.
</para>
!Finclude/net/mac80211.h ieee80211_get_tx_led_name
!Finclude/net/mac80211.h ieee80211_get_rx_led_name
!Finclude/net/mac80211.h ieee80211_get_assoc_led_name
!Finclude/net/mac80211.h ieee80211_get_radio_led_name
!Finclude/net/mac80211.h ieee80211_tpt_blink
!Finclude/net/mac80211.h ieee80211_tpt_led_trigger_flags
!Finclude/net/mac80211.h ieee80211_create_tpt_led_trigger
</chapter>

<chapter id="hardware-crypto-offload">
<title>Hardware crypto acceleration</title>
!Pinclude/net/mac80211.h Hardware crypto acceleration
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2 changes: 1 addition & 1 deletion trunk/Documentation/DocBook/dvb/dvbapi.xml
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Expand Up @@ -28,7 +28,7 @@
<holder>Convergence GmbH</holder>
</copyright>
<copyright>
<year>2009-2010</year>
<year>2009-2011</year>
<holder>Mauro Carvalho Chehab</holder>
</copyright>

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4 changes: 2 additions & 2 deletions trunk/Documentation/DocBook/media.tmpl
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Expand Up @@ -28,7 +28,7 @@
<title>LINUX MEDIA INFRASTRUCTURE API</title>

<copyright>
<year>2009-2010</year>
<year>2009-2011</year>
<holder>LinuxTV Developers</holder>
</copyright>

Expand Down Expand Up @@ -86,7 +86,7 @@ Foundation. A copy of the license is included in the chapter entitled
</author>
</authorgroup>
<copyright>
<year>2009-2010</year>
<year>2009-2011</year>
<holder>Mauro Carvalho Chehab</holder>
</copyright>

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2 changes: 1 addition & 1 deletion trunk/Documentation/DocBook/mtdnand.tmpl
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Expand Up @@ -250,7 +250,7 @@ static void board_hwcontrol(struct mtd_info *mtd, int cmd)
<title>Device ready function</title>
<para>
If the hardware interface has the ready busy pin of the NAND chip connected to a
GPIO or other accesible I/O pin, this function is used to read back the state of the
GPIO or other accessible I/O pin, this function is used to read back the state of the
pin. The function has no arguments and should return 0, if the device is busy (R/B pin
is low) and 1, if the device is ready (R/B pin is high).
If the hardware interface does not give access to the ready busy pin, then
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6 changes: 4 additions & 2 deletions trunk/Documentation/DocBook/v4l/dev-rds.xml
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Expand Up @@ -75,6 +75,7 @@ as follows:</para>
</section>

<section>
<title>RDS datastructures</title>
<table frame="none" pgwide="1" id="v4l2-rds-data">
<title>struct
<structname>v4l2_rds_data</structname></title>
Expand Down Expand Up @@ -129,10 +130,11 @@ as follows:</para>

<table frame="none" pgwide="1" id="v4l2-rds-block-codes">
<title>Block defines</title>
<tgroup cols="3">
<tgroup cols="4">
<colspec colname="c1" colwidth="1*" />
<colspec colname="c2" colwidth="1*" />
<colspec colname="c3" colwidth="5*" />
<colspec colname="c3" colwidth="1*" />
<colspec colname="c4" colwidth="5*" />
<tbody valign="top">
<row>
<entry>V4L2_RDS_BLOCK_MSK</entry>
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3 changes: 2 additions & 1 deletion trunk/Documentation/DocBook/v4l/v4l2.xml
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Expand Up @@ -100,6 +100,7 @@ Remote Controller chapter.</contrib>
<year>2008</year>
<year>2009</year>
<year>2010</year>
<year>2011</year>
<holder>Bill Dirks, Michael H. Schimek, Hans Verkuil, Martin
Rubli, Andy Walls, Muralidharan Karicheri, Mauro Carvalho Chehab</holder>
</copyright>
Expand Down Expand Up @@ -381,7 +382,7 @@ and discussions on the V4L mailing list.</revremark>
</partinfo>

<title>Video for Linux Two API Specification</title>
<subtitle>Revision 2.6.33</subtitle>
<subtitle>Revision 2.6.38</subtitle>

<chapter id="common">
&sub-common;
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27 changes: 27 additions & 0 deletions trunk/Documentation/IPMI.txt
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Expand Up @@ -533,6 +533,33 @@ completion during sending a panic event.
Other Pieces
------------

Get the detailed info related with the IPMI device
--------------------------------------------------

Some users need more detailed information about a device, like where
the address came from or the raw base device for the IPMI interface.
You can use the IPMI smi_watcher to catch the IPMI interfaces as they
come or go, and to grab the information, you can use the function
ipmi_get_smi_info(), which returns the following structure:

struct ipmi_smi_info {
enum ipmi_addr_src addr_src;
struct device *dev;
union {
struct {
void *acpi_handle;
} acpi_info;
} addr_info;
};

Currently special info for only for SI_ACPI address sources is
returned. Others may be added as necessary.

Note that the dev pointer is included in the above structure, and
assuming ipmi_smi_get_info returns success, you must call put_device
on the dev pointer.


Watchdog
--------

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122 changes: 122 additions & 0 deletions trunk/Documentation/acpi/apei/output_format.txt
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APEI output format
~~~~~~~~~~~~~~~~~~

APEI uses printk as hardware error reporting interface, the output
format is as follow.

<error record> :=
APEI generic hardware error status
severity: <integer>, <severity string>
section: <integer>, severity: <integer>, <severity string>
flags: <integer>
<section flags strings>
fru_id: <uuid string>
fru_text: <string>
section_type: <section type string>
<section data>

<severity string>* := recoverable | fatal | corrected | info

<section flags strings># :=
[primary][, containment warning][, reset][, threshold exceeded]\
[, resource not accessible][, latent error]

<section type string> := generic processor error | memory error | \
PCIe error | unknown, <uuid string>

<section data> :=
<generic processor section data> | <memory section data> | \
<pcie section data> | <null>

<generic processor section data> :=
[processor_type: <integer>, <proc type string>]
[processor_isa: <integer>, <proc isa string>]
[error_type: <integer>
<proc error type strings>]
[operation: <integer>, <proc operation string>]
[flags: <integer>
<proc flags strings>]
[level: <integer>]
[version_info: <integer>]
[processor_id: <integer>]
[target_address: <integer>]
[requestor_id: <integer>]
[responder_id: <integer>]
[IP: <integer>]

<proc type string>* := IA32/X64 | IA64

<proc isa string>* := IA32 | IA64 | X64

<processor error type strings># :=
[cache error][, TLB error][, bus error][, micro-architectural error]

<proc operation string>* := unknown or generic | data read | data write | \
instruction execution

<proc flags strings># :=
[restartable][, precise IP][, overflow][, corrected]

<memory section data> :=
[error_status: <integer>]
[physical_address: <integer>]
[physical_address_mask: <integer>]
[node: <integer>]
[card: <integer>]
[module: <integer>]
[bank: <integer>]
[device: <integer>]
[row: <integer>]
[column: <integer>]
[bit_position: <integer>]
[requestor_id: <integer>]
[responder_id: <integer>]
[target_id: <integer>]
[error_type: <integer>, <mem error type string>]

<mem error type string>* :=
unknown | no error | single-bit ECC | multi-bit ECC | \
single-symbol chipkill ECC | multi-symbol chipkill ECC | master abort | \
target abort | parity error | watchdog timeout | invalid address | \
mirror Broken | memory sparing | scrub corrected error | \
scrub uncorrected error

<pcie section data> :=
[port_type: <integer>, <pcie port type string>]
[version: <integer>.<integer>]
[command: <integer>, status: <integer>]
[device_id: <integer>:<integer>:<integer>.<integer>
slot: <integer>
secondary_bus: <integer>
vendor_id: <integer>, device_id: <integer>
class_code: <integer>]
[serial number: <integer>, <integer>]
[bridge: secondary_status: <integer>, control: <integer>]

<pcie port type string>* := PCIe end point | legacy PCI end point | \
unknown | unknown | root port | upstream switch port | \
downstream switch port | PCIe to PCI/PCI-X bridge | \
PCI/PCI-X to PCIe bridge | root complex integrated endpoint device | \
root complex event collector

Where, [] designate corresponding content is optional

All <field string> description with * has the following format:

field: <integer>, <field string>

Where value of <integer> should be the position of "string" in <field
string> description. Otherwise, <field string> will be "unknown".

All <field strings> description with # has the following format:

field: <integer>
<field strings>

Where each string in <fields strings> corresponding to one set bit of
<integer>. The bit position is the position of "string" in <field
strings> description.

For more detailed explanation of every field, please refer to UEFI
specification version 2.3 or later, section Appendix N: Common
Platform Error Record.
27 changes: 27 additions & 0 deletions trunk/Documentation/cgroups/blkio-controller.txt
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Expand Up @@ -89,6 +89,33 @@ Throttling/Upper Limit policy

Limits for writes can be put using blkio.write_bps_device file.

Hierarchical Cgroups
====================
- Currently none of the IO control policy supports hierarhical groups. But
cgroup interface does allow creation of hierarhical cgroups and internally
IO policies treat them as flat hierarchy.

So this patch will allow creation of cgroup hierarhcy but at the backend
everything will be treated as flat. So if somebody created a hierarchy like
as follows.

root
/ \
test1 test2
|
test3

CFQ and throttling will practically treat all groups at same level.

pivot
/ | \ \
root test1 test2 test3

Down the line we can implement hierarchical accounting/control support
and also introduce a new cgroup file "use_hierarchy" which will control
whether cgroup hierarchy is viewed as flat or hierarchical by the policy..
This is how memory controller also has implemented the things.

Various user visible config options
===================================
CONFIG_BLK_CGROUP
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2 changes: 1 addition & 1 deletion trunk/Documentation/cgroups/cgroup_event_listener.c
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Expand Up @@ -91,7 +91,7 @@ int main(int argc, char **argv)

if (ret == -1) {
perror("cgroup.event_control "
"is not accessable any more");
"is not accessible any more");
break;
}

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8 changes: 4 additions & 4 deletions trunk/Documentation/cgroups/cgroups.txt
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Expand Up @@ -355,13 +355,13 @@ subsystems, type:

To change the set of subsystems bound to a mounted hierarchy, just
remount with different options:
# mount -o remount,cpuset,ns hier1 /dev/cgroup
# mount -o remount,cpuset,blkio hier1 /dev/cgroup

Now memory is removed from the hierarchy and ns is added.
Now memory is removed from the hierarchy and blkio is added.

Note this will add ns to the hierarchy but won't remove memory or
Note this will add blkio to the hierarchy but won't remove memory or
cpuset, because the new options are appended to the old ones:
# mount -o remount,ns /dev/cgroup
# mount -o remount,blkio /dev/cgroup

To Specify a hierarchy's release_agent:
# mount -t cgroup -o cpuset,release_agent="/sbin/cpuset_release_agent" \
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2 changes: 1 addition & 1 deletion trunk/Documentation/cgroups/memcg_test.txt
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Expand Up @@ -398,7 +398,7 @@ Under below explanation, we assume CONFIG_MEM_RES_CTRL_SWAP=y.
written to move_charge_at_immigrate.

9.10 Memory thresholds
Memory controler implements memory thresholds using cgroups notification
Memory controller implements memory thresholds using cgroups notification
API. You can use Documentation/cgroups/cgroup_event_listener.c to test
it.

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7 changes: 6 additions & 1 deletion trunk/Documentation/device-mapper/dm-crypt.txt
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Expand Up @@ -8,7 +8,7 @@ Parameters: <cipher> <key> <iv_offset> <device path> <offset>

<cipher>
Encryption cipher and an optional IV generation mode.
(In format cipher-chainmode-ivopts:ivmode).
(In format cipher[:keycount]-chainmode-ivopts:ivmode).
Examples:
des
aes-cbc-essiv:sha256
Expand All @@ -20,6 +20,11 @@ Parameters: <cipher> <key> <iv_offset> <device path> <offset>
Key used for encryption. It is encoded as a hexadecimal number.
You can only use key sizes that are valid for the selected cipher.

<keycount>
Multi-key compatibility mode. You can define <keycount> keys and
then sectors are encrypted according to their offsets (sector 0 uses key0;
sector 1 uses key1 etc.). <keycount> must be a power of two.

<iv_offset>
The IV offset is a sector count that is added to the sector number
before creating the IV.
Expand Down
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