9f9c0382cd
This network (the "UDN") connects all the cpus on the chip in a wormhole-routed dynamic network. Subrectangles of the chip can be allocated by a "create" ioctl on /dev/hardwall, and then to access the UDN in that rectangle, tasks must perform an "activate" ioctl on that same file object after affinitizing themselves to a single cpu in the region. Sending a wormhole-routed message that tries to leave that subrectangle causes all activated tasks to receive a SIGILL (just as they would if they tried to access the UDN without first activating themselves to a hardwall rectangle). The original submission of this code to LKML had the driver instantiated under /proc/tile/hardwall. Now we just use a character device for this, conventionally /dev/hardwall. Some futures planning for the TILE-Gx chip suggests that we may want to have other types of devices that share the general model of "bind a task to a cpu, then 'activate' a file descriptor on a pseudo-device that gives access to some hardware resource". As such, we are using a device rather than, for example, a syscall, to set up and activate this code. As part of this change, the compat_ptr() declaration was fixed and used to pass the compat_ioctl argument to the normal ioctl. So far we limit compat code to 2GB, so the difference between zero-extend and sign-extend (the latter being correct, eventually) had been overlooked. Signed-off-by: Chris Metcalf <cmetcalf@tilera.com> Acked-by: Arnd Bergmann <arnd@arndb.de>
357 lines
9.0 KiB
Plaintext
357 lines
9.0 KiB
Plaintext
# For a description of the syntax of this configuration file,
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# see Documentation/kbuild/config-language.txt.
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config MMU
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def_bool y
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config GENERIC_CSUM
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def_bool y
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config GENERIC_HARDIRQS
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def_bool y
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config GENERIC_HARDIRQS_NO__DO_IRQ
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def_bool y
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config GENERIC_IRQ_PROBE
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def_bool y
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config GENERIC_PENDING_IRQ
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def_bool y
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depends on GENERIC_HARDIRQS && SMP
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config SEMAPHORE_SLEEPERS
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def_bool y
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config HAVE_ARCH_ALLOC_REMAP
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def_bool y
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config HAVE_SETUP_PER_CPU_AREA
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def_bool y
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config NEED_PER_CPU_PAGE_FIRST_CHUNK
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def_bool y
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config SYS_SUPPORTS_HUGETLBFS
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def_bool y
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config GENERIC_TIME
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def_bool y
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config GENERIC_CLOCKEVENTS
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def_bool y
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# FIXME: tilegx can implement a more efficent rwsem.
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config RWSEM_GENERIC_SPINLOCK
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def_bool y
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# We have a very flat architecture from a migration point of view,
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# so save boot time by presetting this (particularly useful on tile-sim).
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config DEFAULT_MIGRATION_COST
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int
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default "10000000"
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# We only support gcc 4.4 and above, so this should work.
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config ARCH_SUPPORTS_OPTIMIZED_INLINING
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def_bool y
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config ARCH_PHYS_ADDR_T_64BIT
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def_bool y
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config LOCKDEP_SUPPORT
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def_bool y
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config STACKTRACE_SUPPORT
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def_bool y
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select STACKTRACE
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# We use discontigmem for now; at some point we may want to switch
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# to sparsemem (Tilera bug 7996).
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config ARCH_DISCONTIGMEM_ENABLE
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def_bool y
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config ARCH_DISCONTIGMEM_DEFAULT
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def_bool y
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config TRACE_IRQFLAGS_SUPPORT
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def_bool y
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config STRICT_DEVMEM
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def_bool y
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# SMP is required for Tilera Linux.
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config SMP
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def_bool y
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# Allow checking for compile-time determined overflow errors in
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# copy_from_user(). There are still unprovable places in the
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# generic code as of 2.6.34, so this option is not really compatible
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# with -Werror, which is more useful in general.
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config DEBUG_COPY_FROM_USER
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def_bool n
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config HVC_TILE
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select HVC_DRIVER
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def_bool y
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config TILE
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def_bool y
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select GENERIC_FIND_FIRST_BIT
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select GENERIC_FIND_NEXT_BIT
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select USE_GENERIC_SMP_HELPERS
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select CC_OPTIMIZE_FOR_SIZE
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# FIXME: investigate whether we need/want these options.
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# select HAVE_IOREMAP_PROT
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# select HAVE_OPTPROBES
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# select HAVE_REGS_AND_STACK_ACCESS_API
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# select HAVE_HW_BREAKPOINT
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# select PERF_EVENTS
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# select HAVE_USER_RETURN_NOTIFIER
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# config NO_BOOTMEM
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# config ARCH_SUPPORTS_DEBUG_PAGEALLOC
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# config HUGETLB_PAGE_SIZE_VARIABLE
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mainmenu "Linux/TILE Kernel Configuration"
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# Please note: TILE-Gx support is not yet finalized; this is
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# the preliminary support. TILE-Gx drivers are only provided
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# with the alpha or beta test versions for Tilera customers.
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config TILEGX
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depends on EXPERIMENTAL
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bool "Building with TILE-Gx (64-bit) compiler and toolchain"
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config 64BIT
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depends on TILEGX
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def_bool y
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config ARCH_DEFCONFIG
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string
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default "arch/tile/configs/tile_defconfig" if !TILEGX
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default "arch/tile/configs/tilegx_defconfig" if TILEGX
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source "init/Kconfig"
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menu "Tilera-specific configuration"
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config NR_CPUS
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int "Maximum number of tiles (2-255)"
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range 2 255
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depends on SMP
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default "64"
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---help---
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Building with 64 is the recommended value, but a slightly
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smaller kernel memory footprint results from using a smaller
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value on chips with fewer tiles.
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source "kernel/time/Kconfig"
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source "kernel/Kconfig.hz"
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config KEXEC
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bool "kexec system call"
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---help---
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kexec is a system call that implements the ability to shutdown your
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current kernel, and to start another kernel. It is like a reboot
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but it is independent of the system firmware. It is used
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to implement the "mboot" Tilera booter.
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The name comes from the similarity to the exec system call.
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config COMPAT
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bool "Support 32-bit TILE-Gx binaries in addition to 64-bit"
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depends on TILEGX
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select COMPAT_BINFMT_ELF
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default y
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---help---
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If enabled, the kernel will support running TILE-Gx binaries
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that were built with the -m32 option.
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config SYSVIPC_COMPAT
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def_bool y
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depends on COMPAT && SYSVIPC
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# We do not currently support disabling HIGHMEM on tile64 and tilepro.
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config HIGHMEM
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bool # "Support for more than 512 MB of RAM"
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default !TILEGX
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---help---
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Linux can use the full amount of RAM in the system by
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default. However, the address space of TILE processors is
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only 4 Gigabytes large. That means that, if you have a large
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amount of physical memory, not all of it can be "permanently
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mapped" by the kernel. The physical memory that's not
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permanently mapped is called "high memory".
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If you are compiling a kernel which will never run on a
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machine with more than 512 MB total physical RAM, answer
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"false" here. This will result in the kernel mapping all of
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physical memory into the top 1 GB of virtual memory space.
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If unsure, say "true".
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# We do not currently support disabling NUMA.
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config NUMA
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bool # "NUMA Memory Allocation and Scheduler Support"
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depends on SMP && DISCONTIGMEM
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default y
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---help---
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NUMA memory allocation is required for TILE processors
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unless booting with memory striping enabled in the
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hypervisor, or with only a single memory controller.
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It is recommended that this option always be enabled.
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config NODES_SHIFT
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int "Log base 2 of the max number of memory controllers"
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default 2
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depends on NEED_MULTIPLE_NODES
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---help---
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By default, 2, i.e. 2^2 == 4 DDR2 controllers.
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In a system with more controllers, this value should be raised.
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# Need 16MB areas to enable hugetlb
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# See build-time check in arch/tile/mm/init.c.
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config FORCE_MAX_ZONEORDER
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int
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default 9
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choice
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depends on !TILEGX
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prompt "Memory split" if EMBEDDED
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default VMSPLIT_3G
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---help---
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Select the desired split between kernel and user memory.
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If the address range available to the kernel is less than the
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physical memory installed, the remaining memory will be available
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as "high memory". Accessing high memory is a little more costly
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than low memory, as it needs to be mapped into the kernel first.
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Note that increasing the kernel address space limits the range
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available to user programs, making the address space there
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tighter. Selecting anything other than the default 3G/1G split
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will also likely make your kernel incompatible with binary-only
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kernel modules.
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If you are not absolutely sure what you are doing, leave this
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option alone!
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config VMSPLIT_375G
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bool "3.75G/0.25G user/kernel split (no kernel networking)"
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config VMSPLIT_35G
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bool "3.5G/0.5G user/kernel split"
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config VMSPLIT_3G
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bool "3G/1G user/kernel split"
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config VMSPLIT_3G_OPT
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bool "3G/1G user/kernel split (for full 1G low memory)"
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config VMSPLIT_2G
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bool "2G/2G user/kernel split"
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config VMSPLIT_1G
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bool "1G/3G user/kernel split"
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endchoice
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config PAGE_OFFSET
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hex
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default 0xF0000000 if VMSPLIT_375G
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default 0xE0000000 if VMSPLIT_35G
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default 0xB0000000 if VMSPLIT_3G_OPT
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default 0x80000000 if VMSPLIT_2G
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default 0x40000000 if VMSPLIT_1G
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default 0xC0000000
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source "mm/Kconfig"
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config CMDLINE_BOOL
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bool "Built-in kernel command line"
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default n
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---help---
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Allow for specifying boot arguments to the kernel at
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build time. On some systems (e.g. embedded ones), it is
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necessary or convenient to provide some or all of the
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kernel boot arguments with the kernel itself (that is,
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to not rely on the boot loader to provide them.)
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To compile command line arguments into the kernel,
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set this option to 'Y', then fill in the
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the boot arguments in CONFIG_CMDLINE.
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Systems with fully functional boot loaders (e.g. mboot, or
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if booting over PCI) should leave this option set to 'N'.
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config CMDLINE
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string "Built-in kernel command string"
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depends on CMDLINE_BOOL
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default ""
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---help---
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Enter arguments here that should be compiled into the kernel
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image and used at boot time. If the boot loader provides a
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command line at boot time, it is appended to this string to
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form the full kernel command line, when the system boots.
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However, you can use the CONFIG_CMDLINE_OVERRIDE option to
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change this behavior.
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In most cases, the command line (whether built-in or provided
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by the boot loader) should specify the device for the root
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file system.
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config CMDLINE_OVERRIDE
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bool "Built-in command line overrides boot loader arguments"
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default n
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depends on CMDLINE_BOOL
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---help---
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Set this option to 'Y' to have the kernel ignore the boot loader
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command line, and use ONLY the built-in command line.
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This is used to work around broken boot loaders. This should
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be set to 'N' under normal conditions.
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config VMALLOC_RESERVE
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hex
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default 0x1000000
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config HARDWALL
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bool "Hardwall support to allow access to user dynamic network"
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default y
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endmenu # Tilera-specific configuration
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menu "Bus options"
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config NO_IOMEM
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def_bool !PCI
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config NO_IOPORT
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def_bool !PCI
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source "drivers/pci/Kconfig"
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source "drivers/pci/hotplug/Kconfig"
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endmenu
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menu "Executable file formats"
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# only elf supported
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config KCORE_ELF
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def_bool y
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depends on PROC_FS
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source "fs/Kconfig.binfmt"
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endmenu
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source "net/Kconfig"
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source "drivers/Kconfig"
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source "fs/Kconfig"
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source "arch/tile/Kconfig.debug"
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source "security/Kconfig"
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source "crypto/Kconfig"
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source "lib/Kconfig"
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