mirror of
https://github.com/AsahiLinux/u-boot
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f5d8b1a1f9
Implement early init by calling generic board_init_f_alloc_reserve and board_init_f_init_reserve functions: * drop SYS_MALLOC_F_LEN related code, as allocation and gd->malloc_base assignment are taken care of by the generic functions * drop _gd logic Cc: Michal Simek <monstr@monstr.eu> Signed-off-by: Ovidiu Panait <ovidiu.panait@windriver.com>
328 lines
7.7 KiB
ArmAsm
328 lines
7.7 KiB
ArmAsm
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* (C) Copyright 2007 Michal Simek
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* (C) Copyright 2004 Atmark Techno, Inc.
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*
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* Michal SIMEK <monstr@monstr.eu>
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* Yasushi SHOJI <yashi@atmark-techno.com>
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*/
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#include <asm-offsets.h>
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#include <config.h>
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.text
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.global _start
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_start:
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mts rmsr, r0 /* disable cache */
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addi r8, r0, __end
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mts rslr, r8
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#if defined(CONFIG_SPL_BUILD)
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addi r1, r0, CONFIG_SPL_STACK_ADDR
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#else
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addi r1, r0, CONFIG_SYS_INIT_SP_OFFSET
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#endif
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addi r1, r1, -4 /* Decrement SP to top of memory */
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/* Call board_init_f_alloc_reserve with the current stack pointer as
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* parameter. */
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add r5, r0, r1
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bralid r15, board_init_f_alloc_reserve
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nop
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/* board_init_f_alloc_reserve returns a pointer to the allocated area
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* in r3. Set the new stack pointer below this area. */
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add r1, r0, r3
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mts rshr, r1
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addi r1, r1, -4
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/* Call board_init_f_init_reserve with the address returned by
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* board_init_f_alloc_reserve as parameter. */
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add r5, r0, r3
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bralid r15, board_init_f_init_reserve
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nop
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#if !defined(CONFIG_SPL_BUILD)
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/* Setup vectors with pre-relocation symbols */
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or r5, r0, r0
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bralid r15, __setup_exceptions
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nop
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#endif
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/* Flush cache before enable cache */
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addik r5, r0, 0
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addik r6, r0, XILINX_DCACHE_BYTE_SIZE
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bralid r15, flush_cache
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nop
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/* enable instruction and data cache */
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mfs r12, rmsr
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ori r12, r12, 0x1a0
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mts rmsr, r12
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clear_bss:
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/* clear BSS segments */
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addi r5, r0, __bss_start
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addi r4, r0, __bss_end
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cmp r6, r5, r4
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beqi r6, 3f
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2:
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swi r0, r5, 0 /* write zero to loc */
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addi r5, r5, 4 /* increment to next loc */
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cmp r6, r5, r4 /* check if we have reach the end */
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bnei r6, 2b
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3: /* jumping to board_init */
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#ifdef CONFIG_DEBUG_UART
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bralid r15, debug_uart_init
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nop
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#endif
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#ifndef CONFIG_SPL_BUILD
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or r5, r0, r0 /* flags - empty */
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brai board_init_f
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#else
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brai board_init_r
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#endif
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1: bri 1b
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#ifndef CONFIG_SPL_BUILD
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.text
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.ent __setup_exceptions
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.align 2
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/*
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* Set up reset, interrupt, user exception and hardware exception vectors.
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*
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* Parameters:
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* r5 - relocation offset (zero when setting up vectors before
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* relocation, and gd->reloc_off when setting up vectors after
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* relocation)
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* - the relocation offset is added to the _exception_handler,
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* _interrupt_handler and _hw_exception_handler symbols to reflect the
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* post-relocation memory addresses
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*
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* Reserve registers:
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* r10: Stores little/big endian offset for vectors
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* r2: Stores imm opcode
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* r3: Stores brai opcode
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*/
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__setup_exceptions:
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addik r1, r1, -28
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swi r2, r1, 4
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swi r3, r1, 8
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swi r6, r1, 12
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swi r7, r1, 16
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swi r8, r1, 20
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swi r10, r1, 24
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/* Find-out if u-boot is running on BIG/LITTLE endian platform
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* There are some steps which is necessary to keep in mind:
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* 1. Setup offset value to r6
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* 2. Store word offset value to address 0x0
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* 3. Load just byte from address 0x0
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* 4a) LITTLE endian - r10 contains 0x2 because it is the smallest
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* value that's why is on address 0x0
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* 4b) BIG endian - r10 contains 0x0 because 0x2 offset is on addr 0x3
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*/
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addik r6, r0, 0x2 /* BIG/LITTLE endian offset */
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lwi r7, r0, 0x28
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swi r6, r0, 0x28 /* used first unused MB vector */
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lbui r10, r0, 0x28 /* used first unused MB vector */
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swi r7, r0, 0x28
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/* add opcode instruction for 32bit jump - 2 instruction imm & brai */
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addi r2, r0, 0xb0000000 /* hex b000 opcode imm */
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addi r3, r0, 0xb8080000 /* hew b808 opcode brai */
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#ifdef CONFIG_SYS_RESET_ADDRESS
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/* reset address */
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swi r2, r0, 0x0 /* reset address - imm opcode */
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swi r3, r0, 0x4 /* reset address - brai opcode */
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addik r6, r0, CONFIG_SYS_RESET_ADDRESS
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sw r6, r1, r0
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lhu r7, r1, r10
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rsubi r8, r10, 0x2
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sh r7, r0, r8
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rsubi r8, r10, 0x6
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sh r6, r0, r8
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#endif
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#ifdef CONFIG_SYS_USR_EXCEP
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/* user_vector_exception */
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swi r2, r0, 0x8 /* user vector exception - imm opcode */
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swi r3, r0, 0xC /* user vector exception - brai opcode */
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addik r6, r5, _exception_handler
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sw r6, r1, r0
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/*
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* BIG ENDIAN memory map for user exception
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* 0x8: 0xB000XXXX
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* 0xC: 0xB808XXXX
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*
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* then it is necessary to count address for storing the most significant
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* 16bits from _exception_handler address and copy it to
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* 0xa address. Big endian use offset in r10=0 that's why is it just
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* 0xa address. The same is done for the least significant 16 bits
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* for 0xe address.
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*
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* LITTLE ENDIAN memory map for user exception
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* 0x8: 0xXXXX00B0
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* 0xC: 0xXXXX08B8
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*
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* Offset is for little endian setup to 0x2. rsubi instruction decrease
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* address value to ensure that points to proper place which is
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* 0x8 for the most significant 16 bits and
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* 0xC for the least significant 16 bits
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*/
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lhu r7, r1, r10
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rsubi r8, r10, 0xa
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sh r7, r0, r8
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rsubi r8, r10, 0xe
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sh r6, r0, r8
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#endif
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/* interrupt_handler */
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swi r2, r0, 0x10 /* interrupt - imm opcode */
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swi r3, r0, 0x14 /* interrupt - brai opcode */
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addik r6, r5, _interrupt_handler
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sw r6, r1, r0
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lhu r7, r1, r10
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rsubi r8, r10, 0x12
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sh r7, r0, r8
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rsubi r8, r10, 0x16
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sh r6, r0, r8
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/* hardware exception */
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swi r2, r0, 0x20 /* hardware exception - imm opcode */
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swi r3, r0, 0x24 /* hardware exception - brai opcode */
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addik r6, r5, _hw_exception_handler
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sw r6, r1, r0
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lhu r7, r1, r10
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rsubi r8, r10, 0x22
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sh r7, r0, r8
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rsubi r8, r10, 0x26
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sh r6, r0, r8
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lwi r10, r1, 24
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lwi r8, r1, 20
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lwi r7, r1, 16
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lwi r6, r1, 12
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lwi r3, r1, 8
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lwi r2, r1, 4
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addik r1, r1, 28
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rtsd r15, 8
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or r0, r0, r0
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.end __setup_exceptions
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/*
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* Read 16bit little endian
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*/
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.text
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.global in16
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.ent in16
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.align 2
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in16: lhu r3, r0, r5
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bslli r4, r3, 8
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bsrli r3, r3, 8
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andi r4, r4, 0xffff
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or r3, r3, r4
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rtsd r15, 8
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sext16 r3, r3
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.end in16
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/*
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* Write 16bit little endian
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* first parameter(r5) - address, second(r6) - short value
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*/
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.text
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.global out16
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.ent out16
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.align 2
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out16: bslli r3, r6, 8
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bsrli r6, r6, 8
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andi r3, r3, 0xffff
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or r3, r3, r6
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sh r3, r0, r5
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rtsd r15, 8
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or r0, r0, r0
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.end out16
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/*
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* Relocate u-boot
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*/
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.text
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.global relocate_code
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.ent relocate_code
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.align 2
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relocate_code:
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/*
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* r5 - start_addr_sp
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* r6 - new_gd
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* r7 - reloc_addr
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*/
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addi r1, r5, 0 /* Start to use new SP */
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addi r31, r6, 0 /* Start to use new GD */
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add r23, r0, r7 /* Move reloc addr to r23 */
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/* Relocate text and data - r12 temp value */
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addi r21, r0, _start
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addi r22, r0, __end - 4 /* Include BSS too */
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rsub r6, r21, r22
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or r5, r0, r0
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1: lw r12, r21, r5 /* Load u-boot data */
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sw r12, r23, r5 /* Write zero to loc */
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cmp r12, r5, r6 /* Check if we have reach the end */
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bneid r12, 1b
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addi r5, r5, 4 /* Increment to next loc - relocate code */
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/* R23 points to the base address. */
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add r23, r0, r7 /* Move reloc addr to r23 */
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addi r24, r0, CONFIG_SYS_TEXT_BASE /* Get reloc offset */
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rsub r23, r24, r23 /* keep - this is already here gd->reloc_off */
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/* Setup vectors with post-relocation symbols */
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add r5, r0, r23 /* load gd->reloc_off to r5 */
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bralid r15, __setup_exceptions
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nop
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/* Check if GOT exist */
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addik r21, r23, _got_start
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addik r22, r23, _got_end
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cmpu r12, r21, r22
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beqi r12, 2f /* No GOT table - jump over */
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/* Skip last 3 entries plus 1 because of loop boundary below */
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addik r22, r22, -0x10
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/* Relocate the GOT. */
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3: lw r12, r21, r0 /* Load entry */
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addk r12, r12, r23 /* Add reloc offset */
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sw r12, r21, r0 /* Save entry back */
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cmpu r12, r21, r22 /* Check if this cross boundary */
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bneid r12, 3b
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addik r21. r21, 4
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/* Update pointer to GOT */
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mfs r20, rpc
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addik r20, r20, _GLOBAL_OFFSET_TABLE_ + 8
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addk r20, r20, r23
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/* Flush caches to ensure consistency */
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addik r5, r0, 0
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addik r6, r0, XILINX_DCACHE_BYTE_SIZE
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bralid r15, flush_cache
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nop
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2: addi r5, r31, 0 /* gd is initialized in board_r.c */
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addi r6, r0, CONFIG_SYS_TEXT_BASE
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addi r12, r23, board_init_r
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bra r12 /* Jump to relocated code */
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.end relocate_code
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#endif
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