MMUv3 comes out of reset with identity vaddr -> paddr mapping in the TLB way 6: Way 6 (512 MB) Vaddr Paddr ASID Attr RWX Cache ---------- ---------- ---- ---- --- ------- 0x00000000 0x00000000 0x01 0x03 RWX Bypass 0x20000000 0x20000000 0x01 0x03 RWX Bypass 0x40000000 0x40000000 0x01 0x03 RWX Bypass 0x60000000 0x60000000 0x01 0x03 RWX Bypass 0x80000000 0x80000000 0x01 0x03 RWX Bypass 0xa0000000 0xa0000000 0x01 0x03 RWX Bypass 0xc0000000 0xc0000000 0x01 0x03 RWX Bypass 0xe0000000 0xe0000000 0x01 0x03 RWX Bypass This patch adds remapping code at the reset vector or at the kernel _start (depending on CONFIG_INITIALIZE_XTENSA_MMU_INSIDE_VMLINUX) that reconfigures MMUv3 as MMUv2: Way 5 (128 MB) Vaddr Paddr ASID Attr RWX Cache ---------- ---------- ---- ---- --- ------- 0xd0000000 0x00000000 0x01 0x07 RWX WB 0xd8000000 0x00000000 0x01 0x03 RWX Bypass Way 6 (256 MB) Vaddr Paddr ASID Attr RWX Cache ---------- ---------- ---- ---- --- ------- 0xe0000000 0xf0000000 0x01 0x07 RWX WB 0xf0000000 0xf0000000 0x01 0x03 RWX Bypass Signed-off-by: Max Filippov <jcmvbkbc@gmail.com> Signed-off-by: Chris Zankel <chris@zankel.net>
317 lines
8.2 KiB
Text
317 lines
8.2 KiB
Text
config FRAME_POINTER
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def_bool n
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config ZONE_DMA
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def_bool y
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config XTENSA
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def_bool y
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select HAVE_IDE
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select GENERIC_ATOMIC64
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select HAVE_GENERIC_HARDIRQS
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select VIRT_TO_BUS
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select GENERIC_IRQ_SHOW
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select GENERIC_CPU_DEVICES
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select MODULES_USE_ELF_RELA
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select GENERIC_PCI_IOMAP
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select ARCH_WANT_IPC_PARSE_VERSION
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select ARCH_WANT_OPTIONAL_GPIOLIB
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select CLONE_BACKWARDS
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select IRQ_DOMAIN
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select HAVE_OPROFILE
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help
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Xtensa processors are 32-bit RISC machines designed by Tensilica
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primarily for embedded systems. These processors are both
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configurable and extensible. The Linux port to the Xtensa
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architecture supports all processor configurations and extensions,
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with reasonable minimum requirements. The Xtensa Linux project has
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a home page at <http://www.linux-xtensa.org/>.
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config RWSEM_XCHGADD_ALGORITHM
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def_bool y
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config GENERIC_HWEIGHT
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def_bool y
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config GENERIC_GPIO
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bool
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config ARCH_HAS_ILOG2_U32
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def_bool n
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config ARCH_HAS_ILOG2_U64
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def_bool n
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config NO_IOPORT
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def_bool n
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config HZ
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int
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default 100
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source "init/Kconfig"
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source "kernel/Kconfig.freezer"
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config MMU
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def_bool n
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config VARIANT_IRQ_SWITCH
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def_bool n
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menu "Processor type and features"
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choice
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prompt "Xtensa Processor Configuration"
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default XTENSA_VARIANT_FSF
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config XTENSA_VARIANT_FSF
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bool "fsf - default (not generic) configuration"
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select MMU
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config XTENSA_VARIANT_DC232B
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bool "dc232b - Diamond 232L Standard Core Rev.B (LE)"
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select MMU
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help
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This variant refers to Tensilica's Diamond 232L Standard core Rev.B (LE).
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config XTENSA_VARIANT_DC233C
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bool "dc233c - Diamond 233L Standard Core Rev.C (LE)"
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select MMU
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help
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This variant refers to Tensilica's Diamond 233L Standard core Rev.C (LE).
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config XTENSA_VARIANT_S6000
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bool "s6000 - Stretch software configurable processor"
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select VARIANT_IRQ_SWITCH
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select ARCH_REQUIRE_GPIOLIB
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select XTENSA_CALIBRATE_CCOUNT
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endchoice
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config XTENSA_UNALIGNED_USER
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bool "Unaligned memory access in use space"
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help
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The Xtensa architecture currently does not handle unaligned
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memory accesses in hardware but through an exception handler.
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Per default, unaligned memory accesses are disabled in user space.
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Say Y here to enable unaligned memory access in user space.
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source "kernel/Kconfig.preempt"
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config MATH_EMULATION
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bool "Math emulation"
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help
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Can we use information of configuration file?
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config INITIALIZE_XTENSA_MMU_INSIDE_VMLINUX
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bool "Initialize Xtensa MMU inside the Linux kernel code"
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default y
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help
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Earlier version initialized the MMU in the exception vector
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before jumping to _startup in head.S and had an advantage that
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it was possible to place a software breakpoint at 'reset' and
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then enter your normal kernel breakpoints once the MMU was mapped
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to the kernel mappings (0XC0000000).
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This unfortunately doesn't work for U-Boot and likley also wont
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work for using KEXEC to have a hot kernel ready for doing a
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KDUMP.
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So now the MMU is initialized in head.S but it's necessary to
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use hardware breakpoints (gdb 'hbreak' cmd) to break at _startup.
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xt-gdb can't place a Software Breakpoint in the 0XD region prior
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to mapping the MMU and after mapping even if the area of low memory
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was mapped gdb wouldn't remove the breakpoint on hitting it as the
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PC wouldn't match. Since Hardware Breakpoints are recommended for
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Linux configurations it seems reasonable to just assume they exist
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and leave this older mechanism for unfortunate souls that choose
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not to follow Tensilica's recommendation.
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Selecting this will cause U-Boot to set the KERNEL Load and Entry
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address at 0x00003000 instead of the mapped std of 0xD0003000.
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If in doubt, say Y.
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endmenu
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config XTENSA_CALIBRATE_CCOUNT
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def_bool n
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help
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On some platforms (XT2000, for example), the CPU clock rate can
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vary. The frequency can be determined, however, by measuring
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against a well known, fixed frequency, such as an UART oscillator.
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config SERIAL_CONSOLE
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def_bool n
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config XTENSA_ISS_NETWORK
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def_bool n
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menu "Bus options"
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config PCI
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bool "PCI support"
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default y
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help
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Find out whether you have a PCI motherboard. PCI is the name of a
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bus system, i.e. the way the CPU talks to the other stuff inside
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your box. Other bus systems are ISA, EISA, MicroChannel (MCA) or
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VESA. If you have PCI, say Y, otherwise N.
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source "drivers/pci/Kconfig"
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endmenu
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menu "Platform options"
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choice
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prompt "Xtensa System Type"
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default XTENSA_PLATFORM_ISS
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config XTENSA_PLATFORM_ISS
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bool "ISS"
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depends on TTY
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select XTENSA_CALIBRATE_CCOUNT
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select SERIAL_CONSOLE
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select XTENSA_ISS_NETWORK
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help
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ISS is an acronym for Tensilica's Instruction Set Simulator.
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config XTENSA_PLATFORM_XT2000
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bool "XT2000"
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help
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XT2000 is the name of Tensilica's feature-rich emulation platform.
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This hardware is capable of running a full Linux distribution.
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config XTENSA_PLATFORM_S6105
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bool "S6105"
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select SERIAL_CONSOLE
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select NO_IOPORT
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config XTENSA_PLATFORM_XTFPGA
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bool "XTFPGA"
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select SERIAL_CONSOLE
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select ETHOC
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select XTENSA_CALIBRATE_CCOUNT
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help
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XTFPGA is the name of Tensilica board family (LX60, LX110, LX200, ML605).
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This hardware is capable of running a full Linux distribution.
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endchoice
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config XTENSA_CPU_CLOCK
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int "CPU clock rate [MHz]"
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depends on !XTENSA_CALIBRATE_CCOUNT
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default 16
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config GENERIC_CALIBRATE_DELAY
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bool "Auto calibration of the BogoMIPS value"
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help
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The BogoMIPS value can easily be derived from the CPU frequency.
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config CMDLINE_BOOL
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bool "Default bootloader kernel arguments"
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config CMDLINE
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string "Initial kernel command string"
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depends on CMDLINE_BOOL
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default "console=ttyS0,38400 root=/dev/ram"
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help
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On some architectures (EBSA110 and CATS), there is currently no way
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for the boot loader to pass arguments to the kernel. For these
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architectures, you should supply some command-line options at build
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time by entering them here. As a minimum, you should specify the
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memory size and the root device (e.g., mem=64M root=/dev/nfs).
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config USE_OF
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bool "Flattened Device Tree support"
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select OF
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select OF_EARLY_FLATTREE
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help
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Include support for flattened device tree machine descriptions.
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config BUILTIN_DTB
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string "DTB to build into the kernel image"
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depends on OF
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config BLK_DEV_SIMDISK
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tristate "Host file-based simulated block device support"
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default n
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depends on XTENSA_PLATFORM_ISS
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help
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Create block devices that map to files in the host file system.
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Device binding to host file may be changed at runtime via proc
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interface provided the device is not in use.
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config BLK_DEV_SIMDISK_COUNT
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int "Number of host file-based simulated block devices"
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range 1 10
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depends on BLK_DEV_SIMDISK
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default 2
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help
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This is the default minimal number of created block devices.
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Kernel/module parameter 'simdisk_count' may be used to change this
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value at runtime. More file names (but no more than 10) may be
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specified as parameters, simdisk_count grows accordingly.
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config SIMDISK0_FILENAME
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string "Host filename for the first simulated device"
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depends on BLK_DEV_SIMDISK = y
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default ""
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help
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Attach a first simdisk to a host file. Conventionally, this file
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contains a root file system.
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config SIMDISK1_FILENAME
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string "Host filename for the second simulated device"
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depends on BLK_DEV_SIMDISK = y && BLK_DEV_SIMDISK_COUNT != 1
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default ""
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help
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Another simulated disk in a host file for a buildroot-independent
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storage.
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source "mm/Kconfig"
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source "drivers/pcmcia/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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help
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If you enabled support for /proc file system then the file
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/proc/kcore will contain the kernel core image in ELF format. This
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can be used in gdb:
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$ cd /usr/src/linux ; gdb vmlinux /proc/kcore
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This is especially useful if you have compiled the kernel with the
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"-g" option to preserve debugging information. It is mainly used
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for examining kernel data structures on the live kernel.
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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/xtensa/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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