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infinity.ld 3.5KB

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  1. /*
  2. * Linker script for Massdrop Infinity
  3. * Infinity has bootloader in top 4KB sector of flash and app should be placed after the area.
  4. *
  5. * based on mbed.org K20 ARM GCC linker script file: MK20D5.ld
  6. */
  7. MEMORY
  8. {
  9. /* Infinity blootloader uses 4KB */
  10. FLASH (rx) : ORIGIN = 4K, LENGTH = 128K - 4K
  11. RAM (rwx) : ORIGIN = 0x1FFFE0F8, LENGTH = 16K - 0xF8
  12. }
  13. /* Linker script to place sections and symbol values. Should be used together
  14. * with other linker script that defines memory regions FLASH and RAM.
  15. * It references following symbols, which must be defined in code:
  16. * _reset_init : Entry of reset handler
  17. *
  18. * It defines following symbols, which code can use without definition:
  19. * __exidx_start
  20. * __exidx_end
  21. * __etext
  22. * __data_start__
  23. * __preinit_array_start
  24. * __preinit_array_end
  25. * __init_array_start
  26. * __init_array_end
  27. * __fini_array_start
  28. * __fini_array_end
  29. * __data_end__
  30. * __bss_start__
  31. * __bss_end__
  32. * __end__
  33. * end
  34. * __HeapLimit
  35. * __StackLimit
  36. * __StackTop
  37. * __stack
  38. */
  39. ENTRY(Reset_Handler)
  40. SECTIONS
  41. {
  42. .text :
  43. {
  44. __vector_table = .;
  45. KEEP(*(.isr_vector))
  46. *(.text.Reset_Handler)
  47. *(.text.System_Init)
  48. . = ALIGN(4);
  49. *(.text*)
  50. KEEP(*(.init))
  51. KEEP(*(.fini))
  52. /* .ctors */
  53. *crtbegin.o(.ctors)
  54. *crtbegin?.o(.ctors)
  55. *(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)
  56. *(SORT(.ctors.*))
  57. *(.ctors)
  58. /* .dtors */
  59. *crtbegin.o(.dtors)
  60. *crtbegin?.o(.dtors)
  61. *(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)
  62. *(SORT(.dtors.*))
  63. *(.dtors)
  64. *(.rodata*)
  65. KEEP(*(.eh_frame*))
  66. } > FLASH
  67. .ARM.extab :
  68. {
  69. *(.ARM.extab* .gnu.linkonce.armextab.*)
  70. } > FLASH
  71. __exidx_start = .;
  72. .ARM.exidx :
  73. {
  74. *(.ARM.exidx* .gnu.linkonce.armexidx.*)
  75. } > FLASH
  76. __exidx_end = .;
  77. __etext = .;
  78. .data : AT (__etext)
  79. {
  80. __data_start__ = .;
  81. *(vtable)
  82. *(.data*)
  83. . = ALIGN(4);
  84. /* preinit data */
  85. PROVIDE_HIDDEN (__preinit_array_start = .);
  86. KEEP(*(.preinit_array))
  87. PROVIDE_HIDDEN (__preinit_array_end = .);
  88. . = ALIGN(4);
  89. /* init data */
  90. PROVIDE_HIDDEN (__init_array_start = .);
  91. KEEP(*(SORT(.init_array.*)))
  92. KEEP(*(.init_array))
  93. PROVIDE_HIDDEN (__init_array_end = .);
  94. . = ALIGN(4);
  95. /* finit data */
  96. PROVIDE_HIDDEN (__fini_array_start = .);
  97. KEEP(*(SORT(.fini_array.*)))
  98. KEEP(*(.fini_array))
  99. PROVIDE_HIDDEN (__fini_array_end = .);
  100. . = ALIGN(4);
  101. /* All data end */
  102. __data_end__ = .;
  103. } > RAM
  104. .bss :
  105. {
  106. __bss_start__ = .;
  107. *(.bss*)
  108. *(COMMON)
  109. __bss_end__ = .;
  110. } > RAM
  111. .heap :
  112. {
  113. __end__ = .;
  114. end = __end__;
  115. *(.heap*)
  116. __HeapLimit = .;
  117. } > RAM
  118. /* .stack_dummy section doesn't contains any symbols. It is only
  119. * used for linker to calculate size of stack sections, and assign
  120. * values to stack symbols later */
  121. .stack_dummy :
  122. {
  123. *(.stack)
  124. } > RAM
  125. /* Set stack top to end of RAM, and stack limit move down by
  126. * size of stack_dummy section */
  127. __StackTop = ORIGIN(RAM) + LENGTH(RAM);
  128. __StackLimit = __StackTop - SIZEOF(.stack_dummy);
  129. PROVIDE(__stack = __StackTop);
  130. /* Check if data + heap + stack exceeds RAM limit */
  131. ASSERT(__StackLimit >= __HeapLimit, "region RAM overflowed with stack")
  132. }