linting demo
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@ -1,12 +1,13 @@
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import time
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import random
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from picographics import PicoGraphics, DISPLAY_GFX_PACK, PEN_P8
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from picographics import PicoGraphics, DISPLAY_GFX_PACK
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display = PicoGraphics(display=DISPLAY_GFX_PACK)
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display.set_backlight(1.0)
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WIDTH, HEIGHT = display.get_bounds()
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class Ball:
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def __init__(self, x, y, r, dx, dy, pen):
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self.x = x
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@ -33,7 +34,6 @@ for i in range(0, 10):
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)
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while True:
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display.set_pen(0)
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display.clear()
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@ -57,4 +57,4 @@ while True:
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display.circle(int(ball.x), int(ball.y), int(ball.r))
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display.update()
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time.sleep(0.05)
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time.sleep(0.05)
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@ -1,110 +0,0 @@
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include(pimoroni_i2c/micropython)
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include(pimoroni_bus/micropython)
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#include(breakout_dotmatrix/micropython)
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#include(breakout_encoder/micropython)
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#include(breakout_ioexpander/micropython)
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#include(breakout_ltr559/micropython)
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#include(breakout_as7262/micropython)
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#include(breakout_rgbmatrix5x5/micropython)
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#include(breakout_matrix11x7/micropython)
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#include(breakout_msa301/micropython)
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#include(breakout_pmw3901/micropython)
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#include(breakout_mics6814/micropython)
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#include(breakout_potentiometer/micropython)
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#include(breakout_rtc/micropython)
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#include(breakout_trackball/micropython)
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#include(breakout_sgp30/micropython)
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#include(breakout_bh1745/micropython)
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#include(breakout_bme68x/micropython)
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#include(breakout_bme280/micropython)
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#include(breakout_bmp280/micropython)
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#include(breakout_icp10125/micropython)
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#include(breakout_scd41/micropython)
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#include(breakout_vl53l5cx/micropython)
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#include(pico_scroll/micropython)
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#include(pico_rgb_keypad/micropython)
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#include(pico_unicorn/micropython)
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#include(pico_wireless/micropython)
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#include(pico_explorer/micropython)
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include(hershey_fonts/micropython)
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include(bitmap_fonts/micropython)
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#include(plasma/micropython)
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#include(hub75/micropython)
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include(pwm/micropython)
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#include(servo/micropython)
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#include(encoder/micropython)
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#include(motor/micropython)
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#include(qrcode/micropython/micropython)
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#include(adcfft/micropython)
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#include(pcf85063a/micropython)
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include(picographics/micropython)
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include(jpegdec/micropython)
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include(galactic_unicorn/micropython)
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include(modules_py/modules_py)
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function(enable_ulab)
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include(ulab/code/micropython)
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target_compile_definitions(usermod_ulab INTERFACE
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# Support for complex ndarrays
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ULAB_SUPPORTS_COMPLEX=0
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# Determines, whether scipy is defined in ulab. The sub-modules and functions
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# of scipy have to be defined separately
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ULAB_HAS_SCIPY=0
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# The maximum number of dimensions the firmware should be able to support
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# Possible values lie between 1, and 4, inclusive
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ULAB_MAX_DIMS=2
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# By setting this constant to 1, iteration over array dimensions will be implemented
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# as a function (ndarray_rewind_array), instead of writing out the loops in macros
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# This reduces firmware size at the expense of speed
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ULAB_HAS_FUNCTION_ITERATOR=1
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# If NDARRAY_IS_ITERABLE is 1, the ndarray object defines its own iterator function
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# This option saves approx. 250 bytes of flash space
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NDARRAY_IS_ITERABLE=1
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# Slicing can be switched off by setting this variable to 0
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NDARRAY_IS_SLICEABLE=1
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# The default threshold for pretty printing. These variables can be overwritten
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# at run-time via the set_printoptions() function
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ULAB_HAS_PRINTOPTIONS=1
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NDARRAY_PRINT_THRESHOLD=10
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NDARRAY_PRINT_EDGEITEMS=3
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# determines, whether the dtype is an object, or simply a character
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# the object implementation is numpythonic, but requires more space
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ULAB_HAS_DTYPE_OBJECT=0
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# the ndarray binary operators
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NDARRAY_HAS_BINARY_OPS=0
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# Firmware size can be reduced at the expense of speed by using function
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# pointers in iterations. For each operator, the function pointer saves around
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# 2 kB in the two-dimensional case, and around 4 kB in the four-dimensional case.
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NDARRAY_BINARY_USES_FUN_POINTER=1
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NDARRAY_HAS_BINARY_OP_ADD=1
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NDARRAY_HAS_BINARY_OP_EQUAL=1
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NDARRAY_HAS_BINARY_OP_LESS=1
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NDARRAY_HAS_BINARY_OP_LESS_EQUAL=1
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NDARRAY_HAS_BINARY_OP_MORE=1
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NDARRAY_HAS_BINARY_OP_MORE_EQUAL=1
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NDARRAY_HAS_BINARY_OP_MULTIPLY=1
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NDARRAY_HAS_BINARY_OP_NOT_EQUAL=1
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NDARRAY_HAS_BINARY_OP_POWER=1
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NDARRAY_HAS_BINARY_OP_SUBTRACT=1
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NDARRAY_HAS_BINARY_OP_TRUE_DIVIDE=1
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)
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endfunction()
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@ -4,5 +4,4 @@ list(APPEND CMAKE_MODULE_PATH "${CMAKE_CURRENT_LIST_DIR}")
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list(APPEND CMAKE_MODULE_PATH "${CMAKE_CURRENT_LIST_DIR}/../")
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list(APPEND CMAKE_MODULE_PATH "${CMAKE_CURRENT_LIST_DIR}/../../")
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#include(micropython-common)
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include(micropython-gfx)
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include(micropython-common)
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