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1 Build Firmware and Program Controller
2 =====================================
3
4
5 Download and Install
6 --------------------
7 ### 1. Install Tools
8
9 1. **Toolchain** On Windows install [Atmel AVR Toolchain][atmelgcc] for AVR GCC compiler and [Cygwin][cygwin](or [MinGW][mingw]) for shell terminal. On Mac you can use [CrossPack][crosspack] or your favorite package manager. On Linux you can install AVR GCC with your favorite package manager.
10
11 2. **Programmer** Install [dfu-programmer][dfu-prog]. GUI tool [Atmel FLIP][flip] also can be used on Windows.
12
13 3. **Driver** On Windows when you start DFU bootloader on the chip first time you will see **Found New Hardware Wizard** to install driver. If you install device driver properly you will find chip name like **ATmega32U4** under **LibUSB-Win32 Devices** tree on **Device Manager**. If not you shall need to update its driver on **Device Manager**. You will find the driver in `FLIP` install directory like: `C:\Program Files (x86)\Atmel\Flip 3.4.5\usb\`. In case of `dfu-programmer` install driver distributed with it.
14
15 If you use PJRC Teensy you don't need step 2 and 3 above, just get [Teensy loader][teensy-loader].
16
17
18 ### 2. Download source
19 You can find firmware source at github:
20
21 - <https://github.com/tmk/tmk_keyboard>
22
23 If you are familiar with `git` tools you are recommended to use it but you can also download zip archive from:
24
25 - <https://github.com/tmk/tmk_keyboard/archive/master.zip>
26
27
28 Build firmware
29 --------------
30 ### 1. Open terminal
31 Open terminal window to get access to commands. Use Cygwin(or MingGW) shell terminal in Windows or `Terminal.app` on Mac OSX.
32
33 ### 2. Change directory
34 Move to project directory in the firmware source.
35
36 cd tmk_keyboard/{'keyboard' or 'converter'}/<project>
37
38 ### 3. Make
39 Build firmware using GNU `make` command. You'll see `<project>_<variant>.hex` file in that directory unless something unexpected occurs in build process.
40
41
42 make -f Makefile.<variant> clean
43 make -f Makefile.<variant>
44
45
46
47
48 Program Controller
49 ------------------
50 Now you have **hex** file to program on current directory. This **hex** is only needed to program your controller, other files are used for development and you may leave and forget them.
51
52 ### 1. Start bootloader
53 How to program controller depends on controller chip and its board design. To program AVR USB chips you'll need to start it up in bootloader mode. Most of boards with the chip have a push button to let bootloader come up. Consult with your controller board manual.
54
55 ### 2. Program with DFU bootloader
56 Stock AVR USB chips have DFU bootloader by factory default. `FLIP` is a DFU programmer on Windows offered by Atmel. `FLIP` has two version of tool, GUI app and command line program. If you want GUI see tutorial below. Open source alternative `dfu-programmer` also supports AVR chips, it is command line tool and runs on Linux, Mac OSX and even Windows.
57
58
59 To program with command of `FLIP` run this. Note that you need to set PATH variable properly.
60
61 $ make -f Makefile.<variant> flip
62
63 With `dfu-programmer` run this.
64
65 $ make -f Makefile.<variant> dfu
66
67 Or you can execute the command directly as the following.
68
69 $ dfu-programmer <controller> erase --force
70 $ dfu-programmer <controller> flash <your_firmware.hex>
71 $ dfu-programmer <controller> reset
72
73 `<controller>` part will be `atmega32u4` or `atmega32u2` in most cases. See manual of the command for the detail.
74
75
76 #### FLIP GUI tutorial
77 1. On menu bar click **Device** -> **Select**, then choose your chip name. (In most cases **ATmega32U2** or **ATmega32U4**)
78 2. On menu bar click **Settings** -> **Communication** -> **USB**, then click **Open** button on **USB Port Connection** dialog. At this point you'll have to plug into USB and start bootloader.
79
80 3. On menu bar click **File** -> **Load HEX File**, then select your firmware hex file on File Selector dialog.
81 4. On **Operations Flow** panel click **Run** button to load the firmware binary to the chip. Note that you should keep **Erase**, **Blank Check**, **Program** and **Verify** check boxes selected.
82 5. Re-plug USB cord or click **Start Application** button to restart your controller.
83 Done.
84
85 See also these instructions if needed.
86
87 - <http://code.google.com/p/micropendous/wiki/LoadingFirmwareWithFLIP>
88 - <http://www.atmel.com/Images/doc7769.pdf>
89
90
91 ##### Troubleshoot
92 * **FLIP: AtLibUsbDfu.dll not found**
93 Remove current driver and re-install one FLIP provides from DeviceManager of WIndows. See <http://imgur.com/a/bnwzy>
94
95
96 ### 3. Program with Other programmer
97 If you are using PJRC Teensy consult with instruction of [Teensy Loader][teensy-loader]. Or run this target with `make` after you install command line version of it.
98
99 $ make -f Makefile.<variant> teensy
100
101 You may want to use other programmer like [`avrdude`][avrdude]. In that case you can still use make target `program` for build with configuring `PROGRAM_CMD` in Makefile. See below.
102
103 $ make -f Makefile.<variant> program
104
105
106 [atmelgcc]: http://www.atmel.com/tools/ATMELAVRTOOLCHAINFORWINDOWS.aspx
107 [cygwin]: https://www.cygwin.com/
108 [mingw]: http://www.mingw.org/
109 [crosspack]: http://www.obdev.at/products/crosspack/index.html
110 [flip]: http://www.atmel.com/tools/FLIP.aspx
111 [dfu-prog]: http://dfu-programmer.sourceforge.net/
112 [teensy-loader]:http://www.pjrc.com/teensy/loader.html
113 [avrdude]: http://savannah.nongnu.org/projects/avrdude/
114
115
116
117 Makefile Options
118 ----------------
119 ### 1. MCU and Frequency.
120
121 MCU = atmega32u4 # Teensy 2.0
122 #MCU = at90usb1286 # Teensy++ 2.0
123 F_CPU = 16000000
124
125 Set your MCU and its clock in Hz.
126
127 # Boot Section Size in *bytes*
128 # Teensy halfKay 512
129 # Teensy++ halfKay 2048
130 # Atmel DFU loader 4096
131 # LUFA bootloader 4096
132 OPT_DEFS += -DBOOTLOADER_SIZE=4096
133
134 If you are using PJRC Teensy use `512` for `BOOTLOADER_SIZE`, otherwise use `4096` unless you are sure.
135
136 ### 2. Features
137 Optional. Note that ***comment out*** with `#` to disable them.
138
139 BOOTMAGIC_ENABLE = yes # Virtual DIP switch configuration(+1000)
140 MOUSEKEY_ENABLE = yes # Mouse keys(+4700)
141 EXTRAKEY_ENABLE = yes # Audio control and System control(+450)
142 CONSOLE_ENABLE = yes # Console for debug(+400)
143 COMMAND_ENABLE = yes # Commands for debug and configuration
144 SLEEP_LED_ENABLE = yes # Breathing sleep LED during USB suspend
145 #NKRO_ENABLE = yes # USB Nkey Rollover - not yet supported in LUFA
146 #BACKLIGHT_ENABLE = yes # Enable keyboard backlight functionality
147
148 ### 3. Programmer
149 Optional. Set proper command for your controller, bootloader and programmer. This command can be used with `make program`.
150
151 # avrdude with AVRISPmkII
152 PROGRAM_CMD = avrdude -p $(MCU) -c avrispmkII -P USB -U flash:w:$(TARGET).hex
153
154 # avrdude with USBaspLoader
155 PROGRAM_CMD = avrdude -p $(MCU) -c usbasp -U flash:w:$(TARGET).hex
156
157 # avrdude with arduino
158 PROGRAM_CMD = avrdude -p $(MCU) -c arduino -P COM1 -b 57600 -U flash:w:$(TARGET).hex
159
160
161
162 Config.h Options
163 ----------------
164 ### 1. Magic command key combination
165
166 #define IS_COMMAND() (keyboard_report->mods == (MOD_BIT(KB_LSHIFT) | MOD_BIT(KB_RSHIFT)))
167
168 ### 2. Mechanical Locking Support for CapsLock
169
170 /* Mechanical locking CapsLock support. Use KC_LCAP instead of KC_CAPS in keymap */
171 #define CAPSLOCK_LOCKING_ENABLE
172 /* Locking CapsLock re-synchronize hack */
173 #define CAPSLOCK_LOCKING_RESYNC_ENABLE
174
175 ### 3. Disable Debug and Print
176
177 /* disable debug print */
178 #define NO_DEBUG
179
180 /* disable print */
181 #define NO_PRINT
182
183 ### 4. Disable Action Features
184
185 #define NO_ACTION_LAYER
186 #define NO_ACTION_TAPPING
187 #define NO_ACTION_ONESHOT
188 #define NO_ACTION_MACRO
189 #define NO_ACTION_FUNCTION
190
191 ***TBD***
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