24 May, 2019

1 commit

  • Based on 1 normalized pattern(s):

    this program is free software you can redistribute it and or modify
    it under the terms of the gnu general public license as published by
    the free software foundation either version 2 of the license or at
    your option any later version this program is distributed in the
    hope that it will be useful but without any warranty without even
    the implied warranty of merchantability or fitness for a particular
    purpose see the gnu general public license for more details you
    should have received a copy of the gnu general public license along
    with this program if not write to the free software foundation inc
    59 temple place suite 330 boston ma 02111 1307 usa the gnu gpl is
    contained in usr doc copyright gpl on a debian system and in the
    file copying in the linux kernel source

    extracted by the scancode license scanner the SPDX license identifier

    GPL-2.0-or-later

    has been chosen to replace the boilerplate/reference in 6 file(s).

    Signed-off-by: Thomas Gleixner
    Reviewed-by: Kate Stewart
    Reviewed-by: Allison Randal
    Cc: linux-spdx@vger.kernel.org
    Link: https://lkml.kernel.org/r/20190520170857.643862682@linutronix.de
    Signed-off-by: Greg Kroah-Hartman

    Thomas Gleixner
     

22 Nov, 2017

1 commit

  • This converts all remaining cases of the old setup_timer() API into using
    timer_setup(), where the callback argument is the structure already
    holding the struct timer_list. These should have no behavioral changes,
    since they just change which pointer is passed into the callback with
    the same available pointers after conversion. It handles the following
    examples, in addition to some other variations.

    Casting from unsigned long:

    void my_callback(unsigned long data)
    {
    struct something *ptr = (struct something *)data;
    ...
    }
    ...
    setup_timer(&ptr->my_timer, my_callback, ptr);

    and forced object casts:

    void my_callback(struct something *ptr)
    {
    ...
    }
    ...
    setup_timer(&ptr->my_timer, my_callback, (unsigned long)ptr);

    become:

    void my_callback(struct timer_list *t)
    {
    struct something *ptr = from_timer(ptr, t, my_timer);
    ...
    }
    ...
    timer_setup(&ptr->my_timer, my_callback, 0);

    Direct function assignments:

    void my_callback(unsigned long data)
    {
    struct something *ptr = (struct something *)data;
    ...
    }
    ...
    ptr->my_timer.function = my_callback;

    have a temporary cast added, along with converting the args:

    void my_callback(struct timer_list *t)
    {
    struct something *ptr = from_timer(ptr, t, my_timer);
    ...
    }
    ...
    ptr->my_timer.function = (TIMER_FUNC_TYPE)my_callback;

    And finally, callbacks without a data assignment:

    void my_callback(unsigned long data)
    {
    ...
    }
    ...
    setup_timer(&ptr->my_timer, my_callback, 0);

    have their argument renamed to verify they're unused during conversion:

    void my_callback(struct timer_list *unused)
    {
    ...
    }
    ...
    timer_setup(&ptr->my_timer, my_callback, 0);

    The conversion is done with the following Coccinelle script:

    spatch --very-quiet --all-includes --include-headers \
    -I ./arch/x86/include -I ./arch/x86/include/generated \
    -I ./include -I ./arch/x86/include/uapi \
    -I ./arch/x86/include/generated/uapi -I ./include/uapi \
    -I ./include/generated/uapi --include ./include/linux/kconfig.h \
    --dir . \
    --cocci-file ~/src/data/timer_setup.cocci

    @fix_address_of@
    expression e;
    @@

    setup_timer(
    -&(e)
    +&e
    , ...)

    // Update any raw setup_timer() usages that have a NULL callback, but
    // would otherwise match change_timer_function_usage, since the latter
    // will update all function assignments done in the face of a NULL
    // function initialization in setup_timer().
    @change_timer_function_usage_NULL@
    expression _E;
    identifier _timer;
    type _cast_data;
    @@

    (
    -setup_timer(&_E->_timer, NULL, _E);
    +timer_setup(&_E->_timer, NULL, 0);
    |
    -setup_timer(&_E->_timer, NULL, (_cast_data)_E);
    +timer_setup(&_E->_timer, NULL, 0);
    |
    -setup_timer(&_E._timer, NULL, &_E);
    +timer_setup(&_E._timer, NULL, 0);
    |
    -setup_timer(&_E._timer, NULL, (_cast_data)&_E);
    +timer_setup(&_E._timer, NULL, 0);
    )

    @change_timer_function_usage@
    expression _E;
    identifier _timer;
    struct timer_list _stl;
    identifier _callback;
    type _cast_func, _cast_data;
    @@

    (
    -setup_timer(&_E->_timer, _callback, _E);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, &_callback, _E);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, _callback, (_cast_data)_E);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, &_callback, (_cast_data)_E);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, (_cast_func)_callback, _E);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, (_cast_func)&_callback, _E);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, (_cast_func)_callback, (_cast_data)_E);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, (_cast_func)&_callback, (_cast_data)_E);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E._timer, _callback, (_cast_data)_E);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, _callback, (_cast_data)&_E);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, &_callback, (_cast_data)_E);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, &_callback, (_cast_data)&_E);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, (_cast_func)_callback, (_cast_data)_E);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, (_cast_func)_callback, (_cast_data)&_E);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, (_cast_func)&_callback, (_cast_data)_E);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, (_cast_func)&_callback, (_cast_data)&_E);
    +timer_setup(&_E._timer, _callback, 0);
    |
    _E->_timer@_stl.function = _callback;
    |
    _E->_timer@_stl.function = &_callback;
    |
    _E->_timer@_stl.function = (_cast_func)_callback;
    |
    _E->_timer@_stl.function = (_cast_func)&_callback;
    |
    _E._timer@_stl.function = _callback;
    |
    _E._timer@_stl.function = &_callback;
    |
    _E._timer@_stl.function = (_cast_func)_callback;
    |
    _E._timer@_stl.function = (_cast_func)&_callback;
    )

    // callback(unsigned long arg)
    @change_callback_handle_cast
    depends on change_timer_function_usage@
    identifier change_timer_function_usage._callback;
    identifier change_timer_function_usage._timer;
    type _origtype;
    identifier _origarg;
    type _handletype;
    identifier _handle;
    @@

    void _callback(
    -_origtype _origarg
    +struct timer_list *t
    )
    {
    (
    ... when != _origarg
    _handletype *_handle =
    -(_handletype *)_origarg;
    +from_timer(_handle, t, _timer);
    ... when != _origarg
    |
    ... when != _origarg
    _handletype *_handle =
    -(void *)_origarg;
    +from_timer(_handle, t, _timer);
    ... when != _origarg
    |
    ... when != _origarg
    _handletype *_handle;
    ... when != _handle
    _handle =
    -(_handletype *)_origarg;
    +from_timer(_handle, t, _timer);
    ... when != _origarg
    |
    ... when != _origarg
    _handletype *_handle;
    ... when != _handle
    _handle =
    -(void *)_origarg;
    +from_timer(_handle, t, _timer);
    ... when != _origarg
    )
    }

    // callback(unsigned long arg) without existing variable
    @change_callback_handle_cast_no_arg
    depends on change_timer_function_usage &&
    !change_callback_handle_cast@
    identifier change_timer_function_usage._callback;
    identifier change_timer_function_usage._timer;
    type _origtype;
    identifier _origarg;
    type _handletype;
    @@

    void _callback(
    -_origtype _origarg
    +struct timer_list *t
    )
    {
    + _handletype *_origarg = from_timer(_origarg, t, _timer);
    +
    ... when != _origarg
    - (_handletype *)_origarg
    + _origarg
    ... when != _origarg
    }

    // Avoid already converted callbacks.
    @match_callback_converted
    depends on change_timer_function_usage &&
    !change_callback_handle_cast &&
    !change_callback_handle_cast_no_arg@
    identifier change_timer_function_usage._callback;
    identifier t;
    @@

    void _callback(struct timer_list *t)
    { ... }

    // callback(struct something *handle)
    @change_callback_handle_arg
    depends on change_timer_function_usage &&
    !match_callback_converted &&
    !change_callback_handle_cast &&
    !change_callback_handle_cast_no_arg@
    identifier change_timer_function_usage._callback;
    identifier change_timer_function_usage._timer;
    type _handletype;
    identifier _handle;
    @@

    void _callback(
    -_handletype *_handle
    +struct timer_list *t
    )
    {
    + _handletype *_handle = from_timer(_handle, t, _timer);
    ...
    }

    // If change_callback_handle_arg ran on an empty function, remove
    // the added handler.
    @unchange_callback_handle_arg
    depends on change_timer_function_usage &&
    change_callback_handle_arg@
    identifier change_timer_function_usage._callback;
    identifier change_timer_function_usage._timer;
    type _handletype;
    identifier _handle;
    identifier t;
    @@

    void _callback(struct timer_list *t)
    {
    - _handletype *_handle = from_timer(_handle, t, _timer);
    }

    // We only want to refactor the setup_timer() data argument if we've found
    // the matching callback. This undoes changes in change_timer_function_usage.
    @unchange_timer_function_usage
    depends on change_timer_function_usage &&
    !change_callback_handle_cast &&
    !change_callback_handle_cast_no_arg &&
    !change_callback_handle_arg@
    expression change_timer_function_usage._E;
    identifier change_timer_function_usage._timer;
    identifier change_timer_function_usage._callback;
    type change_timer_function_usage._cast_data;
    @@

    (
    -timer_setup(&_E->_timer, _callback, 0);
    +setup_timer(&_E->_timer, _callback, (_cast_data)_E);
    |
    -timer_setup(&_E._timer, _callback, 0);
    +setup_timer(&_E._timer, _callback, (_cast_data)&_E);
    )

    // If we fixed a callback from a .function assignment, fix the
    // assignment cast now.
    @change_timer_function_assignment
    depends on change_timer_function_usage &&
    (change_callback_handle_cast ||
    change_callback_handle_cast_no_arg ||
    change_callback_handle_arg)@
    expression change_timer_function_usage._E;
    identifier change_timer_function_usage._timer;
    identifier change_timer_function_usage._callback;
    type _cast_func;
    typedef TIMER_FUNC_TYPE;
    @@

    (
    _E->_timer.function =
    -_callback
    +(TIMER_FUNC_TYPE)_callback
    ;
    |
    _E->_timer.function =
    -&_callback
    +(TIMER_FUNC_TYPE)_callback
    ;
    |
    _E->_timer.function =
    -(_cast_func)_callback;
    +(TIMER_FUNC_TYPE)_callback
    ;
    |
    _E->_timer.function =
    -(_cast_func)&_callback
    +(TIMER_FUNC_TYPE)_callback
    ;
    |
    _E._timer.function =
    -_callback
    +(TIMER_FUNC_TYPE)_callback
    ;
    |
    _E._timer.function =
    -&_callback;
    +(TIMER_FUNC_TYPE)_callback
    ;
    |
    _E._timer.function =
    -(_cast_func)_callback
    +(TIMER_FUNC_TYPE)_callback
    ;
    |
    _E._timer.function =
    -(_cast_func)&_callback
    +(TIMER_FUNC_TYPE)_callback
    ;
    )

    // Sometimes timer functions are called directly. Replace matched args.
    @change_timer_function_calls
    depends on change_timer_function_usage &&
    (change_callback_handle_cast ||
    change_callback_handle_cast_no_arg ||
    change_callback_handle_arg)@
    expression _E;
    identifier change_timer_function_usage._timer;
    identifier change_timer_function_usage._callback;
    type _cast_data;
    @@

    _callback(
    (
    -(_cast_data)_E
    +&_E->_timer
    |
    -(_cast_data)&_E
    +&_E._timer
    |
    -_E
    +&_E->_timer
    )
    )

    // If a timer has been configured without a data argument, it can be
    // converted without regard to the callback argument, since it is unused.
    @match_timer_function_unused_data@
    expression _E;
    identifier _timer;
    identifier _callback;
    @@

    (
    -setup_timer(&_E->_timer, _callback, 0);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, _callback, 0L);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E->_timer, _callback, 0UL);
    +timer_setup(&_E->_timer, _callback, 0);
    |
    -setup_timer(&_E._timer, _callback, 0);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, _callback, 0L);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_E._timer, _callback, 0UL);
    +timer_setup(&_E._timer, _callback, 0);
    |
    -setup_timer(&_timer, _callback, 0);
    +timer_setup(&_timer, _callback, 0);
    |
    -setup_timer(&_timer, _callback, 0L);
    +timer_setup(&_timer, _callback, 0);
    |
    -setup_timer(&_timer, _callback, 0UL);
    +timer_setup(&_timer, _callback, 0);
    |
    -setup_timer(_timer, _callback, 0);
    +timer_setup(_timer, _callback, 0);
    |
    -setup_timer(_timer, _callback, 0L);
    +timer_setup(_timer, _callback, 0);
    |
    -setup_timer(_timer, _callback, 0UL);
    +timer_setup(_timer, _callback, 0);
    )

    @change_callback_unused_data
    depends on match_timer_function_unused_data@
    identifier match_timer_function_unused_data._callback;
    type _origtype;
    identifier _origarg;
    @@

    void _callback(
    -_origtype _origarg
    +struct timer_list *unused
    )
    {
    ... when != _origarg
    }

    Signed-off-by: Kees Cook

    Kees Cook
     

14 Nov, 2017

1 commit

  • atm_dev_register() can fail here and passed parameters to free irq
    which is not initialised. Initialization of 'dev->irq' happened after
    the 'goto out_free_irq'. So using 'irq' insted of 'dev->irq' in
    free_irq().

    Signed-off-by: Arvind Yadav
    Signed-off-by: David S. Miller

    Arvind Yadav
     

17 Jul, 2017

1 commit

  • pci_device_id are not supposed to change at runtime. All functions
    working with pci_device_id provided by work with
    const pci_device_id. So mark the non-const structs as const.

    File size before:
    text data bss dec hex filename
    9859 328 6 10193 27d1 drivers/atm/horizon.o

    File size After adding 'const':
    text data bss dec hex filename
    9923 264 6 10193 27d1 drivers/atm/horizon.o

    Signed-off-by: Arvind Yadav
    Signed-off-by: David S. Miller

    Arvind Yadav
     

02 Mar, 2017

1 commit


28 Feb, 2017

1 commit

  • Now that %z is standartised in C99 there is no reason to support %Z.
    Unlike %L it doesn't even make format strings smaller.

    Use BUILD_BUG_ON in a couple ATM drivers.

    In case anyone didn't notice lib/vsprintf.o is about half of SLUB which
    is in my opinion is quite an achievement. Hopefully this patch inspires
    someone else to trim vsprintf.c more.

    Link: http://lkml.kernel.org/r/20170103230126.GA30170@avx2
    Signed-off-by: Alexey Dobriyan
    Cc: Andy Shevchenko
    Cc: Rasmus Villemoes
    Signed-off-by: Andrew Morton
    Signed-off-by: Linus Torvalds

    Alexey Dobriyan
     

25 Dec, 2016

1 commit


01 Jul, 2016

1 commit

  • Convert a call to init_timer and accompanying intializations of
    the timer's data and function fields to a call to setup_timer.

    The Coccinelle semantic patch that fixes this problem is
    as follows:
    @@
    expression t,d,f,e1;
    identifier x1;
    statement S1;
    @@

    (
    -t.data = d;
    |
    -t.function = f;
    |
    -init_timer(&t);
    +setup_timer(&t,f,d);
    |
    -init_timer_on_stack(&t);
    +setup_timer_on_stack(&t,f,d);
    )

    Signed-off-by: Amitoj Kaur Chawla
    Signed-off-by: David S. Miller

    Amitoj Kaur Chawla
     

14 Jan, 2015

1 commit


04 Jan, 2013

1 commit

  • CONFIG_HOTPLUG is going away as an option. As a result, the __dev*
    markings need to be removed.

    This change removes the use of __devinit, __devexit_p, __devinitdata,
    __devinitconst, and __devexit from these drivers.

    Based on patches originally written by Bill Pemberton, but redone by me
    in order to handle some of the coding style issues better, by hand.

    Cc: Bill Pemberton
    Cc: Chas Williams
    Signed-off-by: Greg Kroah-Hartman

    Greg Kroah-Hartman
     

11 Apr, 2012

1 commit


05 Apr, 2012

1 commit


29 Mar, 2012

1 commit


27 Jul, 2011

1 commit

  • This allows us to move duplicated code in
    (atomic_inc_not_zero() for now) to

    Signed-off-by: Arun Sharma
    Reviewed-by: Eric Dumazet
    Cc: Ingo Molnar
    Cc: David Miller
    Cc: Eric Dumazet
    Acked-by: Mike Frysinger
    Signed-off-by: Andrew Morton
    Signed-off-by: Linus Torvalds

    Arun Sharma
     

07 Jun, 2011

1 commit


31 Mar, 2011

1 commit


11 Dec, 2010

1 commit

  • The ATM subsystem was incorrectly creating the 'device' link for ATM
    nodes in sysfs. This led to incorrect device/parent relationships
    exposed by sysfs and udev. Instead of rolling the 'device' link by hand
    in the generic ATM code, pass each ATM driver's bus device down to the
    sysfs code and let sysfs do this stuff correctly.

    Signed-off-by: Dan Williams
    Signed-off-by: David S. Miller

    Dan Williams
     

22 Sep, 2010

1 commit


30 Mar, 2010

1 commit

  • …it slab.h inclusion from percpu.h

    percpu.h is included by sched.h and module.h and thus ends up being
    included when building most .c files. percpu.h includes slab.h which
    in turn includes gfp.h making everything defined by the two files
    universally available and complicating inclusion dependencies.

    percpu.h -> slab.h dependency is about to be removed. Prepare for
    this change by updating users of gfp and slab facilities include those
    headers directly instead of assuming availability. As this conversion
    needs to touch large number of source files, the following script is
    used as the basis of conversion.

    http://userweb.kernel.org/~tj/misc/slabh-sweep.py

    The script does the followings.

    * Scan files for gfp and slab usages and update includes such that
    only the necessary includes are there. ie. if only gfp is used,
    gfp.h, if slab is used, slab.h.

    * When the script inserts a new include, it looks at the include
    blocks and try to put the new include such that its order conforms
    to its surrounding. It's put in the include block which contains
    core kernel includes, in the same order that the rest are ordered -
    alphabetical, Christmas tree, rev-Xmas-tree or at the end if there
    doesn't seem to be any matching order.

    * If the script can't find a place to put a new include (mostly
    because the file doesn't have fitting include block), it prints out
    an error message indicating which .h file needs to be added to the
    file.

    The conversion was done in the following steps.

    1. The initial automatic conversion of all .c files updated slightly
    over 4000 files, deleting around 700 includes and adding ~480 gfp.h
    and ~3000 slab.h inclusions. The script emitted errors for ~400
    files.

    2. Each error was manually checked. Some didn't need the inclusion,
    some needed manual addition while adding it to implementation .h or
    embedding .c file was more appropriate for others. This step added
    inclusions to around 150 files.

    3. The script was run again and the output was compared to the edits
    from #2 to make sure no file was left behind.

    4. Several build tests were done and a couple of problems were fixed.
    e.g. lib/decompress_*.c used malloc/free() wrappers around slab
    APIs requiring slab.h to be added manually.

    5. The script was run on all .h files but without automatically
    editing them as sprinkling gfp.h and slab.h inclusions around .h
    files could easily lead to inclusion dependency hell. Most gfp.h
    inclusion directives were ignored as stuff from gfp.h was usually
    wildly available and often used in preprocessor macros. Each
    slab.h inclusion directive was examined and added manually as
    necessary.

    6. percpu.h was updated not to include slab.h.

    7. Build test were done on the following configurations and failures
    were fixed. CONFIG_GCOV_KERNEL was turned off for all tests (as my
    distributed build env didn't work with gcov compiles) and a few
    more options had to be turned off depending on archs to make things
    build (like ipr on powerpc/64 which failed due to missing writeq).

    * x86 and x86_64 UP and SMP allmodconfig and a custom test config.
    * powerpc and powerpc64 SMP allmodconfig
    * sparc and sparc64 SMP allmodconfig
    * ia64 SMP allmodconfig
    * s390 SMP allmodconfig
    * alpha SMP allmodconfig
    * um on x86_64 SMP allmodconfig

    8. percpu.h modifications were reverted so that it could be applied as
    a separate patch and serve as bisection point.

    Given the fact that I had only a couple of failures from tests on step
    6, I'm fairly confident about the coverage of this conversion patch.
    If there is a breakage, it's likely to be something in one of the arch
    headers which should be easily discoverable easily on most builds of
    the specific arch.

    Signed-off-by: Tejun Heo <tj@kernel.org>
    Guess-its-ok-by: Christoph Lameter <cl@linux-foundation.org>
    Cc: Ingo Molnar <mingo@redhat.com>
    Cc: Lee Schermerhorn <Lee.Schermerhorn@hp.com>

    Tejun Heo
     

01 Oct, 2009

1 commit

  • This provides safety against negative optlen at the type
    level instead of depending upon (sometimes non-trivial)
    checks against this sprinkled all over the the place, in
    each and every implementation.

    Based upon work done by Arjan van de Ven and feedback
    from Linus Torvalds.

    Signed-off-by: David S. Miller

    David S. Miller
     

03 Aug, 2009

1 commit

  • The kernel.h macro DIV_ROUND_CLOSEST performs the computation (x + d/2)/d
    but is perhaps more readable.

    The semantic patch that makes this change is as follows:
    (http://www.emn.fr/x-info/coccinelle/)

    //
    @haskernel@
    @@

    #include

    @depends on haskernel@
    expression x,__divisor;
    @@

    - (((x) + ((__divisor) / 2)) / (__divisor))
    + DIV_ROUND_CLOSEST(x,__divisor)
    //

    Signed-off-by: Julia Lawall
    Signed-off-by: David S. Miller

    Julia Lawall
     

30 Nov, 2008

1 commit


23 Sep, 2008

1 commit

  • The kernel.h macro DIV_ROUND_UP performs the computation (((n) + (d) - 1) /
    (d)) but is perhaps more readable.

    In the case of the file drivers/atm/eni.c, I am a little bit suspicious of
    the -1 at the end of the affected expression. Please check that that is
    what is wanted.

    An extract of the semantic patch that makes this change is as follows:
    (http://www.emn.fr/x-info/coccinelle/)

    //
    @haskernel@
    @@

    #include

    @depends on haskernel@
    expression n,d;
    @@

    (
    - (n + d - 1) / d
    + DIV_ROUND_UP(n,d)
    |
    - (n + (d - 1)) / d
    + DIV_ROUND_UP(n,d)
    )

    @depends on haskernel@
    expression n,d;
    @@

    - DIV_ROUND_UP((n),d)
    + DIV_ROUND_UP(n,d)

    @depends on haskernel@
    expression n,d;
    @@

    - DIV_ROUND_UP(n,(d))
    + DIV_ROUND_UP(n,d)
    //

    Signed-off-by: Julia Lawall
    Signed-off-by: Andrew Morton
    Signed-off-by: David S. Miller

    Julia Lawall
     

14 Apr, 2008

1 commit

  • drivers/atm/horizon.c has unusually large number
    of static inline functions - 36.

    I looked through them. Most of them seems to be small enough,
    but a few are big, others are using udelay or busy loop,
    and as such are better not be inlined.

    This patch removes "inline" from these static functions
    (regardless of number of callsites - gcc nowadays auto-inlines
    statics with one callsite).

    Size difference for 32bit x86:
    text data bss dec hex filename
    8201 180 6 8387 20c3 linux-2.6-ALLYES/drivers/atm/horizon.o
    7840 180 6 8026 1f5a linux-2.6.inline-ALLYES/drivers/atm/horizon.o

    Signed-off-by: Denys Vlasenko
    Signed-off-by: David S. Miller

    Denys Vlasenko
     

24 Oct, 2007

1 commit


24 Jan, 2007

1 commit


25 Oct, 2006

1 commit


22 Oct, 2006

1 commit


07 Oct, 2006

1 commit

  • - Eliminate casts to/from void*

    - Eliminate checks for conditions that never occur. These typically
    fall into two classes:

    1) Checking for 'dev_id == NULL', then it is never called with
    NULL as an argument.

    2) Checking for invalid irq number, when the only caller (the
    system) guarantees the irq handler is called with the proper
    'irq' number argument.

    Signed-off-by: Jeff Garzik

    Jeff Garzik
     

05 Oct, 2006

1 commit

  • Maintain a per-CPU global "struct pt_regs *" variable which can be used instead
    of passing regs around manually through all ~1800 interrupt handlers in the
    Linux kernel.

    The regs pointer is used in few places, but it potentially costs both stack
    space and code to pass it around. On the FRV arch, removing the regs parameter
    from all the genirq function results in a 20% speed up of the IRQ exit path
    (ie: from leaving timer_interrupt() to leaving do_IRQ()).

    Where appropriate, an arch may override the generic storage facility and do
    something different with the variable. On FRV, for instance, the address is
    maintained in GR28 at all times inside the kernel as part of general exception
    handling.

    Having looked over the code, it appears that the parameter may be handed down
    through up to twenty or so layers of functions. Consider a USB character
    device attached to a USB hub, attached to a USB controller that posts its
    interrupts through a cascaded auxiliary interrupt controller. A character
    device driver may want to pass regs to the sysrq handler through the input
    layer which adds another few layers of parameter passing.

    I've build this code with allyesconfig for x86_64 and i386. I've runtested the
    main part of the code on FRV and i386, though I can't test most of the drivers.
    I've also done partial conversion for powerpc and MIPS - these at least compile
    with minimal configurations.

    This will affect all archs. Mostly the changes should be relatively easy.
    Take do_IRQ(), store the regs pointer at the beginning, saving the old one:

    struct pt_regs *old_regs = set_irq_regs(regs);

    And put the old one back at the end:

    set_irq_regs(old_regs);

    Don't pass regs through to generic_handle_irq() or __do_IRQ().

    In timer_interrupt(), this sort of change will be necessary:

    - update_process_times(user_mode(regs));
    - profile_tick(CPU_PROFILING, regs);
    + update_process_times(user_mode(get_irq_regs()));
    + profile_tick(CPU_PROFILING);

    I'd like to move update_process_times()'s use of get_irq_regs() into itself,
    except that i386, alone of the archs, uses something other than user_mode().

    Some notes on the interrupt handling in the drivers:

    (*) input_dev() is now gone entirely. The regs pointer is no longer stored in
    the input_dev struct.

    (*) finish_unlinks() in drivers/usb/host/ohci-q.c needs checking. It does
    something different depending on whether it's been supplied with a regs
    pointer or not.

    (*) Various IRQ handler function pointers have been moved to type
    irq_handler_t.

    Signed-Off-By: David Howells
    (cherry picked from 1b16e7ac850969f38b375e511e3fa2f474a33867 commit)

    David Howells
     

04 Oct, 2006

1 commit


03 Jul, 2006

1 commit


11 Nov, 2005

1 commit


30 Aug, 2005

1 commit


17 Apr, 2005

1 commit

  • Initial git repository build. I'm not bothering with the full history,
    even though we have it. We can create a separate "historical" git
    archive of that later if we want to, and in the meantime it's about
    3.2GB when imported into git - space that would just make the early
    git days unnecessarily complicated, when we don't have a lot of good
    infrastructure for it.

    Let it rip!

    Linus Torvalds