avr.mk 12 KB

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  1. # Hey Emacs, this is a -*- makefile -*-
  2. ##############################################################################
  3. # Compiler settings
  4. #
  5. CC = avr-gcc
  6. OBJCOPY = avr-objcopy
  7. OBJDUMP = avr-objdump
  8. SIZE = avr-size
  9. AR = avr-ar
  10. NM = avr-nm
  11. HEX = $(OBJCOPY) -O $(FORMAT) -R .eeprom -R .fuse -R .lock -R .signature
  12. EEP = $(OBJCOPY) -j .eeprom --set-section-flags=.eeprom="alloc,load" --change-section-lma .eeprom=0 --no-change-warnings -O $(FORMAT)
  13. BIN =
  14. COMMON_VPATH += $(DRIVER_PATH)/avr
  15. COMPILEFLAGS += -funsigned-char
  16. COMPILEFLAGS += -funsigned-bitfields
  17. COMPILEFLAGS += -ffunction-sections
  18. COMPILEFLAGS += -fdata-sections
  19. COMPILEFLAGS += -fpack-struct
  20. COMPILEFLAGS += -fshort-enums
  21. CFLAGS += $(COMPILEFLAGS)
  22. CFLAGS += -fno-inline-small-functions
  23. CFLAGS += -fno-strict-aliasing
  24. CPPFLAGS += $(COMPILEFLAGS)
  25. CPPFLAGS += -fno-exceptions -std=c++11
  26. LDFLAGS +=-Wl,--gc-sections
  27. OPT_DEFS += -DF_CPU=$(F_CPU)UL
  28. MCUFLAGS = -mmcu=$(MCU)
  29. # List any extra directories to look for libraries here.
  30. # Each directory must be seperated by a space.
  31. # Use forward slashes for directory separators.
  32. # For a directory that has spaces, enclose it in quotes.
  33. EXTRALIBDIRS =
  34. #---------------- External Memory Options ----------------
  35. # 64 KB of external RAM, starting after internal RAM (ATmega128!),
  36. # used for variables (.data/.bss) and heap (malloc()).
  37. #EXTMEMOPTS = -Wl,-Tdata=0x801100,--defsym=__heap_end=0x80ffff
  38. # 64 KB of external RAM, starting after internal RAM (ATmega128!),
  39. # only used for heap (malloc()).
  40. #EXTMEMOPTS = -Wl,--section-start,.data=0x801100,--defsym=__heap_end=0x80ffff
  41. EXTMEMOPTS =
  42. #---------------- Debugging Options ----------------
  43. # Debugging format.
  44. # Native formats for AVR-GCC's -g are dwarf-2 [default] or stabs.
  45. # AVR Studio 4.10 requires dwarf-2.
  46. # AVR [Extended] COFF format requires stabs, plus an avr-objcopy run.
  47. DEBUG = dwarf-2
  48. # For simulavr only - target MCU frequency.
  49. DEBUG_MFREQ = $(F_CPU)
  50. # Set the DEBUG_UI to either gdb or insight.
  51. # DEBUG_UI = gdb
  52. DEBUG_UI = insight
  53. # Set the debugging back-end to either avarice, simulavr.
  54. DEBUG_BACKEND = avarice
  55. #DEBUG_BACKEND = simulavr
  56. # GDB Init Filename.
  57. GDBINIT_FILE = __avr_gdbinit
  58. # When using avarice settings for the JTAG
  59. JTAG_DEV = /dev/com1
  60. # Debugging port used to communicate between GDB / avarice / simulavr.
  61. DEBUG_PORT = 4242
  62. # Debugging host used to communicate between GDB / avarice / simulavr, normally
  63. # just set to localhost unless doing some sort of crazy debugging when
  64. # avarice is running on a different computer.
  65. DEBUG_HOST = localhost
  66. #============================================================================
  67. # Autodetect teensy loader
  68. ifndef TEENSY_LOADER_CLI
  69. ifneq (, $(shell which teensy-loader-cli 2>/dev/null))
  70. TEENSY_LOADER_CLI ?= teensy-loader-cli
  71. else
  72. TEENSY_LOADER_CLI ?= teensy_loader_cli
  73. endif
  74. endif
  75. # Generate a .qmk for the QMK-FF
  76. qmk: $(BUILD_DIR)/$(TARGET).hex
  77. zip $(TARGET).qmk -FSrj $(KEYMAP_PATH)/*
  78. zip $(TARGET).qmk -u $<
  79. printf "@ $<\n@=firmware.hex\n" | zipnote -w $(TARGET).qmk
  80. printf "{\n \"generated\": \"%s\"\n}" "$$(date)" > $(BUILD_DIR)/$(TARGET).json
  81. if [ -f $(KEYBOARD_PATH_5)/info.json ]; then \
  82. jq -s '.[0] * .[1]' $(BUILD_DIR)/$(TARGET).json $(KEYBOARD_PATH_5)/info.json | ex -sc 'wq!$(BUILD_DIR)/$(TARGET).json' /dev/stdin; \
  83. fi
  84. if [ -f $(KEYBOARD_PATH_4)/info.json ]; then \
  85. jq -s '.[0] * .[1]' $(BUILD_DIR)/$(TARGET).json $(KEYBOARD_PATH_4)/info.json | ex -sc 'wq!$(BUILD_DIR)/$(TARGET).json' /dev/stdin; \
  86. fi
  87. if [ -f $(KEYBOARD_PATH_3)/info.json ]; then \
  88. jq -s '.[0] * .[1]' $(BUILD_DIR)/$(TARGET).json $(KEYBOARD_PATH_3)/info.json | ex -sc 'wq!$(BUILD_DIR)/$(TARGET).json' /dev/stdin; \
  89. fi
  90. if [ -f $(KEYBOARD_PATH_2)/info.json ]; then \
  91. jq -s '.[0] * .[1]' $(BUILD_DIR)/$(TARGET).json $(KEYBOARD_PATH_2)/info.json | ex -sc 'wq!$(BUILD_DIR)/$(TARGET).json' /dev/stdin; \
  92. fi
  93. if [ -f $(KEYBOARD_PATH_1)/info.json ]; then \
  94. jq -s '.[0] * .[1]' $(BUILD_DIR)/$(TARGET).json $(KEYBOARD_PATH_1)/info.json | ex -sc 'wq!$(BUILD_DIR)/$(TARGET).json' /dev/stdin; \
  95. fi
  96. zip $(TARGET).qmk -urj $(BUILD_DIR)/$(TARGET).json
  97. printf "@ $(TARGET).json\n@=info.json\n" | zipnote -w $(TARGET).qmk
  98. # Program the device.
  99. program: $(BUILD_DIR)/$(TARGET).hex $(BUILD_DIR)/$(TARGET).eep check-size
  100. $(PROGRAM_CMD)
  101. define EXEC_TEENSY
  102. $(TEENSY_LOADER_CLI) -mmcu=$(MCU) -w -v $(BUILD_DIR)/$(TARGET).hex
  103. endef
  104. teensy: $(BUILD_DIR)/$(TARGET).hex check-size cpfirmware
  105. $(call EXEC_TEENSY)
  106. BATCHISP ?= batchisp
  107. flip: $(BUILD_DIR)/$(TARGET).hex check-size
  108. $(BATCHISP) -hardware usb -device $(MCU) -operation erase f
  109. $(BATCHISP) -hardware usb -device $(MCU) -operation loadbuffer $(BUILD_DIR)/$(TARGET).hex program
  110. $(BATCHISP) -hardware usb -device $(MCU) -operation start reset 0
  111. DFU_PROGRAMMER ?= dfu-programmer
  112. GREP ?= grep
  113. define EXEC_DFU
  114. if [ "$(1)" ]; then \
  115. echo "Flashing '$(1)' for EE_HANDS split keyboard support." ;\
  116. fi; \
  117. until $(DFU_PROGRAMMER) $(MCU) get bootloader-version; do\
  118. printf "$(MSG_BOOTLOADER_NOT_FOUND)" ;\
  119. sleep 5 ;\
  120. done; \
  121. if $(DFU_PROGRAMMER) --version 2>&1 | $(GREP) -q 0.7 ; then\
  122. $(DFU_PROGRAMMER) $(MCU) erase --force; \
  123. if [ "$(1)" ]; then \
  124. $(DFU_PROGRAMMER) $(MCU) flash --eeprom $(QUANTUM_PATH)/split_common/$(1);\
  125. fi; \
  126. else \
  127. $(DFU_PROGRAMMER) $(MCU) erase; \
  128. if [ "$(1)" ]; then \
  129. $(DFU_PROGRAMMER) $(MCU) flash-eeprom $(QUANTUM_PATH)/split_common/$(1);\
  130. fi; \
  131. fi; \
  132. $(DFU_PROGRAMMER) $(MCU) flash $(BUILD_DIR)/$(TARGET).hex;\
  133. $(DFU_PROGRAMMER) $(MCU) reset
  134. endef
  135. dfu: $(BUILD_DIR)/$(TARGET).hex cpfirmware check-size
  136. $(call EXEC_DFU)
  137. dfu-start:
  138. $(DFU_PROGRAMMER) $(MCU) reset
  139. $(DFU_PROGRAMMER) $(MCU) start
  140. flip-ee: $(BUILD_DIR)/$(TARGET).hex $(BUILD_DIR)/$(TARGET).eep
  141. $(COPY) $(BUILD_DIR)/$(TARGET).eep $(BUILD_DIR)/$(TARGET)eep.hex
  142. $(BATCHISP) -hardware usb -device $(MCU) -operation memory EEPROM erase
  143. $(BATCHISP) -hardware usb -device $(MCU) -operation memory EEPROM loadbuffer $(BUILD_DIR)/$(TARGET)eep.hex program
  144. $(BATCHISP) -hardware usb -device $(MCU) -operation start reset 0
  145. $(REMOVE) $(BUILD_DIR)/$(TARGET)eep.hex
  146. dfu-ee: $(BUILD_DIR)/$(TARGET).hex $(BUILD_DIR)/$(TARGET).eep
  147. if $(DFU_PROGRAMMER) --version 2>&1 | $(GREP) -q 0.7 ; then\
  148. $(DFU_PROGRAMMER) $(MCU) flash --eeprom $(BUILD_DIR)/$(TARGET).eep;\
  149. else\
  150. $(DFU_PROGRAMMER) $(MCU) flash-eeprom $(BUILD_DIR)/$(TARGET).eep;\
  151. fi
  152. $(DFU_PROGRAMMER) $(MCU) reset
  153. dfu-split-left: $(BUILD_DIR)/$(TARGET).hex cpfirmware check-size
  154. $(call EXEC_DFU,eeprom-lefthand.eep)
  155. dfu-split-right: $(BUILD_DIR)/$(TARGET).hex cpfirmware check-size
  156. $(call EXEC_DFU,eeprom-righthand.eep)
  157. define EXEC_AVRDUDE
  158. USB= ;\
  159. if $(GREP) -q -s Microsoft /proc/version; then \
  160. echo 'ERROR: AVR flashing cannot be automated within the Windows Subsystem for Linux (WSL) currently. Instead, take the .hex file generated and flash it using AVRDUDE, AVRDUDESS, or XLoader.'; \
  161. else \
  162. printf "Detecting USB port, reset your controller now."; \
  163. ls /dev/tty* > /tmp/1; \
  164. while [ -z $$USB ]; do \
  165. sleep 0.5; \
  166. printf "."; \
  167. ls /dev/tty* > /tmp/2; \
  168. USB=`comm -13 /tmp/1 /tmp/2 | $(GREP) -o '/dev/tty.*'`; \
  169. mv /tmp/2 /tmp/1; \
  170. done; \
  171. echo ""; \
  172. echo "Device $$USB has appeared; assuming it is the controller."; \
  173. if $(GREP) -q -s 'MINGW\|MSYS' /proc/version; then \
  174. USB=`echo "$$USB" | perl -pne 's/\/dev\/ttyS(\d+)/COM.($$1+1)/e'`; \
  175. echo "Remapped MSYS2 USB port to $$USB"; \
  176. sleep 1; \
  177. else \
  178. printf "Waiting for $$USB to become writable."; \
  179. while [ ! -w "$$USB" ]; do sleep 0.5; printf "."; done; echo ""; \
  180. fi; \
  181. if [ -z "$(1)" ]; then \
  182. avrdude -p $(MCU) -c avr109 -P $$USB -U flash:w:$(BUILD_DIR)/$(TARGET).hex; \
  183. else \
  184. avrdude -p $(MCU) -c avr109 -P $$USB -U flash:w:$(BUILD_DIR)/$(TARGET).hex -U eeprom:w:$(QUANTUM_PATH)/split_common/$(1); \
  185. fi \
  186. fi
  187. endef
  188. avrdude: $(BUILD_DIR)/$(TARGET).hex check-size cpfirmware
  189. $(call EXEC_AVRDUDE)
  190. avrdude-loop: $(BUILD_DIR)/$(TARGET).hex check-size cpfirmware
  191. while true; do \
  192. $(call EXEC_AVRDUDE) ; \
  193. done
  194. avrdude-split-left: $(BUILD_DIR)/$(TARGET).hex check-size cpfirmware
  195. $(call EXEC_AVRDUDE,eeprom-lefthand.eep)
  196. avrdude-split-right: $(BUILD_DIR)/$(TARGET).hex check-size cpfirmware
  197. $(call EXEC_AVRDUDE,eeprom-righthand.eep)
  198. define EXEC_USBASP
  199. avrdude -p $(MCU) -c usbasp -U flash:w:$(BUILD_DIR)/$(TARGET).hex
  200. endef
  201. usbasp: $(BUILD_DIR)/$(TARGET).hex check-size cpfirmware
  202. $(call EXEC_USBASP)
  203. BOOTLOADHID_PROGRAMMER ?= bootloadHID
  204. define EXEC_BOOTLOADHID
  205. # bootloadHid executable has no cross platform detect methods
  206. # so keep running bootloadHid if the output contains "The specified device was not found"
  207. until $(BOOTLOADHID_PROGRAMMER) -r $(BUILD_DIR)/$(TARGET).hex 2>&1 | tee /dev/stderr | grep -v "device was not found"; do\
  208. printf "$(MSG_BOOTLOADER_NOT_FOUND)" ;\
  209. sleep 5 ;\
  210. done
  211. endef
  212. bootloadHID: $(BUILD_DIR)/$(TARGET).hex check-size cpfirmware
  213. $(call EXEC_BOOTLOADHID)
  214. # Convert hex to bin.
  215. bin: $(BUILD_DIR)/$(TARGET).hex
  216. $(OBJCOPY) -Iihex -Obinary $(BUILD_DIR)/$(TARGET).hex $(BUILD_DIR)/$(TARGET).bin
  217. $(COPY) $(BUILD_DIR)/$(TARGET).bin $(TARGET).bin;
  218. # copy bin to FLASH.bin
  219. flashbin: bin
  220. $(COPY) $(BUILD_DIR)/$(TARGET).bin FLASH.bin;
  221. # Generate avr-gdb config/init file which does the following:
  222. # define the reset signal, load the target file, connect to target, and set
  223. # a breakpoint at main().
  224. gdb-config:
  225. @$(REMOVE) $(GDBINIT_FILE)
  226. @echo define reset >> $(GDBINIT_FILE)
  227. @echo SIGNAL SIGHUP >> $(GDBINIT_FILE)
  228. @echo end >> $(GDBINIT_FILE)
  229. @echo file $(BUILD_DIR)/$(TARGET).elf >> $(GDBINIT_FILE)
  230. @echo target remote $(DEBUG_HOST):$(DEBUG_PORT) >> $(GDBINIT_FILE)
  231. ifeq ($(DEBUG_BACKEND),simulavr)
  232. @echo load >> $(GDBINIT_FILE)
  233. endif
  234. @echo break main >> $(GDBINIT_FILE)
  235. debug: gdb-config $(BUILD_DIR)/$(TARGET).elf
  236. ifeq ($(DEBUG_BACKEND), avarice)
  237. @echo Starting AVaRICE - Press enter when "waiting to connect" message displays.
  238. @$(WINSHELL) /c start avarice --jtag $(JTAG_DEV) --erase --program --file \
  239. $(BUILD_DIR)/$(TARGET).elf $(DEBUG_HOST):$(DEBUG_PORT)
  240. @$(WINSHELL) /c pause
  241. else
  242. @$(WINSHELL) /c start simulavr --gdbserver --device $(MCU) --clock-freq \
  243. $(DEBUG_MFREQ) --port $(DEBUG_PORT)
  244. endif
  245. @$(WINSHELL) /c start avr-$(DEBUG_UI) --command=$(GDBINIT_FILE)
  246. # Convert ELF to COFF for use in debugging / simulating in AVR Studio or VMLAB.
  247. COFFCONVERT = $(OBJCOPY) --debugging
  248. COFFCONVERT += --change-section-address .data-0x800000
  249. COFFCONVERT += --change-section-address .bss-0x800000
  250. COFFCONVERT += --change-section-address .noinit-0x800000
  251. COFFCONVERT += --change-section-address .eeprom-0x810000
  252. coff: $(BUILD_DIR)/$(TARGET).elf
  253. @$(SECHO) $(MSG_COFF) $(BUILD_DIR)/$(TARGET).cof
  254. $(COFFCONVERT) -O coff-avr $< $(BUILD_DIR)/$(TARGET).cof
  255. extcoff: $(BUILD_DIR)/$(TARGET).elf
  256. @$(SECHO) $(MSG_EXTENDED_COFF) $(BUILD_DIR)/$(TARGET).cof
  257. $(COFFCONVERT) -O coff-ext-avr $< $(BUILD_DIR)/$(TARGET).cof
  258. bootloader:
  259. make -C lib/lufa/Bootloaders/DFU/ clean
  260. $(TMK_DIR)/make_dfu_header.sh $(ALL_CONFIGS)
  261. $(eval MAX_SIZE=$(shell n=`$(CC) -E -mmcu=$(MCU) $(CFLAGS) $(OPT_DEFS) tmk_core/common/avr/bootloader_size.c 2> /dev/null | sed -ne '/^#/n;/^AVR_SIZE:/,$${s/^AVR_SIZE: //;p;}'` && echo $$(($$n)) || echo 0))
  262. $(eval PROGRAM_SIZE_KB=$(shell n=`expr $(MAX_SIZE) / 1024` && echo $$(($$n)) || echo 0))
  263. $(eval BOOT_SECTION_SIZE_KB=$(shell n=`expr $(BOOTLOADER_SIZE) / 1024` && echo $$(($$n)) || echo 0))
  264. $(eval FLASH_SIZE_KB=$(shell n=`expr $(PROGRAM_SIZE_KB) + $(BOOT_SECTION_SIZE_KB)` && echo $$(($$n)) || echo 0))
  265. make -C lib/lufa/Bootloaders/DFU/ MCU=$(MCU) ARCH=$(ARCH) F_CPU=$(F_CPU) FLASH_SIZE_KB=$(FLASH_SIZE_KB) BOOT_SECTION_SIZE_KB=$(BOOT_SECTION_SIZE_KB)
  266. printf "BootloaderDFU.hex copied to $(TARGET)_bootloader.hex\n"
  267. cp lib/lufa/Bootloaders/DFU/BootloaderDFU.hex $(TARGET)_bootloader.hex
  268. production: $(BUILD_DIR)/$(TARGET).hex bootloader cpfirmware
  269. @cat $(BUILD_DIR)/$(TARGET).hex | awk '/^:00000001FF/ == 0' > $(TARGET)_production.hex
  270. @cat $(TARGET)_bootloader.hex >> $(TARGET)_production.hex
  271. echo "File sizes:"
  272. $(SIZE) $(TARGET).hex $(TARGET)_bootloader.hex $(TARGET)_production.hex
  273. flash: $(BUILD_DIR)/$(TARGET).hex check-size cpfirmware
  274. ifeq ($(strip $(BOOTLOADER)), caterina)
  275. $(call EXEC_AVRDUDE)
  276. else ifeq ($(strip $(BOOTLOADER)), halfkay)
  277. $(call EXEC_TEENSY)
  278. else ifeq (dfu,$(findstring dfu,$(BOOTLOADER)))
  279. $(call EXEC_DFU)
  280. else ifeq ($(strip $(BOOTLOADER)), USBasp)
  281. $(call EXEC_USBASP)
  282. else ifeq ($(strip $(BOOTLOADER)), bootloadHID)
  283. $(call EXEC_BOOTLOADHID)
  284. else
  285. $(PRINT_OK); $(SILENT) || printf "$(MSG_FLASH_BOOTLOADER)"
  286. endif