1/* 2** ################################################################### 3** Processor: LPC5504JHI48CPXXXX 4** Compiler: GNU C Compiler 5** Reference manual: LPC55S1x/LPC551x User manual Rev.0.6 15 November 2019 6** Version: rev. 1.0, 2020-04-09 7** Build: b200831 8** 9** Abstract: 10** Linker file for the GNU C Compiler 11** 12** Copyright 2016 Freescale Semiconductor, Inc. 13** Copyright 2016-2020 NXP 14** All rights reserved. 15** 16** SPDX-License-Identifier: BSD-3-Clause 17** 18** http: www.nxp.com 19** mail: support@nxp.com 20** 21** ################################################################### 22*/ 23 24 25 26/* Entry Point */ 27ENTRY(Reset_Handler) 28 29HEAP_SIZE = DEFINED(__heap_size__) ? __heap_size__ : 0x0400; 30STACK_SIZE = DEFINED(__stack_size__) ? __stack_size__ : 0x0800; 31 32/* Specify the memory areas */ 33MEMORY 34{ 35 m_interrupts (RX) : ORIGIN = 0x00000000, LENGTH = 0x00000200 36 m_text (RX) : ORIGIN = 0x00000200, LENGTH = 0x0001FE00 37 m_data (RW) : ORIGIN = 0x20000000, LENGTH = 0x00010000 38 m_sramx (RW) : ORIGIN = 0x04000000, LENGTH = 0x00004000 39} 40 41/* Define output sections */ 42SECTIONS 43{ 44 /* The startup code goes first into internal flash */ 45 .interrupts : 46 { 47 . = ALIGN(4); 48 KEEP(*(.isr_vector)) /* Startup code */ 49 . = ALIGN(4); 50 } > m_interrupts 51 52 /* The program code and other data goes into internal flash */ 53 .text : 54 { 55 . = ALIGN(4); 56 *(.text) /* .text sections (code) */ 57 *(.text*) /* .text* sections (code) */ 58 *(.rodata) /* .rodata sections (constants, strings, etc.) */ 59 *(.rodata*) /* .rodata* sections (constants, strings, etc.) */ 60 *(.glue_7) /* glue arm to thumb code */ 61 *(.glue_7t) /* glue thumb to arm code */ 62 *(.eh_frame) 63 KEEP (*(.init)) 64 KEEP (*(.fini)) 65 . = ALIGN(4); 66 } > m_text 67 68 .ARM.extab : 69 { 70 *(.ARM.extab* .gnu.linkonce.armextab.*) 71 } > m_text 72 73 .ARM : 74 { 75 __exidx_start = .; 76 *(.ARM.exidx*) 77 __exidx_end = .; 78 } > m_text 79 80 .ctors : 81 { 82 __CTOR_LIST__ = .; 83 /* gcc uses crtbegin.o to find the start of 84 the constructors, so we make sure it is 85 first. Because this is a wildcard, it 86 doesn't matter if the user does not 87 actually link against crtbegin.o; the 88 linker won't look for a file to match a 89 wildcard. The wildcard also means that it 90 doesn't matter which directory crtbegin.o 91 is in. */ 92 KEEP (*crtbegin.o(.ctors)) 93 KEEP (*crtbegin?.o(.ctors)) 94 /* We don't want to include the .ctor section from 95 from the crtend.o file until after the sorted ctors. 96 The .ctor section from the crtend file contains the 97 end of ctors marker and it must be last */ 98 KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)) 99 KEEP (*(SORT(.ctors.*))) 100 KEEP (*(.ctors)) 101 __CTOR_END__ = .; 102 } > m_text 103 104 .dtors : 105 { 106 __DTOR_LIST__ = .; 107 KEEP (*crtbegin.o(.dtors)) 108 KEEP (*crtbegin?.o(.dtors)) 109 KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)) 110 KEEP (*(SORT(.dtors.*))) 111 KEEP (*(.dtors)) 112 __DTOR_END__ = .; 113 } > m_text 114 115 .preinit_array : 116 { 117 PROVIDE_HIDDEN (__preinit_array_start = .); 118 KEEP (*(.preinit_array*)) 119 PROVIDE_HIDDEN (__preinit_array_end = .); 120 } > m_text 121 122 .init_array : 123 { 124 PROVIDE_HIDDEN (__init_array_start = .); 125 KEEP (*(SORT(.init_array.*))) 126 KEEP (*(.init_array*)) 127 PROVIDE_HIDDEN (__init_array_end = .); 128 } > m_text 129 130 .fini_array : 131 { 132 PROVIDE_HIDDEN (__fini_array_start = .); 133 KEEP (*(SORT(.fini_array.*))) 134 KEEP (*(.fini_array*)) 135 PROVIDE_HIDDEN (__fini_array_end = .); 136 } > m_text 137 138 __etext = .; /* define a global symbol at end of code */ 139 __DATA_ROM = .; /* Symbol is used by startup for data initialization */ 140 141 .data : AT(__DATA_ROM) 142 { 143 . = ALIGN(4); 144 __DATA_RAM = .; 145 __data_start__ = .; /* create a global symbol at data start */ 146 *(.ramfunc*) /* for functions in ram */ 147 *(.data) /* .data sections */ 148 *(.data*) /* .data* sections */ 149 KEEP(*(.jcr*)) 150 . = ALIGN(4); 151 __data_end__ = .; /* define a global symbol at data end */ 152 } > m_data 153 154 __DATA_END = __DATA_ROM + (__data_end__ - __data_start__); 155 text_end = ORIGIN(m_text) + LENGTH(m_text); 156 ASSERT(__DATA_END <= text_end, "region m_text overflowed with text and data") 157 158 /* Uninitialized data section */ 159 .bss : 160 { 161 /* This is used by the startup in order to initialize the .bss section */ 162 . = ALIGN(4); 163 __START_BSS = .; 164 __bss_start__ = .; 165 *(.bss) 166 *(.bss*) 167 *(COMMON) 168 . = ALIGN(4); 169 __bss_end__ = .; 170 __END_BSS = .; 171 } > m_data 172 173 .heap : 174 { 175 . = ALIGN(8); 176 __end__ = .; 177 PROVIDE(end = .); 178 __HeapBase = .; 179 . += HEAP_SIZE; 180 __HeapLimit = .; 181 __heap_limit = .; /* Add for _sbrk */ 182 } > m_data 183 184 .stack : 185 { 186 . = ALIGN(8); 187 . += STACK_SIZE; 188 } > m_data 189 190 191 /* Initializes stack on the end of block */ 192 __StackTop = ORIGIN(m_data) + LENGTH(m_data); 193 __StackLimit = __StackTop - STACK_SIZE; 194 PROVIDE(__stack = __StackTop); 195 196 .ARM.attributes 0 : { *(.ARM.attributes) } 197 198 ASSERT(__StackLimit >= __HeapLimit, "region m_data overflowed with stack and heap") 199} 200 201