632 lines
15 KiB
ArmAsm
632 lines
15 KiB
ArmAsm
/***************************************************************************
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*
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* Copyright 2015-2019 BES.
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* All rights reserved. All unpublished rights reserved.
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*
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* No part of this work may be used or reproduced in any form or by any
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* means, or stored in a database or retrieval system, without prior written
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* permission of BES.
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*
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* Use of this work is governed by a license granted by BES.
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* This work contains confidential and proprietary information of
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* BES. which is protected by copyright, trade secret,
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* trademark and other intellectual property rights.
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*
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****************************************************************************/
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#include "plat_addr_map.h"
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#define HEAP_SECTION_SIZE 0x40
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#define STACK_SECTION_SIZE 0xD00
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#define OVERLAY_DATA_SECTION_SIZE 0x1000
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#define FAST_XRAM_SECTION_SIZE 0x0010
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#ifndef OTA_CODE_OFFSET
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#define OTA_CODE_OFFSET 0
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#endif
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#define FLASH_REGION_BASE (FLASH_BASE + OTA_CODE_OFFSET)
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#ifndef FLASH_REGION_SIZE
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#define FLASH_REGION_SIZE (FLASH_SIZE - (FLASH_REGION_BASE - FLASH_BASE))
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#endif
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#define FLASH_NC_REGION_BASE FLASH_C_TO_NC(FLASH_REGION_BASE)
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#define FLASHX_REGION_BASE FLASH_TO_FLASHX(FLASH_REGION_BASE)
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/* Linker script to configure memory regions. */
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/* See plat_addr_map.h and common.mk for the macro definitions */
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MEMORY
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{
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ROM (rx) : ORIGIN = ROM_BASE, LENGTH = ROM_SIZE
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FLASH (r) : ORIGIN = FLASH_REGION_BASE, LENGTH = FLASH_REGION_SIZE
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FLASH_NC (r) : ORIGIN = FLASH_NC_REGION_BASE, LENGTH = FLASH_REGION_SIZE
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FLASHX (rx) : ORIGIN = FLASHX_REGION_BASE, LENGTH = FLASH_REGION_SIZE
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RAM (rwx) : ORIGIN = RAM_BASE, LENGTH = RAM_SIZE - FAST_XRAM_SECTION_SIZE
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RAMX (rx) : ORIGIN = RAMX_BASE, LENGTH = RAM_SIZE - FAST_XRAM_SECTION_SIZE
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FRAMX (rwx) : ORIGIN = RAMX_BASE + RAM_SIZE - FAST_XRAM_SECTION_SIZE, LENGTH = FAST_XRAM_SECTION_SIZE
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#ifdef PSRAM_BASE
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PSRAM (rwx) : ORIGIN = PSRAM_BASE, LENGTH = PSRAM_SIZE
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PSRAM_NC (rwx) : ORIGIN = PSRAM_NC_BASE, LENGTH = PSRAM_SIZE
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PSRAMX (rx) : ORIGIN = PSRAMX_BASE, LENGTH = PSRAM_SIZE
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#endif
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}
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/* Library configurations */
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GROUP(libgcc.a libc.a libm.a libnosys.a)
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/* Linker script to place sections and symbol values. Should be used together
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* with other linker script that defines memory regions FLASH and RAM.
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* It references following symbols, which must be defined in code:
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* Reset_Handler : Entry of reset handler
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*
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* It defines following symbols, which code can use without definition:
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* __export_fn_rom
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* __exidx_start
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* __exidx_end
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* __copy_table_start__
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* __copy_table_end__
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* __zero_table_start__
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* __zero_table_end__
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* __etext
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* __data_start__
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* __preinit_array_start
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* __preinit_array_end
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* __init_array_start
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* __init_array_end
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* __fini_array_start
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* __fini_array_end
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* __data_end__
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* __bss_start__
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* __bss_end__
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* __end__
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* end
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* __HeapLimit
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* __StackLimit
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* __StackTop
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* __stack
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* __free_ram
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* __factory_start
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* __factory_end
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* __calib_start
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* __calib_end
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* __flash_start
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* __flash_end
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* __free_flash
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* __boot_sram_start_flash__
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* __boot_sram_end_flash__
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* __boot_sram_start__
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* __boot_bss_sram_start__
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* __boot_bss_sram_end__
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* __sram_text_data_start_flash__
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* __sram_text_data_end_flash__
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* __fast_sram_text_data_start__
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* __fast_sram_text_data_end__
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* __fast_sram_text_data_start_flash__
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* __fast_sram_text_data_end_flash__
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* __sram_text_data_start__
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* __sram_bss_start__
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* __sram_bss_end__
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* __overlay_text_start__
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* __overlay_text_exec_start__
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* __overlay_data_start__
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*/
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ENTRY(Boot_Loader)
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SECTIONS
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{
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__export_fn_rom = (ORIGIN(ROM) + LENGTH(ROM) - ROM_BUILD_INFO_SECTION_SIZE - ROM_EXPORT_FN_SECTION_SIZE);
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.boot_struct (ORIGIN(FLASH)) :
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{
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__flash_start = .;
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KEEP(*(.boot_struct))
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. = ALIGN(4);
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} > FLASH
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. = FLASH_TO_FLASHX(.);
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.boot_text_flash (.) : AT (FLASHX_TO_FLASH(ADDR(.boot_text_flash)))
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{
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*(.boot_loader)
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*(.boot_text_flash*)
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*(.boot_rodata*)
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. = ALIGN(4);
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} > FLASHX
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. = FLASHX_TO_FLASH(.);
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.got_info (.) :
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{
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__got_info_start = .;
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__got_start = .;
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*(.got)
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. = ALIGN(4);
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__got_end = .;
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__got_plt_start = .;
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*(.got.plt)
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. = ALIGN(4);
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__igot_plt_start = .;
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*(.igot.plt)
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. = ALIGN(4);
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__dynamic_start = .;
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*(.dynamic)
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. = ALIGN(4);
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__got_info_end = .;
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} > FLASH
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.vector_table (ORIGIN(RAM)) (NOLOAD) :
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{
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KEEP(*(.vector_table))
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. = VECTOR_SECTION_SIZE;
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. = ALIGN(4);
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} > RAM
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.reboot_param (.) (NOLOAD) :
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{
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KEEP(*(.reboot_param))
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. = REBOOT_PARAM_SECTION_SIZE;
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. = ALIGN(4);
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} > RAM
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.userdata_pool (.) (NOLOAD) :
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{
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*(.userdata_pool)
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. = ALIGN(4);
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__userdata_pool_end__ = .;
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} > RAM
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__boot_sram_start_flash__ = LOADADDR(.got_info) + SIZEOF(.got_info);
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__boot_sram_start__ = __userdata_pool_end__;
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.boot_text_sram (RAM_TO_RAMX(__boot_sram_start__)) : AT (__boot_sram_start_flash__)
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{
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/* memcpy.o or libc_nano.a(lib_a-memcpy.o/lib_a-memcpy-stub.o) */
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*:memcpy.o(.text*)
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*:lib_a-memcpy*.o(.text*)
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*:libc_rom.o(.text*)
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/* memset.o or libc_nano.a(lib_a-memset.o) */
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*:memset.o(.text*)
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*:lib_a-memset*.o(.text*)
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*:hal_norflash*.o(.text*)
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*:norflash_*.o(.text*)
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*(.boot_text_sram*)
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/* All the codes that are run both in boot and non-boot */
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*:hal_*(.text*)
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*:system_ARMCM.o(.text*)
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*:system_utils.o(.text*)
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*:cmsis_nvic.o(.text*)
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/* For 64-bit div in boot, e.g., __aeabi_uldivmod */
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*libgcc.a:(.text*)
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. = ALIGN(4);
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} > RAMX
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.boot_data_sram (RAMX_TO_RAM(ADDR(.boot_text_sram) + SIZEOF(.boot_text_sram))) :
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AT (__boot_sram_start_flash__ + SIZEOF(.boot_text_sram))
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{
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*:hal_norflash*.o(.data* .rodata*)
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*:norflash_*.o(.data* .rodata*)
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*:hal_psram.o(.data* .rodata*)
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*(.boot_data*)
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/* All the data that is accessed both in boot and non-boot */
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*:hal_*(.rodata*)
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*:system_ARMCM.o(.rodata*)
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*:system_utils.o(.rodata*)
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*:cmsis_nvic.o(.rodata*)
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*libgcc.a:(.rodata*)
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. = ALIGN(4);
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} > RAM
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__boot_sram_end_flash__ = __boot_sram_start_flash__ +
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SIZEOF(.boot_text_sram) + SIZEOF(.boot_data_sram);
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.boot_bss_sram (.) (NOLOAD) :
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{
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__boot_bss_sram_start__ = .;
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*:hal_norflash*.o(.bss*)
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*:norflash_*.o(.bss*)
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*:hal_psram.o(.bss*)
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*(.boot_bss*)
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. = ALIGN(4);
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__boot_bss_sram_end__ = .;
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} > RAM
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__fast_sram_text_data_start_flash__ = __boot_sram_end_flash__;
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.fast_text_sram (ORIGIN(FRAMX)) : AT (__fast_sram_text_data_start_flash__)
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{
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__fast_sram_text_data_start__ = .;
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. = ALIGN(4);
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__fast_sram_text_data_end__ = .;
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} > FRAMX
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__fast_sram_text_data_end_flash__ = __fast_sram_text_data_start_flash__ + SIZEOF(.fast_text_sram);
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__overlay_text_start__ = RAMX_TO_RAM(__fast_sram_text_data_end__);
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__overlay_text_exec_start__ = RAM_TO_RAMX(__overlay_text_start__);
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OVERLAY (__overlay_text_exec_start__) : NOCROSSREFS AT (__fast_sram_text_data_end_flash__)
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{
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.overlay_text0
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{
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LONG(0);
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*(.overlay_text0)
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. = ALIGN(4);
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}
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.overlay_text1
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{
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LONG(0);
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*(.overlay_text1)
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. = ALIGN(4);
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}
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.overlay_text2
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{
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LONG(0);
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*(.overlay_text2)
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. = ALIGN(4);
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}
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.overlay_text3
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{
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LONG(0);
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*(.overlay_text3)
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. = ALIGN(4);
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}
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.overlay_text4
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{
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LONG(0);
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*(.overlay_text4)
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. = ALIGN(4);
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}
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.overlay_text5
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{
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LONG(0);
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*(.overlay_text5)
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. = ALIGN(4);
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}
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.overlay_text6
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{
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LONG(0);
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*(.overlay_text6)
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. = ALIGN(4);
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}
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.overlay_text7
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{
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LONG(0);
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*(.overlay_text7)
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. = ALIGN(4);
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}
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.overlay_text_end
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{
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LONG(0);
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. = ALIGN(4);
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}
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} > FRAMX
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.dummy_overlay_text (.) (NOLOAD) :
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{
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__dummy_overlay_text_end__ = .;
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} > FRAMX
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ASSERT(__dummy_overlay_text_end__ - __fast_sram_text_data_start__ <= FAST_XRAM_SECTION_SIZE, "fast xram sections too large")
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__overlay_data_start__ = __boot_bss_sram_end__;
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OVERLAY (__overlay_data_start__) : NOCROSSREFS AT (__load_stop_overlay_text_end)
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{
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.overlay_data0
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{
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/* Explicitly place 4 bytes at section start to avoid "section type changed to PROGBITS" warnings */
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LONG(0);
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*(.overlay_data0 .overlay_rodata0)
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. = ALIGN(4);
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}
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.overlay_data1
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{
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LONG(0);
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*(.overlay_data1 .overlay_rodata1)
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. = ALIGN(4);
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}
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.overlay_data2
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{
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LONG(0);
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*(.overlay_data2 .overlay_rodata2)
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. = ALIGN(4);
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}
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.overlay_data3
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{
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LONG(0);
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*(.overlay_data3 .overlay_rodata3)
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. = ALIGN(4);
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}
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.overlay_data4
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{
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LONG(0);
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*(.overlay_data4 .overlay_rodata4)
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. = ALIGN(4);
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}
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.overlay_data5
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{
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LONG(0);
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*(.overlay_data5 .overlay_rodata5)
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. = ALIGN(4);
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}
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.overlay_data6
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{
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LONG(0);
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*(.overlay_data6 .overlay_rodata6)
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. = ALIGN(4);
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}
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.overlay_data7
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{
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LONG(0);
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*(.overlay_data7 .overlay_rodata7)
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. = ALIGN(4);
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}
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.overlay_data_end
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{
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LONG(0);
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. = ALIGN(4);
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}
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} > RAM
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.dummy_overlay_data (.) (NOLOAD) :
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{
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__dummy_overlay_data_end__ = .;
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} > RAM
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ASSERT(__dummy_overlay_data_end__ - __overlay_data_start__ <= OVERLAY_DATA_SECTION_SIZE, "overlay sections too large")
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__sram_text_data_start_flash__ = __load_stop_overlay_data_end;
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__sram_text_data_start__ = __dummy_overlay_data_end__;
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.sram_text (RAM_TO_RAMX(__sram_text_data_start__)) :
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AT (__sram_text_data_start_flash__)
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{
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*(.sram_text*)
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*:filter_process.o(.text*)
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*(.fast_text_sram*)
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*(.text*)
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*(.flash_text*)
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KEEP(*(.init))
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KEEP(*(.fini))
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/* .ctors */
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*crtbegin.o(.ctors)
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*crtbegin?.o(.ctors)
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*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)
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*(SORT(.ctors.*))
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*(.ctors)
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/* .dtors */
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*crtbegin.o(.dtors)
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*crtbegin?.o(.dtors)
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*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)
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*(SORT(.dtors.*))
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*(.dtors)
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. = ALIGN(4);
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} > RAMX
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.sram_data (RAMX_TO_RAM(ADDR(.sram_text) + SIZEOF(.sram_text))) :
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AT (__sram_text_data_start_flash__ + SIZEOF(.sram_text))
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{
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*(.rodata*)
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*(.sram_data*)
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. = ALIGN(4);
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} > RAM
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__sram_text_data_end_flash__ = __sram_text_data_start_flash__ +
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SIZEOF(.sram_text) + SIZEOF(.sram_data);
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.sram_bss (.) (NOLOAD) :
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{
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__sram_bss_start__ = .;
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*(.sram_bss*)
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. = ALIGN(4);
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__sram_bss_end__ = .;
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} > RAM
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.text (FLASH_TO_FLASHX(__sram_text_data_end_flash__)) : AT (FLASHX_TO_FLASH(ADDR(.text)))
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{
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__dummy_text = .;
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} > FLASHX
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.ARM.extab (.) : AT (FLASHX_TO_FLASH(ADDR(.ARM.extab)))
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{
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*(.ARM.extab* .gnu.linkonce.armextab.*)
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} > FLASHX
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__exidx_start = .;
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/* .ARM.exidx contains R_ARM_PREL31 (+-0x40000000) offset to functions, which means
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* the session location cannot be too far away from the function addresses */
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.ARM.exidx (.) : AT (FLASHX_TO_FLASH(ADDR(.ARM.exidx)))
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{
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*(.ARM.exidx* .gnu.linkonce.armexidx.*)
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} > FLASHX
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__exidx_end = .;
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. = FLASHX_TO_FLASH(.);
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.rodata (.) :
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{
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__dummy_rodata = .;
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*(.flash_rodata*)
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KEEP(*(.eh_frame*))
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*(.note.gnu.build-id)
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} > FLASH
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/* To copy multiple FLASH to RAM sections,
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* uncomment .copy.table section and,
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* define __STARTUP_COPY_MULTIPLE in startup_ARMCMx.S */
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/*
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.copy.table (.) :
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{
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. = ALIGN(4);
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__copy_table_start__ = .;
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LONG (__etext)
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LONG (__data_start__)
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LONG (__data_end__ - __data_start__)
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LONG (__etext2)
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LONG (__data2_start__)
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LONG (__data2_end__ - __data2_start__)
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__copy_table_end__ = .;
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} > FLASH
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*/
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/* To clear multiple BSS sections,
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* uncomment .zero.table section and,
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* define __STARTUP_CLEAR_BSS_MULTIPLE in startup_ARMCMx.S */
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/*
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.zero.table (.) :
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{
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. = ALIGN(4);
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__zero_table_start__ = .;
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LONG (__bss_start__)
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LONG (__bss_end__ - __bss_start__)
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LONG (__bss2_start__)
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LONG (__bss2_end__ - __bss2_start__)
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__zero_table_end__ = .;
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} > FLASH
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*/
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__etext = .;
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#ifdef DATA_BUF_START
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.data_dummy (NOLOAD) :
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{
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__data_dummy_start = ABSOLUTE(.);
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. = DATA_BUF_START - __data_dummy_start;
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} > RAM
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#endif
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.data : AT (__etext)
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{
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__data_start__ = .;
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*(vtable)
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*(.data*)
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. = ALIGN(4);
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/* preinit data */
|
|
PROVIDE_HIDDEN (__preinit_array_start = .);
|
|
KEEP(*(.preinit_array))
|
|
PROVIDE_HIDDEN (__preinit_array_end = .);
|
|
|
|
. = ALIGN(4);
|
|
/* init data */
|
|
PROVIDE_HIDDEN (__init_array_start = .);
|
|
KEEP(*(SORT(.init_array.*)))
|
|
KEEP(*(.init_array))
|
|
PROVIDE_HIDDEN (__init_array_end = .);
|
|
|
|
. = ALIGN(4);
|
|
/* finit data */
|
|
PROVIDE_HIDDEN (__fini_array_start = .);
|
|
KEEP(*(SORT(.fini_array.*)))
|
|
KEEP(*(.fini_array))
|
|
PROVIDE_HIDDEN (__fini_array_end = .);
|
|
|
|
KEEP(*(.jcr*))
|
|
. = ALIGN(4);
|
|
/* All data end */
|
|
__data_end__ = .;
|
|
|
|
} > RAM
|
|
|
|
.bss (.) (NOLOAD) :
|
|
{
|
|
. = ALIGN(4);
|
|
__bss_start__ = .;
|
|
*(.bss*)
|
|
*(COMMON)
|
|
. = ALIGN(4);
|
|
__bss_end__ = .;
|
|
} > RAM
|
|
|
|
.heap (.) (NOLOAD) :
|
|
{
|
|
. = ALIGN(8);
|
|
__HeapBase = .;
|
|
__end__ = .;
|
|
end = __end__;
|
|
. += HEAP_SECTION_SIZE;
|
|
. = ALIGN(8);
|
|
__HeapLimit = .;
|
|
} > RAM
|
|
|
|
/* .stack_dummy section doesn't contains any symbols. It is only
|
|
* used for linker to calculate size of stack sections, and assign
|
|
* values to stack symbols later */
|
|
.stack_dummy (.) (COPY) :
|
|
{
|
|
. = STACK_SECTION_SIZE;
|
|
. = ALIGN(8);
|
|
} > RAM
|
|
|
|
/* Set stack top to end of RAM, and stack limit move down by
|
|
* size of stack_dummy section */
|
|
__StackTop = ORIGIN(RAM) + LENGTH(RAM);
|
|
__StackLimit = __StackTop - SIZEOF(.stack_dummy);
|
|
PROVIDE(__stack = __StackTop);
|
|
|
|
/* Check if data + heap + stack exceeds RAM limit */
|
|
ASSERT(__StackLimit >= __HeapLimit, "region RAM overflowed with stack")
|
|
__free_ram = __StackLimit - __HeapLimit;
|
|
|
|
. = __etext + SIZEOF(.data);
|
|
.build_info (.) :
|
|
{
|
|
KEEP(*(.build_info))
|
|
. = ALIGN(4);
|
|
} > FLASH = 0x00000000
|
|
|
|
/* The following section be the last loaded section */
|
|
.code_start_addr (.) :
|
|
{
|
|
LONG(BUILD_INFO_MAGIC);
|
|
LONG(ABSOLUTE(__flash_start));
|
|
} > FLASH
|
|
|
|
__flash_end = .;
|
|
|
|
.custom_parameter (ORIGIN(FLASH_NC) + LENGTH(FLASH_NC) - FACTORY_SECTION_SIZE - RESERVED_SECTION_SIZE -
|
|
AUD_SECTION_SIZE - USERDATA_SECTION_SIZE*2 - CUSTOM_PARAMETER_SECTION_SIZE) (NOLOAD) :
|
|
{
|
|
__custom_parameter_start = .;
|
|
. = CUSTOM_PARAMETER_SECTION_SIZE;
|
|
__custom_parameter_end = .;
|
|
} > FLASH_NC
|
|
|
|
.userdata (ORIGIN(FLASH_NC) + LENGTH(FLASH_NC) - FACTORY_SECTION_SIZE - RESERVED_SECTION_SIZE -
|
|
AUD_SECTION_SIZE - USERDATA_SECTION_SIZE*2) (NOLOAD) :
|
|
{
|
|
__userdata_start = .;
|
|
. = USERDATA_SECTION_SIZE*2;
|
|
__userdata_end = .;
|
|
} > FLASH_NC
|
|
|
|
.audio (ORIGIN(FLASH_NC) + LENGTH(FLASH_NC) - FACTORY_SECTION_SIZE - RESERVED_SECTION_SIZE -
|
|
AUD_SECTION_SIZE) (NOLOAD) :
|
|
{
|
|
__aud_start = .;
|
|
. = AUD_SECTION_SIZE;
|
|
__aud_end = .;
|
|
} > FLASH_NC
|
|
|
|
.reserved (ORIGIN(FLASH_NC) + LENGTH(FLASH_NC) - FACTORY_SECTION_SIZE - RESERVED_SECTION_SIZE) (NOLOAD) :
|
|
{
|
|
__reserved_start = .;
|
|
. = RESERVED_SECTION_SIZE;
|
|
__reserved_end = .;
|
|
} > FLASH_NC
|
|
|
|
.factory (ORIGIN(FLASH_NC) + LENGTH(FLASH_NC) - FACTORY_SECTION_SIZE) (NOLOAD) :
|
|
{
|
|
__factory_start = .;
|
|
. = FACTORY_SECTION_SIZE;
|
|
__factory_end = .;
|
|
} > FLASH_NC
|
|
|
|
ASSERT(FLASH_NC_TO_C(__custom_parameter_start) >= __flash_end, "region FLASH overflowed")
|
|
__free_flash = FLASH_NC_TO_C(__custom_parameter_start) - __flash_end;
|
|
}
|
|
|