remove combinehex and erase target
update Readme
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10
Makefile
10
Makefile
@ -305,7 +305,7 @@ $(info ASFLAGS $(ASFLAGS))
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$(info )
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endif
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.PHONY: all clean flash dfu-flash sd erase gdbflash gdb
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.PHONY: all clean flash dfu-flash sd gdbflash gdb
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# default target to build
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all: $(BUILD)/$(OUT_FILE)-nosd.out $(BUILD)/$(MERGED_FILE).hex
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@ -332,10 +332,6 @@ sd:
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@echo Flashing: $(SD_HEX)
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$(NRFJPROG) --program $(SD_HEX) -f nrf52 --chiperase --reset
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erase:
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@echo Erasing chip
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$(NRFJPROG) --eraseall -f nrf52
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gdbflash: $(BUILD)/$(MERGED_FILE).hex
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@echo Flashing: $<
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@$(GDB_BMP) -nx --batch -ex 'load $<' -ex 'compare-sections' -ex 'kill'
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@ -369,7 +365,7 @@ $(BUILD)/$(OUT_FILE)-nosd.out: $(BUILD) $(OBJECTS)
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@$(SIZE) $@
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#------------------- Binary generator -------------------
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.PHONY: genhex genpkg combinehex
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.PHONY: genhex genpkg
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## Create binary .hex file from the .out file
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genhex: $(BUILD)/$(OUT_FILE)-nosd.hex
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@ -379,8 +375,6 @@ $(BUILD)/$(OUT_FILE)-nosd.hex: $(BUILD)/$(OUT_FILE)-nosd.out
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@$(OBJCOPY) -O ihex $< $@
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# merge bootloader and sd hex together
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combinehex: $(BUILD)/$(MERGED_FILE).hex
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$(BUILD)/$(MERGED_FILE).hex: $(BUILD)/$(OUT_FILE)-nosd.hex
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@echo CR $(MERGED_FILE).hex
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@mergehex -q -m $< $(SD_HEX) -o $@
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35
README.md
35
README.md
@ -107,8 +107,6 @@ both bootloader and the Nordic SoftDevice, you can freely upgrade/downgrade to a
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You should only continue if you are looking to develop bootloader for your own.
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You must have have a J-Link available to "unbrick" your device.
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### Option 1: Build with Makefile
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Prerequisites
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- ARM GCC
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@ -117,7 +115,7 @@ Prerequisites
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To build:
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```
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make BOARD=feather_nrf52840_express all combinehex
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make BOARD=feather_nrf52840_express all
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```
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To flash the bootloader with JLink:
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@ -138,12 +136,6 @@ To flash SoftDevice (and chip erase):
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make BOARD=feather_nrf52840_express sd
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```
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To erase all of flash:
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```
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make BOARD=feather_nrf52840_express erase
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```
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For the list of supported boards, run `make` without `BOARD=` :
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```
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@ -167,13 +159,11 @@ make: *** [_build/main.o] Error 127
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```
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... you may need to pass the location of the GCC ARM toolchain binaries to `make` using
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the variable `GNU_INSTALL_ROOT` as below:
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the variable `CROSS_COMPILE` as below:
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```
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$ make GNU_INSTALL_ROOT=/opt/gcc-arm-none-eabi-9-2019-q4-major/bin/ BOARD=feather_nrf52832 all
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$ make CROSS_COMPILE=/opt/gcc-arm-none-eabi-9-2019-q4-major/bin/arm-none-eabi- BOARD=feather_nrf52832 all
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```
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_Please note that the path needs a trailing path separator (a `/`)_
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#### 2. `mergehex: No such file or directory`
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Make sure that `mergehex` is available from the command-line. This binary is
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@ -184,22 +174,3 @@ part of Nordic's nRF5x Command Line Tools.
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Make sure that `nrfjprog` is available from the command-line. This binary is
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part of Nordic's nRF5x Command Line Tools.
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On POSIX-type systems you can temporarily add the path to `nrfjprog` via a
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variation on the following command:
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```
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$ export PATH=$PATH:/location/of/nRF5x-Command-Line-Tools_9_7_2_OSX/nrfjprog
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```
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### Option 2: Build using Segger Embedded Studio
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For easier debugging you can also use [SES](https://www.segger.com/products/development-tools/embedded-studio/).
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The project file is located at `src/segger/Adafruit_nRF52_Bootloader.emProject`.
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> **Note**: SES only flashes the bootloader when you click download, not the SoftDevice.
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You need to flash the SoftDevice beforehand if you haven't already done so.
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As mentioned above do something like:
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```
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make BOARD=feather_nrf52840_express sd
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```
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@ -34,7 +34,7 @@ for board in all_boards:
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os.makedirs(bin_directory, exist_ok=True)
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start_time = time.monotonic()
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make_result = subprocess.run("make -j 4 BOARD={} combinehex genpkg".format(board), shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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make_result = subprocess.run("make -j 4 BOARD={} all genpkg".format(board), shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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build_duration = time.monotonic() - start_time
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flash_size = "-"
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