rp2040-template.ld 6.6 KB

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  1. /**
  2. * ZuluSCSI™ - Copyright (c) 2022 Rabbit Hole Computing™
  3. *
  4. * ZuluSCSI™ firmware is licensed under the GPL version 3 or any later version. 
  5. *
  6. * https://www.gnu.org/licenses/gpl-3.0.html
  7. * ----
  8. * This program is free software: you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation, either version 3 of the License, or
  11. * (at your option) any later version. 
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  16. * GNU General Public License for more details. 
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program.  If not, see <https://www.gnu.org/licenses/>.
  20. **/
  21. MEMORY
  22. {
  23. FLASH(rx) : ORIGIN = 0x10000000, LENGTH = $program_size
  24. RAM(rwx) : ORIGIN = 0x20000000, LENGTH = 256k /* Leave space for pico-debug */
  25. SCRATCH_X(rwx) : ORIGIN = 0x20040000, LENGTH = 4k
  26. SCRATCH_Y(rwx) : ORIGIN = 0x20041000, LENGTH = 4k
  27. }
  28. ENTRY(_entry_point)
  29. SECTIONS
  30. {
  31. .flash_begin : {
  32. __flash_binary_start = .;
  33. } > FLASH
  34. .boot2 : {
  35. __boot2_start__ = .;
  36. KEEP (*(.boot2))
  37. __boot2_end__ = .;
  38. } > FLASH
  39. ASSERT(__boot2_end__ - __boot2_start__ == 256,
  40. "ERROR: Pico second stage bootloader must be 256 bytes in size")
  41. /* If ZuluSCSI SD card bootloader is included, it goes in first 128 kB */
  42. .text.bootloader : ALIGN(16) SUBALIGN(16)
  43. {
  44. KEEP(*(.text.btldr*))
  45. . = ALIGN(131072);
  46. CHECK_BOOTLOADER_SIZE = 1 / (. <= 131072);
  47. } > FLASH
  48. .text : {
  49. __logical_binary_start = .;
  50. __real_vectors_start = .;
  51. KEEP (*(.vectors))
  52. KEEP (*(.binary_info_header))
  53. __binary_info_header_end = .;
  54. KEEP (*(.reset))
  55. KEEP (*(.init))
  56. *(.fini)
  57. *crtbegin.o(.ctors)
  58. *crtbegin?.o(.ctors)
  59. *(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)
  60. *(SORT(.ctors.*))
  61. *(.ctors)
  62. *crtbegin.o(.dtors)
  63. *crtbegin?.o(.dtors)
  64. *(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)
  65. *(SORT(.dtors.*))
  66. *(.dtors)
  67. *(.eh_frame*)
  68. . = ALIGN(4);
  69. /* Put only non-timecritical code in flash
  70. * This includes e.g. floating point math routines.
  71. */
  72. .pio/build/$project_name/src/ZuluSCSI_log.cpp.o(.text .text*)
  73. .pio/build/$project_name/src/ZuluSCSI_log_trace.cpp.o(.text .text*)
  74. .pio/build/$project_name/src/ZuluSCSI_settings.cpp.o(.text .text*)
  75. .pio/build/$project_name/src/QuirksCheck.cpp.o(.text .text*)
  76. *libm*:(.text .text*)
  77. *libc*:(.text .text*)
  78. *libgcc*:*df*(.text .text*)
  79. *USB*(.text .text*)
  80. *SPI*(.text .text*)
  81. *Spi*(.text .text*)
  82. *spi*(.text .text*)
  83. *stdc*:(.text .text*)
  84. *supc*:(.text .text*)
  85. *nosys*:(.text .text*)
  86. *libc*:*printf*(.text .text*)
  87. *libc*:*toa*(.text .text*)
  88. *libminIni.a:(.text .text*)
  89. *libCUEParser.a:(.text .text*)
  90. /* RP2040 breakpoints in RAM code don't always work very well
  91. * because the boot routine tends to overwrite them.
  92. * Uncommenting this line puts all code in flash.
  93. */
  94. /* *(.text .text*) */
  95. } > FLASH
  96. .rodata : {
  97. . = ALIGN(4);
  98. *(SORT_BY_ALIGNMENT(SORT_BY_NAME(.flashdata*)))
  99. *(.rodata)
  100. *(.rodata*)
  101. . = ALIGN(4);
  102. } > FLASH
  103. .ARM.extab :
  104. {
  105. *(.ARM.extab* .gnu.linkonce.armextab.*)
  106. } > FLASH
  107. __exidx_start = .;
  108. .ARM.exidx :
  109. {
  110. *(.ARM.exidx* .gnu.linkonce.armexidx.*)
  111. } > FLASH
  112. __exidx_end = .;
  113. . = ALIGN(4);
  114. __binary_info_start = .;
  115. .binary_info :
  116. {
  117. KEEP(*(.binary_info.keep.*))
  118. *(.binary_info.*)
  119. } > FLASH
  120. __binary_info_end = .;
  121. . = ALIGN(4);
  122. __etext = .;
  123. .ram_vector_table (COPY): {
  124. *(.ram_vector_table)
  125. } > RAM
  126. .data : {
  127. __data_start__ = .;
  128. *(vtable)
  129. /* Time critical code will go here to avoid external flash latency */
  130. *(.time_critical*)
  131. . = ALIGN(4);
  132. *(.text)
  133. *(.text*)
  134. . = ALIGN(4);
  135. *(.data*)
  136. . = ALIGN(4);
  137. *(.after_data.*)
  138. . = ALIGN(4);
  139. PROVIDE_HIDDEN (__mutex_array_start = .);
  140. KEEP(*(SORT(.mutex_array.*)))
  141. KEEP(*(.mutex_array))
  142. PROVIDE_HIDDEN (__mutex_array_end = .);
  143. . = ALIGN(4);
  144. PROVIDE_HIDDEN (__preinit_array_start = .);
  145. KEEP(*(SORT(.preinit_array.*)))
  146. KEEP(*(.preinit_array))
  147. PROVIDE_HIDDEN (__preinit_array_end = .);
  148. . = ALIGN(4);
  149. PROVIDE_HIDDEN (__init_array_start = .);
  150. KEEP(*(SORT(.init_array.*)))
  151. KEEP(*(.init_array))
  152. PROVIDE_HIDDEN (__init_array_end = .);
  153. . = ALIGN(4);
  154. PROVIDE_HIDDEN (__fini_array_start = .);
  155. *(SORT(.fini_array.*))
  156. *(.fini_array)
  157. PROVIDE_HIDDEN (__fini_array_end = .);
  158. *(.jcr)
  159. . = ALIGN(4);
  160. __data_end__ = .;
  161. } > RAM AT> FLASH
  162. .uninitialized_data (COPY): {
  163. . = ALIGN(4);
  164. *(.uninitialized_data*)
  165. } > RAM
  166. .scratch_x : {
  167. __scratch_x_start__ = .;
  168. *(.scratch_x.*)
  169. . = ALIGN(4);
  170. __scratch_x_end__ = .;
  171. } > SCRATCH_X AT > FLASH
  172. __scratch_x_source__ = LOADADDR(.scratch_x);
  173. .scratch_y : {
  174. __scratch_y_start__ = .;
  175. *(.scratch_y.*)
  176. . = ALIGN(4);
  177. __scratch_y_end__ = .;
  178. } > SCRATCH_Y AT > FLASH
  179. __scratch_y_source__ = LOADADDR(.scratch_y);
  180. .bss : {
  181. . = ALIGN(4);
  182. __bss_start__ = .;
  183. *(SORT_BY_ALIGNMENT(SORT_BY_NAME(.bss*)))
  184. *(COMMON)
  185. . = ALIGN(4);
  186. __bss_end__ = .;
  187. } > RAM
  188. .heap (COPY):
  189. {
  190. __end__ = .;
  191. PROVIDE(end = .);
  192. *(.heap*)
  193. . = ORIGIN(RAM) + LENGTH(RAM) - 0x400;
  194. __HeapLimit = .;
  195. } > RAM
  196. .stack1_dummy (COPY):
  197. {
  198. *(.stack1*)
  199. } > SCRATCH_X
  200. .stack_dummy (COPY):
  201. {
  202. *(.stack*)
  203. } > RAM
  204. .flash_end : {
  205. __flash_binary_end = .;
  206. } > FLASH
  207. __StackTop = ORIGIN(RAM) + LENGTH(RAM);
  208. __StackLimit = __StackTop - 0x400;
  209. __StackOneTop = ORIGIN(SCRATCH_X) + LENGTH(SCRATCH_X);
  210. __StackOneBottom = __StackOneTop - SIZEOF(.stack1_dummy);
  211. __StackBottom = __StackTop - SIZEOF(.stack_dummy);
  212. PROVIDE(__stack = __StackTop);
  213. ASSERT(__StackLimit >= __HeapLimit, "region RAM overflowed")
  214. ASSERT( __binary_info_header_end - __logical_binary_start <= 256, "Binary info must be in first 256 bytes of the binary")
  215. }