powerpc: Rename mapping based RELOCATABLE to DYNAMIC_MEMSTART for BookE
The current implementation of CONFIG_RELOCATABLE in BookE is based on mapping the page aligned kernel load address to KERNELBASE. This approach however is not enough for platforms, where the TLB page size is large (e.g, 256M on 44x). So we are renaming the RELOCATABLE used currently in BookE to DYNAMIC_MEMSTART to reflect the actual method. The CONFIG_RELOCATABLE for PPC32(BookE) based on processing of the dynamic relocations will be introduced in the later in the patch series. This change would allow the use of the old method of RELOCATABLE for platforms which can afford to enforce the page alignment (platforms with smaller TLB size). Changes since v3: * Introduced a new config, NONSTATIC_KERNEL, to denote a kernel which is either a RELOCATABLE or DYNAMIC_MEMSTART(Suggested by: Josh Boyer) Suggested-by: Scott Wood <scottwood@freescale.com> Tested-by: Scott Wood <scottwood@freescale.com> Signed-off-by: Suzuki K. Poulose <suzuki@in.ibm.com> Cc: Scott Wood <scottwood@freescale.com> Cc: Kumar Gala <galak@kernel.crashing.org> Cc: Josh Boyer <jwboyer@gmail.com> Cc: Benjamin Herrenschmidt <benh@kernel.crashing.org> Cc: linux ppc dev <linuxppc-dev@lists.ozlabs.org> Signed-off-by: Josh Boyer <jwboyer@gmail.com>
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@ -368,7 +368,8 @@ config KEXEC
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config CRASH_DUMP
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bool "Build a kdump crash kernel"
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depends on PPC64 || 6xx || FSL_BOOKE
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select RELOCATABLE if PPC64 || FSL_BOOKE
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select RELOCATABLE if PPC64
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select DYNAMIC_MEMSTART if FSL_BOOKE
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help
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Build a kernel suitable for use as a kdump capture kernel.
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The same kernel binary can be used as production kernel and dump
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@ -777,6 +778,10 @@ source "drivers/rapidio/Kconfig"
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endmenu
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config NONSTATIC_KERNEL
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bool
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default n
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menu "Advanced setup"
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depends on PPC32
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@ -826,23 +831,39 @@ config LOWMEM_CAM_NUM
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int "Number of CAMs to use to map low memory" if LOWMEM_CAM_NUM_BOOL
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default 3
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config RELOCATABLE
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bool "Build a relocatable kernel (EXPERIMENTAL)"
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config DYNAMIC_MEMSTART
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bool "Enable page aligned dynamic load address for kernel (EXPERIMENTAL)"
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depends on EXPERIMENTAL && ADVANCED_OPTIONS && FLATMEM && (FSL_BOOKE || PPC_47x)
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select NONSTATIC_KERNEL
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help
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This builds a kernel image that is capable of running at the
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location the kernel is loaded at (some alignment restrictions may
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exist).
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This option enables the kernel to be loaded at any page aligned
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physical address. The kernel creates a mapping from KERNELBASE to
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the address where the kernel is loaded. The page size here implies
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the TLB page size of the mapping for kernel on the particular platform.
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Please refer to the init code for finding the TLB page size.
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One use is for the kexec on panic case where the recovery kernel
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must live at a different physical address than the primary
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kernel.
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DYNAMIC_MEMSTART is an easy way of implementing pseudo-RELOCATABLE
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kernel image, where the only restriction is the page aligned kernel
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load address. When this option is enabled, the compile time physical
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address CONFIG_PHYSICAL_START is ignored.
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Note: If CONFIG_RELOCATABLE=y, then the kernel runs from the address
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it has been loaded at and the compile time physical addresses
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CONFIG_PHYSICAL_START is ignored. However CONFIG_PHYSICAL_START
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setting can still be useful to bootwrappers that need to know the
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load location of the kernel (eg. u-boot/mkimage).
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# Mapping based RELOCATABLE is moved to DYNAMIC_MEMSTART
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# config RELOCATABLE
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# bool "Build a relocatable kernel (EXPERIMENTAL)"
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# depends on EXPERIMENTAL && ADVANCED_OPTIONS && FLATMEM && (FSL_BOOKE || PPC_47x)
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# help
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# This builds a kernel image that is capable of running at the
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# location the kernel is loaded at, without any alignment restrictions.
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#
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# One use is for the kexec on panic case where the recovery kernel
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# must live at a different physical address than the primary
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# kernel.
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#
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# Note: If CONFIG_RELOCATABLE=y, then the kernel runs from the address
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# it has been loaded at and the compile time physical addresses
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# CONFIG_PHYSICAL_START is ignored. However CONFIG_PHYSICAL_START
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# setting can still be useful to bootwrappers that need to know the
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# load location of the kernel (eg. u-boot/mkimage).
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config PAGE_OFFSET_BOOL
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bool "Set custom page offset address"
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@ -872,7 +893,7 @@ config KERNEL_START_BOOL
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config KERNEL_START
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hex "Virtual address of kernel base" if KERNEL_START_BOOL
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default PAGE_OFFSET if PAGE_OFFSET_BOOL
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default "0xc2000000" if CRASH_DUMP && !RELOCATABLE
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default "0xc2000000" if CRASH_DUMP && !NONSTATIC_KERNEL
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default "0xc0000000"
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config PHYSICAL_START_BOOL
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@ -885,7 +906,7 @@ config PHYSICAL_START_BOOL
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config PHYSICAL_START
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hex "Physical address where the kernel is loaded" if PHYSICAL_START_BOOL
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default "0x02000000" if PPC_STD_MMU && CRASH_DUMP && !RELOCATABLE
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default "0x02000000" if PPC_STD_MMU && CRASH_DUMP && !NONSTATIC_KERNEL
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default "0x00000000"
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config PHYSICAL_ALIGN
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@ -931,6 +952,7 @@ endmenu
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if PPC64
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config RELOCATABLE
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bool "Build a relocatable kernel"
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select NONSTATIC_KERNEL
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help
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This builds a kernel image that is capable of running anywhere
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in the RMA (real memory area) at any 16k-aligned base address.
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@ -25,7 +25,8 @@ CONFIG_CMDLINE_BOOL=y
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CONFIG_CMDLINE="root=/dev/issblk0"
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# CONFIG_PCI is not set
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CONFIG_ADVANCED_OPTIONS=y
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CONFIG_RELOCATABLE=y
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CONFIG_NONSTATIC_KERNEL=y
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CONFIG_DYNAMIC_MEMSTART=y
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CONFIG_NET=y
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CONFIG_PACKET=y
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CONFIG_UNIX=y
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@ -32,11 +32,11 @@
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#ifndef __ASSEMBLY__
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#if defined(CONFIG_CRASH_DUMP) && !defined(CONFIG_RELOCATABLE)
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#if defined(CONFIG_CRASH_DUMP) && !defined(CONFIG_NONSTATIC_KERNEL)
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extern void reserve_kdump_trampoline(void);
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extern void setup_kdump_trampoline(void);
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#else
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/* !CRASH_DUMP || RELOCATABLE */
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/* !CRASH_DUMP || !NONSTATIC_KERNEL */
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static inline void reserve_kdump_trampoline(void) { ; }
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static inline void setup_kdump_trampoline(void) { ; }
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#endif
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@ -92,7 +92,7 @@ extern unsigned int HPAGE_SHIFT;
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#define PAGE_OFFSET ASM_CONST(CONFIG_PAGE_OFFSET)
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#define LOAD_OFFSET ASM_CONST((CONFIG_KERNEL_START-CONFIG_PHYSICAL_START))
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#if defined(CONFIG_RELOCATABLE)
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#if defined(CONFIG_NONSTATIC_KERNEL)
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#ifndef __ASSEMBLY__
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extern phys_addr_t memstart_addr;
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@ -105,7 +105,7 @@ extern phys_addr_t kernstart_addr;
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#ifdef CONFIG_PPC64
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#define MEMORY_START 0UL
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#elif defined(CONFIG_RELOCATABLE)
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#elif defined(CONFIG_NONSTATIC_KERNEL)
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#define MEMORY_START memstart_addr
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#else
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#define MEMORY_START (PHYSICAL_START + PAGE_OFFSET - KERNELBASE)
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@ -28,7 +28,7 @@
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#define DBG(fmt...)
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#endif
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#ifndef CONFIG_RELOCATABLE
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#ifndef CONFIG_NONSTATIC_KERNEL
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void __init reserve_kdump_trampoline(void)
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{
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memblock_reserve(0, KDUMP_RESERVE_LIMIT);
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@ -67,7 +67,7 @@ void __init setup_kdump_trampoline(void)
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DBG(" <- setup_kdump_trampoline()\n");
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}
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#endif /* CONFIG_RELOCATABLE */
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#endif /* CONFIG_NONSTATIC_KERNEL */
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static int __init parse_savemaxmem(char *p)
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{
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@ -86,8 +86,10 @@ _ENTRY(_start);
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bl early_init
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#ifdef CONFIG_RELOCATABLE
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#ifdef CONFIG_DYNAMIC_MEMSTART
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/*
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* Mapping based, page aligned dynamic kernel loading.
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*
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* r25 will contain RPN/ERPN for the start address of memory
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*
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* Add the difference between KERNELBASE and PAGE_OFFSET to the
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@ -197,7 +197,7 @@ _ENTRY(__early_start)
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bl early_init
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#ifdef CONFIG_RELOCATABLE
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#ifdef CONFIG_DYNAMIC_MEMSTART
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lis r3,kernstart_addr@ha
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la r3,kernstart_addr@l(r3)
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#ifdef CONFIG_PHYS_64BIT
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@ -128,7 +128,7 @@ void __init reserve_crashkernel(void)
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crash_size = resource_size(&crashk_res);
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#ifndef CONFIG_RELOCATABLE
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#ifndef CONFIG_NONSTATIC_KERNEL
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if (crashk_res.start != KDUMP_KERNELBASE)
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printk("Crash kernel location must be 0x%x\n",
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KDUMP_KERNELBASE);
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@ -2845,7 +2845,7 @@ unsigned long __init prom_init(unsigned long r3, unsigned long r4,
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RELOC(of_platform) = prom_find_machine_type();
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prom_printf("Detected machine type: %x\n", RELOC(of_platform));
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#ifndef CONFIG_RELOCATABLE
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#ifndef CONFIG_NONSTATIC_KERNEL
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/* Bail if this is a kdump kernel. */
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if (PHYSICAL_START > 0)
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prom_panic("Error: You can't boot a kdump kernel from OF!\n");
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@ -217,7 +217,7 @@ void setup_initial_memory_limit(phys_addr_t first_memblock_base,
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{
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u64 size;
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#ifndef CONFIG_RELOCATABLE
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#ifndef CONFIG_NONSTATIC_KERNEL
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/* We don't currently support the first MEMBLOCK not mapping 0
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* physical on those processors
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*/
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