mirror of
https://github.com/espressif/esp-idf.git
synced 2024-10-05 20:47:46 -04:00
483 lines
20 KiB
CMake
483 lines
20 KiB
CMake
# Set some global esptool.py variables
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#
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# Many of these are read when generating flash_app_args & flash_project_args
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idf_build_get_property(target IDF_TARGET)
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idf_build_get_property(python PYTHON)
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idf_build_get_property(idf_path IDF_PATH)
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set(chip_model ${target})
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# TODO: remove this if block when esp32h2 beta1 is no longer supported
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if(target STREQUAL "esp32h2")
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if(CONFIG_IDF_TARGET_ESP32H2_BETA_VERSION_1)
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set(chip_model esp32h2beta1)
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elseif(CONFIG_IDF_TARGET_ESP32H2_BETA_VERSION_2)
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set(chip_model esp32h2beta2)
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endif()
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endif()
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set(ESPTOOLPY ${python} "$ENV{ESPTOOL_WRAPPER}" "${CMAKE_CURRENT_LIST_DIR}/esptool/esptool.py" --chip ${chip_model})
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set(ESPSECUREPY ${python} "${CMAKE_CURRENT_LIST_DIR}/esptool/espsecure.py")
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set(ESPEFUSEPY ${python} "${CMAKE_CURRENT_LIST_DIR}/esptool/espefuse.py")
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set(ESPMONITOR ${python} "${idf_path}/tools/idf_monitor.py")
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if(CONFIG_SPI_FLASH_HPM_ENABLE)
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# When set flash frequency to 120M, must keep 1st bootloader work under ``DOUT`` mode
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# because on some flash chips, 120M will modify the status register,
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# which will make ROM won't work.
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# This change intends to be for esptool only and the bootloader should keep use
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# ``DOUT`` mode.
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set(ESPFLASHMODE "dout")
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message("Note: HPM is enabled for the flash, force the ROM bootloader into DOUT mode for stable boot on")
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else()
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set(ESPFLASHMODE ${CONFIG_ESPTOOLPY_FLASHMODE})
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endif()
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set(ESPFLASHFREQ ${CONFIG_ESPTOOLPY_FLASHFREQ})
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set(ESPFLASHSIZE ${CONFIG_ESPTOOLPY_FLASHSIZE})
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set(ESPTOOLPY_CHIP "${chip_model}")
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set(esptool_elf2image_args
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--flash_mode ${ESPFLASHMODE}
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--flash_freq ${ESPFLASHFREQ}
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--flash_size ${ESPFLASHSIZE}
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)
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set(MMU_PAGE_SIZE ${CONFIG_MMU_PAGE_MODE})
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if(NOT BOOTLOADER_BUILD)
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list(APPEND esptool_elf2image_args --elf-sha256-offset 0xb0)
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# For chips that support configurable MMU page size feature
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# If page size is configured to values other than the default "64KB" in menuconfig,
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# then we need to pass the actual size to flash-mmu-page-size arg
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if(NOT MMU_PAGE_SIZE STREQUAL "64KB")
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list(APPEND esptool_elf2image_args --flash-mmu-page-size ${MMU_PAGE_SIZE})
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endif()
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endif()
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if(NOT CONFIG_SECURE_BOOT_ALLOW_SHORT_APP_PARTITION AND
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NOT BOOTLOADER_BUILD)
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if(CONFIG_SECURE_SIGNED_APPS_ECDSA_SCHEME)
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list(APPEND esptool_elf2image_args --secure-pad)
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elseif(CONFIG_SECURE_SIGNED_APPS_RSA_SCHEME OR CONFIG_SECURE_SIGNED_APPS_ECDSA_V2_SCHEME)
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list(APPEND esptool_elf2image_args --secure-pad-v2)
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endif()
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endif()
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if(CONFIG_ESP32_REV_MIN)
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set(min_rev ${CONFIG_ESP32_REV_MIN})
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endif()
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if(CONFIG_ESP32C3_REV_MIN)
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set(min_rev ${CONFIG_ESP32C3_REV_MIN})
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endif()
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if(CONFIG_IDF_TARGET_ESP32C2)
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set(min_rev 1)
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endif()
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if(min_rev)
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list(APPEND esptool_elf2image_args --min-rev ${min_rev})
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set(monitor_rev_args "--revision;${min_rev}")
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unset(min_rev)
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endif()
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if(CONFIG_ESPTOOLPY_HEADER_FLASHSIZE_UPDATE)
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# Set ESPFLASHSIZE to 'detect' *after* esptool_elf2image_args are generated,
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# as elf2image can't have 'detect' as an option...
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set(ESPFLASHSIZE detect)
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# Flash size detection updates the image header which would invalidate the appended
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# SHA256 digest. Therefore, a digest is not appended in that case.
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# This argument requires esptool>=4.1.
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list(APPEND esptool_elf2image_args --dont-append-digest)
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endif()
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if(CONFIG_SECURE_SIGNED_APPS_RSA_SCHEME)
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set(ESPFLASHSIZE keep)
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endif()
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idf_build_get_property(build_dir BUILD_DIR)
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idf_build_get_property(elf_name EXECUTABLE_NAME GENERATOR_EXPRESSION)
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idf_build_get_property(elf EXECUTABLE GENERATOR_EXPRESSION)
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idf_build_get_property(elf_dir EXECUTABLE_DIR GENERATOR_EXPRESSION)
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if(CONFIG_SECURE_BOOT_BUILD_SIGNED_BINARIES AND NOT BOOTLOADER_BUILD)
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set(unsigned_project_binary "${elf_name}-unsigned.bin")
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else()
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set(unsigned_project_binary "${elf_name}.bin")
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endif()
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set(PROJECT_BIN "${elf_name}.bin")
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#
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# Add 'app.bin' target - generates with elf2image
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#
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if(CONFIG_APP_BUILD_GENERATE_BINARIES)
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add_custom_command(OUTPUT "${build_dir}/.bin_timestamp"
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COMMAND ${ESPTOOLPY} elf2image ${esptool_elf2image_args}
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-o "${build_dir}/${unsigned_project_binary}" "${elf_dir}/${elf}"
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COMMAND ${CMAKE_COMMAND} -E echo "Generated ${build_dir}/${unsigned_project_binary}"
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COMMAND ${CMAKE_COMMAND} -E md5sum "${build_dir}/${unsigned_project_binary}" > "${build_dir}/.bin_timestamp"
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DEPENDS ${elf}
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VERBATIM
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WORKING_DIRECTORY ${build_dir}
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COMMENT "Generating binary image from built executable"
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)
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add_custom_target(gen_project_binary DEPENDS "${build_dir}/.bin_timestamp")
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endif()
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set_property(DIRECTORY "${CMAKE_CURRENT_SOURCE_DIR}"
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APPEND PROPERTY ADDITIONAL_MAKE_CLEAN_FILES
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"${build_dir}/${unsigned_project_binary}"
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)
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if(CONFIG_APP_BUILD_GENERATE_BINARIES)
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add_custom_target(app ALL DEPENDS gen_project_binary)
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endif()
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if(CONFIG_SECURE_SIGNED_APPS_ECDSA_SCHEME)
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set(secure_boot_version "1")
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elseif(CONFIG_SECURE_SIGNED_APPS_RSA_SCHEME OR CONFIG_SECURE_SIGNED_APPS_ECDSA_V2_SCHEME)
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set(secure_boot_version "2")
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endif()
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if(NOT BOOTLOADER_BUILD AND CONFIG_SECURE_SIGNED_APPS)
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if(CONFIG_SECURE_BOOT_BUILD_SIGNED_BINARIES)
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# for locally signed secure boot image, add a signing step to get from unsigned app to signed app
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get_filename_component(secure_boot_signing_key "${CONFIG_SECURE_BOOT_SIGNING_KEY}"
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ABSOLUTE BASE_DIR "${project_dir}")
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add_custom_command(OUTPUT "${build_dir}/.signed_bin_timestamp"
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COMMAND ${ESPSECUREPY} sign_data --version ${secure_boot_version} --keyfile ${secure_boot_signing_key}
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-o "${build_dir}/${PROJECT_BIN}" "${build_dir}/${unsigned_project_binary}"
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COMMAND ${CMAKE_COMMAND} -E echo "Generated signed binary image ${build_dir}/${PROJECT_BIN}"
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"from ${build_dir}/${unsigned_project_binary}"
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COMMAND ${CMAKE_COMMAND} -E md5sum "${build_dir}/${PROJECT_BIN}" > "${build_dir}/.signed_bin_timestamp"
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DEPENDS "${build_dir}/.bin_timestamp"
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VERBATIM
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COMMENT "Generating signed binary image"
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)
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add_custom_target(gen_signed_project_binary DEPENDS "${build_dir}/.signed_bin_timestamp")
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add_dependencies(gen_project_binary gen_signed_project_binary)
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set_property(DIRECTORY "${CMAKE_CURRENT_SOURCE_DIR}"
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APPEND PROPERTY ADDITIONAL_MAKE_CLEAN_FILES
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"${build_dir}/${PROJECT_BIN}"
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)
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else()
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string(REPLACE ";" " " espsecurepy "${ESPSECUREPY}")
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add_custom_command(TARGET app POST_BUILD
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COMMAND ${CMAKE_COMMAND} -E echo
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"App built but not signed. Sign app before flashing"
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COMMAND ${CMAKE_COMMAND} -E echo
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"\t${espsecurepy} sign_data --keyfile KEYFILE --version ${secure_boot_version} \
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${build_dir}/${PROJECT_BIN}"
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VERBATIM)
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endif()
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endif()
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add_custom_target(erase_flash
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COMMAND ${CMAKE_COMMAND}
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-D "IDF_PATH=${idf_path}"
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-D "SERIAL_TOOL=${ESPTOOLPY}"
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-D "SERIAL_TOOL_ARGS=erase_flash"
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-P run_serial_tool.cmake
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WORKING_DIRECTORY ${CMAKE_CURRENT_LIST_DIR}
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USES_TERMINAL
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VERBATIM
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)
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add_custom_target(monitor
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COMMAND ${CMAKE_COMMAND}
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-D "IDF_PATH=${idf_path}"
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-D "SERIAL_TOOL=${ESPMONITOR}"
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-D "SERIAL_TOOL_ARGS=--target;${target};${monitor_rev_args};${elf_dir}/${elf}"
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-D "WORKING_DIRECTORY=${build_dir}"
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-P run_serial_tool.cmake
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WORKING_DIRECTORY ${CMAKE_CURRENT_LIST_DIR}
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USES_TERMINAL
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VERBATIM
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)
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set(esptool_flash_main_args "--before=${CONFIG_ESPTOOLPY_BEFORE}")
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if(CONFIG_SECURE_BOOT OR CONFIG_SECURE_FLASH_ENC_ENABLED)
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# If security enabled then override post flash option
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list(APPEND esptool_flash_main_args "--after=no_reset")
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else()
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list(APPEND esptool_flash_main_args "--after=${CONFIG_ESPTOOLPY_AFTER}")
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endif()
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if(CONFIG_ESPTOOLPY_NO_STUB)
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list(APPEND esptool_flash_main_args "--no-stub")
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endif()
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idf_component_set_property(esptool_py FLASH_ARGS "${esptool_flash_main_args}")
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idf_component_set_property(esptool_py FLASH_SUB_ARGS "--flash_mode ${ESPFLASHMODE} --flash_freq ${ESPFLASHFREQ} \
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--flash_size ${ESPFLASHSIZE}")
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function(esptool_py_partition_needs_encryption retencrypted partition_name)
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# Check if encryption is enabled
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if(CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT)
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# Encryption is enabled, get partition type, subtype and encrypted flag
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# to determine whether it needs encryption or not.
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partition_table_get_partition_info(type "--partition-name ${partition_name}" "type")
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partition_table_get_partition_info(subtype "--partition-name ${partition_name}" "subtype")
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partition_table_get_partition_info(encrypted "--partition-name ${partition_name}" "encrypted")
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# As defined in gen_esp32part.py file:
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# Types:
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# - APP 0x00
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# - DATA 0x01
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# Subtypes:
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# - ota 0x00
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# - nvs 0x02
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# If the partition is an app, an OTA or an NVS partition, then it should
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# be encrypted
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if(
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(${type} EQUAL 0) OR
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(${type} EQUAL 1 AND ${subtype} EQUAL 0) OR
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(${type} EQUAL 1 AND ${subtype} EQUAL 2)
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)
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set(encrypted TRUE)
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endif()
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# Return 'encrypted' value to the caller
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set(${retencrypted} ${encrypted} PARENT_SCOPE)
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else()
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# Encryption not enabled, return false
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set(${retencrypted} FALSE PARENT_SCOPE)
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endif()
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endfunction()
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function(esptool_py_flash_to_partition target_name partition_name binary_path)
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# Retrieve the offset for the partition to flash the image on
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partition_table_get_partition_info(offset "--partition-name ${partition_name}" "offset")
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if(NOT offset)
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message(FATAL_ERROR "Could not find offset of partition ${partition_name}")
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endif()
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# Check whether the partition needs encryption or not
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esptool_py_partition_needs_encryption(encrypted ${partition_name})
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# If the image should not be encrypted, we pass the option
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# ALWAYS_PLAINTEXT to the function esptool_py_flash_target_image
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if(NOT ${encrypted})
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set(option ALWAYS_PLAINTEXT)
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endif()
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# The image name is also the partition name
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esptool_py_flash_target_image(${target_name} ${partition_name} ${offset}
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${binary_path} ${option})
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endfunction()
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# This function takes a fifth optional named parameter: "ALWAYS_PLAINTEXT". As
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# its name states, it marks whether the image should be flashed as plain text or
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# not. If build macro CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT is set and
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# this parameter is provided, then the image will be flahsed as plain text
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# (not encrypted) on the target. This parameter will be ignored if build macro
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# CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT is not set.
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function(esptool_py_flash_target_image target_name image_name offset image)
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set(options ALWAYS_PLAINTEXT)
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idf_build_get_property(build_dir BUILD_DIR)
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file(RELATIVE_PATH image ${build_dir} ${image})
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cmake_parse_arguments(arg "${options}" "" "" "${ARGN}")
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# Check if the image has to be plain text or not, depending on the macro
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# CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT and the parameter
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# ALWAYS_PLAINTEXT
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set(encrypted false)
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if(CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT AND
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NOT arg_ALWAYS_PLAINTEXT)
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set(encrypted true)
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endif()
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# In the following snippet of code, some properties are defined for our
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# current target. These properties will be used to generate the actual
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# target_name_args files using the target_name_args.in files.
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# Please see function esptool_py_flash_target above for more information
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# about these properties and how they are used.
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# Add the image file, with its offset, to the list of files to
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# flash to the target. No matter whether flash encryption is
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# enabled or not, plain binaries (non-encrypted) need to be
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# generated
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set_property(TARGET ${target_name} APPEND PROPERTY FLASH_FILE
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"\"${offset}\" : \"${image}\"")
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set_property(TARGET ${target_name} APPEND PROPERTY FLASH_ENTRY
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"\"${image_name}\" : { \"offset\" : \"${offset}\", \"file\" : \"${image}\",\
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\"encrypted\" : \"${encrypted}\" }")
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set_property(TARGET ${target_name} APPEND PROPERTY IMAGES "${offset} ${image}")
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if(CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT)
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# When flash encryption mode is enabled, if the current binary needs to
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# be encrypted, do the same as previously but prefixing target names
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# with "encrypted-".
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if(encrypted)
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set_property(TARGET encrypted-${target_name} APPEND PROPERTY FLASH_FILE
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"\"${offset}\" : \"${image}\"")
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set_property(TARGET encrypted-${target_name} APPEND PROPERTY FLASH_ENTRY
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"\"${image_name}\" : { \"offset\" : \"${offset}\", \"file\" : \"${image}\" , \
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\"encrypted\" : \"${encrypted}\" }")
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set_property(TARGET encrypted-${target_name} APPEND PROPERTY ENCRYPTED_IMAGES "${offset} ${image}")
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else()
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# The target doesn't need to be encrypted, thus, add the current
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# file to the NON_ENCRYPTED_IMAGES property
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set_property(TARGET encrypted-${target_name} APPEND PROPERTY NON_ENCRYPTED_IMAGES "${offset} ${image}")
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endif()
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endif()
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endfunction()
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function(esptool_py_flash_target target_name main_args sub_args)
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set(single_value OFFSET IMAGE) # template file to use to be able to
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# flash the image individually using esptool
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set(options ALWAYS_PLAINTEXT)
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cmake_parse_arguments(_ "${options}" "${single_value}" "" "${ARGN}")
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idf_build_get_property(idf_path IDF_PATH)
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idf_build_get_property(build_dir BUILD_DIR)
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idf_component_get_property(esptool_py_dir esptool_py COMPONENT_DIR)
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add_custom_target(${target_name}
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COMMAND ${CMAKE_COMMAND}
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-D "IDF_PATH=${idf_path}"
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-D "SERIAL_TOOL=${ESPTOOLPY}"
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-D "SERIAL_TOOL_ARGS=${main_args};write_flash;@${target_name}_args"
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-D "WORKING_DIRECTORY=${build_dir}"
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-P ${esptool_py_dir}/run_serial_tool.cmake
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WORKING_DIRECTORY ${CMAKE_CURRENT_LIST_DIR}
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USES_TERMINAL
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VERBATIM
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)
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set_target_properties(${target_name} PROPERTIES SUB_ARGS "${sub_args}")
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# Create the expression that contains the list of file names to pass
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# to esptool script
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set(flash_args_content "$<JOIN:$<TARGET_PROPERTY:${target_name},SUB_ARGS>, >\n\
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$<JOIN:$<TARGET_PROPERTY:${target_name},IMAGES>,\n>")
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# Write the previous expression to the target_name_args.in file
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file(GENERATE OUTPUT "${CMAKE_CURRENT_BINARY_DIR}/${target_name}_args.in"
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CONTENT "${flash_args_content}")
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# Generate the actual expression value from the content of the file
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# we just wrote
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file(GENERATE OUTPUT "${build_dir}/${target_name}_args"
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INPUT "${CMAKE_CURRENT_BINARY_DIR}/${target_name}_args.in")
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# Check if the target has to be plain text or not, depending on the macro
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# CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT and the parameter
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# ALWAYS_PLAINTEXT
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set(encrypted FALSE)
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if(CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT AND
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NOT __ALWAYS_PLAINTEXT)
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set(encrypted TRUE)
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endif()
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# If the file needs to be encrypted, create a target file that lets the user
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# flash this partition independently from other files.
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# For example, if 'target_name' is app-flash and 'encrypted' is TRUE,
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# 'build' directory will contain a file name 'encrypted_app-flash_args'
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if(${encrypted})
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add_custom_target(encrypted-${target_name}
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COMMAND ${CMAKE_COMMAND}
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-D "IDF_PATH=${idf_path}"
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-D "SERIAL_TOOL=${ESPTOOLPY}"
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-D "SERIAL_TOOL_ARGS=${main_args};write_flash;@encrypted_${target_name}_args"
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-D "WORKING_DIRECTORY=${build_dir}"
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-P ${esptool_py_dir}/run_serial_tool.cmake
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WORKING_DIRECTORY ${CMAKE_CURRENT_LIST_DIR}
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USES_TERMINAL
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VERBATIM
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)
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# Generate the parameters for esptool.py command
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# In case we have both non encrypted and encrypted files to flash, we
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# can use --encrypt-files parameter to specify which ones should be
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# encrypted.
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# If we only have encrypted images to flash, we must use legacy
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# --encrypt parameter.
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# As the properties ENCRYPTED_IMAGES and NON_ENCRYPTED_IMAGES have not
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# been geenrated yet, we must use CMake expression generator to test
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# which esptool.py options we can use.
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# The variable has_non_encrypted_image will be evaluated to "1" if some
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# images must not be encrypted. This variable will be used in the next
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# expression
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set(has_non_encrypted_images "$<BOOL:$<TARGET_PROPERTY:\
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encrypted-${target_name},NON_ENCRYPTED_IMAGES>>")
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# Prepare esptool arguments (--encrypt or --encrypt-files)
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set(if_non_enc_expr "$<IF:${has_non_encrypted_images},,--encrypt>")
|
|
set_target_properties(encrypted-${target_name} PROPERTIES SUB_ARGS
|
|
"${sub_args}; ${if_non_enc_expr}")
|
|
|
|
# Generate the list of files to pass to esptool
|
|
set(encrypted_files "$<JOIN:$<TARGET_PROPERTY\
|
|
:encrypted-${target_name},ENCRYPTED_IMAGES>,\n>")
|
|
set(non_encrypted_files "$<JOIN:$<TARGET_PROPERTY:\
|
|
encrypted-${target_name},NON_ENCRYPTED_IMAGES>,\n>")
|
|
|
|
# Put both lists together, use --encrypted-files if we do also have
|
|
# plain images to flash
|
|
set(if_enc_expr "$<IF:${has_non_encrypted_images},--encrypt-files\n,>")
|
|
set(flash_args_content "$<JOIN:$<TARGET_PROPERTY:\
|
|
encrypted-${target_name},SUB_ARGS>, >\
|
|
${non_encrypted_files}\n\
|
|
${if_enc_expr}\
|
|
${encrypted_files}")
|
|
|
|
# The expression is ready to be geenrated, write it to the file which
|
|
# extension is .in
|
|
file_generate("${CMAKE_CURRENT_BINARY_DIR}/encrypted_${target_name}_args.in"
|
|
CONTENT "${flash_args_content}")
|
|
|
|
# Generate the actual string from the content of the file we just wrote
|
|
file_generate("${build_dir}/encrypted_${target_name}_args"
|
|
INPUT "${CMAKE_CURRENT_BINARY_DIR}/encrypted_${target_name}_args.in")
|
|
else()
|
|
fail_target(encrypted-${target_name} "Error: The target encrypted-${target_name} requires"
|
|
"CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT to be enabled.")
|
|
|
|
endif()
|
|
endfunction()
|
|
|
|
|
|
function(esptool_py_custom_target target_name flasher_filename dependencies)
|
|
idf_component_get_property(main_args esptool_py FLASH_ARGS)
|
|
idf_component_get_property(sub_args esptool_py FLASH_SUB_ARGS)
|
|
|
|
idf_build_get_property(build_dir BUILD_DIR)
|
|
|
|
esptool_py_flash_target(${target_name} "${main_args}" "${sub_args}")
|
|
|
|
# Copy the file to flash_xxx_args for compatibility for select target
|
|
file_generate("${build_dir}/flash_${flasher_filename}_args"
|
|
INPUT "${build_dir}/${target_name}_args")
|
|
|
|
add_dependencies(${target_name} ${dependencies})
|
|
|
|
if(CONFIG_SECURE_FLASH_ENCRYPTION_MODE_DEVELOPMENT)
|
|
file_generate("${build_dir}/flash_encrypted_${flasher_filename}_args"
|
|
INPUT "${build_dir}/encrypted_${target_name}_args")
|
|
|
|
add_dependencies(encrypted-${target_name} ${dependencies})
|
|
endif()
|
|
endfunction()
|
|
|
|
if(NOT BOOTLOADER_BUILD)
|
|
set(flash_deps "partition_table_bin")
|
|
|
|
if(CONFIG_APP_BUILD_GENERATE_BINARIES)
|
|
list(APPEND flash_deps "app")
|
|
endif()
|
|
|
|
if(CONFIG_APP_BUILD_BOOTLOADER)
|
|
list(APPEND flash_deps "bootloader")
|
|
endif()
|
|
|
|
esptool_py_custom_target(flash project "${flash_deps}")
|
|
endif()
|