Add bitbang version of blog article code.
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503
blog/driving_595/bitbang/Makefile
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503
blog/driving_595/bitbang/Makefile
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# ----------------------------------------------------------------------------
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# Makefile based on WinAVR Makefile Template written by Eric B. Weddington,
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# Jörg Wunsch, et al.
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#
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# Adjust F_CPU below to the clock frequency in Mhz of your AVR target
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#
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# Adjust the size of the uart receive and transmit ringbuffer in bytes using
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# defines -DUART_RX_BUFFER_SIZE=128 and -DUART_TX_BUFFER_SIZE=128 in the
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# CDEF section below
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#
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#----------------------------------------------------------------------------
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# On command line:
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#
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# make all = Make software.
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#
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# make clean = Clean out built project files.
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#
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# make coff = Convert ELF to AVR COFF.
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#
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# make extcoff = Convert ELF to AVR Extended COFF.
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#
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# make program = Download the hex file to the device, using avrdude.
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# Please customize the avrdude settings below first!
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#
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# make debug = Start either simulavr or avarice as specified for debugging,
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# with avr-gdb or avr-insight as the front end for debugging.
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#
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# make filename.s = Just compile filename.c into the assembler code only.
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#
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# make filename.i = Create a preprocessed source file for use in submitting
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# bug reports to the GCC project.
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#
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# To rebuild project do "make clean" then "make all".
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#----------------------------------------------------------------------------
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# MCU name
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#MCU = atmega328p
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MCU = atmega32u4
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# Processor frequency.
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# This will define a symbol, F_CPU, in all source code files equal to the
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# processor frequency. You can then use this symbol in your source code to
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# calculate timings. Do NOT tack on a 'UL' at the end, this will be done
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# automatically to create a 32-bit value in your source code.
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F_CPU = 16000000
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# Output format. (can be srec, ihex, binary)
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FORMAT = ihex
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# Target file name (without extension).
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TARGET = main
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# List C source files here. (C dependencies are automatically generated.)
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SRC = $(TARGET).c
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# List Assembler source files here.
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# Make them always end in a capital .S. Files ending in a lowercase .s
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# will not be considered source files but generated files (assembler
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# output from the compiler), and will be deleted upon "make clean"!
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# Even though the DOS/Win* filesystem matches both .s and .S the same,
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# it will preserve the spelling of the filenames, and gcc itself does
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# care about how the name is spelled on its command-line.
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ASRC =
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# Optimization level, can be [0, 1, 2, 3, s].
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# 0 = turn off optimization. s = optimize for size.
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# (Note: 3 is not always the best optimization level. See avr-libc FAQ.)
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OPT = s
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# Debugging format.
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# Native formats for AVR-GCC's -g are dwarf-2 [default] or stabs.
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# AVR Studio 4.10 requires dwarf-2.
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# AVR [Extended] COFF format requires stabs, plus an avr-objcopy run.
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DEBUG = dwarf-2
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# List any extra directories to look for include files here.
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# Each directory must be seperated by a space.
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# Use forward slashes for directory separators.
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# For a directory that has spaces, enclose it in quotes.
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EXTRAINCDIRS =
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# Compiler flag to set the C Standard level.
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# c89 = "ANSI" C
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# gnu89 = c89 plus GCC extensions
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# c99 = ISO C99 standard (not yet fully implemented)
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# gnu99 = c99 plus GCC extensions
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CSTANDARD = -std=gnu99
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# Place -D or -U options here
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CDEFS = -DF_CPU=$(F_CPU)UL
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# uncomment and adapt these line if you want different UART library buffer size
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#CDEFS += -DUART_RX_BUFFER_SIZE=128
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#CDEFS += -DUART_TX_BUFFER_SIZE=128
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# Place -I options here
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CINCS =
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#---------------- Compiler Options ----------------
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# -g*: generate debugging information
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# -O*: optimization level
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# -f...: tuning, see GCC manual and avr-libc documentation
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# -Wall...: warning level
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# -Wa,...: tell GCC to pass this to the assembler.
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# -adhlns...: create assembler listing
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CFLAGS = -g$(DEBUG)
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CFLAGS += $(CDEFS) $(CINCS)
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CFLAGS += -O$(OPT)
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CFLAGS += -funsigned-char -funsigned-bitfields -fpack-struct -fshort-enums
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CFLAGS += -Wall -Wstrict-prototypes
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CFLAGS += -Wa,-adhlns=$(<:.c=.lst)
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CFLAGS += $(patsubst %,-I%,$(EXTRAINCDIRS))
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CFLAGS += $(CSTANDARD)
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#---------------- Assembler Options ----------------
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# -Wa,...: tell GCC to pass this to the assembler.
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# -ahlms: create listing
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# -gstabs: have the assembler create line number information; note that
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# for use in COFF files, additional information about filenames
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# and function names needs to be present in the assembler source
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# files -- see avr-libc docs [FIXME: not yet described there]
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ASFLAGS = -Wa,-adhlns=$(<:.S=.lst),-gstabs
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#---------------- Library Options ----------------
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# Minimalistic printf version
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PRINTF_LIB_MIN = -Wl,-u,vfprintf -lprintf_min
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# Floating point printf version (requires MATH_LIB = -lm below)
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PRINTF_LIB_FLOAT = -Wl,-u,vfprintf -lprintf_flt
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# If this is left blank, then it will use the Standard printf version.
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PRINTF_LIB =
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#PRINTF_LIB = $(PRINTF_LIB_MIN)
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#PRINTF_LIB = $(PRINTF_LIB_FLOAT)
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# Minimalistic scanf version
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SCANF_LIB_MIN = -Wl,-u,vfscanf -lscanf_min
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# Floating point + %[ scanf version (requires MATH_LIB = -lm below)
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SCANF_LIB_FLOAT = -Wl,-u,vfscanf -lscanf_flt
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# If this is left blank, then it will use the Standard scanf version.
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SCANF_LIB =
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#SCANF_LIB = $(SCANF_LIB_MIN)
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#SCANF_LIB = $(SCANF_LIB_FLOAT)
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MATH_LIB = -lm
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#---------------- External Memory Options ----------------
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# 64 KB of external RAM, starting after internal RAM (ATmega128!),
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# used for variables (.data/.bss) and heap (malloc()).
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#EXTMEMOPTS = -Wl,-Tdata=0x801100,--defsym=__heap_end=0x80ffff
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# 64 KB of external RAM, starting after internal RAM (ATmega128!),
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# only used for heap (malloc()).
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#EXTMEMOPTS = -Wl,--defsym=__heap_start=0x801100,--defsym=__heap_end=0x80ffff
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EXTMEMOPTS =
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#---------------- Linker Options ----------------
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# -Wl,...: tell GCC to pass this to linker.
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# -Map: create map file
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# --cref: add cross reference to map file
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LDFLAGS = -Wl,-Map=$(TARGET).map,--cref
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LDFLAGS += $(EXTMEMOPTS)
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LDFLAGS += $(PRINTF_LIB) $(SCANF_LIB) $(MATH_LIB)
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#---------------- Programming Options (avrdude) ----------------
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# Programming hardware: alf avr910 avrisp bascom bsd
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# dt006 pavr picoweb pony-stk200 sp12 stk200 stk500
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#
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# Type: avrdude -c ?
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# to get a full listing.
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#
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#AVRDUDE_PROGRAMMER = arduino
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AVRDUDE_PROGRAMMER = avr109
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# com1 = serial port. Use lpt1 to connect to parallel port.
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AVRDUDE_PORT = /dev/tty.usb* # programmer connected to serial device
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AVRDUDE_WRITE_FLASH = -U flash:w:$(TARGET).hex
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#AVRDUDE_WRITE_EEPROM = -U eeprom:w:$(TARGET).eep
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# Uncomment the following if you want avrdude's erase cycle counter.
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# Note that this counter needs to be initialized first using -Yn,
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# see avrdude manual.
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#AVRDUDE_ERASE_COUNTER = -y
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# Uncomment the following if you do /not/ wish a verification to be
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# performed after programming the device.
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#AVRDUDE_NO_VERIFY = -V
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# Increase verbosity level. Please use this when submitting bug
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# reports about avrdude. See <http://savannah.nongnu.org/projects/avrdude>
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# to submit bug reports.
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#AVRDUDE_VERBOSE = -v -v
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AVRDUDE_FLAGS = -p $(MCU) -P $(AVRDUDE_PORT) -c $(AVRDUDE_PROGRAMMER) -b 57600
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AVRDUDE_FLAGS += $(AVRDUDE_NO_VERIFY)
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AVRDUDE_FLAGS += $(AVRDUDE_VERBOSE)
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AVRDUDE_FLAGS += $(AVRDUDE_ERASE_COUNTER)
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#---------------- Debugging Options ----------------
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# For simulavr only - target MCU frequency.
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DEBUG_MFREQ = $(F_CPU)
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# Set the DEBUG_UI to either gdb or insight.
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# DEBUG_UI = gdb
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DEBUG_UI = insight
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# Set the debugging back-end to either avarice, simulavr.
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DEBUG_BACKEND = avarice
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#DEBUG_BACKEND = simulavr
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# GDB Init Filename.
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GDBINIT_FILE = __avr_gdbinit
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# When using avarice settings for the JTAG
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JTAG_DEV = /dev/com1
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# Debugging port used to communicate between GDB / avarice / simulavr.
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DEBUG_PORT = 4242
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# Debugging host used to communicate between GDB / avarice / simulavr, normally
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# just set to localhost unless doing some sort of crazy debugging when
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# avarice is running on a different computer.
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DEBUG_HOST = localhost
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#============================================================================
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# Define programs and commands.
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SHELL = sh
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CC = avr-gcc
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OBJCOPY = avr-objcopy
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OBJDUMP = avr-objdump
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SIZE = avr-size
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NM = avr-nm
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AVRDUDE = avrdude
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REMOVE = rm -f
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COPY = cp
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WINSHELL = cmd
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# Define Messages
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# English
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MSG_ERRORS_NONE = Errors: none
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MSG_BEGIN = -------- begin --------
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MSG_END = -------- end --------
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MSG_SIZE_BEFORE = Size before:
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MSG_SIZE_AFTER = Size after:
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MSG_COFF = Converting to AVR COFF:
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MSG_EXTENDED_COFF = Converting to AVR Extended COFF:
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MSG_FLASH = Creating load file for Flash:
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MSG_EEPROM = Creating load file for EEPROM:
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MSG_EXTENDED_LISTING = Creating Extended Listing:
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MSG_SYMBOL_TABLE = Creating Symbol Table:
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MSG_LINKING = Linking:
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MSG_COMPILING = Compiling:
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MSG_ASSEMBLING = Assembling:
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MSG_CLEANING = Cleaning project:
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# Define all object files.
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OBJ = $(SRC:.c=.o) $(ASRC:.S=.o)
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# Define all listing files.
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LST = $(SRC:.c=.lst) $(ASRC:.S=.lst)
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# Compiler flags to generate dependency files.
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GENDEPFLAGS = -MD -MP -MF .dep/$(@F).d
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# Combine all necessary flags and optional flags.
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# Add target processor to flags.
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ALL_CFLAGS = -mmcu=$(MCU) -I. $(CFLAGS) $(GENDEPFLAGS)
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ALL_ASFLAGS = -mmcu=$(MCU) -I. -x assembler-with-cpp $(ASFLAGS)
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# Default target.
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all: begin gccversion sizebefore build sizeafter end
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build: elf hex eep lss sym
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elf: $(TARGET).elf
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hex: $(TARGET).hex
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eep: $(TARGET).eep
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lss: $(TARGET).lss
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sym: $(TARGET).sym
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# Eye candy.
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# AVR Studio 3.x does not check make's exit code but relies on
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# the following magic strings to be generated by the compile job.
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begin:
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@echo
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@echo $(MSG_BEGIN)
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end:
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@echo $(MSG_END)
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@echo
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# Display size of file.
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HEXSIZE = $(SIZE) --target=$(FORMAT) $(TARGET).hex
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ELFSIZE = $(SIZE) -A $(TARGET).elf
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AVRMEM = avr-mem.sh $(TARGET).elf $(MCU)
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sizebefore:
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@if test -f $(TARGET).elf; then echo; echo $(MSG_SIZE_BEFORE); $(ELFSIZE); \
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$(AVRMEM) 2>/dev/null; echo; fi
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sizeafter:
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@if test -f $(TARGET).elf; then echo; echo $(MSG_SIZE_AFTER); $(ELFSIZE); \
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$(AVRMEM) 2>/dev/null; echo; fi
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# Display compiler version information.
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gccversion :
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@$(CC) --version
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# Program the device.
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program: $(TARGET).hex $(TARGET).eep
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$(AVRDUDE) $(AVRDUDE_FLAGS) $(AVRDUDE_WRITE_FLASH) $(AVRDUDE_WRITE_EEPROM)
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# Generate avr-gdb config/init file which does the following:
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# define the reset signal, load the target file, connect to target, and set
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# a breakpoint at main().
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gdb-config:
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@$(REMOVE) $(GDBINIT_FILE)
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@echo define reset >> $(GDBINIT_FILE)
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@echo SIGNAL SIGHUP >> $(GDBINIT_FILE)
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@echo end >> $(GDBINIT_FILE)
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@echo file $(TARGET).elf >> $(GDBINIT_FILE)
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@echo target remote $(DEBUG_HOST):$(DEBUG_PORT) >> $(GDBINIT_FILE)
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ifeq ($(DEBUG_BACKEND),simulavr)
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@echo load >> $(GDBINIT_FILE)
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endif
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@echo break main >> $(GDBINIT_FILE)
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debug: gdb-config $(TARGET).elf
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ifeq ($(DEBUG_BACKEND), avarice)
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@echo Starting AVaRICE - Press enter when "waiting to connect" message displays.
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@$(WINSHELL) /c start avarice --jtag $(JTAG_DEV) --erase --program --file \
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$(TARGET).elf $(DEBUG_HOST):$(DEBUG_PORT)
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@$(WINSHELL) /c pause
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else
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@$(WINSHELL) /c start simulavr --gdbserver --device $(MCU) --clock-freq \
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$(DEBUG_MFREQ) --port $(DEBUG_PORT)
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endif
|
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@$(WINSHELL) /c start avr-$(DEBUG_UI) --command=$(GDBINIT_FILE)
|
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|
||||
|
||||
|
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|
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# Convert ELF to COFF for use in debugging / simulating in AVR Studio or VMLAB.
|
||||
COFFCONVERT=$(OBJCOPY) --debugging \
|
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--change-section-address .data-0x800000 \
|
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--change-section-address .bss-0x800000 \
|
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--change-section-address .noinit-0x800000 \
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--change-section-address .eeprom-0x810000
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coff: $(TARGET).elf
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@echo
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@echo $(MSG_COFF) $(TARGET).cof
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$(COFFCONVERT) -O coff-avr $< $(TARGET).cof
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|
||||
|
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extcoff: $(TARGET).elf
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@echo
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@echo $(MSG_EXTENDED_COFF) $(TARGET).cof
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$(COFFCONVERT) -O coff-ext-avr $< $(TARGET).cof
|
||||
|
||||
|
||||
|
||||
# Create final output files (.hex, .eep) from ELF output file.
|
||||
%.hex: %.elf
|
||||
@echo
|
||||
@echo $(MSG_FLASH) $@
|
||||
$(OBJCOPY) -O $(FORMAT) -R .eeprom $< $@
|
||||
|
||||
%.eep: %.elf
|
||||
@echo
|
||||
@echo $(MSG_EEPROM) $@
|
||||
-$(OBJCOPY) -j .eeprom --set-section-flags=.eeprom="alloc,load" \
|
||||
--change-section-lma .eeprom=0 -O $(FORMAT) $< $@
|
||||
|
||||
# Create extended listing file from ELF output file.
|
||||
%.lss: %.elf
|
||||
@echo
|
||||
@echo $(MSG_EXTENDED_LISTING) $@
|
||||
$(OBJDUMP) -h -S $< > $@
|
||||
|
||||
# Create a symbol table from ELF output file.
|
||||
%.sym: %.elf
|
||||
@echo
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@echo $(MSG_SYMBOL_TABLE) $@
|
||||
$(NM) -n $< > $@
|
||||
|
||||
|
||||
|
||||
# Link: create ELF output file from object files.
|
||||
.SECONDARY : $(TARGET).elf
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.PRECIOUS : $(OBJ)
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%.elf: $(OBJ)
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||||
@echo
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||||
@echo $(MSG_LINKING) $@
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||||
$(CC) $(ALL_CFLAGS) $^ --output $@ $(LDFLAGS)
|
||||
|
||||
|
||||
# Compile: create object files from C source files.
|
||||
%.o : %.c
|
||||
@echo
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||||
@echo $(MSG_COMPILING) $<
|
||||
$(CC) -c $(ALL_CFLAGS) $< -o $@
|
||||
|
||||
|
||||
# Compile: create assembler files from C source files.
|
||||
%.s : %.c
|
||||
$(CC) -S $(ALL_CFLAGS) $< -o $@
|
||||
|
||||
|
||||
# Assemble: create object files from assembler source files.
|
||||
%.o : %.S
|
||||
@echo
|
||||
@echo $(MSG_ASSEMBLING) $<
|
||||
$(CC) -c $(ALL_ASFLAGS) $< -o $@
|
||||
|
||||
# Create preprocessed source for use in sending a bug report.
|
||||
%.i : %.c
|
||||
$(CC) -E -mmcu=$(MCU) -I. $(CFLAGS) $< -o $@
|
||||
|
||||
|
||||
# Target: clean project.
|
||||
clean: begin clean_list end
|
||||
|
||||
clean_list :
|
||||
@echo
|
||||
@echo $(MSG_CLEANING)
|
||||
$(REMOVE) $(TARGET).hex
|
||||
$(REMOVE) $(TARGET).eep
|
||||
$(REMOVE) $(TARGET).cof
|
||||
$(REMOVE) $(TARGET).elf
|
||||
$(REMOVE) $(TARGET).map
|
||||
$(REMOVE) $(TARGET).sym
|
||||
$(REMOVE) $(TARGET).lss
|
||||
$(REMOVE) $(OBJ)
|
||||
$(REMOVE) $(LST)
|
||||
$(REMOVE) $(SRC:.c=.s)
|
||||
$(REMOVE) $(SRC:.c=.d)
|
||||
$(REMOVE) .dep/*
|
||||
|
||||
|
||||
|
||||
# Include the dependency files.
|
||||
-include $(shell mkdir .dep 2>/dev/null) $(wildcard .dep/*)
|
||||
|
||||
|
||||
# Listing of phony targets.
|
||||
.PHONY : all begin finish end sizebefore sizeafter gccversion \
|
||||
build elf hex eep lss sym coff extcoff \
|
||||
clean clean_list program debug gdb-config
|
||||
|
85
blog/driving_595/bitbang/main.c
Normal file
85
blog/driving_595/bitbang/main.c
Normal file
@ -0,0 +1,85 @@
|
||||
/*
|
||||
* Code to write data to two daisychained TPIC6B595 SIPO shift registers.
|
||||
*
|
||||
* http://appelsiini.net/2011/driving-595-shift-registers
|
||||
*
|
||||
* The TPIC6B595 is a monolithic, high-voltage, medium-current power 8-bit
|
||||
* shift register designed for use in systems that require relatively high
|
||||
* load power.
|
||||
*
|
||||
* This device contains an 8-bit serial-in, parallel-out shift register that
|
||||
* feeds an 8-bit D-type storage register. Data transfers through both the
|
||||
* shift and storage registers on the rising edge of the shift-register clock
|
||||
* (SRCK) and the register clock (RCK), respectively. The storage register
|
||||
* transfers data to the output buffer when shift-register clear (SRCLR) is
|
||||
* high. When SRCLR is low, the input shift register is cleared. When output
|
||||
* enable (G) is held high, all data in the output buffers is held low and all
|
||||
* drain outputs are off. When G is held low, data from the storage register
|
||||
* is transparent to the output buffers. When data in the output buffers is
|
||||
* low, the DMOS-transistor outputs are off. When data is high, the DMOS-
|
||||
* transistor outputs have sink-current capability. The serial output (SER
|
||||
* OUT) allows for cascading of the data from the shift register to additional
|
||||
* devices.
|
||||
*
|
||||
* http://www.adafruit.com/datasheets/tpic6b595.pdf
|
||||
*
|
||||
* To compile and upload run: make clean; make; make program;
|
||||
*
|
||||
* Copyright 2012 Mika Tuupola
|
||||
*
|
||||
* Licensed under the MIT license:
|
||||
* http://www.opensource.org/licenses/mit-license.php
|
||||
*
|
||||
*/
|
||||
|
||||
#include <util/delay.h>
|
||||
|
||||
#include "main.h"
|
||||
#include "pins/digital.h"
|
||||
|
||||
#define LATCH B0 /* RCK */
|
||||
#define CLOCK B1 /* SRCK */
|
||||
#define DATA B2 /* SER IN */
|
||||
|
||||
static void init(void) {
|
||||
pin_mode(LATCH, OUTPUT);
|
||||
pin_mode(CLOCK, OUTPUT);
|
||||
pin_mode(DATA, OUTPUT);
|
||||
}
|
||||
|
||||
/* Assumes MSB first. */
|
||||
void shift_out(uint8_t data) {
|
||||
for(uint8_t i = 0; i < 8; i++) {
|
||||
/* Write bit to data port. */
|
||||
if (0 == (data & _BV(7 - i))) {
|
||||
digital_write(DATA, LOW);
|
||||
} else {
|
||||
digital_write(DATA, HIGH);
|
||||
}
|
||||
|
||||
/* Pulse clock input to write next bit. */
|
||||
digital_write(CLOCK, LOW);
|
||||
digital_write(CLOCK, HIGH);
|
||||
}
|
||||
}
|
||||
|
||||
int main(void) {
|
||||
|
||||
init();
|
||||
|
||||
for(uint16_t i = 0; i < 0xffff; i++) {
|
||||
|
||||
/* Shift high byte first to shift register. */
|
||||
shift_out(i >> 8);
|
||||
shift_out(i & 0xff);
|
||||
|
||||
/* Pulse latch to transfer data from shift registers */
|
||||
/* to storage registers. */
|
||||
digital_write(LATCH, LOW);
|
||||
digital_write(LATCH, HIGH);
|
||||
|
||||
_delay_ms(50);
|
||||
}
|
||||
return 0;
|
||||
|
||||
}
|
2
blog/driving_595/bitbang/main.h
Normal file
2
blog/driving_595/bitbang/main.h
Normal file
@ -0,0 +1,2 @@
|
||||
static void init(void);
|
||||
int main(void);
|
72
blog/driving_595/bitbang/pins/arduino.h
Normal file
72
blog/driving_595/bitbang/pins/arduino.h
Normal file
@ -0,0 +1,72 @@
|
||||
/*
|
||||
* arduino.h
|
||||
*
|
||||
* Lightweight macro implementation of Arduino style pin numbering
|
||||
* for accessing Atmel digital and analog pins.
|
||||
*
|
||||
* pin_mode(1, OUTPUT);
|
||||
* digital_write(1, HIGH);
|
||||
* pin_mode(2, INPUT);
|
||||
* digital_read(2);
|
||||
*
|
||||
* This file is based on Arduino project.
|
||||
* https://github.com/arduino/Arduino/
|
||||
*
|
||||
* Copyright (c) 2007-2011 David A. Mellis, Mika tuupola
|
||||
*
|
||||
* Licensed under the LGPL 2.1 license:
|
||||
* http://www.opensource.org/licenses/lgpl-2.1.php
|
||||
*/
|
||||
|
||||
#ifndef ARDUINO_H
|
||||
#define ARDUINO_H
|
||||
|
||||
/* atmega328 */
|
||||
#define PORT_AT_PIN_0 PortD
|
||||
#define PORT_AT_PIN_1 PortD
|
||||
#define PORT_AT_PIN_2 PortD
|
||||
#define PORT_AT_PIN_3 PortD
|
||||
#define PORT_AT_PIN_4 PortD
|
||||
#define PORT_AT_PIN_5 PortD
|
||||
#define PORT_AT_PIN_6 PortD
|
||||
#define PORT_AT_PIN_7 PortD
|
||||
#define PORT_AT_PIN_8 PortB
|
||||
#define PORT_AT_PIN_9 PortB
|
||||
#define PORT_AT_PIN_10 PortB
|
||||
#define PORT_AT_PIN_11 PortB
|
||||
#define PORT_AT_PIN_12 PortB
|
||||
#define PORT_AT_PIN_13 PortB
|
||||
#define PORT_AT_PIN_14 PortC
|
||||
#define PORT_AT_PIN_15 PortC
|
||||
#define PORT_AT_PIN_16 PortC
|
||||
#define PORT_AT_PIN_17 PortC
|
||||
#define PORT_AT_PIN_18 PortC
|
||||
#define PORT_AT_PIN_19 PortC
|
||||
|
||||
#define PORT_AT_PIN_20 PortB
|
||||
#define PORT_AT_PIN_21 PortB
|
||||
|
||||
#define MASK_AT_PIN_0 _BV(0)
|
||||
#define MASK_AT_PIN_1 _BV(1)
|
||||
#define MASK_AT_PIN_2 _BV(2)
|
||||
#define MASK_AT_PIN_3 _BV(3)
|
||||
#define MASK_AT_PIN_4 _BV(4)
|
||||
#define MASK_AT_PIN_5 _BV(5)
|
||||
#define MASK_AT_PIN_6 _BV(6)
|
||||
#define MASK_AT_PIN_7 _BV(7)
|
||||
#define MASK_AT_PIN_8 _BV(0)
|
||||
#define MASK_AT_PIN_9 _BV(1)
|
||||
#define MASK_AT_PIN_10 _BV(2)
|
||||
#define MASK_AT_PIN_11 _BV(3)
|
||||
#define MASK_AT_PIN_12 _BV(4)
|
||||
#define MASK_AT_PIN_13 _BV(5)
|
||||
#define MASK_AT_PIN_14 _BV(0)
|
||||
#define MASK_AT_PIN_15 _BV(1)
|
||||
#define MASK_AT_PIN_16 _BV(2)
|
||||
#define MASK_AT_PIN_17 _BV(3)
|
||||
#define MASK_AT_PIN_18 _BV(4)
|
||||
#define MASK_AT_PIN_19 _BV(5)
|
||||
#define MASK_AT_PIN_20 _BV(6)
|
||||
#define MASK_AT_PIN_21 _BV(7)
|
||||
|
||||
#endif /* ARDUINO_H */
|
33
blog/driving_595/bitbang/pins/digital.h
Normal file
33
blog/driving_595/bitbang/pins/digital.h
Normal file
@ -0,0 +1,33 @@
|
||||
/*
|
||||
* digital.h
|
||||
*
|
||||
* Lightweight macro implementation of AVR pin numbering for
|
||||
* accessing Atmel digital and analog pins.
|
||||
*
|
||||
* pin_mode(A1, OUTPUT);
|
||||
* digital_write(A1, HIGH);
|
||||
* pin_mode(A2, INPUT);
|
||||
* digital_read(A2);
|
||||
*
|
||||
* This file is based on the excellent ArduinoLite project by
|
||||
* Shikai Chen <csk@live.com>.
|
||||
*
|
||||
* http://code.google.com/p/arduino-lite/
|
||||
* http://www.csksoft.net/
|
||||
*
|
||||
* Copyright (c) 2010-2011 Shikai Chen, Mika Tuupola
|
||||
*
|
||||
* Licensed under the LGPL 2.1 license:
|
||||
* http://www.opensource.org/licenses/lgpl-2.1.php
|
||||
*/
|
||||
|
||||
#ifndef DIGITAL_H
|
||||
#define DIGITAL_H
|
||||
#include "pins.h"
|
||||
|
||||
#define digital_read(pin) EXPAND_WRAPPER(_DIGITAL_READ, PIN_TO_PORT(pin), PIN_TO_MASK(pin))
|
||||
#define digital_read_raw(pin) EXPAND_WRAPPER(_DIGITAL_READ_RAW, PIN_TO_PORT(pin), PIN_TO_MASK(pin))
|
||||
#define digital_write(pin, val) DIGITAL_WRITE_##val(pin)
|
||||
#define digital_toggle(pin) EXPAND_WRAPPER(_DIGITAL_TOGGLE, PIN_TO_PORT(pin), PIN_TO_MASK(pin))
|
||||
|
||||
#endif /* DIGITAL_H */
|
228
blog/driving_595/bitbang/pins/pins.h
Normal file
228
blog/driving_595/bitbang/pins/pins.h
Normal file
@ -0,0 +1,228 @@
|
||||
/*
|
||||
* pins.h
|
||||
*
|
||||
* Lightweight macro implementation of AVR pin numbering for
|
||||
* accessing Atmel digital and analog pins.
|
||||
*
|
||||
* pin_mode(A1, OUTPUT);
|
||||
* digital_write(A1, HIGH);
|
||||
* pin_mode(A2, INPUT);
|
||||
* digital_read(A2);
|
||||
*
|
||||
* This file is based on the excellent ArduinoLite project by
|
||||
* Shikai Chen <csk@live.com>.
|
||||
*
|
||||
* http://code.google.com/p/arduino-lite/
|
||||
* http://www.csksoft.net/
|
||||
*
|
||||
* Copyright (c) 2010-2011 Shikai Chen, Mika Tuupola
|
||||
*
|
||||
* Licensed under the LGPL 2.1 license:
|
||||
* http://www.opensource.org/licenses/lgpl-2.1.php
|
||||
*/
|
||||
|
||||
#ifndef PINS_H
|
||||
#define PINS_H
|
||||
|
||||
#include <avr/sfr_defs.h>
|
||||
#include <avr/io.h>
|
||||
|
||||
#include "arduino.h"
|
||||
|
||||
#define HIGH 0x1
|
||||
#define LOW 0x0
|
||||
|
||||
#define INPUT 0x0
|
||||
#define OUTPUT 0x1
|
||||
|
||||
#define ENABLE 0x1
|
||||
#define DISABLE 0x0
|
||||
|
||||
#define PIN_TO_PORT(x) PORT_AT_PIN_##x
|
||||
#define PIN_TO_MASK(x) MASK_AT_PIN_##x
|
||||
|
||||
#define PORT_TO_DIRECTION_REGISTER(x) DIRECTION_REGISTER_AT_##x
|
||||
#define PORT_TO_OUTPUT_REGISTER(x) OUTPUT_REGISTER_AT_##x
|
||||
#define PORT_TO_INPUT_REGISTER(x) INPUT_REGISTER_AT_##x
|
||||
|
||||
#ifdef PORTA
|
||||
#define DIRECTION_REGISTER_AT_PortA DDRA
|
||||
#define OUTPUT_REGISTER_AT_PortA PORTA
|
||||
#define INPUT_REGISTER_AT_PortA PINA
|
||||
|
||||
#define PORT_AT_PIN_A0 PortA
|
||||
#define PORT_AT_PIN_A1 PortA
|
||||
#define PORT_AT_PIN_A2 PortA
|
||||
#define PORT_AT_PIN_A3 PortA
|
||||
#define PORT_AT_PIN_A4 PortA
|
||||
#define PORT_AT_PIN_A5 PortA
|
||||
#define PORT_AT_PIN_A6 PortA
|
||||
#define PORT_AT_PIN_A7 PortA
|
||||
|
||||
#define MASK_AT_PIN_A0 _BV(0)
|
||||
#define MASK_AT_PIN_A1 _BV(1)
|
||||
#define MASK_AT_PIN_A2 _BV(2)
|
||||
#define MASK_AT_PIN_A3 _BV(3)
|
||||
#define MASK_AT_PIN_A4 _BV(4)
|
||||
#define MASK_AT_PIN_A5 _BV(5)
|
||||
#define MASK_AT_PIN_A6 _BV(6)
|
||||
#define MASK_AT_PIN_A7 _BV(7)
|
||||
#endif
|
||||
|
||||
#ifdef PORTB
|
||||
#define DIRECTION_REGISTER_AT_PortB DDRB
|
||||
#define OUTPUT_REGISTER_AT_PortB PORTB
|
||||
#define INPUT_REGISTER_AT_PortB PINB
|
||||
|
||||
#define PORT_AT_PIN_B0 PortB
|
||||
#define PORT_AT_PIN_B1 PortB
|
||||
#define PORT_AT_PIN_B2 PortB
|
||||
#define PORT_AT_PIN_B3 PortB
|
||||
#define PORT_AT_PIN_B4 PortB
|
||||
#define PORT_AT_PIN_B5 PortB
|
||||
#define PORT_AT_PIN_B6 PortB
|
||||
#define PORT_AT_PIN_B7 PortB
|
||||
|
||||
#define MASK_AT_PIN_B0 _BV(0)
|
||||
#define MASK_AT_PIN_B1 _BV(1)
|
||||
#define MASK_AT_PIN_B2 _BV(2)
|
||||
#define MASK_AT_PIN_B3 _BV(3)
|
||||
#define MASK_AT_PIN_B4 _BV(4)
|
||||
#define MASK_AT_PIN_B5 _BV(5)
|
||||
#define MASK_AT_PIN_B6 _BV(6)
|
||||
#define MASK_AT_PIN_B7 _BV(7)
|
||||
#endif
|
||||
|
||||
#ifdef PORTC
|
||||
#define DIRECTION_REGISTER_AT_PortC DDRC
|
||||
#define OUTPUT_REGISTER_AT_PortC PORTC
|
||||
#define INPUT_REGISTER_AT_PortC PINC
|
||||
|
||||
#define PORT_AT_PIN_C0 PortC
|
||||
#define PORT_AT_PIN_C1 PortC
|
||||
#define PORT_AT_PIN_C2 PortC
|
||||
#define PORT_AT_PIN_C3 PortC
|
||||
#define PORT_AT_PIN_C4 PortC
|
||||
#define PORT_AT_PIN_C5 PortC
|
||||
#define PORT_AT_PIN_C6 PortC
|
||||
#define PORT_AT_PIN_C7 PortC
|
||||
|
||||
#define MASK_AT_PIN_C0 _BV(0)
|
||||
#define MASK_AT_PIN_C1 _BV(1)
|
||||
#define MASK_AT_PIN_C2 _BV(2)
|
||||
#define MASK_AT_PIN_C3 _BV(3)
|
||||
#define MASK_AT_PIN_C4 _BV(4)
|
||||
#define MASK_AT_PIN_C5 _BV(5)
|
||||
#define MASK_AT_PIN_C6 _BV(6)
|
||||
#define MASK_AT_PIN_C7 _BV(7)
|
||||
#endif
|
||||
|
||||
#ifdef PORTD
|
||||
#define DIRECTION_REGISTER_AT_PortD DDRD
|
||||
#define OUTPUT_REGISTER_AT_PortD PORTD
|
||||
#define INPUT_REGISTER_AT_PortD PIND
|
||||
#define PORT_AT_PIN_D0 PortD
|
||||
#define PORT_AT_PIN_D1 PortD
|
||||
#define PORT_AT_PIN_D2 PortD
|
||||
#define PORT_AT_PIN_D3 PortD
|
||||
#define PORT_AT_PIN_D4 PortD
|
||||
#define PORT_AT_PIN_D5 PortD
|
||||
#define PORT_AT_PIN_D6 PortD
|
||||
#define PORT_AT_PIN_D7 PortD
|
||||
#define MASK_AT_PIN_D0 _BV(0)
|
||||
#define MASK_AT_PIN_D1 _BV(1)
|
||||
#define MASK_AT_PIN_D2 _BV(2)
|
||||
#define MASK_AT_PIN_D3 _BV(3)
|
||||
#define MASK_AT_PIN_D4 _BV(4)
|
||||
#define MASK_AT_PIN_D5 _BV(5)
|
||||
#define MASK_AT_PIN_D6 _BV(6)
|
||||
#define MASK_AT_PIN_D7 _BV(7)
|
||||
#endif
|
||||
|
||||
#ifdef PORTE
|
||||
#define DIRECTION_REGISTER_AT_PortE DDRE
|
||||
#define OUTPUT_REGISTER_AT_PortE PORTE
|
||||
#define INPUT_REGISTER_AT_PortE PINE
|
||||
|
||||
#define PORT_AT_PIN_E0 PortE
|
||||
#define PORT_AT_PIN_E1 PortE
|
||||
#define PORT_AT_PIN_E2 PortE
|
||||
#define PORT_AT_PIN_E3 PortE
|
||||
#define PORT_AT_PIN_E4 PortE
|
||||
#define PORT_AT_PIN_E5 PortE
|
||||
#define PORT_AT_PIN_E6 PortE
|
||||
#define PORT_AT_PIN_E7 PortE
|
||||
|
||||
#define MASK_AT_PIN_E0 _BV(0)
|
||||
#define MASK_AT_PIN_E1 _BV(1)
|
||||
#define MASK_AT_PIN_E2 _BV(2)
|
||||
#define MASK_AT_PIN_E3 _BV(3)
|
||||
#define MASK_AT_PIN_E4 _BV(4)
|
||||
#define MASK_AT_PIN_E5 _BV(5)
|
||||
#define MASK_AT_PIN_E6 _BV(6)
|
||||
#define MASK_AT_PIN_E7 _BV(7)
|
||||
#endif
|
||||
|
||||
#ifdef PORTF
|
||||
#define DIRECTION_REGISTER_AT_PortF DDRF
|
||||
#define OUTPUT_REGISTER_AT_PortF PORTF
|
||||
#define INPUT_REGISTER_AT_PortF PINF
|
||||
|
||||
#define PORT_AT_PIN_F0 PortF
|
||||
#define PORT_AT_PIN_F1 PortF
|
||||
#define PORT_AT_PIN_F2 PortF
|
||||
#define PORT_AT_PIN_F3 PortF
|
||||
#define PORT_AT_PIN_F4 PortF
|
||||
#define PORT_AT_PIN_F5 PortF
|
||||
#define PORT_AT_PIN_F6 PortF
|
||||
#define PORT_AT_PIN_F7 PortF
|
||||
|
||||
#define MASK_AT_PIN_F0 _BV(0)
|
||||
#define MASK_AT_PIN_F1 _BV(1)
|
||||
#define MASK_AT_PIN_F2 _BV(2)
|
||||
#define MASK_AT_PIN_F3 _BV(3)
|
||||
#define MASK_AT_PIN_F4 _BV(4)
|
||||
#define MASK_AT_PIN_F5 _BV(5)
|
||||
#define MASK_AT_PIN_F6 _BV(6)
|
||||
#define MASK_AT_PIN_F7 _BV(7)
|
||||
#endif
|
||||
|
||||
#define MERGE_TO_FUNC(prefix, id) prefix##_##id
|
||||
#define EXPAND_WRAPPER(NEXTLEVEL, ...) NEXTLEVEL(__VA_ARGS__)
|
||||
|
||||
#define _SET_OUTPUT(port_id, msk) PORT_TO_DIRECTION_REGISTER(port_id) |= (msk)
|
||||
#define _SET_INPUT(port_id, msk) PORT_TO_DIRECTION_REGISTER(port_id) &= ~(msk)
|
||||
|
||||
#define _DIGITAL_WRITE_HIGH(port_id, msk) PORT_TO_OUTPUT_REGISTER(port_id) |= (msk)
|
||||
#define _DIGITAL_WRITE_LOW(port_id, msk) PORT_TO_OUTPUT_REGISTER(port_id) &= ~(msk)
|
||||
|
||||
#define _DIGITAL_READ_RAW(port_id, msk) ((PORT_TO_INPUT_REGISTER(port_id)) & (msk))
|
||||
#define _DIGITAL_READ(port_id, msk) (((PORT_TO_INPUT_REGISTER(port_id)) & (msk)) != 0 ? 1 : 0)
|
||||
|
||||
#define _DIGITAL_TOGGLE(port_id, msk) PORT_TO_OUTPUT_REGISTER(port_id) ^= (msk)
|
||||
|
||||
#define SET_1(pin) SET_OUTPUT(pin)
|
||||
#define SET_0(pin) SET_INPUT(pin)
|
||||
|
||||
#define SET_0x1(pin) SET_OUTPUT(pin)
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#define SET_0x0(pin) SET_INPUT(pin)
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#define DIGITAL_WRITE_HIGH(pin) EXPAND_WRAPPER(_DIGITAL_WRITE_HIGH, PIN_TO_PORT(pin), PIN_TO_MASK(pin))
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#define DIGITAL_WRITE_LOW(pin) EXPAND_WRAPPER(_DIGITAL_WRITE_LOW, PIN_TO_PORT(pin), PIN_TO_MASK(pin))
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#define DIGITAL_WRITE_1(pin) DIGITAL_WRITE_HIGH(pin)
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#define DIGITAL_WRITE_0(pin) DIGITAL_WRITE_LOW(pin)
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#define DIGITAL_WRITE_0x1(pin) DIGITAL_WRITE_HIGH(pin)
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#define DIGITAL_WRITE_0x0(pin) DIGITAL_WRITE_LOW(pin)
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#define DIGITAL_WRITE_ENABLE(pin) DIGITAL_WRITE_HIGH(pin)
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#define DIGITAL_WRITE_DISABLE(pin) DIGITAL_WRITE_LOW(pin)
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#define SET_OUTPUT(pin) EXPAND_WRAPPER(_SET_OUTPUT, PIN_TO_PORT(pin), PIN_TO_MASK(pin))
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#define SET_INPUT(pin) EXPAND_WRAPPER(_SET_INPUT, PIN_TO_PORT(pin), PIN_TO_MASK(pin))
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#define pin_mode(pin, mode) SET_##mode(pin)
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#define pin_pullup(pin, val) DIGITAL_WRITE_##val(pin)
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#endif /* PINS_H */
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Loading…
Reference in New Issue
Block a user