mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-12-02 04:18:20 +00:00
b3267625ca
the error: When built with PYOPT, Optiga will log its communication to the VCP. But now that VCP config lives in coreapp and Optiga lives in kernel, there's no way for Optiga to write to VCP, and the relevant calls simply don't build. We need a different method for logging inside the kernel.
504 lines
20 KiB
Makefile
504 lines
20 KiB
Makefile
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.PHONY: vendor
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# get the number of CPU cores in a "portable" manner
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# (accounting for darwin and big.LITTLE archs)
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JOBS = $(shell sysctl -n hw.perflevel0.physicalcpu 2>/dev/null ||\
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sysctl -n hw.physicalcpu 2>/dev/null ||\
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sysctl -n hw.ncpu 2>/dev/null ||\
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nproc 2>/dev/null ||\
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echo 4)
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MAKE = make -j $(JOBS)
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BUILD_DIR = build
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BOARDLOADER_BUILD_DIR = $(BUILD_DIR)/boardloader
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BOOTLOADER_BUILD_DIR = $(BUILD_DIR)/bootloader
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BOOTLOADER_CI_BUILD_DIR = $(BUILD_DIR)/bootloader_ci
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BOOTLOADER_EMU_BUILD_DIR = $(BUILD_DIR)/bootloader_emu
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PRODTEST_BUILD_DIR = $(BUILD_DIR)/prodtest
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REFLASH_BUILD_DIR = $(BUILD_DIR)/reflash
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KERNEL_BUILD_DIR = $(BUILD_DIR)/kernel
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FIRMWARE_BUILD_DIR = $(BUILD_DIR)/firmware
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UNIX_BUILD_DIR = $(BUILD_DIR)/unix
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RUST_BUILD_DIR = $(BUILD_DIR)/rust
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UNAME_S := $(shell uname -s)
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UNIX_PORT_OPTS ?=
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CROSS_PORT_OPTS ?=
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PRODUCTION ?= 0
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PYOPT ?= 1
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BITCOIN_ONLY ?= 0
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BOOTLOADER_QA ?= 0
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BOOTLOADER_DEVEL ?= 0
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TREZOR_MODEL ?= T
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TREZOR_MEMPERF ?= 0
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ADDRESS_SANITIZER ?= 0
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CMAKELISTS ?= 0
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PYTEST_TIMEOUT ?= 500
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TEST_LANG ?= "en"
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THP ?= 0
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BENCHMARK ?= 0
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TREZOR_EMULATOR_DEBUGGABLE ?= 0
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QUIET_MODE ?= 0
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# OpenOCD interface default. Alternative: ftdi/olimex-arm-usb-tiny-h
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OPENOCD_INTERFACE ?= stlink
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# OpenOCD transport default. Alternative: jtag
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OPENOCD_TRANSPORT ?= hla_swd
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ifeq ($(TREZOR_MODEL),$(filter $(TREZOR_MODEL),T))
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MCU = STM32F4
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OPENOCD_TARGET = target/stm32f4x.cfg
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MODEL_FEATURE = model_tt
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else ifeq ($(TREZOR_MODEL),$(filter $(TREZOR_MODEL),R))
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MCU = STM32F4
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OPENOCD_TARGET = target/stm32f4x.cfg
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MODEL_FEATURE = model_tr
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else ifeq ($(TREZOR_MODEL),$(filter $(TREZOR_MODEL),T3T1))
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MCU = STM32U5
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OPENOCD_TARGET = target/stm32u5x.cfg
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MODEL_FEATURE = model_mercury
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else ifeq ($(TREZOR_MODEL),$(filter $(TREZOR_MODEL),T3B1))
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MCU = STM32U5
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OPENOCD_TARGET = target/stm32u5x.cfg
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MODEL_FEATURE = model_tr
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else ifeq ($(TREZOR_MODEL),$(filter $(TREZOR_MODEL),T3W1))
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MCU = STM32U5
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OPENOCD_TARGET = target/stm32u5x.cfg
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MODEL_FEATURE = model_tt
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else ifeq ($(TREZOR_MODEL),$(filter $(TREZOR_MODEL),DISC1))
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MCU = STM32F4
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OPENOCD_TARGET = target/stm32f4x.cfg
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else ifeq ($(TREZOR_MODEL),$(filter $(TREZOR_MODEL),DISC2))
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MCU = STM32U5
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OPENOCD_TARGET = target/stm32u5x.cfg
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else
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$(error Unknown TREZOR_MODEL: $(TREZOR_MODEL))
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endif
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FLASH_START = $(shell layout_parser ${TREZOR_MODEL} FLASH_START)
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BOARDLOADER_START = $(shell layout_parser ${TREZOR_MODEL} BOARDLOADER_START)
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BOOTLOADER_START = $(shell layout_parser ${TREZOR_MODEL} BOOTLOADER_START)
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KERNEL_START = $(shell layout_parser ${TREZOR_MODEL} KERNEL_START)
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FIRMWARE_START = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_START)
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FIRMWARE_P2_START = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_P2_START)
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STORAGE_1_START = $(shell layout_parser ${TREZOR_MODEL} STORAGE_1_START)
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STORAGE_2_START = $(shell layout_parser ${TREZOR_MODEL} STORAGE_2_START)
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STORAGE_SIZE = $(shell layout_parser ${TREZOR_MODEL} NORCOW_SECTOR_SIZE)
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BOARDLOADER_MAXSIZE = $(shell layout_parser ${TREZOR_MODEL} BOARDLOADER_MAXSIZE)
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BOOTLOADER_MAXSIZE = $(shell layout_parser ${TREZOR_MODEL} BOOTLOADER_MAXSIZE)
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FIRMWARE_MAXSIZE = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_MAXSIZE)
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FIRMWARE_P1_MAXSIZE = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_P1_MAXSIZE)
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FIRMWARE_P2_MAXSIZE = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_P2_MAXSIZE)
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BOARDLOADER_SECTOR_START = $(shell layout_parser ${TREZOR_MODEL} BOARDLOADER_SECTOR_START)
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BOARDLOADER_SECTOR_END = $(shell layout_parser ${TREZOR_MODEL} BOARDLOADER_SECTOR_END)
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BOOTLOADER_SECTOR_START = $(shell layout_parser ${TREZOR_MODEL} BOOTLOADER_SECTOR_START)
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BOOTLOADER_SECTOR_END = $(shell layout_parser ${TREZOR_MODEL} BOOTLOADER_SECTOR_END)
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FIRMWARE_SECTOR_START = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_SECTOR_START)
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FIRMWARE_SECTOR_END = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_SECTOR_END)
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FIRMWARE_P1_SECTOR_START = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_P1_SECTOR_START)
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FIRMWARE_P1_SECTOR_END = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_P1_SECTOR_END)
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FIRMWARE_P2_SECTOR_START = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_P2_SECTOR_START)
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FIRMWARE_P2_SECTOR_END = $(shell layout_parser ${TREZOR_MODEL} FIRMWARE_P2_SECTOR_END)
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STORAGE_1_SECTOR_START = $(shell layout_parser ${TREZOR_MODEL} STORAGE_1_SECTOR_START)
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STORAGE_1_SECTOR_END = $(shell layout_parser ${TREZOR_MODEL} STORAGE_1_SECTOR_END)
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STORAGE_2_SECTOR_START = $(shell layout_parser ${TREZOR_MODEL} STORAGE_2_SECTOR_START)
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STORAGE_2_SECTOR_END = $(shell layout_parser ${TREZOR_MODEL} STORAGE_2_SECTOR_END)
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STORAGE_1_OFFSET := $(shell expr $(STORAGE_1_START) - $(FLASH_START))
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STORAGE_2_OFFSET := $(shell expr $(STORAGE_2_START) - $(FLASH_START))
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OPENOCD = openocd -f interface/$(OPENOCD_INTERFACE).cfg -c "transport select $(OPENOCD_TRANSPORT)" -f $(OPENOCD_TARGET)
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CFLAGS += -DSCM_REVISION='\"$(shell git rev-parse HEAD | sed 's:\(..\):\\x\1:g')\"'
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TESTPATH = $(CURDIR)/../tests
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EMU = $(CURDIR)/emu.py
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EMU_LOG_FILE ?= $(TESTPATH)/trezor.log
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EMU_TEST_ARGS = --disable-animation --headless --output=$(EMU_LOG_FILE) --temporary-profile
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EMU_TEST = $(EMU) $(EMU_TEST_ARGS) -c
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JUNIT_XML ?= $(TESTPATH)/junit.xml
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PYTEST = pytest --junitxml=$(JUNIT_XML)
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TREZOR_FIDO2_UDP_PORT = 21326
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RUST_TARGET=$(shell rustc -vV | sed -n 's/host: //p')
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MULTICORE ?= "auto"
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RANDOM=$(shell python -c 'import random; print(random.randint(0, 1000000))')
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SCONS_VARS = \
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BENCHMARK="$(BENCHMARK)" \
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BITCOIN_ONLY="$(BITCOIN_ONLY)" \
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BOOTLOADER_DEVEL="$(BOOTLOADER_DEVEL)" \
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BOOTLOADER_QA="$(BOOTLOADER_QA)" \
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CFLAGS="$(CFLAGS)" \
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CMAKELISTS="$(CMAKELISTS)" \
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DISABLE_OPTIGA="$(DISABLE_OPTIGA)" \
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NEW_RENDERING="$(NEW_RENDERING)" \
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PRODUCTION="$(PRODUCTION)" \
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PYOPT="$(PYOPT)" \
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QUIET_MODE="$(QUIET_MODE)" \
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THP="$(THP)" \
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TREZOR_EMULATOR_ASAN="$(ADDRESS_SANITIZER)" \
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TREZOR_EMULATOR_DEBUGGABLE=$(TREZOR_EMULATOR_DEBUGGABLE) \
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TREZOR_MEMPERF="$(TREZOR_MEMPERF)" \
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TREZOR_MODEL="$(TREZOR_MODEL)"
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SCONS_OPTS = -Q -j $(JOBS)
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ifeq ($(QUIET_MODE),1)
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SCONS_OPTS += --quiet
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endif
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SCONS = scons $(SCONS_OPTS) $(SCONS_VARS)
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## help commands:
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help: ## show this help
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@awk -f ../tools/help.awk $(MAKEFILE_LIST)
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## dependencies commands:
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vendor: ## update git submodules
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git submodule update --init --recursive --force
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## emulator commands:
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run: ## run unix port
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cd src ; ../$(UNIX_BUILD_DIR)/trezor-emu-core
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emu: ## run emulator
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$(EMU)
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## test commands:
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test: ## run unit tests
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cd tests ; ./run_tests.sh $(TESTOPTS)
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test_rust: ## run rs unit tests
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export BUILD_DIR=$(abspath $(UNIX_BUILD_DIR)) ; \
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cd embed/rust ; cargo test $(TESTOPTS) --target=$(RUST_TARGET) \
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--no-default-features --features $(MODEL_FEATURE),test \
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-- --test-threads=1 --nocapture
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test_emu: ## run selected device tests from python-trezor
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$(EMU_TEST) $(PYTEST) $(TESTPATH)/device_tests $(TESTOPTS) --lang=$(TEST_LANG)
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test_emu_multicore: ## run device tests using multiple cores
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$(PYTEST) -n $(MULTICORE) $(TESTPATH)/device_tests $(TESTOPTS) --timeout $(PYTEST_TIMEOUT) \
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--control-emulators --model=core --random-order-seed=$(RANDOM) \
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--lang=$(TEST_LANG)
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test_emu_monero: ## run selected monero device tests from monero-agent
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cd tests ; $(EMU_TEST) ./run_tests_device_emu_monero.sh $(TESTOPTS)
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test_emu_u2f: ## run selected u2f device tests from u2f-tests-hid
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$(EMU_TEST) --slip0014 $(TESTPATH)/fido_tests/u2f-tests-hid/HIDTest $(TREZOR_FIDO2_UDP_PORT) $(TESTOPTS)
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$(EMU_TEST) --slip0014 $(TESTPATH)/fido_tests/u2f-tests-hid/U2FTest $(TREZOR_FIDO2_UDP_PORT) $(TESTOPTS)
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test_emu_fido2: ## run fido2 device tests
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cd $(TESTPATH)/fido_tests/fido2 ; \
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$(EMU_TEST) --slip0014 $(PYTEST) --maxfail=5 --sim tests/standard/ --vendor trezor $(TESTOPTS)
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test_emu_click: ## run click tests
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$(EMU_TEST) $(PYTEST) $(TESTPATH)/click_tests $(TESTOPTS) --lang=$(TEST_LANG)
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test_emu_click_ui: ## run click tests with UI testing
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$(EMU_TEST) $(PYTEST) $(TESTPATH)/click_tests $(TESTOPTS) \
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--ui=test --ui-check-missing --do-master-diff --lang=$(TEST_LANG)
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test_emu_persistence: ## run persistence tests
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$(PYTEST) $(TESTPATH)/persistence_tests $(TESTOPTS) --lang=$(TEST_LANG)
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test_emu_persistence_ui: ## run persistence tests with UI testing
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$(PYTEST) $(TESTPATH)/persistence_tests $(TESTOPTS) \
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--ui=test --ui-check-missing --do-master-diff --lang=$(TEST_LANG)
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test_emu_ui: ## run ui integration tests
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$(EMU_TEST) $(PYTEST) $(TESTPATH)/device_tests $(TESTOPTS) \
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--ui=test --ui-check-missing --record-text-layout --do-master-diff \
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--lang=$(TEST_LANG)
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test_emu_ui_multicore: ## run ui integration tests using multiple cores
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$(PYTEST) -n $(MULTICORE) $(TESTPATH)/device_tests $(TESTOPTS) --timeout $(PYTEST_TIMEOUT) \
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--ui=test --ui-check-missing --record-text-layout --do-master-diff \
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--control-emulators --model=core --random-order-seed=$(RANDOM) \
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--lang=$(TEST_LANG)
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test_emu_ui_record: ## record and hash screens for ui integration tests
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$(EMU_TEST) $(PYTEST) $(TESTPATH)/device_tests $(TESTOPTS) \
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--ui=record --ui-check-missing --do-master-diff --lang=$(TEST_LANG)
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test_emu_ui_record_multicore: ## quickly record all screens
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make test_emu_ui_multicore || echo "All errors are recorded in fixtures.json"
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../tests/update_fixtures.py local -r
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pylint: ## run pylint on application sources and tests
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pylint -E $(shell find src tests -name *.py)
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mypy: ## deprecated; use "make typecheck"
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@echo "mypy is deprecated; use 'make typecheck'"
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make typecheck
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typecheck: pyright
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pyright:
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python ../tools/pyright_tool.py
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clippy:
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export BUILD_DIR=$(abspath $(UNIX_BUILD_DIR)) ; \
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cd embed/rust ; cargo clippy $(TESTOPTS) --all-features --target=$(RUST_TARGET)
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## code generation:
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templates: translations ## render Mako templates (for lists of coins, tokens, etc.)
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./tools/build_templates
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templates_check: translations_check ## check that Mako-rendered files match their templates
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./tools/build_templates --check
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translations: ## update translations
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python ./translations/order.py
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python ./translations/cli.py gen
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translations_check: ## check that translations are up to date
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python ./translations/order.py --check
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python ./translations/cli.py gen --check
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# spits out error if the stored merkle root is not up to date
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python ./translations/cli.py merkle-root > /dev/null
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## build commands:
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build: build_boardloader build_bootloader build_firmware build_prodtest build_unix ## build all
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build_embed: build_boardloader build_bootloader build_firmware # build boardloader, bootloader, firmware
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build_boardloader: ## build boardloader
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$(SCONS) $(BOARDLOADER_BUILD_DIR)/boardloader.bin
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build_bootloader: ## build bootloader
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$(SCONS) $(BOOTLOADER_BUILD_DIR)/bootloader.bin
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build_bootloader_ci: ## build CI device testing bootloader
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$(SCONS) $(BOOTLOADER_CI_BUILD_DIR)/bootloader.bin
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build_bootloader_emu: ## build the unix bootloader emulator
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$(SCONS) $(BOOTLOADER_EMU_BUILD_DIR)/bootloader.elf
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build_bootloader_emu_debug: ## build the unix bootloader emulator
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$(SCONS) TREZOR_EMULATOR_DEBUGGABLE=1 $(BOOTLOADER_EMU_BUILD_DIR)/bootloader.elf
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build_prodtest: ## build production test firmware
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$(SCONS) $(PRODTEST_BUILD_DIR)/prodtest.bin
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build_reflash: ## build reflash firmware + reflash image
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$(SCONS) $(REFLASH_BUILD_DIR)/reflash.bin
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dd if=build/boardloader/boardloader.bin of=$(REFLASH_BUILD_DIR)/sdimage.bin bs=1 seek=0
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dd if=build/bootloader/bootloader.bin of=$(REFLASH_BUILD_DIR)/sdimage.bin bs=1 seek=49152
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build_kernel: ## build kernel image
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$(SCONS) PYOPT=1 $(KERNEL_BUILD_DIR)/kernel.bin
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build_firmware: templates build_cross build_kernel ## build firmware with frozen modules
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$(SCONS) $(FIRMWARE_BUILD_DIR)/firmware.bin
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build_unix: templates ## build unix port
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$(SCONS) $(UNIX_BUILD_DIR)/trezor-emu-core $(UNIX_PORT_OPTS)
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build_unix_frozen: templates build_cross ## build unix port with frozen modules
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$(SCONS) $(UNIX_BUILD_DIR)/trezor-emu-core $(UNIX_PORT_OPTS) TREZOR_EMULATOR_FROZEN=1
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build_unix_debug: templates ## build unix port
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$(SCONS) --max-drift=1 $(UNIX_BUILD_DIR)/trezor-emu-core $(UNIX_PORT_OPTS) \
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TREZOR_EMULATOR_ASAN=1 TREZOR_EMULATOR_DEBUGGABLE=1
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build_cross: ## build mpy-cross port
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$(MAKE) -C vendor/micropython/mpy-cross $(CROSS_PORT_OPTS)
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## clean commands:
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clean: clean_boardloader clean_bootloader clean_bootloader_emu clean_bootloader_ci clean_prodtest clean_reflash clean_firmware clean_unix clean_cross ## clean all
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rm -f ".sconsign.dblite"
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clean_boardloader: ## clean boardloader build
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rm -rf $(BOARDLOADER_BUILD_DIR)
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clean_bootloader: ## clean bootloader build
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rm -rf $(BOOTLOADER_BUILD_DIR)
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clean_bootloader_ci: ## clean bootloader_ci build
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rm -rf $(BOOTLOADER_CI_BUILD_DIR)
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clean_bootloader_emu: ## clean bootloader_emu build
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rm -rf $(BOOTLOADER_EMU_BUILD_DIR)
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clean_prodtest: ## clean prodtest build
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rm -rf $(PRODTEST_BUILD_DIR)
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clean_reflash: ## clean reflash build
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rm -rf $(REFLASH_BUILD_DIR)
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clean_kernel: ## clean kernel build
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rm -rf $(KERNEL_BUILD_DIR)
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clean_firmware: ## clean firmware build
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rm -rf $(FIRMWARE_BUILD_DIR) $(RUST_BUILD_DIR)
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clean_unix: ## clean unix build
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rm -rf $(UNIX_BUILD_DIR) $(RUST_BUILD_DIR)
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clean_cross: ## clean mpy-cross build
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$(MAKE) -C vendor/micropython/mpy-cross clean $(CROSS_PORT_OPTS)
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## flash commands:
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flash: flash_boardloader flash_bootloader flash_firmware ## flash everything using OpenOCD
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flash_boardloader: $(BOARDLOADER_BUILD_DIR)/boardloader.bin ## flash boardloader using OpenOCD
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$(OPENOCD) -c "init; reset halt; flash write_image erase $< $(BOARDLOADER_START); exit"
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flash_bootloader: $(BOOTLOADER_BUILD_DIR)/bootloader.bin ## flash bootloader using OpenOCD
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$(OPENOCD) -c "init; reset halt; flash write_image erase $< $(BOOTLOADER_START); exit"
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flash_bootloader_ci: $(BOOTLOADER_CI_BUILD_DIR)/bootloader.bin ## flash CI bootloader using OpenOCD
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$(OPENOCD) -c "init; reset halt; flash write_image erase $< $(BOOTLOADER_START); exit"
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flash_prodtest: $(PRODTEST_BUILD_DIR)/prodtest.bin ## flash prodtest using OpenOCD
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$(OPENOCD) -c "init; reset halt; flash write_image erase $< $(FIRMWARE_START); exit"
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flash_firmware: $(FIRMWARE_BUILD_DIR)/firmware.bin ## flash firmware using OpenOCD
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ifeq ($(MCU),$(filter $(MCU),STM32F4))
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$(OPENOCD) -c "init; reset halt; flash write_image erase $<.p1 $(FIRMWARE_START); flash write_image erase $<.p2 $(FIRMWARE_P2_START); exit"
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else
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$(OPENOCD) -c "init; reset halt; flash write_image erase $< $(FIRMWARE_START); exit"
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endif
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flash_combine: $(PRODTEST_BUILD_DIR)/combined.bin ## flash combined using OpenOCD
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$(OPENOCD) -c "init; reset halt; flash write_image erase $< $(BOARDLOADER_START); exit"
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flash_erase: ## erase all sectors in flash bank 0
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$(OPENOCD) -c "init; reset halt; flash info 0; flash erase_sector 0 0 last; flash erase_check 0; exit"
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flash_erase_bootloader: ## erase bootloader
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$(OPENOCD) -c "init; reset halt; flash info 0; flash erase_sector 0 $(BOOTLOADER_SECTOR_START) $(BOOTLOADER_SECTOR_END); exit"
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flash_erase_firmware: ## erase bootloader
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ifeq ($(MCU),$(filter $(MCU),STM32F4))
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$(OPENOCD) -c "init; reset halt; flash info 0; flash erase_sector 0 $(FIRMWARE_P1_SECTOR_START) $(FIRMWARE_P1_SECTOR_END); flash erase_sector 0 $(FIRMWARE_P2_SECTOR_START) $(FIRMWARE_P2_SECTOR_END); exit"
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else
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$(OPENOCD) -c "init; reset halt; flash info 0; flash erase_sector 0 $(FIRMWARE_SECTOR_START) $(FIRMWARE_SECTOR_END); exit"
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endif
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flash_read_storage: ## read storage sectors from flash
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$(OPENOCD) -c "init; reset halt; flash read_bank 0 storage1.data $(STORAGE_1_OFFSET) $(STORAGE_SIZE); flash read_bank 0 storage2.data $(STORAGE_2_OFFSET) $(STORAGE_SIZE); exit"
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flash_erase_storage: ## erase storage sectors from flash
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$(OPENOCD) -c "init; reset halt; flash erase_sector 0 $(STORAGE_1_SECTOR_START) $(STORAGE_1_SECTOR_END); flash erase_sector 0 $(STORAGE_2_SECTOR_START) $(STORAGE_2_SECTOR_END); exit"
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flash_bootloader_jlink: $(BOOTLOADER_BUILD_DIR)/bootloader.bin ## flash bootloader using JLink
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|
JLinkExe -nogui 1 -commanderscript embed/projects/bootloader/bootloader_flash.jlink
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flash_bootloader_ci_jlink: $(BOOTLOADER_CI_BUILD_DIR)/bootloader.bin ## flash CI bootloader using JLink
|
|
JLinkExe -nogui 1 -commanderscript embed/projects/bootloader_ci/bootloader_flash.jlink
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flash_firmware_jlink: $(FIRMWARE_BUILD_DIR)/firmware.bin ## flash firmware using JLink. file names must end in .bin for JLink
|
|
cp -f $<.p1 $<.p1.bin
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cp -f $<.p2 $<.p2.bin
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|
## pad 2nd part so that FW integrity works after flash
|
|
## read&compare in flashing will avoid erasing unmodified sectors
|
|
truncate -s $(FIRMWARE_P2_MAXSIZE) $<.p2.bin
|
|
JLinkExe -nogui 1 -commanderscript embed/projects/firmware/firmware_flash.jlink
|
|
|
|
## openocd debug commands:
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|
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openocd: ## start openocd which connects to the device
|
|
$(OPENOCD)
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|
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openocd_reset: ## cause a system reset using OpenOCD
|
|
$(OPENOCD) -c "init; reset; exit"
|
|
|
|
GDB = arm-none-eabi-gdb --nx -ex 'set remotetimeout unlimited' -ex 'set confirm off' -ex 'target remote 127.0.0.1:3333' -ex 'monitor reset halt'
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|
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gdb_boardloader: $(BOARDLOADER_BUILD_DIR)/boardloader.elf ## start remote gdb session to openocd with boardloader symbols
|
|
$(GDB) $<
|
|
|
|
gdb_bootloader: $(BOOTLOADER_BUILD_DIR)/bootloader.elf ## start remote gdb session to openocd with bootloader symbols
|
|
$(GDB) $<
|
|
|
|
gdb_prodtest: $(PRODTEST_BUILD_DIR)/prodtest.elf ## start remote gdb session to openocd with prodtest symbols
|
|
$(GDB) $<
|
|
|
|
gdb_firmware: $(FIRMWARE_BUILD_DIR)/firmware.elf ## start remote gdb session to openocd with firmware symbols
|
|
$(GDB) $<
|
|
|
|
## misc commands:
|
|
|
|
binctl: ## print info about binary files
|
|
./tools/headertool.py $(BOOTLOADER_BUILD_DIR)/bootloader.bin
|
|
./tools/headertool.py $(FIRMWARE_BUILD_DIR)/firmware.bin
|
|
|
|
bloaty: ## run bloaty size profiler
|
|
bloaty -d symbols -n 0 -s file $(FIRMWARE_BUILD_DIR)/firmware.elf | less
|
|
bloaty -d compileunits -n 0 -s file $(FIRMWARE_BUILD_DIR)/firmware.elf | less
|
|
|
|
ifeq ($(MCU),$(filter $(MCU),STM32F4))
|
|
sizecheck: ## check sizes of binary files
|
|
test "$(BOARDLOADER_MAXSIZE)" -ge "$(shell wc -c < $(BOARDLOADER_BUILD_DIR)/boardloader.bin)"
|
|
test "$(BOOTLOADER_MAXSIZE)" -ge "$(shell wc -c < $(BOOTLOADER_BUILD_DIR)/bootloader.bin)"
|
|
test "$(FIRMWARE_P1_MAXSIZE)" -ge "$(shell wc -c < $(FIRMWARE_BUILD_DIR)/firmware.bin.p1)"
|
|
test "$(FIRMWARE_P2_MAXSIZE)" -ge "$(shell wc -c < $(FIRMWARE_BUILD_DIR)/firmware.bin.p2)"
|
|
test "$(FIRMWARE_MAXSIZE)" -ge "$(shell wc -c < $(FIRMWARE_BUILD_DIR)/firmware.bin)"
|
|
else ifeq ($(MCU),$(filter $(MCU),STM32U5))
|
|
sizecheck: ## check sizes of binary files
|
|
test "$(BOARDLOADER_MAXSIZE)" -ge "$(shell wc -c < $(BOARDLOADER_BUILD_DIR)/boardloader.bin)"
|
|
test "$(BOOTLOADER_MAXSIZE)" -ge "$(shell wc -c < $(BOOTLOADER_BUILD_DIR)/bootloader.bin)"
|
|
test "$(FIRMWARE_MAXSIZE)" -ge "$(shell wc -c < $(FIRMWARE_BUILD_DIR)/firmware.bin)"
|
|
endif
|
|
|
|
combine: ## combine boardloader + bootloader + prodtest into one combined image
|
|
combine_firmware \
|
|
$(TREZOR_MODEL) \
|
|
$(PRODTEST_BUILD_DIR)/combined.bin \
|
|
-b BOARDLOADER $(BOARDLOADER_BUILD_DIR)/boardloader.bin \
|
|
-b BOOTLOADER $(BOOTLOADER_BUILD_DIR)/bootloader.bin \
|
|
-b FIRMWARE $(PRODTEST_BUILD_DIR)/prodtest.bin
|
|
|
|
ifeq ($(MCU),$(filter $(MCU),STM32F4))
|
|
combine_fw: ## combine boardloader + bootloader + firmware into one combined image
|
|
combine_firmware \
|
|
$(TREZOR_MODEL) \
|
|
$(PRODTEST_BUILD_DIR)/combined.bin \
|
|
-b BOARDLOADER $(BOARDLOADER_BUILD_DIR)/boardloader.bin \
|
|
-b BOOTLOADER $(BOOTLOADER_BUILD_DIR)/bootloader.bin \
|
|
-b FIRMWARE $(FIRMWARE_BUILD_DIR)/firmware.bin.p1 \
|
|
-b FIRMWARE_P2 $(FIRMWARE_BUILD_DIR)/firmware.bin.p2
|
|
else ifeq ($(MCU),$(filter $(MCU),STM32U5))
|
|
combine_fw: ## combine boardloader + bootloader + firmware into one combined image
|
|
combine_firmware \
|
|
$(TREZOR_MODEL) \
|
|
$(PRODTEST_BUILD_DIR)/combined.bin \
|
|
-b BOARDLOADER $(BOARDLOADER_BUILD_DIR)/boardloader.bin \
|
|
-b BOOTLOADER $(BOOTLOADER_BUILD_DIR)/bootloader.bin \
|
|
-b FIRMWARE $(FIRMWARE_BUILD_DIR)/firmware.bin
|
|
endif
|
|
|
|
upload: ## upload firmware using trezorctl
|
|
trezorctl firmware_update -s -f $(FIRMWARE_BUILD_DIR)/firmware.bin
|
|
|
|
upload_prodtest: ## upload prodtest using trezorctl
|
|
trezorctl firmware_update -s -f $(PRODTEST_BUILD_DIR)/prodtest.bin
|
|
|
|
coverage: ## generate coverage report
|
|
./tools/coverage-report
|
|
|
|
unused: ## find unused micropython code
|
|
vulture src src/_vulture_ignore.txt --exclude "messages.py,*/enums/*"
|
|
|
|
|
|
.PHONY: templates translations templates_check translations_check
|