mirror of
https://codeberg.org/dnkl/foot.git
synced 2026-02-05 04:06:08 -05:00
236 lines
8.3 KiB
Python
Executable file
236 lines
8.3 KiB
Python
Executable file
#!/usr/bin/env python3
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import argparse
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import enum
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import fcntl
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import struct
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import random
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import sys
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import termios
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class ColorVariant(enum.IntEnum):
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NONE = enum.auto()
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REGULAR = enum.auto()
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BRIGHT = enum.auto()
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CUBE = enum.auto()
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RGB = enum.auto()
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def main():
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parser = argparse.ArgumentParser()
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parser.add_argument(
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'out', type=argparse.FileType(mode='w'), nargs='?', help='name of output file')
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parser.add_argument('--cols', type=int)
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parser.add_argument('--rows', type=int)
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parser.add_argument('--colors-regular', action='store_true')
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parser.add_argument('--colors-bright', action='store_true')
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parser.add_argument('--colors-256', action='store_true')
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parser.add_argument('--colors-rgb', action='store_true')
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parser.add_argument('--scroll', action='store_true')
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parser.add_argument('--scroll-region', action='store_true')
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parser.add_argument('--attr-bold', action='store_true')
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parser.add_argument('--attr-italic', action='store_true')
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parser.add_argument('--attr-underline', action='store_true')
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parser.add_argument('--sixel', action='store_true')
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parser.add_argument('--seed', type=int)
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opts = parser.parse_args()
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out = opts.out if opts.out is not None else sys.stdout
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try:
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lines, cols, height, width = struct.unpack(
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'HHHH',
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fcntl.ioctl(sys.stdout.fileno(),
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termios.TIOCGWINSZ,
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struct.pack('HHHH', 0, 0, 0, 0)))
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except OSError:
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lines = None
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cols = None
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height = None
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width = None
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if opts.rows is not None:
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lines = opts.rows
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height = 15 * lines # PGO helper binary hardcodes cell height to 15px
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if opts.cols is not None:
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cols = opts.cols
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width = 8 * cols # PGO help binary hardcodes cell width to 8px
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if lines is None or cols is None or height is None or width is None:
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raise Exception('could not get terminal width/height; use --rows and --cols')
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assert lines > 0, f'{lines}'
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assert cols > 0, f'{cols}'
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assert width > 0, f'{width}'
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assert height > 0, f'{height}'
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# Number of characters to write to screen
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count = 256 * 1024**1
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# Characters to choose from
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alphabet = 'abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRTSTUVWXYZ0123456789 öäå 👨👩🧒'
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color_variants = ([ColorVariant.NONE] +
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([ColorVariant.REGULAR] if opts.colors_regular else []) +
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([ColorVariant.BRIGHT] if opts.colors_bright else []) +
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([ColorVariant.CUBE] if opts.colors_256 else []) +
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([ColorVariant.RGB] if opts.colors_rgb else []))
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# Enter alt screen
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out.write('\033[?1049h')
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# uses system time or /dev/urandom if available if opt.seed == None
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# pin seeding method to make seeding stable across future versions
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random.seed(a=opts.seed, version=2)
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for _ in range(count):
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if opts.scroll and random.randrange(256) == 0:
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out.write('\033[m')
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if opts.scroll_region and random.randrange(256) == 0:
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top = random.randrange(3)
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bottom = random.randrange(3)
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out.write(f'\033[{top};{lines - bottom}r')
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lines_to_scroll = random.randrange(lines - 1)
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rev = random.randrange(2)
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if not rev and random.randrange(2):
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out.write(f'\033[{lines};{cols}H')
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out.write('\n' * lines_to_scroll)
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else:
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out.write(f'\033[{lines_to_scroll + 1}{"T" if rev == 1 else "S"}')
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continue
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# Generate a random location and a random character
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row = random.randrange(lines)
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col = random.randrange(cols)
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c = random.choice(alphabet)
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repeat = random.randrange((cols - col) + 1)
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assert col + repeat <= cols
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color_variant = random.choice(color_variants)
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# Position cursor
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out.write(f'\033[{row + 1};{col + 1}H')
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if color_variant in [ColorVariant.REGULAR, ColorVariant.BRIGHT]:
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do_bg = random.randrange(2)
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base = 40 if do_bg else 30
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base += 60 if color_variant == ColorVariant.BRIGHT else 0
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idx = random.randrange(8)
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out.write(f'\033[{base + idx}m')
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elif color_variant == ColorVariant.CUBE:
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do_bg = random.randrange(2)
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base = 48 if do_bg else 38
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idx = random.randrange(256)
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if random.randrange(2):
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# Old-style
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out.write(f'\033[{base};5;{idx}m')
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else:
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# New-style (sub-parameter based)
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out.write(f'\033[{base}:5:{idx}m')
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elif color_variant == ColorVariant.RGB:
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do_bg = random.randrange(2)
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base = 48 if do_bg else 38
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# use list comprehension in favor of randbytes(n)
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# which is only available for Python >= 3.9
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rgb = [random.randrange(256) for _ in range(3)]
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if random.randrange(2):
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# Old-style
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out.write(f'\033[{base};2;{rgb[0]};{rgb[1]};{rgb[2]}m')
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else:
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# New-style (sub-parameter based)
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out.write(f'\033[{base}:2::{rgb[0]}:{rgb[1]}:{rgb[2]}m')
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if opts.attr_bold and random.randrange(5) == 0:
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out.write('\033[1m')
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if opts.attr_italic and random.randrange(5) == 0:
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out.write('\033[3m')
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if opts.attr_underline and random.randrange(5) == 0:
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out.write('\033[4m')
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out.write(c * repeat)
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do_sgr_reset = random.randrange(2)
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if do_sgr_reset:
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reset_actions = ['\033[m', '\033[39m', '\033[49m']
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out.write(random.choice(reset_actions))
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# Reset colors
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out.write('\033[m\033[r')
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if opts.sixel:
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# The sixel 'alphabet'
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sixels = '?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\\]^_`abcdefghijklmnopqrstuvwxyz{|}~'
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last_pos = None
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last_size = None
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for _ in range(20):
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if last_pos is not None and random.randrange(2):
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# Overwrite last sixel. I.e. use same position and
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# size as last sixel
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pass
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else:
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# Random origin in upper left quadrant
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last_pos = random.randrange(lines // 2) + 1, random.randrange(cols // 2) + 1
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last_size = random.randrange((height + 1) // 2), random.randrange((width + 1) // 2)
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out.write(f'\033[{last_pos[0]};{last_pos[1]}H')
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six_height, six_width = last_size
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six_rows = (six_height + 5) // 6 # Round up; each sixel is 6 pixels
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# Begin sixel
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out.write('\033Pq')
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# Sixel size. Without this, sixels will be
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# auto-resized on cell-boundaries.
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out.write(f'"1;1;{six_width};{six_height}')
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# Set up 256 random colors
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for idx in range(256):
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# param 2: 1=HLS, 2=RGB.
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# param 3/4/5: HLS/RGB values in range 0-100
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# (except 'hue' which is 0..360)
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out.write(f'#{idx};2;{random.randrange(101)};{random.randrange(101)};{random.randrange(101)}')
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for row in range(six_rows):
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band_count = random.randrange(4, 33)
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for band in range(band_count):
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# Choose a random color
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out.write(f'#{random.randrange(256)}')
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if random.randrange(2):
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for col in range(six_width):
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out.write(f'{random.choice(sixels)}')
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else:
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pix_left = six_width
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while pix_left > 0:
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repeat_count = random.randrange(1, pix_left + 1)
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out.write(f'!{repeat_count}{random.choice(sixels)}')
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pix_left -= repeat_count
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# Next line
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if band + 1 < band_count:
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# Move cursor to beginning of current row
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out.write('$')
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elif row + 1 < six_rows:
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# Newline
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out.write('-')
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# End sixel
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out.write('\033\\')
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# Leave alt screen
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out.write('\033[?1049l')
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if __name__ == '__main__':
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sys.exit(main())
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