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📁 LPC2129 pwm sample code
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/* Default linker script, for normal executables */OUTPUT_FORMAT("elf32-littlearm", "elf32-bigarm",	      "elf32-littlearm")OUTPUT_ARCH(arm)ENTRY(_start)SEARCH_DIR("/gnude/arm-elf/lib");/* Do we need any of these for elf?   __DYNAMIC = 0;    */SECTIONS{  /* Read-only sections, merged into text segment: */  . = 0x0;  /* start at the start and use interp for interrupts */  .interp         : { *(.interp) }  .hash           : { *(.hash) }  .dynsym         : { *(.dynsym) }  .dynstr         : { *(.dynstr) }  .gnu.version    : { *(.gnu.version) }  .gnu.version_d  : { *(.gnu.version_d) }  .gnu.version_r  : { *(.gnu.version_r) }  .rel.init       : { *(.rel.init) }  .rela.init      : { *(.rela.init) }  .rel.text       : { *(.rel.text .rel.text.* .rel.gnu.linkonce.t.*) }  .rela.text      : { *(.rela.text .rela.text.* .rela.gnu.linkonce.t.*) }  .rel.fini       : { *(.rel.fini) }  .rela.fini      : { *(.rela.fini) }  .rel.rodata     : { *(.rel.rodata .rel.rodata.* .rel.gnu.linkonce.r.*) }  .rela.rodata    : { *(.rela.rodata .rela.rodata.* .rela.gnu.linkonce.r.*) }  .rel.data       : { *(.rel.data .rel.data.* .rel.gnu.linkonce.d.*) }  .rela.data      : { *(.rela.data .rela.data.* .rela.gnu.linkonce.d.*) }  .rel.tdata	  : { *(.rel.tdata .rel.tdata.* .rel.gnu.linkonce.td.*) }  .rela.tdata	  : { *(.rela.tdata .rela.tdata.* .rela.gnu.linkonce.td.*) }  .rel.tbss	  : { *(.rel.tbss .rel.tbss.* .rel.gnu.linkonce.tb.*) }  .rela.tbss	  : { *(.rela.tbss .rela.tbss.* .rela.gnu.linkonce.tb.*) }  .rel.ctors      : { *(.rel.ctors) }  .rela.ctors     : { *(.rela.ctors) }  .rel.dtors      : { *(.rel.dtors) }  .rela.dtors     : { *(.rela.dtors) }  .rel.got        : { *(.rel.got) }  .rela.got       : { *(.rela.got) }  .rel.sdata      : { *(.rel.sdata .rel.sdata.* .rel.gnu.linkonce.s.*) }  .rela.sdata     : { *(.rela.sdata .rela.sdata.* .rela.gnu.linkonce.s.*) }  .rel.sbss       : { *(.rel.sbss .rel.sbss.* .rel.gnu.linkonce.sb.*) }  .rela.sbss      : { *(.rela.sbss .rela.sbss.* .rela.gnu.linkonce.sb.*) }  .rel.sdata2     : { *(.rel.sdata2 .rel.sdata2.* .rel.gnu.linkonce.s2.*) }  .rela.sdata2    : { *(.rela.sdata2 .rela.sdata2.* .rela.gnu.linkonce.s2.*) }  .rel.sbss2      : { *(.rel.sbss2 .rel.sbss2.* .rel.gnu.linkonce.sb2.*) }  .rela.sbss2     : { *(.rela.sbss2 .rela.sbss2.* .rela.gnu.linkonce.sb2.*) }  .rel.bss        : { *(.rel.bss .rel.bss.* .rel.gnu.linkonce.b.*) }  .rela.bss       : { *(.rela.bss .rela.bss.* .rela.gnu.linkonce.b.*) }  .rel.plt        : { *(.rel.plt) }  .rela.plt       : { *(.rela.plt) }  .init           :  {    KEEP (*(.init))  } =0  .plt            : { *(.plt) }  .text           :  {    *(.text .stub .text.* .gnu.linkonce.t.*)    /* .gnu.warning sections are handled specially by elf32.em.  */    *(.gnu.warning)    *(.glue_7t) *(.glue_7)  } =0  .fini           :  {    KEEP (*(.fini))  } =0  PROVIDE (__etext = .);  PROVIDE (_etext = .);  PROVIDE (etext = .);  .rodata         : { *(.rodata .rodata.* .gnu.linkonce.r.*) }  .rodata1        : { *(.rodata1) }  .sdata2         : { *(.sdata2 .sdata2.* .gnu.linkonce.s2.*) }  .sbss2          : { *(.sbss2 .sbss2.* .gnu.linkonce.sb2.*) }  .note.gnu.arm.ident : { KEEP (*(.note.gnu.arm.ident)) }  .eh_frame_hdr : { *(.eh_frame_hdr) }  /* Adjust the address for the data segment.  We want to adjust up to     the same address within the page on the next page up.  */  . = ALIGN(256) + (. & (256 - 1));  /* Ensure the __preinit_array_start label is properly aligned.  We     could instead move the label definition inside the section, but     the linker would then create the section even if it turns out to     be empty, which isn't pretty.  */  . = ALIGN(32 / 8);  PROVIDE (__preinit_array_start = .);  .preinit_array     : { *(.preinit_array) }  PROVIDE (__preinit_array_end = .);  PROVIDE (__init_array_start = .);  .init_array     : { *(.init_array) }  PROVIDE (__init_array_end = .);  PROVIDE (__fini_array_start = .);  .fini_array     : { *(.fini_array) }  PROVIDE (__fini_array_end = .);  .data           :  {    __data_start = . ;    *(.data .data.* .gnu.linkonce.d.*)    SORT(CONSTRUCTORS)  }  .data1          : { *(.data1) }  .tdata	  : { *(.tdata .tdata.* .gnu.linkonce.td.*) }  .tbss		  : { *(.tbss .tbss.* .gnu.linkonce.tb.*) *(.tcommon) }  .eh_frame       : { KEEP (*(.eh_frame)) }  .gcc_except_table   : { *(.gcc_except_table) }  .dynamic        : { *(.dynamic) }  .ctors          :  {    /* gcc uses crtbegin.o to find the start of       the constructors, so we make sure it is       first.  Because this is a wildcard, it       doesn't matter if the user does not       actually link against crtbegin.o; the       linker won't look for a file to match a       wildcard.  The wildcard also means that it       doesn't matter which directory crtbegin.o       is in.  */    KEEP (*crtbegin*.o(.ctors))    /* We don't want to include the .ctor section from       from the crtend.o file until after the sorted ctors.       The .ctor section from the crtend file contains the       end of ctors marker and it must be last */    KEEP (*(EXCLUDE_FILE (*crtend*.o ) .ctors))    KEEP (*(SORT(.ctors.*)))    KEEP (*(.ctors))  }  .dtors          :  {    KEEP (*crtbegin*.o(.dtors))    KEEP (*(EXCLUDE_FILE (*crtend*.o ) .dtors))    KEEP (*(SORT(.dtors.*)))    KEEP (*(.dtors))  }  .jcr            : { KEEP (*(.jcr)) }  .got            : { *(.got.plt) *(.got) }  /* We want the small data sections together, so single-instruction offsets     can access them all, and initialized data all before uninitialized, so     we can shorten the on-disk segment size.  */  .sdata          :  {    *(.sdata .sdata.* .gnu.linkonce.s.*)  }  _edata = .;  PROVIDE (edata = .);  . = 0x40000000;  __bss_start = .;  __bss_start__ = .;  .sbss           :  {    PROVIDE (__sbss_start = .);    PROVIDE (___sbss_start = .);    *(.dynsbss)    *(.sbss .sbss.* .gnu.linkonce.sb.*)    *(.scommon)    PROVIDE (__sbss_end = .);    PROVIDE (___sbss_end = .);  }  .bss            :  {   *(.dynbss)   *(.bss .bss.* .gnu.linkonce.b.*)   *(COMMON)   /* Align here to ensure that the .bss section occupies space up to      _end.  Align after .bss to ensure correct alignment even if the      .bss section disappears because there are no input sections.  */   . = ALIGN(32 / 8);  }  . = ALIGN(32 / 8);  _end = .;  _bss_end__ = . ; __bss_end__ = . ; __end__ = . ;  PROVIDE (end = .);  /* Stabs debugging sections.  */  .stab          0 : { *(.stab) }  .stabstr       0 : { *(.stabstr) }  .stab.excl     0 : { *(.stab.excl) }  .stab.exclstr  0 : { *(.stab.exclstr) }  .stab.index    0 : { *(.stab.index) }  .stab.indexstr 0 : { *(.stab.indexstr) }  .comment       0 : { *(.comment) }  /* DWARF debug sections.     Symbols in the DWARF debugging sections are relative to the beginning     of the section so we begin them at 0.  */  /* DWARF 1 */  .debug          0 : { *(.debug) }  .line           0 : { *(.line) }  /* GNU DWARF 1 extensions */  .debug_srcinfo  0 : { *(.debug_srcinfo) }  .debug_sfnames  0 : { *(.debug_sfnames) }  /* DWARF 1.1 and DWARF 2 */  .debug_aranges  0 : { *(.debug_aranges) }  .debug_pubnames 0 : { *(.debug_pubnames) }  /* DWARF 2 */  .debug_info     0 : { *(.debug_info .gnu.linkonce.wi.*) }  .debug_abbrev   0 : { *(.debug_abbrev) }  .debug_line     0 : { *(.debug_line) }  .debug_frame    0 : { *(.debug_frame) }  .debug_str      0 : { *(.debug_str) }  .debug_loc      0 : { *(.debug_loc) }  .debug_macinfo  0 : { *(.debug_macinfo) }  /* SGI/MIPS DWARF 2 extensions */  .debug_weaknames 0 : { *(.debug_weaknames) }  .debug_funcnames 0 : { *(.debug_funcnames) }  .debug_typenames 0 : { *(.debug_typenames) }  .debug_varnames  0 : { *(.debug_varnames) }    .stack         0x40080000 :  {    _stack = .;    *(.stack)  }}

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