common.cmake 15 KB

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  1. set(STM32_SUPPORTED_FAMILIES_LONG_NAME
  2. STM32C0
  3. STM32F0 STM32F1 STM32F2 STM32F3 STM32F4 STM32F7
  4. STM32G0 STM32G4
  5. STM32H5 STM32H7_M4 STM32H7_M7
  6. STM32L0 STM32L1 STM32L4 STM32L5
  7. STM32U5
  8. STM32WB_M4 STM32WL_M4 STM32WL_M0PLUS
  9. STM32MP1_M4 )
  10. foreach(FAMILY ${STM32_SUPPORTED_FAMILIES_LONG_NAME})
  11. # append short names (F0, F1, H7_M4, ...) to STM32_SUPPORTED_FAMILIES_SHORT_NAME
  12. string(REGEX MATCH "^STM32([CFGHLMUW]P?[0-9BL])_?(M0PLUS|M4|M7)?" FAMILY ${FAMILY})
  13. list(APPEND STM32_SUPPORTED_FAMILIES_SHORT_NAME ${CMAKE_MATCH_1})
  14. endforeach()
  15. list(REMOVE_DUPLICATES STM32_SUPPORTED_FAMILIES_SHORT_NAME)
  16. if(NOT STM32_TOOLCHAIN_PATH)
  17. if(DEFINED ENV{STM32_TOOLCHAIN_PATH})
  18. message(STATUS "Detected toolchain path STM32_TOOLCHAIN_PATH in environmental variables: ")
  19. message(STATUS "$ENV{STM32_TOOLCHAIN_PATH}")
  20. set(STM32_TOOLCHAIN_PATH $ENV{STM32_TOOLCHAIN_PATH})
  21. else()
  22. if(NOT CMAKE_C_COMPILER)
  23. set(STM32_TOOLCHAIN_PATH "/usr")
  24. message(STATUS "No STM32_TOOLCHAIN_PATH specified, using default: " ${STM32_TOOLCHAIN_PATH})
  25. else()
  26. # keep only directory of compiler
  27. get_filename_component(STM32_TOOLCHAIN_PATH ${CMAKE_C_COMPILER} DIRECTORY)
  28. # remove the last /bin directory
  29. get_filename_component(STM32_TOOLCHAIN_PATH ${STM32_TOOLCHAIN_PATH} DIRECTORY)
  30. endif()
  31. endif()
  32. file(TO_CMAKE_PATH "${STM32_TOOLCHAIN_PATH}" STM32_TOOLCHAIN_PATH)
  33. endif()
  34. if(NOT STM32_TARGET_TRIPLET)
  35. if(DEFINED ENV{STM32_TARGET_TRIPLET})
  36. message(STATUS "Detected target triplet STM32_TARGET_TRIPLET in environmental variables: ")
  37. message(STATUS "$ENV{STM32_TARGET_TRIPLET}")
  38. set(STM32_TARGET_TRIPLET $ENV{STM32_TARGET_TRIPLET})
  39. else()
  40. set(STM32_TARGET_TRIPLET "arm-none-eabi")
  41. message(STATUS "No STM32_TARGET_TRIPLET specified, using default: " ${STM32_TARGET_TRIPLET})
  42. endif()
  43. endif()
  44. set(CMAKE_SYSTEM_NAME Generic)
  45. set(CMAKE_SYSTEM_PROCESSOR arm)
  46. set(TOOLCHAIN_SYSROOT "${STM32_TOOLCHAIN_PATH}/${STM32_TARGET_TRIPLET}")
  47. set(TOOLCHAIN_BIN_PATH "${STM32_TOOLCHAIN_PATH}/bin")
  48. set(TOOLCHAIN_INC_PATH "${STM32_TOOLCHAIN_PATH}/${STM32_TARGET_TRIPLET}/include")
  49. set(TOOLCHAIN_LIB_PATH "${STM32_TOOLCHAIN_PATH}/${STM32_TARGET_TRIPLET}/lib")
  50. set(CMAKE_SYSROOT ${TOOLCHAIN_SYSROOT})
  51. find_program(CMAKE_OBJCOPY NAMES ${STM32_TARGET_TRIPLET}-objcopy HINTS ${TOOLCHAIN_BIN_PATH})
  52. find_program(CMAKE_OBJDUMP NAMES ${STM32_TARGET_TRIPLET}-objdump HINTS ${TOOLCHAIN_BIN_PATH})
  53. find_program(CMAKE_SIZE NAMES ${STM32_TARGET_TRIPLET}-size HINTS ${TOOLCHAIN_BIN_PATH})
  54. find_program(CMAKE_DEBUGGER NAMES ${STM32_TARGET_TRIPLET}-gdb HINTS ${TOOLCHAIN_BIN_PATH})
  55. find_program(CMAKE_CPPFILT NAMES ${STM32_TARGET_TRIPLET}-c++filt HINTS ${TOOLCHAIN_BIN_PATH})
  56. # This function adds a target with name '${TARGET}_always_display_size'. The new
  57. # target builds a TARGET and then calls the program defined in CMAKE_SIZE to
  58. # display the size of the final ELF.
  59. function(stm32_print_size_of_target TARGET)
  60. add_custom_target(${TARGET}_always_display_size
  61. ALL COMMAND ${CMAKE_SIZE} "$<TARGET_FILE:${TARGET}>"
  62. COMMENT "Target Sizes: "
  63. DEPENDS ${TARGET}
  64. )
  65. endfunction()
  66. # This function calls the objcopy program defined in CMAKE_OBJCOPY to generate
  67. # file with object format specified in OBJCOPY_BFD_OUTPUT.
  68. # The generated file has the name of the target output but with extension
  69. # corresponding to the OUTPUT_EXTENSION argument value.
  70. # The generated file will be placed in the same directory as the target output file.
  71. function(_stm32_generate_file TARGET OUTPUT_EXTENSION OBJCOPY_BFD_OUTPUT)
  72. get_target_property(TARGET_OUTPUT_NAME ${TARGET} OUTPUT_NAME)
  73. if (TARGET_OUTPUT_NAME)
  74. set(OUTPUT_FILE_NAME "${TARGET_OUTPUT_NAME}.${OUTPUT_EXTENSION}")
  75. else()
  76. set(OUTPUT_FILE_NAME "${TARGET}.${OUTPUT_EXTENSION}")
  77. endif()
  78. get_target_property(RUNTIME_OUTPUT_DIRECTORY ${TARGET} RUNTIME_OUTPUT_DIRECTORY)
  79. if(RUNTIME_OUTPUT_DIRECTORY)
  80. set(OUTPUT_FILE_PATH "${RUNTIME_OUTPUT_DIRECTORY}/${OUTPUT_FILE_NAME}")
  81. else()
  82. set(OUTPUT_FILE_PATH "${OUTPUT_FILE_NAME}")
  83. endif()
  84. add_custom_command(
  85. TARGET ${TARGET}
  86. POST_BUILD
  87. COMMAND ${CMAKE_OBJCOPY} -O ${OBJCOPY_BFD_OUTPUT} "$<TARGET_FILE:${TARGET}>" ${OUTPUT_FILE_PATH}
  88. BYPRODUCTS ${OUTPUT_FILE_PATH}
  89. COMMENT "Generating ${OBJCOPY_BFD_OUTPUT} file ${OUTPUT_FILE_NAME}"
  90. )
  91. endfunction()
  92. # This function adds post-build generation of the binary file from the target ELF.
  93. # The generated file will be placed in the same directory as the ELF file.
  94. function(stm32_generate_binary_file TARGET)
  95. _stm32_generate_file(${TARGET} "bin" "binary")
  96. endfunction()
  97. # This function adds post-build generation of the Motorola S-record file from the target ELF.
  98. # The generated file will be placed in the same directory as the ELF file.
  99. function(stm32_generate_srec_file TARGET)
  100. _stm32_generate_file(${TARGET} "srec" "srec")
  101. endfunction()
  102. # This function adds post-build generation of the Intel hex file from the target ELF.
  103. # The generated file will be placed in the same directory as the ELF file.
  104. function(stm32_generate_hex_file TARGET)
  105. _stm32_generate_file(${TARGET} "hex" "ihex")
  106. endfunction()
  107. # This function takes FAMILY (e.g. L4) and DEVICE (e.g. L496VG) to output TYPE (e.g. L496xx)
  108. function(stm32_get_chip_type FAMILY DEVICE TYPE)
  109. set(INDEX 0)
  110. foreach(C_TYPE ${STM32_${FAMILY}_TYPES})
  111. list(GET STM32_${FAMILY}_TYPE_MATCH ${INDEX} REGEXP)
  112. if(${DEVICE} MATCHES ${REGEXP})
  113. set(RESULT_TYPE ${C_TYPE})
  114. endif()
  115. math(EXPR INDEX "${INDEX}+1")
  116. endforeach()
  117. if(NOT RESULT_TYPE)
  118. message(FATAL_ERROR "Invalid/unsupported device: ${DEVICE}")
  119. endif()
  120. set(${TYPE} ${RESULT_TYPE} PARENT_SCOPE)
  121. endfunction()
  122. function(stm32_get_chip_info CHIP)
  123. set(ARG_OPTIONS "")
  124. set(ARG_SINGLE FAMILY DEVICE TYPE)
  125. set(ARG_MULTIPLE "")
  126. cmake_parse_arguments(PARSE_ARGV 1 ARG "${ARG_OPTIONS}" "${ARG_SINGLE}" "${ARG_MULTIPLE}")
  127. string(TOUPPER ${CHIP} CHIP)
  128. string(REGEX MATCH "^STM32([CFGHLMUW]P?[0-9BL])([0-9A-Z][0-9M][A-Z][0-9A-Z]).*$" CHIP ${CHIP})
  129. if((NOT CMAKE_MATCH_1) OR (NOT CMAKE_MATCH_2))
  130. message(FATAL_ERROR "Unknown chip ${CHIP}")
  131. endif()
  132. set(STM32_FAMILY ${CMAKE_MATCH_1})
  133. set(STM32_DEVICE "${CMAKE_MATCH_1}${CMAKE_MATCH_2}")
  134. if(NOT (${STM32_FAMILY} IN_LIST STM32_SUPPORTED_FAMILIES_SHORT_NAME))
  135. message(FATAL_ERROR "Unsupported family ${STM32_FAMILY} for device ${CHIP}")
  136. endif()
  137. stm32_get_chip_type(${STM32_FAMILY} ${STM32_DEVICE} STM32_TYPE)
  138. if(ARG_FAMILY)
  139. set(${ARG_FAMILY} ${STM32_FAMILY} PARENT_SCOPE)
  140. endif()
  141. if(ARG_DEVICE)
  142. set(${ARG_DEVICE} ${STM32_DEVICE} PARENT_SCOPE)
  143. endif()
  144. if(ARG_TYPE)
  145. set(${ARG_TYPE} ${STM32_TYPE} PARENT_SCOPE)
  146. endif()
  147. endfunction()
  148. function(stm32_get_cores CORES)
  149. set(ARG_OPTIONS "")
  150. set(ARG_SINGLE CHIP FAMILY DEVICE)
  151. set(ARG_MULTIPLE "")
  152. cmake_parse_arguments(PARSE_ARGV 1 ARG "${ARG_OPTIONS}" "${ARG_SINGLE}" "${ARG_MULTIPLE}")
  153. if(ARG_CHIP)
  154. # TODO: I don't get why stm32_get_chip_info is called in stm32_get_cores
  155. stm32_get_chip_info(${ARG_CHIP} FAMILY ARG_FAMILY TYPE ARG_TYPE DEVICE ARG_DEVICE)
  156. elseif(ARG_FAMILY AND ARG_DEVICE)
  157. # TODO: I don't get why stm32_get_chip_type is called in stm32_get_cores
  158. stm32_get_chip_type(${ARG_FAMILY} ${ARG_DEVICE} ARG_TYPE)
  159. elseif(ARG_FAMILY)
  160. if(${ARG_FAMILY} STREQUAL "H7")
  161. set(${CORES} M7 M4 PARENT_SCOPE)
  162. elseif(${ARG_FAMILY} STREQUAL "WB")
  163. set(${CORES} M4 PARENT_SCOPE)
  164. elseif(${ARG_FAMILY} STREQUAL "WL")
  165. set(${CORES} M4 M0PLUS PARENT_SCOPE)
  166. elseif(${ARG_FAMILY} STREQUAL "MP1")
  167. set(${CORES} M4 PARENT_SCOPE)
  168. else()
  169. set(${CORES} "" PARENT_SCOPE)
  170. endif()
  171. return()
  172. else()
  173. message(FATAL_ERROR "Either CHIP or FAMILY or FAMILY/DEVICE should be specified for stm32_get_cores()")
  174. endif()
  175. # TODO following is the only part really used by FindCMSIS. Maybe a cleanup is needed
  176. if(${ARG_FAMILY} STREQUAL "H7")
  177. stm32h7_get_device_cores(${ARG_DEVICE} ${ARG_TYPE} CORE_LIST)
  178. elseif(${ARG_FAMILY} STREQUAL "WB")
  179. # note STM32WB have an M0 core but in current state of the art it runs ST stacks and is not needed/allowed to build for customer
  180. set(CORE_LIST M4)
  181. elseif(${ARG_FAMILY} STREQUAL "MP1")
  182. set(CORE_LIST M4)
  183. elseif(${ARG_FAMILY} STREQUAL "WL")
  184. stm32wl_get_device_cores(${ARG_DEVICE} ${ARG_TYPE} CORE_LIST)
  185. endif()
  186. set(${CORES} "${CORE_LIST}" PARENT_SCOPE)
  187. endfunction()
  188. function(stm32_get_memory_info)
  189. set(ARG_OPTIONS FLASH RAM CCRAM STACK HEAP RAM_SHARE)
  190. set(ARG_SINGLE CHIP FAMILY DEVICE CORE SIZE ORIGIN)
  191. set(ARG_MULTIPLE "")
  192. cmake_parse_arguments(INFO "${ARG_OPTIONS}" "${ARG_SINGLE}" "${ARG_MULTIPLE}" ${ARGN})
  193. if((NOT INFO_CHIP) AND ((NOT INFO_FAMILY) OR (NOT INFO_DEVICE)))
  194. message(FATAL_ERROR "Either CHIP or FAMILY/DEVICE is required for stm32_get_memory_info()")
  195. endif()
  196. if(INFO_CHIP)
  197. stm32_get_chip_info(${INFO_CHIP} FAMILY INFO_FAMILY TYPE INFO_TYPE DEVICE INFO_DEVICE)
  198. else()
  199. stm32_get_chip_type(${INFO_FAMILY} ${INFO_DEVICE} INFO_TYPE)
  200. endif()
  201. string(REGEX REPLACE "^[CFGHLMUW]P?[0-9BL][0-9A-Z][0-9M].([3468ABCDEFGHIYZ])$" "\\1" SIZE_CODE ${INFO_DEVICE})
  202. if(SIZE_CODE STREQUAL "3")
  203. set(FLASH "8K")
  204. elseif(SIZE_CODE STREQUAL "4")
  205. set(FLASH "16K")
  206. elseif(SIZE_CODE STREQUAL "6")
  207. set(FLASH "32K")
  208. elseif(SIZE_CODE STREQUAL "8")
  209. set(FLASH "64K")
  210. elseif(SIZE_CODE STREQUAL "B")
  211. set(FLASH "128K")
  212. elseif(SIZE_CODE STREQUAL "C")
  213. set(FLASH "256K")
  214. elseif(SIZE_CODE STREQUAL "D")
  215. set(FLASH "384K")
  216. elseif(SIZE_CODE STREQUAL "E")
  217. set(FLASH "512K")
  218. elseif(SIZE_CODE STREQUAL "F")
  219. set(FLASH "768K")
  220. elseif(SIZE_CODE STREQUAL "G")
  221. set(FLASH "1024K")
  222. elseif(SIZE_CODE STREQUAL "H")
  223. set(FLASH "1536K")
  224. elseif(SIZE_CODE STREQUAL "I")
  225. set(FLASH "2048K")
  226. elseif(SIZE_CODE STREQUAL "Y")
  227. set(FLASH "640K")
  228. elseif(SIZE_CODE STREQUAL "Z")
  229. set(FLASH "192K")
  230. else()
  231. set(FLASH "16K")
  232. message(WARNING "Unknow flash size for device ${DEVICE}. Set to ${FLASH}")
  233. endif()
  234. list(FIND STM32_${INFO_FAMILY}_TYPES ${INFO_TYPE} TYPE_INDEX)
  235. list(GET STM32_${INFO_FAMILY}_RAM_SIZES ${TYPE_INDEX} RAM)
  236. list(GET STM32_${INFO_FAMILY}_CCRAM_SIZES ${TYPE_INDEX} CCRAM)
  237. list(GET STM32_${INFO_FAMILY}_RAM_SHARE_SIZES ${TYPE_INDEX} RAM_SHARE)
  238. set(FLASH_ORIGIN 0x8000000)
  239. set(RAM_ORIGIN 0x20000000)
  240. set(CCRAM_ORIGIN 0x10000000)
  241. set(RAM_SHARE_ORIGIN 0x20030000)
  242. unset(TWO_FLASH_BANKS)
  243. if(FAMILY STREQUAL "F1")
  244. stm32f1_get_memory_info(${INFO_DEVICE} ${INFO_TYPE} FLASH RAM)
  245. elseif(FAMILY STREQUAL "L1")
  246. stm32l1_get_memory_info(${INFO_DEVICE} ${INFO_TYPE} FLASH RAM)
  247. elseif(FAMILY STREQUAL "F2")
  248. stm32f2_get_memory_info(${INFO_DEVICE} ${INFO_TYPE} FLASH RAM)
  249. elseif(FAMILY STREQUAL "F3")
  250. stm32f3_get_memory_info(${INFO_DEVICE} ${INFO_TYPE} FLASH RAM)
  251. elseif(FAMILY STREQUAL "H7")
  252. stm32h7_get_memory_info(${INFO_DEVICE} ${INFO_TYPE} "${INFO_CORE}" RAM FLASH_ORIGIN RAM_ORIGIN TWO_FLASH_BANKS)
  253. elseif(FAMILY STREQUAL "WL")
  254. stm32wl_get_memory_info(${INFO_DEVICE} ${INFO_TYPE} "${INFO_CORE}" RAM FLASH_ORIGIN RAM_ORIGIN TWO_FLASH_BANKS)
  255. elseif(FAMILY STREQUAL "WB")
  256. stm32wb_get_memory_info(${INFO_DEVICE} ${INFO_TYPE} "${INFO_CORE}" RAM RAM_ORIGIN TWO_FLASH_BANKS)
  257. elseif(FAMILY STREQUAL "MP1")
  258. stm32mp1_get_memory_info(${INFO_DEVICE} ${INFO_TYPE} FLASH)
  259. endif()
  260. # when a device is dual core, each core uses half of total flash
  261. if(TWO_FLASH_BANKS)
  262. string(REGEX MATCH "([0-9]+)K" FLASH_KB ${FLASH})
  263. math(EXPR FLASH_KB "${CMAKE_MATCH_1} / 2")
  264. set(FLASH "${FLASH_KB}K")
  265. endif()
  266. if(INFO_FLASH)
  267. set(SIZE ${FLASH})
  268. set(ORIGIN ${FLASH_ORIGIN})
  269. elseif(INFO_RAM)
  270. set(SIZE ${RAM})
  271. set(ORIGIN ${RAM_ORIGIN})
  272. elseif(INFO_CCRAM)
  273. set(SIZE ${CCRAM})
  274. set(ORIGIN ${CCRAM_ORIGIN})
  275. elseif(INFO_RAM_SHARE)
  276. set(SIZE ${RAM_SHARE})
  277. set(ORIGIN ${RAM_SHARE_ORIGIN})
  278. elseif(INFO_STACK)
  279. if (RAM STREQUAL "2K")
  280. set(SIZE 0x200)
  281. else()
  282. set(SIZE 0x400)
  283. endif()
  284. set(ORIGIN ${RAM_ORIGIN}) #TODO: Real stack pointer?
  285. elseif(INFO_HEAP)
  286. if (RAM STREQUAL "2K")
  287. set(SIZE 0x100)
  288. else()
  289. set(SIZE 0x200)
  290. endif()
  291. set(ORIGIN ${RAM_ORIGIN}) #TODO: Real heap pointer?
  292. endif()
  293. if(INFO_SIZE)
  294. set(${INFO_SIZE} ${SIZE} PARENT_SCOPE)
  295. endif()
  296. if(INFO_ORIGIN)
  297. set(${INFO_ORIGIN} ${ORIGIN} PARENT_SCOPE)
  298. endif()
  299. endfunction()
  300. function(stm32_add_linker_script TARGET VISIBILITY SCRIPT)
  301. get_filename_component(SCRIPT "${SCRIPT}" ABSOLUTE)
  302. target_link_options(${TARGET} ${VISIBILITY} -T "${SCRIPT}")
  303. get_target_property(TARGET_TYPE ${TARGET} TYPE)
  304. if(TARGET_TYPE STREQUAL "INTERFACE_LIBRARY")
  305. set(INTERFACE_PREFIX "INTERFACE_")
  306. endif()
  307. get_target_property(LINK_DEPENDS ${TARGET} ${INTERFACE_PREFIX}LINK_DEPENDS)
  308. if(LINK_DEPENDS)
  309. list(APPEND LINK_DEPENDS "${SCRIPT}")
  310. else()
  311. set(LINK_DEPENDS "${SCRIPT}")
  312. endif()
  313. set_target_properties(${TARGET} PROPERTIES ${INTERFACE_PREFIX}LINK_DEPENDS "${LINK_DEPENDS}")
  314. endfunction()
  315. if(NOT (TARGET STM32::NoSys))
  316. add_library(STM32::NoSys INTERFACE IMPORTED)
  317. target_compile_options(STM32::NoSys INTERFACE $<$<C_COMPILER_ID:GNU>:--specs=nosys.specs>)
  318. target_link_options(STM32::NoSys INTERFACE $<$<C_COMPILER_ID:GNU>:--specs=nosys.specs>)
  319. endif()
  320. if(NOT (TARGET STM32::Nano))
  321. add_library(STM32::Nano INTERFACE IMPORTED)
  322. target_compile_options(STM32::Nano INTERFACE $<$<C_COMPILER_ID:GNU>:--specs=nano.specs>)
  323. target_link_options(STM32::Nano INTERFACE $<$<C_COMPILER_ID:GNU>:--specs=nano.specs>)
  324. endif()
  325. if(NOT (TARGET STM32::Nano::FloatPrint))
  326. add_library(STM32::Nano::FloatPrint INTERFACE IMPORTED)
  327. target_link_options(STM32::Nano::FloatPrint INTERFACE
  328. $<$<C_COMPILER_ID:GNU>:-Wl,--undefined,_printf_float>
  329. )
  330. endif()
  331. if(NOT (TARGET STM32::Nano::FloatScan))
  332. add_library(STM32::Nano::FloatScan INTERFACE IMPORTED)
  333. target_link_options(STM32::Nano::FloatScan INTERFACE
  334. $<$<C_COMPILER_ID:GNU>:-Wl,--undefined,_scanf_float>
  335. )
  336. endif()
  337. include(stm32/utilities)
  338. include(stm32/c0)
  339. include(stm32/f0)
  340. include(stm32/f1)
  341. include(stm32/f2)
  342. include(stm32/f3)
  343. include(stm32/f4)
  344. include(stm32/f7)
  345. include(stm32/g0)
  346. include(stm32/g4)
  347. include(stm32/h7)
  348. include(stm32/l0)
  349. include(stm32/l1)
  350. include(stm32/l4)
  351. include(stm32/l5)
  352. include(stm32/u5)
  353. include(stm32/wb)
  354. include(stm32/wl)
  355. include(stm32/mp1)