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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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743486dff1
Since these get squashed into the .data output section by the m32r linker script, it seems likely that they don't need their own input sections. At Hirokazu Takata's suggestion, we place these structures in .init.data rather than just placing them in .data (since they are only used at init time). This patch is preparation for cleaning up the m32r architecture to use the new macros in vmlinux.lds.h; if these sections are indeed not needed, then we can use the RW_DATA_SECTION macro for m32r and save a bunch of redundant code. Signed-off-by: Tim Abbott <tabbott@ksplice.com> Signed-off-by: Hirokazu Takata <takata@linux-m32r.org>
284 lines
5.8 KiB
ArmAsm
284 lines
5.8 KiB
ArmAsm
/*
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* linux/arch/m32r/kernel/head.S
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*
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* M32R startup code.
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*
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* Copyright (c) 2001, 2002 Hiroyuki Kondo, Hirokazu Takata,
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* Hitoshi Yamamoto
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*/
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#include <linux/init.h>
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__INIT
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__INITDATA
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.text
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#include <linux/linkage.h>
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#include <asm/segment.h>
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#include <asm/page.h>
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#include <asm/pgtable.h>
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#include <asm/assembler.h>
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#include <asm/m32r.h>
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#include <asm/mmu_context.h>
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/*
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* References to members of the boot_cpu_data structure.
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*/
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__HEAD
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.global start_kernel
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.global __bss_start
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.global _end
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ENTRY(stext)
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ENTRY(_stext)
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/* Setup up the stack pointer */
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LDIMM (r0, spi_stack_top)
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LDIMM (r1, spu_stack_top)
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mvtc r0, spi
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mvtc r1, spu
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/* Initilalize PSW */
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ldi r0, #0x0000 /* use SPI, disable EI */
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mvtc r0, psw
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/* Set up the stack pointer */
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LDIMM (r0, stack_start)
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ld r0, @r0
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mvtc r0, spi
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/*
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* Clear BSS first so that there are no surprises...
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*/
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#ifdef CONFIG_ISA_DUAL_ISSUE
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LDIMM (r2, __bss_start)
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LDIMM (r3, _end)
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sub r3, r2 ; BSS size in bytes
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; R4 = BSS size in longwords (rounded down)
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mv r4, r3 || ldi r1, #0
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srli r4, #4 || addi r2, #-4
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beqz r4, .Lendloop1
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.Lloop1:
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#ifndef CONFIG_CHIP_M32310
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; Touch memory for the no-write-allocating cache.
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ld r0, @(4,r2)
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#endif
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st r1, @+r2 || addi r4, #-1
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st r1, @+r2
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st r1, @+r2
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st r1, @+r2 || cmpeq r1, r4 ; R4 = 0?
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bnc .Lloop1
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.Lendloop1:
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and3 r4, r3, #15
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addi r2, #4
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beqz r4, .Lendloop2
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.Lloop2:
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stb r1, @r2 || addi r4, #-1
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addi r2, #1
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bnez r4, .Lloop2
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.Lendloop2:
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#else /* not CONFIG_ISA_DUAL_ISSUE */
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LDIMM (r2, __bss_start)
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LDIMM (r3, _end)
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sub r3, r2 ; BSS size in bytes
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mv r4, r3
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srli r4, #2 ; R4 = BSS size in longwords (rounded down)
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ldi r1, #0 ; clear R1 for longwords store
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addi r2, #-4 ; account for pre-inc store
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beqz r4, .Lendloop1 ; any more to go?
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.Lloop1:
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st r1, @+r2 ; yep, zero out another longword
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addi r4, #-1 ; decrement count
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bnez r4, .Lloop1 ; go do some more
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.Lendloop1:
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and3 r4, r3, #3 ; get no. of remaining BSS bytes to clear
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addi r2, #4 ; account for pre-inc store
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beqz r4, .Lendloop2 ; any more to go?
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.Lloop2:
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stb r1, @r2 ; yep, zero out another byte
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addi r2, #1 ; bump address
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addi r4, #-1 ; decrement count
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bnez r4, .Lloop2 ; go do some more
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.Lendloop2:
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#endif /* not CONFIG_ISA_DUAL_ISSUE */
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#if 0 /* M32R_FIXME */
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/*
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* Copy data segment from ROM to RAM.
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*/
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.global ROM_D, TOP_DATA, END_DATA
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LDIMM (r1, ROM_D)
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LDIMM (r2, TOP_DATA)
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LDIMM (r3, END_DATA)
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addi r2, #-4
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addi r3, #-4
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loop1:
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ld r0, @r1+
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st r0, @+r2
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cmp r2, r3
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bc loop1
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#endif /* 0 */
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/* Jump to kernel */
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LDIMM (r2, start_kernel)
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jl r2
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.fillinsn
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1:
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bra 1b ; main should never return here, but
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; just in case, we know what happens.
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#ifdef CONFIG_SMP
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/*
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* AP startup routine
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*/
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.global eit_vector
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ENTRY(startup_AP)
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;; setup EVB
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LDIMM (r4, eit_vector)
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mvtc r4, cr5
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;; enable MMU
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LDIMM (r2, init_tlb)
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jl r2
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seth r4, #high(MATM)
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or3 r4, r4, #low(MATM)
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ldi r5, #0x01
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st r5, @r4 ; Set MATM Reg(T bit ON)
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ld r6, @r4 ; MATM Check
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LDIMM (r5, 1f)
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jmp r5 ; enable MMU
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nop
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.fillinsn
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1:
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;; ISN check
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ld r6, @r4 ; MATM Check
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seth r4, #high(M32R_ICU_ISTS_ADDR)
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or3 r4, r4, #low(M32R_ICU_ISTS_ADDR)
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ld r5, @r4 ; Read ISTSi reg.
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mv r6, r5
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slli r5, #13 ; PIML check
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srli r5, #13 ;
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seth r4, #high(M32R_ICU_IMASK_ADDR)
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or3 r4, r4, #low(M32R_ICU_IMASK_ADDR)
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st r5, @r4 ; Write IMASKi reg.
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slli r6, #4 ; ISN check
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srli r6, #26 ;
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seth r4, #high(M32R_IRQ_IPI5)
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or3 r4, r4, #low(M32R_IRQ_IPI5)
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bne r4, r6, 2f ; if (ISN != CPU_BOOT_IPI) goto sleep;
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;; check cpu_bootout_map and set cpu_bootin_map
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LDIMM (r4, cpu_bootout_map)
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ld r4, @r4
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seth r5, #high(M32R_CPUID_PORTL)
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or3 r5, r5, #low(M32R_CPUID_PORTL)
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ld r5, @r5
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ldi r6, #1
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sll r6, r5
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and r4, r6
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beqz r4, 2f
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LDIMM (r4, cpu_bootin_map)
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ld r5, @r4
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or r5, r6
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st r6, @r4
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;; clear PSW
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ldi r4, #0
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mvtc r4, psw
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;; setup SPI
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LDIMM (r4, stack_start)
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ld r4, @r4
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mvtc r4, spi
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;; setup BPC (start_secondary)
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LDIMM (r4, start_secondary)
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mvtc r4, bpc
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rte ; goto startup_secondary
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nop
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nop
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.fillinsn
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2:
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;; disable MMU
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seth r4, #high(MATM)
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or3 r4, r4, #low(MATM)
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ldi r5, #0
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st r5, @r4 ; Set MATM Reg(T bit OFF)
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ld r6, @r4 ; MATM Check
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LDIMM (r4, 3f)
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seth r5, #high(__PAGE_OFFSET)
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or3 r5, r5, #low(__PAGE_OFFSET)
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not r5, r5
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and r4, r5
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jmp r4 ; disable MMU
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nop
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.fillinsn
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3:
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;; SLEEP and wait IPI
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LDIMM (r4, AP_loop)
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seth r5, #high(__PAGE_OFFSET)
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or3 r5, r5, #low(__PAGE_OFFSET)
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not r5, r5
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and r4, r5
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jmp r4
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nop
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nop
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#endif /* CONFIG_SMP */
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.text
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ENTRY(stack_start)
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.long init_thread_union+8192
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.long __KERNEL_DS
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/*
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* This is initialized to create a identity-mapping at 0-4M (for bootup
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* purposes) and another mapping of the 0-4M area at virtual address
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* PAGE_OFFSET.
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*/
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.text
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#define MOUNT_ROOT_RDONLY 1
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#define RAMDISK_FLAGS 0 ; 1024KB
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#define ORIG_ROOT_DEV 0x0100 ; /dev/ram0 (major:01, minor:00)
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#define LOADER_TYPE 1 ; (??? - non-zero value seems
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; to be needed to boot from initrd)
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#define COMMAND_LINE ""
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.section .empty_zero_page, "aw"
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ENTRY(empty_zero_page)
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.long MOUNT_ROOT_RDONLY /* offset: +0x00 */
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.long RAMDISK_FLAGS
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.long ORIG_ROOT_DEV
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.long LOADER_TYPE
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.long 0 /* INITRD_START */ /* +0x10 */
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.long 0 /* INITRD_SIZE */
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.long 0 /* CPU_CLOCK */
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.long 0 /* BUS_CLOCK */
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.long 0 /* TIMER_DIVIDE */ /* +0x20 */
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.balign 256,0
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.asciz COMMAND_LINE
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.byte 0
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.balign 4096,0,4096
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/*------------------------------------------------------------------------
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* Stack area
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*/
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.section .init.data, "aw"
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ALIGN
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.global spi_stack_top
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.zero 1024
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spi_stack_top:
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.section .init.data, "aw"
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ALIGN
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.global spu_stack_top
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.zero 1024
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spu_stack_top:
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.end
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