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Use raw packets in RLE compression in tga_encoder
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parent
13552f16f2
commit
1b48c3f539
48
init.lua
48
init.lua
@ -48,8 +48,11 @@ function image:encode_data()
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local previous_r = nil
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local previous_r = nil
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local previous_g = nil
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local previous_g = nil
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local previous_b = nil
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local previous_b = nil
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local raw_pixel = ''
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local raw_pixels = {}
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local count = 1
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local count = 1
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local packets = {}
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local packets = {}
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local raw_packet = ''
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local rle_packet = ''
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local rle_packet = ''
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-- Sample depth rescaling is done according to the algorithm presented in:
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-- Sample depth rescaling is done according to the algorithm presented in:
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-- <https://www.w3.org/TR/2003/REC-PNG-20031110/#13Sample-depth-rescaling>
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-- <https://www.w3.org/TR/2003/REC-PNG-20031110/#13Sample-depth-rescaling>
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@ -63,9 +66,33 @@ function image:encode_data()
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((math.floor((previous_r * max_sample_out / max_sample_in) + 0.5)) * 1024) +
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((math.floor((previous_r * max_sample_out / max_sample_in) + 0.5)) * 1024) +
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((math.floor((previous_g * max_sample_out / max_sample_in) + 0.5)) * 32) +
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((math.floor((previous_g * max_sample_out / max_sample_in) + 0.5)) * 32) +
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((math.floor((previous_b * max_sample_out / max_sample_in) + 0.5)) * 1)
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((math.floor((previous_b * max_sample_out / max_sample_in) + 0.5)) * 1)
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if 1 == count then
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-- remember pixel verbatim for raw encoding
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raw_pixel = string.char(colorword % 256, math.floor(colorword / 256))
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raw_pixels[#raw_pixels + 1] = raw_pixel
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if 128 == #raw_pixels then
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raw_packet = string.char(#raw_pixels - 1)
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packets[#packets + 1] = raw_packet
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for i=1, #raw_pixels do
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packets[#packets +1] = raw_pixels[i]
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end
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raw_pixels = {}
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end
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else
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-- encode raw pixels, if any
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if #raw_pixels > 0 then
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raw_packet = string.char(#raw_pixels - 1)
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packets[#packets + 1] = raw_packet
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for i=1, #raw_pixels do
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packets[#packets +1] = raw_pixels[i]
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end
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raw_pixels = {}
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end
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-- RLE encoding
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rle_packet = string.char(128 + count - 1, colorword % 256, math.floor(colorword / 256))
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rle_packet = string.char(128 + count - 1, colorword % 256, math.floor(colorword / 256))
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packets[#packets +1] = rle_packet
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packets[#packets +1] = rle_packet
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end
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end
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end
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count = 1
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count = 1
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previous_r = pixel[1]
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previous_r = pixel[1]
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previous_g = pixel[2]
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previous_g = pixel[2]
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@ -79,8 +106,29 @@ function image:encode_data()
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((math.floor((previous_r * max_sample_out / max_sample_in) + 0.5)) * 1024) +
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((math.floor((previous_r * max_sample_out / max_sample_in) + 0.5)) * 1024) +
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((math.floor((previous_g * max_sample_out / max_sample_in) + 0.5)) * 32) +
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((math.floor((previous_g * max_sample_out / max_sample_in) + 0.5)) * 32) +
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((math.floor((previous_b * max_sample_out / max_sample_in) + 0.5)) * 1)
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((math.floor((previous_b * max_sample_out / max_sample_in) + 0.5)) * 1)
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if 1 == count then
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raw_pixel = string.char(colorword % 256, math.floor(colorword / 256))
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raw_pixels[#raw_pixels + 1] = raw_pixel
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raw_packet = string.char(#raw_pixels - 1)
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packets[#packets + 1] = raw_packet
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for i=1, #raw_pixels do
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packets[#packets +1] = raw_pixels[i]
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end
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raw_pixels = {}
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else
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-- encode raw pixels, if any
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if #raw_pixels > 0 then
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raw_packet = string.char(#raw_pixels - 1)
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packets[#packets + 1] = raw_packet
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for i=1, #raw_pixels do
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packets[#packets +1] = raw_pixels[i]
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end
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raw_pixels = {}
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end
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-- RLE encoding
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rle_packet = string.char(128 + count - 1, colorword % 256, math.floor(colorword / 256))
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rle_packet = string.char(128 + count - 1, colorword % 256, math.floor(colorword / 256))
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packets[#packets +1] = rle_packet
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packets[#packets +1] = rle_packet
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end
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self.data = self.data .. table.concat(packets)
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self.data = self.data .. table.concat(packets)
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end
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end
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