/* * GENERATED FILE - DO NOT EDIT * Copyright (c) 2008-2013 Code Red Technologies Ltd, * Copyright 2015, 2018-2019 NXP * (c) NXP Semiconductors 2013-2019 * Generated linker script file for LPC11U37/401 * Created from linkscript.ldt by FMCreateLinkLibraries * Using Freemarker v2.3.23 * MCUXpresso IDE v11.0.0 [Build 2516] [2019-06-05] on Sep 6, 2019 12:16:06 PM */ MEMORY { /* Define each memory region */ MFlash128 (rx) : ORIGIN = 0x0, LENGTH = 0x20000 /* 128K bytes (alias Flash) */ RamLoc8 (rwx) : ORIGIN = 0x10000000, LENGTH = 0x2000 /* 8K bytes (alias RAM) */ RamUsb2 (rwx) : ORIGIN = 0x20004000, LENGTH = 0x800 /* 2K bytes (alias RAM2) */ } /* Define a symbol for the top of each memory region */ __base_MFlash128 = 0x0 ; /* MFlash128 */ __base_Flash = 0x0 ; /* Flash */ __top_MFlash128 = 0x0 + 0x20000 ; /* 128K bytes */ __top_Flash = 0x0 + 0x20000 ; /* 128K bytes */ __base_RamLoc8 = 0x10000000 ; /* RamLoc8 */ __base_RAM = 0x10000000 ; /* RAM */ __top_RamLoc8 = 0x10000000 + 0x2000 ; /* 8K bytes */ __top_RAM = 0x10000000 + 0x2000 ; /* 8K bytes */ __base_RamUsb2 = 0x20004000 ; /* RamUsb2 */ __base_RAM2 = 0x20004000 ; /* RAM2 */ __top_RamUsb2 = 0x20004000 + 0x800 ; /* 2K bytes */ __top_RAM2 = 0x20004000 + 0x800 ; /* 2K bytes */ ENTRY(ResetISR) SECTIONS { /* MAIN TEXT SECTION */ .text : ALIGN(4) { FILL(0xff) __vectors_start__ = ABSOLUTE(.) ; KEEP(*(.isr_vector)) /* Global Section Table */ . = ALIGN(4) ; __section_table_start = .; __data_section_table = .; LONG(LOADADDR(.data)); LONG( ADDR(.data)); LONG( SIZEOF(.data)); LONG(LOADADDR(.data_RAM2)); LONG( ADDR(.data_RAM2)); LONG( SIZEOF(.data_RAM2)); __data_section_table_end = .; __bss_section_table = .; LONG( ADDR(.bss)); LONG( SIZEOF(.bss)); LONG( ADDR(.bss_RAM2)); LONG( SIZEOF(.bss_RAM2)); __bss_section_table_end = .; __section_table_end = . ; /* End of Global Section Table */ *(.after_vectors*) } > MFlash128 .text : ALIGN(4) { *(.text*) *(.rodata .rodata.* .constdata .constdata.*) . = ALIGN(4); } > MFlash128 /* * for exception handling/unwind - some Newlib functions (in common * with C++ and STDC++) use this. */ .ARM.extab : ALIGN(4) { *(.ARM.extab* .gnu.linkonce.armextab.*) } > MFlash128 __exidx_start = .; .ARM.exidx : ALIGN(4) { *(.ARM.exidx* .gnu.linkonce.armexidx.*) } > MFlash128 __exidx_end = .; _etext = .; /* DATA section for RamUsb2 */ .data_RAM2 : ALIGN(4) { FILL(0xff) PROVIDE(__start_data_RAM2 = .) ; *(.ramfunc.$RAM2) *(.ramfunc.$RamUsb2) *(.data.$RAM2) *(.data.$RamUsb2) *(.data.$RAM2.*) *(.data.$RamUsb2.*) . = ALIGN(4) ; PROVIDE(__end_data_RAM2 = .) ; } > RamUsb2 AT>MFlash128 /* MAIN DATA SECTION */ .uninit_RESERVED (NOLOAD) : { . = ALIGN(4) ; KEEP(*(.bss.$RESERVED*)) . = ALIGN(4) ; _end_uninit_RESERVED = .; } > RamLoc8 /* Main DATA section (RamLoc8) */ .data : ALIGN(4) { FILL(0xff) _data = . ; *(vtable) *(.ramfunc*) *(.data*) . = ALIGN(4) ; _edata = . ; } > RamLoc8 AT>MFlash128 /* BSS section for RamUsb2 */ .bss_RAM2 : { . = ALIGN(4) ; PROVIDE(__start_bss_RAM2 = .) ; *(.bss.$RAM2) *(.bss.$RamUsb2) *(.bss.$RAM2.*) *(.bss.$RamUsb2.*) . = ALIGN (. != 0 ? 4 : 1) ; /* avoid empty segment */ PROVIDE(__end_bss_RAM2 = .) ; } > RamUsb2 /* MAIN BSS SECTION */ .bss : { . = ALIGN(4) ; _bss = .; *(.bss*) *(COMMON) . = ALIGN(4) ; _ebss = .; PROVIDE(end = .); } > RamLoc8 /* NOINIT section for RamUsb2 */ .noinit_RAM2 (NOLOAD) : { . = ALIGN(4) ; *(.noinit.$RAM2) *(.noinit.$RamUsb2) *(.noinit.$RAM2.*) *(.noinit.$RamUsb2.*) . = ALIGN(4) ; } > RamUsb2 /* DEFAULT NOINIT SECTION */ .noinit (NOLOAD): { . = ALIGN(4) ; _noinit = .; *(.noinit*) . = ALIGN(4) ; _end_noinit = .; } > RamLoc8 PROVIDE(_pvHeapStart = DEFINED(__user_heap_base) ? __user_heap_base : .); PROVIDE(_vStackTop = DEFINED(__user_stack_top) ? __user_stack_top : __top_RamLoc8 - 0); /* ## Create checksum value (used in startup) ## */ PROVIDE(__valid_user_code_checksum = 0 - (_vStackTop + (ResetISR + 1) + (( DEFINED(NMI_Handler) ? NMI_Handler : M0_NMI_Handler ) + 1) + (( DEFINED(HardFault_Handler) ? HardFault_Handler : M0_HardFault_Handler ) + 1) ) ); /* Provide basic symbols giving location and size of main text * block, including initial values of RW data sections. Note that * these will need extending to give a complete picture with * complex images (e.g multiple Flash banks). */ _image_start = LOADADDR(.text); _image_end = LOADADDR(.data) + SIZEOF(.data); _image_size = _image_end - _image_start; }