MEMORY { UNPLACED_SECTIONS (wx) : ORIGIN = 0x100000000, LENGTH = 0 CM3_System_Control_Space (wx) : ORIGIN = 0xe000e000, LENGTH = 0x00001000 RAM (wx) : ORIGIN = 0x20000000, LENGTH = 0x00004000 FLASH (rx) : ORIGIN = 0x00002000, LENGTH = 0x00020000 - 0x2000 } SECTIONS { __CM3_System_Control_Space_segment_start__ = 0xe000e000; __CM3_System_Control_Space_segment_end__ = 0xe000f000; __RAM_segment_start__ = 0x20000000; __RAM_segment_end__ = 0x20004000; __FLASH_segment_start__ = 0x00002000; __FLASH_segment_end__ = 0x00020000; __STACKSIZE__ = 256; __STACKSIZE_PROCESS__ = 0; __STACKSIZE_IRQ__ = 0; __STACKSIZE_FIQ__ = 0; __STACKSIZE_SVC__ = 0; __STACKSIZE_ABT__ = 0; __STACKSIZE_UND__ = 0; __HEAPSIZE__ = 128; __vectors_ram_load_start__ = ALIGN(__RAM_segment_start__ , 256); .vectors_ram ALIGN(__RAM_segment_start__ , 256) (NOLOAD) : AT(ALIGN(__RAM_segment_start__ , 256)) { __vectors_ram_start__ = .; *(.vectors_ram .vectors_ram.*) } __vectors_ram_end__ = __vectors_ram_start__ + SIZEOF(.vectors_ram); __vectors_ram_load_end__ = __vectors_ram_end__; . = ASSERT(__vectors_ram_end__ >= __RAM_segment_start__ && __vectors_ram_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .vectors_ram is too large to fit in RAM memory segment"); __vectors_load_start__ = ALIGN(__FLASH_segment_start__ , 256); .vectors ALIGN(__FLASH_segment_start__ , 256) : AT(ALIGN(__FLASH_segment_start__ , 256)) { __vectors_start__ = .; *(.vectors .vectors.*) } __vectors_end__ = __vectors_start__ + SIZEOF(.vectors); __vectors_load_end__ = __vectors_end__; . = ASSERT(__vectors_end__ >= __FLASH_segment_start__ && __vectors_end__ <= (__FLASH_segment_start__ + 0x00020000) , "error: .vectors is too large to fit in FLASH memory segment"); __init_load_start__ = ALIGN(__vectors_end__ , 4); .init ALIGN(__vectors_end__ , 4) : AT(ALIGN(__vectors_end__ , 4)) { __init_start__ = .; *(.init .init.*) } __init_end__ = __init_start__ + SIZEOF(.init); __init_load_end__ = __init_end__; . = ASSERT(__init_end__ >= __FLASH_segment_start__ && __init_end__ <= (__FLASH_segment_start__ + 0x00020000) , "error: .init is too large to fit in FLASH memory segment"); __text_load_start__ = ALIGN(__init_end__ , 4); .text ALIGN(__init_end__ , 4) : AT(ALIGN(__init_end__ , 4)) { __text_start__ = .; *(.text .text.* .glue_7t .glue_7 .gnu.linkonce.t.* .gcc_except_table .ARM.extab* .gnu.linkonce.armextab.*) } __text_end__ = __text_start__ + SIZEOF(.text); __text_load_end__ = __text_end__; . = ASSERT(__text_end__ >= __FLASH_segment_start__ && __text_end__ <= (__FLASH_segment_start__ + 0x00020000) , "error: .text is too large to fit in FLASH memory segment"); __dtors_load_start__ = ALIGN(__text_end__ , 4); .dtors ALIGN(__text_end__ , 4) : AT(ALIGN(__text_end__ , 4)) { __dtors_start__ = .; KEEP (*(SORT(.dtors.*))) KEEP (*(.dtors)) KEEP (*(.fini_array .fini_array.*)) } __dtors_end__ = __dtors_start__ + SIZEOF(.dtors); __dtors_load_end__ = __dtors_end__; . = ASSERT(__dtors_end__ >= __FLASH_segment_start__ && __dtors_end__ <= (__FLASH_segment_start__ + 0x00020000) , "error: .dtors is too large to fit in FLASH memory segment"); __ctors_load_start__ = ALIGN(__dtors_end__ , 4); .ctors ALIGN(__dtors_end__ , 4) : AT(ALIGN(__dtors_end__ , 4)) { __ctors_start__ = .; KEEP (*(SORT(.ctors.*))) KEEP (*(.ctors)) KEEP (*(.init_array .init_array.*)) } __ctors_end__ = __ctors_start__ + SIZEOF(.ctors); __ctors_load_end__ = __ctors_end__; . = ASSERT(__ctors_end__ >= __FLASH_segment_start__ && __ctors_end__ <= (__FLASH_segment_start__ + 0x00020000) , "error: .ctors is too large to fit in FLASH memory segment"); __rodata_load_start__ = ALIGN(__ctors_end__ , 4); .rodata ALIGN(__ctors_end__ , 4) : AT(ALIGN(__ctors_end__ , 4)) { __rodata_start__ = .; *(.rodata .rodata.* .gnu.linkonce.r.*) } __rodata_end__ = __rodata_start__ + SIZEOF(.rodata); __rodata_load_end__ = __rodata_end__; . = ASSERT(__rodata_end__ >= __FLASH_segment_start__ && __rodata_end__ <= (__FLASH_segment_start__ + 0x00020000) , "error: .rodata is too large to fit in FLASH memory segment"); __ARM.exidx_load_start__ = ALIGN(__rodata_end__ , 4); .ARM.exidx ALIGN(__rodata_end__ , 4) : AT(ALIGN(__rodata_end__ , 4)) { __ARM.exidx_start__ = .; __exidx_start = __ARM.exidx_start__; *(.ARM.exidx .ARM.exidx.*) } __ARM.exidx_end__ = __ARM.exidx_start__ + SIZEOF(.ARM.exidx); __exidx_end = __ARM.exidx_end__; __ARM.exidx_load_end__ = __ARM.exidx_end__; . = ASSERT(__ARM.exidx_end__ >= __FLASH_segment_start__ && __ARM.exidx_end__ <= (__FLASH_segment_start__ + 0x00020000) , "error: .ARM.exidx is too large to fit in FLASH memory segment"); __fast_load_start__ = ALIGN(__ARM.exidx_end__ , 4); .fast ALIGN(__vectors_ram_end__ , 4) : AT(ALIGN(__ARM.exidx_end__ , 4)) { __fast_start__ = .; *(.fast .fast.*) } __fast_end__ = __fast_start__ + SIZEOF(.fast); __fast_load_end__ = __fast_load_start__ + SIZEOF(.fast); . = ASSERT((__fast_load_start__ + SIZEOF(.fast)) >= __FLASH_segment_start__ && (__fast_load_start__ + SIZEOF(.fast)) <= (__FLASH_segment_start__ + 0x00020000) , "error: .fast is too large to fit in FLASH memory segment"); .fast_run ALIGN(__vectors_ram_end__ , 4) (NOLOAD) : { __fast_run_start__ = .; . = MAX(__fast_run_start__ + SIZEOF(.fast), .); } __fast_run_end__ = __fast_run_start__ + SIZEOF(.fast_run); __fast_run_load_end__ = __fast_run_end__; . = ASSERT(__fast_run_end__ >= __RAM_segment_start__ && __fast_run_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .fast_run is too large to fit in RAM memory segment"); __data_load_start__ = ALIGN(__fast_load_start__ + SIZEOF(.fast) , 4); .data ALIGN(__fast_run_end__ , 4) : AT(ALIGN(__fast_load_start__ + SIZEOF(.fast) , 4)) { __data_start__ = .; *(.data .data.* .gnu.linkonce.d.*) } __data_end__ = __data_start__ + SIZEOF(.data); __data_load_end__ = __data_load_start__ + SIZEOF(.data); . = ASSERT((__data_load_start__ + SIZEOF(.data)) >= __FLASH_segment_start__ && (__data_load_start__ + SIZEOF(.data)) <= (__FLASH_segment_start__ + 0x00020000) , "error: .data is too large to fit in FLASH memory segment"); .data_run ALIGN(__fast_run_end__ , 4) (NOLOAD) : { __data_run_start__ = .; . = MAX(__data_run_start__ + SIZEOF(.data), .); } __data_run_end__ = __data_run_start__ + SIZEOF(.data_run); __data_run_load_end__ = __data_run_end__; . = ASSERT(__data_run_end__ >= __RAM_segment_start__ && __data_run_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .data_run is too large to fit in RAM memory segment"); __bss_load_start__ = ALIGN(__data_run_end__ , 4); .bss ALIGN(__data_run_end__ , 4) (NOLOAD) : AT(ALIGN(__data_run_end__ , 4)) { __bss_start__ = .; *(.bss .bss.* .gnu.linkonce.b.*) *(COMMON) } __bss_end__ = __bss_start__ + SIZEOF(.bss); __bss_load_end__ = __bss_end__; . = ASSERT(__bss_end__ >= __RAM_segment_start__ && __bss_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .bss is too large to fit in RAM memory segment"); __non_init_load_start__ = ALIGN(__bss_end__ , 4); .non_init ALIGN(__bss_end__ , 4) (NOLOAD) : AT(ALIGN(__bss_end__ , 4)) { __non_init_start__ = .; *(.non_init .non_init.*) } __non_init_end__ = __non_init_start__ + SIZEOF(.non_init); __non_init_load_end__ = __non_init_end__; . = ASSERT(__non_init_end__ >= __RAM_segment_start__ && __non_init_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .non_init is too large to fit in RAM memory segment"); __heap_load_start__ = ALIGN(__non_init_end__ , 4); .heap ALIGN(__non_init_end__ , 4) (NOLOAD) : AT(ALIGN(__non_init_end__ , 4)) { __heap_start__ = .; *(.heap .heap.*) . = ALIGN(MAX(__heap_start__ + __HEAPSIZE__ , .), 4); } __heap_end__ = __heap_start__ + SIZEOF(.heap); __heap_load_end__ = __heap_end__; . = ASSERT(__heap_end__ >= __RAM_segment_start__ && __heap_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .heap is too large to fit in RAM memory segment"); __stack_load_start__ = ALIGN(__heap_end__ , 4); .stack ALIGN(__heap_end__ , 4) (NOLOAD) : AT(ALIGN(__heap_end__ , 4)) { __stack_start__ = .; *(.stack .stack.*) . = ALIGN(MAX(__stack_start__ + __STACKSIZE__ , .), 4); } __stack_end__ = __stack_start__ + SIZEOF(.stack); __stack_load_end__ = __stack_end__; . = ASSERT(__stack_end__ >= __RAM_segment_start__ && __stack_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .stack is too large to fit in RAM memory segment"); __stack_process_load_start__ = ALIGN(__stack_end__ , 4); .stack_process ALIGN(__stack_end__ , 4) (NOLOAD) : AT(ALIGN(__stack_end__ , 4)) { __stack_process_start__ = .; *(.stack_process .stack_process.*) . = ALIGN(MAX(__stack_process_start__ + __STACKSIZE_PROCESS__ , .), 4); } __stack_process_end__ = __stack_process_start__ + SIZEOF(.stack_process); __stack_process_load_end__ = __stack_process_end__; . = ASSERT(__stack_process_end__ >= __RAM_segment_start__ && __stack_process_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .stack_process is too large to fit in RAM memory segment"); __tbss_load_start__ = ALIGN(__stack_process_end__ , 4); .tbss ALIGN(__stack_process_end__ , 4) (NOLOAD) : AT(ALIGN(__stack_process_end__ , 4)) { __tbss_start__ = .; *(.tbss .tbss.*) } __tbss_end__ = __tbss_start__ + SIZEOF(.tbss); __tbss_load_end__ = __tbss_end__; . = ASSERT(__tbss_end__ >= __RAM_segment_start__ && __tbss_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .tbss is too large to fit in RAM memory segment"); __tdata_load_start__ = ALIGN(__data_load_start__ + SIZEOF(.data) , 4); .tdata ALIGN(__tbss_end__ , 4) : AT(ALIGN(__data_load_start__ + SIZEOF(.data) , 4)) { __tdata_start__ = .; *(.tdata .tdata.*) } __tdata_end__ = __tdata_start__ + SIZEOF(.tdata); __tdata_load_end__ = __tdata_load_start__ + SIZEOF(.tdata); __FLASH_segment_used_end__ = ALIGN(__data_load_start__ + SIZEOF(.data) , 4) + SIZEOF(.tdata); . = ASSERT((__tdata_load_start__ + SIZEOF(.tdata)) >= __FLASH_segment_start__ && (__tdata_load_start__ + SIZEOF(.tdata)) <= (__FLASH_segment_start__ + 0x00020000) , "error: .tdata is too large to fit in FLASH memory segment"); .tdata_run ALIGN(__tbss_end__ , 4) (NOLOAD) : { __tdata_run_start__ = .; . = MAX(__tdata_run_start__ + SIZEOF(.tdata), .); } __tdata_run_end__ = __tdata_run_start__ + SIZEOF(.tdata_run); __tdata_run_load_end__ = __tdata_run_end__; __RAM_segment_used_end__ = ALIGN(__tbss_end__ , 4) + SIZEOF(.tdata_run); . = ASSERT(__tdata_run_end__ >= __RAM_segment_start__ && __tdata_run_end__ <= (__RAM_segment_start__ + 0x00004000) , "error: .tdata_run is too large to fit in RAM memory segment"); }