# # Common make definition for all examples # # libc LIBS += -lgcc -lm -lnosys ifneq ($(BOARD), spresense) LIBS += -lc endif # TinyUSB Stack source SRC_C += \ src/tusb.c \ src/common/tusb_fifo.c \ src/device/usbd.c \ src/device/usbd_control.c \ src/class/msc/msc_device.c \ src/class/cdc/cdc_device.c \ src/class/dfu/dfu_rt_device.c \ src/class/hid/hid_device.c \ src/class/midi/midi_device.c \ src/class/usbtmc/usbtmc_device.c \ src/class/vendor/vendor_device.c \ src/portable/$(VENDOR)/$(CHIP_FAMILY)/dcd_$(CHIP_FAMILY).c # TinyUSB stack include INC += $(TOP)/src # CFLAGS += $(addprefix -I,$(INC)) LDFLAGS += $(CFLAGS) -fshort-enums -Wl,-T,$(TOP)/$(LD_FILE) -Wl,-Map=$@.map -Wl,-cref -Wl,-gc-sections -specs=nosys.specs -specs=nano.specs ASFLAGS += $(CFLAGS) # Assembly files can be name with upper case .S, convert it to .s SRC_S := $(SRC_S:.S=.s) # Due to GCC LTO bug https://bugs.launchpad.net/gcc-arm-embedded/+bug/1747966 # assembly file should be placed first in linking order OBJ += $(addprefix $(BUILD)/obj/, $(SRC_S:.s=.o)) OBJ += $(addprefix $(BUILD)/obj/, $(SRC_C:.c=.o)) # Verbose mode ifeq ("$(V)","1") $(info CFLAGS $(CFLAGS) ) $(info ) $(info LDFLAGS $(LDFLAGS)) $(info ) $(info ASFLAGS $(ASFLAGS)) $(info ) endif # Set all as default goal .DEFAULT_GOAL := all all: $(BUILD)/$(BOARD)-firmware.bin $(BUILD)/$(BOARD)-firmware.hex size uf2: $(BUILD)/$(BOARD)-firmware.uf2 OBJ_DIRS = $(sort $(dir $(OBJ))) $(OBJ): | $(OBJ_DIRS) $(OBJ_DIRS): @$(MKDIR) -p $@ $(BUILD)/$(BOARD)-firmware.elf: $(OBJ) @echo LINK $@ @$(CC) -o $@ $(LDFLAGS) $^ -Wl,--start-group $(LIBS) -Wl,--end-group $(BUILD)/$(BOARD)-firmware.bin: $(BUILD)/$(BOARD)-firmware.elf @echo CREATE $@ @$(OBJCOPY) -O binary $^ $@ $(BUILD)/$(BOARD)-firmware.hex: $(BUILD)/$(BOARD)-firmware.elf @echo CREATE $@ @$(OBJCOPY) -O ihex $^ $@ UF2_FAMILY ?= 0x00 $(BUILD)/$(BOARD)-firmware.uf2: $(BUILD)/$(BOARD)-firmware.hex @echo CREATE $@ $(PYTHON) $(TOP)/tools/uf2/utils/uf2conv.py -f $(UF2_FAMILY) -c -o $@ $^ # We set vpath to point to the top of the tree so that the source files # can be located. By following this scheme, it allows a single build rule # to be used to compile all .c files. vpath %.c . $(TOP) $(BUILD)/obj/%.o: %.c @echo CC $(notdir $@) @$(CC) $(CFLAGS) -c -MD -o $@ $< @# The following fixes the dependency file. @# See http://make.paulandlesley.org/autodep.html for details. @# Regex adjusted from the above to play better with Windows paths, etc. @$(CP) $(@:.o=.d) $(@:.o=.P); \ $(SED) -e 's/#.*//' -e 's/^.*: *//' -e 's/ *\\$$//' \ -e '/^$$/ d' -e 's/$$/ :/' < $(@:.o=.d) >> $(@:.o=.P); \ $(RM) $(@:.o=.d) # ASM sources lower case .s vpath %.s . $(TOP) $(BUILD)/obj/%.o: %.s @echo AS $(notdir $@) @$(CC) -x assembler-with-cpp $(ASFLAGS) -c -o $@ $< # ASM sources upper case .S vpath %.S . $(TOP) $(BUILD)/obj/%.o: %.S @echo AS $(notdir $@) @$(CC) -x assembler-with-cpp $(ASFLAGS) -c -o $@ $< size: $(BUILD)/$(BOARD)-firmware.elf -@echo '' @$(SIZE) $< -@echo '' clean: rm -rf $(BUILD) # Flash binary using Jlink ifeq ($(OS),Windows_NT) JLINKEXE = JLink.exe else JLINKEXE = JLinkExe endif # Flash using jlink flash-jlink: $(BUILD)/$(BOARD)-firmware.hex @echo halt > $(BUILD)/$(BOARD).jlink @echo loadfile $^ >> $(BUILD)/$(BOARD).jlink @echo r >> $(BUILD)/$(BOARD).jlink @echo go >> $(BUILD)/$(BOARD).jlink @echo exit >> $(BUILD)/$(BOARD).jlink $(JLINKEXE) -device $(JLINK_DEVICE) -if $(JLINK_IF) -JTAGConf -1,-1 -speed auto -CommandFile $(BUILD)/$(BOARD).jlink