mimxrt: Extend the help() message and README.md.
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Port of MicroPython to NXP iMX RT 10xx
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Port of MicroPython to NXP iMX RT 10xx
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======================================
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======================================
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Currently supports Teensy 4.0 and the i.MX RT1010 EVK board.
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Currently supports Teensy 4.0, Teensy 4.1, and the
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MIMXRT1010_EVK, MIMXRT1020_EVK, MIMXRT1050_EVK, MIMXRT1060_EVK and
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MIMXRT1064_EVK boards.
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Features:
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Features:
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- REPL over USB VCP
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- REPL over USB VCP
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- machine.ADC
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- machine.I2C
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- machine.LED
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- machine.Pin
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- machine.Pin
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- machine.PWM
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- machine.RTC
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- machine.SDCard
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- machine.SPI
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- machine.Signal
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- machine.SoftI2C
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- machine.SoftSPI
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- machine.Timer
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- machine.UART
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- LFS2 file system at the internal Flash
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- SDCard support (not on MIMXRT1010_EVK)
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- Ethernet (not on Teensy 4.0 and MIMXRT1010_EVK)
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Known issues:
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Known issues:
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- pyboard.py doesn't work with files larger than 64 bytes
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- machine.Pin class currently does not support GPIOMUX option of
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i.MX RT101x variants
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TODO:
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TODO:
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- Enable TCM
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- More peripherals (Counter, I2S, CAN, etc)
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- Peripherals (LED, Timers, etc)
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- More Python options
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@ -163,17 +163,25 @@ const char mimxrt_help_text[] =
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" Pin pull modes are: Pin.PULL_UP, Pin.PULL_UP_47K, Pin.PULL_UP_22K, Pin.PULL_DOWN, Pin.PULL_HOLD\n"
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" Pin pull modes are: Pin.PULL_UP, Pin.PULL_UP_47K, Pin.PULL_UP_22K, Pin.PULL_DOWN, Pin.PULL_HOLD\n"
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" machine.ADC(pin) -- make an analog object from a pin\n"
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" machine.ADC(pin) -- make an analog object from a pin\n"
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" methods: read_u16()\n"
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" methods: read_u16()\n"
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" machine.UART(id, baudrate=115200) -- create an UART object (id=1 - 8)\n"
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" machine.UART(id, baudrate=115200) -- create an UART object (id=1 - 8, board-specific)\n"
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" methods: init(), write(buf), any()\n"
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" methods: init(), write(buf), any()\n"
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" buf=read(n), readinto(buf), buf=readline()\n"
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" buf=read(n), readinto(buf), buf=readline()\n"
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" The RX and TX pins are fixed and board-specific.\n"
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" The RX and TX pins are fixed and board-specific.\n"
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" machine.SoftI2C() -- create an Soft I2C object\n"
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" machine.SoftI2C() -- create a Soft I2C object\n"
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" machine.I2C(id) -- create a HW I2C object\n"
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" methods: readfrom(addr, buf, stop=True), writeto(addr, buf, stop=True)\n"
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" methods: readfrom(addr, buf, stop=True), writeto(addr, buf, stop=True)\n"
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" readfrom_mem(addr, memaddr, arg), writeto_mem(addr, memaddr, arg)\n"
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" readfrom_mem(addr, memaddr, arg), writeto_mem(addr, memaddr, arg)\n"
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" machine.SoftSPI(baudrate=1000000) -- create an SPI object ()\n"
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" SoftI2C allows to use any pin for sda and scl, HW I2C id's and pins are fixed\n"
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" machine.SoftSPI(baudrate=1000000) -- create a Soft SPI object\n"
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" machine.SPI(id, baudrate=1000000) -- create a HW SPI object\n"
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" methods: read(nbytes, write=0x00), write(buf), write_readinto(wr_buf, rd_buf)\n"
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" methods: read(nbytes, write=0x00), write(buf), write_readinto(wr_buf, rd_buf)\n"
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" SoftSPI allows to use any pin for SPI, HW SPI id's and pins are fixed\n"
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" machine.Timer(id, freq, callback) -- create a hardware timer object (id=0,1,2)\n"
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" machine.Timer(id, freq, callback) -- create a hardware timer object (id=0,1,2)\n"
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" eg: machine.Timer(freq=1, callback=lambda t:print(t))\n"
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" eg: machine.Timer(freq=1, callback=lambda t:print(t))\n"
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" machine.RTC() -- create a Real Time Clock object\n"
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" methods: init(), datetime([dateime_tuple]), now()\n"
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" machine.PWM(pin, freq, duty_u16[, kw_opts]) -- create a PWM object\n"
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" methods: init(), duty_u16([value]), duty_ns([value]), freq([value])\n"
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"\n"
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"\n"
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"Useful control commands:\n"
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"Useful control commands:\n"
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" CTRL-C -- interrupt a running program\n"
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" CTRL-C -- interrupt a running program\n"
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