upstream u-boot with additional patches for our devices/boards:
https://lists.denx.de/pipermail/u-boot/2017-March/282789.html (AXP crashes) ;
Gbit ethernet patch for some LIME2 revisions ;
with SPI flash support
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207 lines
5.8 KiB
207 lines
5.8 KiB
/*
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* Copyright (C) 2012-2015 Masahiro Yamada <yamada.masahiro@socionext.com>
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#include <config.h>
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#include <linux/linkage.h>
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#include <linux/sizes.h>
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#include <asm/system.h>
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#include "ssc-regs.h"
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ENTRY(lowlevel_init)
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mov r8, lr @ persevere link reg across call
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/*
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* The UniPhier Boot ROM loads SPL code to the L2 cache.
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* But CPUs can only do instruction fetch now because start.S has
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* cleared C and M bits.
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* First we need to turn on MMU and Dcache again to get back
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* data access to L2.
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*/
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mrc p15, 0, r0, c1, c0, 0 @ SCTLR (System Control Register)
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orr r0, r0, #(CR_C | CR_M) @ enable MMU and Dcache
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mcr p15, 0, r0, c1, c0, 0
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#ifdef CONFIG_DEBUG_LL
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bl debug_ll_init
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#endif
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bl setup_init_ram @ RAM area for stack and page talbe
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/*
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* Now we are using the page table embedded in the Boot ROM.
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* It is not handy since it is not a straight mapped table for sLD3.
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* Also, the access to the external bus is prohibited. What we need
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* to do next is to create a page table and switch over to it.
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*/
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bl create_page_table
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bl v7_flush_dcache_all
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/* Disable MMU and Dcache before switching Page Table */
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mrc p15, 0, r0, c1, c0, 0 @ SCTLR (System Control Register)
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bic r0, r0, #(CR_C | CR_M) @ disable MMU and Dcache
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mcr p15, 0, r0, c1, c0, 0
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bl enable_mmu
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mov lr, r8 @ restore link
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mov pc, lr @ back to my caller
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ENDPROC(lowlevel_init)
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ENTRY(enable_mmu)
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mrc p15, 0, r0, c2, c0, 2 @ TTBCR (Translation Table Base Control Register)
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bic r0, r0, #0x37
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orr r0, r0, #0x20 @ disable TTBR1
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mcr p15, 0, r0, c2, c0, 2
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orr r0, r12, #0x8 @ Outer Cacheability for table walks: WBWA
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mcr p15, 0, r0, c2, c0, 0 @ TTBR0
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mov r0, #0
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mcr p15, 0, r0, c8, c7, 0 @ invalidate TLBs
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mov r0, #-1 @ manager for all domains (No permission check)
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mcr p15, 0, r0, c3, c0, 0 @ DACR (Domain Access Control Register)
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dsb
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isb
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/*
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* MMU on:
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* TLBs was already invalidated in "../start.S"
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* So, we don't need to invalidate it here.
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*/
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mrc p15, 0, r0, c1, c0, 0 @ SCTLR (System Control Register)
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orr r0, r0, #(CR_C | CR_M) @ MMU and Dcache enable
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mcr p15, 0, r0, c1, c0, 0
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mov pc, lr
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ENDPROC(enable_mmu)
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/*
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* For PH1-Pro4 or older SoCs, the size of WAY is 32KB.
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* It is large enough for tmp RAM.
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*/
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#define BOOT_RAM_SIZE (SZ_32K)
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#define BOOT_RAM_BASE ((CONFIG_SPL_STACK) - (BOOT_RAM_SIZE))
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#define BOOT_WAY_BITS (0x00000100) /* way 8 */
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ENTRY(setup_init_ram)
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/*
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* Touch to zero for the boot way
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*/
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0:
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/*
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* set SSCOQM, SSCOQAD, SSCOQSZ, SSCOQWN in this order
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*/
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ldr r0, = 0x00408006 @ touch to zero with address range
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ldr r1, = SSCOQM
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str r0, [r1]
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ldr r0, = BOOT_RAM_BASE
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ldr r1, = SSCOQAD
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str r0, [r1]
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ldr r0, = BOOT_RAM_SIZE
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ldr r1, = SSCOQSZ
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str r0, [r1]
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ldr r0, = BOOT_WAY_BITS
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ldr r1, = SSCOQWN
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str r0, [r1]
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ldr r1, = SSCOPPQSEF
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ldr r0, [r1]
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cmp r0, #0 @ check if the command is successfully set
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bne 0b @ try again if an error occurs
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ldr r1, = SSCOLPQS
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1:
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ldr r0, [r1]
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cmp r0, #0x4
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bne 1b @ wait until the operation is completed
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str r0, [r1] @ clear the complete notification flag
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mov pc, lr
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ENDPROC(setup_init_ram)
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#define DEVICE 0x00002002 /* Non-shareable Device */
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#define NORMAL 0x0000000e /* Normal Memory Write-Back, No Write-Allocate */
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ENTRY(create_page_table)
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ldr r0, = DEVICE
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ldr r1, = BOOT_RAM_BASE
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mov r12, r1 @ r12 is preserved during D-cache flush
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0: str r0, [r1], #4 @ specify all the sections as Device
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adds r0, r0, #0x00100000
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bcc 0b
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ldr r0, = NORMAL
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str r0, [r12] @ mark the first section as Normal
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add r0, r0, #0x00100000
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str r0, [r12, #4] @ mark the second section as Normal
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mov pc, lr
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ENDPROC(create_page_table)
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/* We don't use Thumb instructions for now */
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#define ARM(x...) x
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#define THUMB(x...)
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/*
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* v7_flush_dcache_all()
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*
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* Flush the whole D-cache.
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*
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* Corrupted registers: r0-r7, r9-r11 (r6 only in Thumb mode)
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*
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* - mm - mm_struct describing address space
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*
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* Note: copied from arch/arm/mm/cache-v7.S of Linux 4.4
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*/
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ENTRY(v7_flush_dcache_all)
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dmb @ ensure ordering with previous memory accesses
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mrc p15, 1, r0, c0, c0, 1 @ read clidr
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mov r3, r0, lsr #23 @ move LoC into position
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ands r3, r3, #7 << 1 @ extract LoC*2 from clidr
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beq finished @ if loc is 0, then no need to clean
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start_flush_levels:
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mov r10, #0 @ start clean at cache level 0
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flush_levels:
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add r2, r10, r10, lsr #1 @ work out 3x current cache level
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mov r1, r0, lsr r2 @ extract cache type bits from clidr
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and r1, r1, #7 @ mask of the bits for current cache only
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cmp r1, #2 @ see what cache we have at this level
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blt skip @ skip if no cache, or just i-cache
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mcr p15, 2, r10, c0, c0, 0 @ select current cache level in cssr
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isb @ isb to sych the new cssr&csidr
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mrc p15, 1, r1, c0, c0, 0 @ read the new csidr
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and r2, r1, #7 @ extract the length of the cache lines
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add r2, r2, #4 @ add 4 (line length offset)
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movw r4, #0x3ff
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ands r4, r4, r1, lsr #3 @ find maximum number on the way size
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clz r5, r4 @ find bit position of way size increment
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movw r7, #0x7fff
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ands r7, r7, r1, lsr #13 @ extract max number of the index size
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loop1:
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mov r9, r7 @ create working copy of max index
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loop2:
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ARM( orr r11, r10, r4, lsl r5 ) @ factor way and cache number into r11
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THUMB( lsl r6, r4, r5 )
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THUMB( orr r11, r10, r6 ) @ factor way and cache number into r11
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ARM( orr r11, r11, r9, lsl r2 ) @ factor index number into r11
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THUMB( lsl r6, r9, r2 )
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THUMB( orr r11, r11, r6 ) @ factor index number into r11
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mcr p15, 0, r11, c7, c14, 2 @ clean & invalidate by set/way
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subs r9, r9, #1 @ decrement the index
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bge loop2
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subs r4, r4, #1 @ decrement the way
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bge loop1
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skip:
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add r10, r10, #2 @ increment cache number
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cmp r3, r10
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bgt flush_levels
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finished:
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mov r10, #0 @ swith back to cache level 0
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mcr p15, 2, r10, c0, c0, 0 @ select current cache level in cssr
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dsb st
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isb
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mov pc, lr
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ENDPROC(v7_flush_dcache_all)
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