2007-07-21 15:10:01 +00:00
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/*
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* Set up the VMAs to tell the VM about the vDSO.
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* Copyright 2007 Andi Kleen, SUSE Labs.
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* Subject to the GPL, v.2
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*/
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#include <linux/mm.h>
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2007-07-29 22:36:13 +00:00
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#include <linux/err.h>
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2007-07-21 15:10:01 +00:00
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#include <linux/sched.h>
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include cleanup: Update gfp.h and slab.h includes to prepare for breaking implicit 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>
2010-03-24 08:04:11 +00:00
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#include <linux/slab.h>
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2007-07-21 15:10:01 +00:00
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#include <linux/init.h>
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#include <linux/random.h>
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2009-04-12 15:07:25 +00:00
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#include <linux/elf.h>
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2007-07-21 15:10:01 +00:00
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#include <asm/vsyscall.h>
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#include <asm/vgtod.h>
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#include <asm/proto.h>
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2008-01-30 12:30:41 +00:00
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#include <asm/vdso.h>
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2007-07-21 15:10:01 +00:00
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2008-01-30 12:30:41 +00:00
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#include "vextern.h" /* Just for VMAGIC. */
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2007-07-21 15:10:01 +00:00
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#undef VEXTERN
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2008-05-12 13:43:38 +00:00
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unsigned int __read_mostly vdso_enabled = 1;
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2008-01-30 12:30:41 +00:00
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extern char vdso_start[], vdso_end[];
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2007-07-21 15:10:01 +00:00
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extern unsigned short vdso_sync_cpuid;
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2008-07-18 12:37:53 +00:00
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static struct page **vdso_pages;
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static unsigned vdso_size;
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2007-07-21 15:10:01 +00:00
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2008-01-30 12:30:41 +00:00
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static inline void *var_ref(void *p, char *name)
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2007-07-21 15:10:01 +00:00
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{
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if (*(void **)p != (void *)VMAGIC) {
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printk("VDSO: variable %s broken\n", name);
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vdso_enabled = 0;
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}
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return p;
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}
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static int __init init_vdso_vars(void)
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{
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int npages = (vdso_end - vdso_start + PAGE_SIZE - 1) / PAGE_SIZE;
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int i;
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char *vbase;
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2008-07-18 12:37:53 +00:00
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vdso_size = npages << PAGE_SHIFT;
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2007-07-21 15:10:01 +00:00
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vdso_pages = kmalloc(sizeof(struct page *) * npages, GFP_KERNEL);
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if (!vdso_pages)
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goto oom;
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for (i = 0; i < npages; i++) {
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struct page *p;
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p = alloc_page(GFP_KERNEL);
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if (!p)
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goto oom;
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vdso_pages[i] = p;
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copy_page(page_address(p), vdso_start + i*PAGE_SIZE);
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}
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vbase = vmap(vdso_pages, npages, 0, PAGE_KERNEL);
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if (!vbase)
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goto oom;
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if (memcmp(vbase, "\177ELF", 4)) {
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printk("VDSO: I'm broken; not ELF\n");
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vdso_enabled = 0;
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}
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#define VEXTERN(x) \
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2008-01-30 12:30:41 +00:00
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*(typeof(__ ## x) **) var_ref(VDSO64_SYMBOL(vbase, x), #x) = &__ ## x;
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2007-07-21 15:10:01 +00:00
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#include "vextern.h"
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#undef VEXTERN
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return 0;
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oom:
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printk("Cannot allocate vdso\n");
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vdso_enabled = 0;
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return -ENOMEM;
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}
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__initcall(init_vdso_vars);
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struct linux_binprm;
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/* Put the vdso above the (randomized) stack with another randomized offset.
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This way there is no hole in the middle of address space.
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To save memory make sure it is still in the same PTE as the stack top.
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This doesn't give that many random bits */
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static unsigned long vdso_addr(unsigned long start, unsigned len)
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{
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unsigned long addr, end;
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unsigned offset;
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end = (start + PMD_SIZE - 1) & PMD_MASK;
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2009-02-20 22:32:28 +00:00
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if (end >= TASK_SIZE_MAX)
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end = TASK_SIZE_MAX;
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2007-07-21 15:10:01 +00:00
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end -= len;
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/* This loses some more bits than a modulo, but is cheaper */
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offset = get_random_int() & (PTRS_PER_PTE - 1);
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addr = start + (offset << PAGE_SHIFT);
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if (addr >= end)
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addr = end;
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return addr;
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}
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/* Setup a VMA at program startup for the vsyscall page.
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Not called for compat tasks */
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2008-12-25 12:38:35 +00:00
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int arch_setup_additional_pages(struct linux_binprm *bprm, int uses_interp)
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2007-07-21 15:10:01 +00:00
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{
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struct mm_struct *mm = current->mm;
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unsigned long addr;
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int ret;
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if (!vdso_enabled)
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return 0;
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down_write(&mm->mmap_sem);
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2008-07-18 12:37:53 +00:00
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addr = vdso_addr(mm->start_stack, vdso_size);
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addr = get_unmapped_area(NULL, addr, vdso_size, 0, 0);
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2007-07-21 15:10:01 +00:00
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if (IS_ERR_VALUE(addr)) {
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ret = addr;
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goto up_fail;
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}
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2009-06-05 12:04:51 +00:00
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current->mm->context.vdso = (void *)addr;
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2008-07-18 12:37:53 +00:00
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ret = install_special_mapping(mm, addr, vdso_size,
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2007-07-21 15:10:01 +00:00
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VM_READ|VM_EXEC|
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VM_MAYREAD|VM_MAYWRITE|VM_MAYEXEC|
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VM_ALWAYSDUMP,
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vdso_pages);
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2009-06-05 12:04:51 +00:00
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if (ret) {
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current->mm->context.vdso = NULL;
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2007-07-21 15:10:01 +00:00
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goto up_fail;
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2009-06-05 12:04:51 +00:00
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}
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2007-07-21 15:10:01 +00:00
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up_fail:
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up_write(&mm->mmap_sem);
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return ret;
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}
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static __init int vdso_setup(char *s)
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{
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vdso_enabled = simple_strtoul(s, NULL, 0);
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return 0;
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}
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__setup("vdso=", vdso_setup);
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