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			240 lines
		
	
	
	
		
			8.5 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
		
		
			
		
	
	
			240 lines
		
	
	
	
		
			8.5 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
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								#
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								# genmap_tchinese.py: Traditional Chinese Codecs Map Generator
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								#
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								# Original Author:  Hye-Shik Chang <perky@FreeBSD.org>
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								#
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								import os
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								from genmap_support import *
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								# ranges for (lead byte, follower byte)
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								BIG5_C1 = (0xa1, 0xfe)
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								BIG5_C2 = (0x40, 0xfe)
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								BIG5HKSCS_C1 = (0x87, 0xfe)
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								BIG5HKSCS_C2 = (0x40, 0xfe)
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								MAPPINGS_BIG5 = 'https://unicode.org/Public/MAPPINGS/OBSOLETE/EASTASIA/OTHER/BIG5.TXT'
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								MAPPINGS_CP950 = 'https://www.unicode.org/Public/MAPPINGS/VENDORS/MICSFT/WINDOWS/CP950.TXT'
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								HKSCS_VERSION = '2004'
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								# The files for HKSCS mappings are available under a restrictive license.
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								# Users of the script need to download the files from the HKSARG CCLI website:
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								MAPPINGS_HKSCS = f'https://www.ccli.gov.hk/en/archive/terms_hkscs-{HKSCS_VERSION}-big5-iso.html'
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								def bh2s(code):
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								    return ((code >> 8) - 0x87) * (0xfe - 0x40 + 1) + ((code & 0xff) - 0x40)
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								def split_bytes(code):
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								    """Split 0xABCD into 0xAB, 0xCD"""
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								    return code >> 8, code & 0xff
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								def parse_hkscs_map(fo):
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								    fo.seek(0, 0)
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								    table = []
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								    for line in fo:
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								        line = line.split('#', 1)[0].strip()
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								        # We expect 4 columns in supported HKSCS files:
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								        # [1999]: unsupported
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								        # [2001]: unsupported
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								        # [2004]: Big-5; iso10646-1:1993; iso10646-1:2000; iso10646:2003+amd1
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								        # [2008]: Big-5; iso10646-1:1993; iso10646-1:2000; iso10646:2003+amd6
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								        # [2016]: not supported here--uses a json file instead
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								        #
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								        # In both supported cases, we only need the first and last column:
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								        #  * Big-5 is a hex string (always 4 digits)
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								        #  * iso10646:2003 is either a hex string (4 or 5 digits) or a sequence
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								        #    of hex strings like: `<code_point1,code_point2>`
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								        try:
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								            hkscs_col, _, _, uni_col = line.split()
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								            hkscs = int(hkscs_col, 16)
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								            seq = tuple(int(cp, 16) for cp in uni_col.strip('<>').split(','))
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								        except ValueError:
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								            continue
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								        table.append((hkscs, seq))
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								    return table
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								def make_hkscs_map(table):
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								    decode_map = {}
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								    encode_map_bmp, encode_map_notbmp = {}, {}
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								    is_bmp_map = {}
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								    sequences = []
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								    beginnings = {}
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								    single_cp_table = []
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								    # Determine multi-codepoint sequences, and sequence beginnings that encode
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								    # multiple multibyte (i.e. Big-5) codes.
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								    for mbcode, cp_seq in table:
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								        cp, *_ = cp_seq
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								        if len(cp_seq) == 1:
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								            single_cp_table.append((mbcode, cp))
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								        else:
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								            sequences.append((mbcode, cp_seq))
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								        beginnings.setdefault(cp, []).append(mbcode)
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								    # Decode table only cares about single code points (no sequences) currently
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								    for mbcode, cp in single_cp_table:
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								        b1, b2 = split_bytes(mbcode)
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								        decode_map.setdefault(b1, {})
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								        decode_map[b1][b2] = cp & 0xffff
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								    # Encode table needs to mark code points beginning a sequence as tuples.
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								    for cp, mbcodes in beginnings.items():
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								        plane = cp >> 16
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								        if plane == 0:
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								            encode_map = encode_map_bmp
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								        elif plane == 2:
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								            encode_map = encode_map_notbmp
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								            is_bmp_map[bh2s(mbcodes[0])] = 1
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								        else:
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								            assert False, 'only plane 0 (BMP) and plane 2 (SIP) allowed'
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								        if len(mbcodes) == 1:
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								            encode_value = mbcodes[0]
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								        else:
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								            encode_value = tuple(mbcodes)
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								        uni_b1, uni_b2 = split_bytes(cp & 0xffff)
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								        encode_map.setdefault(uni_b1, {})
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								        encode_map[uni_b1][uni_b2] = encode_value
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								    return decode_map, encode_map_bmp, encode_map_notbmp, is_bmp_map
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								def load_big5_map():
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								    mapfile = open_mapping_file('python-mappings/BIG5.txt', MAPPINGS_BIG5)
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								    with mapfile:
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								        big5decmap = loadmap(mapfile)
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								    # big5 mapping fix: use the cp950 mapping for these characters as the file
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								    # provided by unicode.org doesn't define a mapping. See notes in BIG5.txt.
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								    # Since U+5341, U+5345, U+FF0F, U+FF3C already have a big5 mapping, no
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								    # roundtrip compatibility is guaranteed for those.
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								    for m in """\
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								    0xA15A      0x2574
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								    0xA1C3      0xFFE3
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								    0xA1C5      0x02CD
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								    0xA1FE      0xFF0F
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								    0xA240      0xFF3C
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								    0xA2CC      0x5341
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								    0xA2CE      0x5345""".splitlines():
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								        bcode, ucode = list(map(eval, m.split()))
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								        big5decmap[bcode >> 8][bcode & 0xff] = ucode
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								    # encoding map
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								    big5encmap = {}
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								    for c1, m in list(big5decmap.items()):
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								        for c2, code in list(m.items()):
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								            big5encmap.setdefault(code >> 8, {})
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								            if code & 0xff not in big5encmap[code >> 8]:
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								                big5encmap[code >> 8][code & 0xff] = c1 << 8 | c2
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								    # fix unicode->big5 priority for the above-mentioned duplicate characters
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								    big5encmap[0xFF][0x0F] = 0xA241
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								    big5encmap[0xFF][0x3C] = 0xA242
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								    big5encmap[0x53][0x41] = 0xA451
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								    big5encmap[0x53][0x45] = 0xA4CA
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								    return big5decmap, big5encmap
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								def load_cp950_map():
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								    mapfile = open_mapping_file('python-mappings/CP950.TXT', MAPPINGS_CP950)
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								    with mapfile:
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								        cp950decmap = loadmap(mapfile)
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								    cp950encmap = {}
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								    for c1, m in list(cp950decmap.items()):
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								        for c2, code in list(m.items()):
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								            cp950encmap.setdefault(code >> 8, {})
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								            if code & 0xff not in cp950encmap[code >> 8]:
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								                cp950encmap[code >> 8][code & 0xff] = c1 << 8 | c2
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								    # fix unicode->big5 duplicated mapping priority
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								    cp950encmap[0x53][0x41] = 0xA451
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								    cp950encmap[0x53][0x45] = 0xA4CA
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								    return cp950decmap, cp950encmap
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								def main_tw():
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								    big5decmap, big5encmap = load_big5_map()
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								    cp950decmap, cp950encmap = load_cp950_map()
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								    # CP950 extends Big5, and the codec can use the Big5 lookup tables
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								    # for most entries. So the CP950 tables should only include entries
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								    # that are not in Big5:
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								    for c1, m in list(cp950encmap.items()):
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								        for c2, code in list(m.items()):
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								            if (c1 in big5encmap and c2 in big5encmap[c1]
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								                    and big5encmap[c1][c2] == code):
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								                del cp950encmap[c1][c2]
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								    for c1, m in list(cp950decmap.items()):
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								        for c2, code in list(m.items()):
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								            if (c1 in big5decmap and c2 in big5decmap[c1]
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								                    and big5decmap[c1][c2] == code):
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								                del cp950decmap[c1][c2]
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								    with open('mappings_tw.h', 'w') as fp:
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								        print_autogen(fp, os.path.basename(__file__))
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								        write_big5_maps(fp, 'BIG5', 'big5', big5decmap, big5encmap)
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								        write_big5_maps(fp, 'CP950', 'cp950ext', cp950decmap, cp950encmap)
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								def write_big5_maps(fp, display_name, table_name, decode_map, encode_map):
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								    print(f'Generating {display_name} decode map...')
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								    writer = DecodeMapWriter(fp, table_name, decode_map)
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								    writer.update_decode_map(BIG5_C1, BIG5_C2)
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								    writer.generate()
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								    print(f'Generating {display_name} encode map...')
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								    writer = EncodeMapWriter(fp, table_name, encode_map)
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								    writer.generate()
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								class HintsWriter:
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								    filler_class = BufferedFiller
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								    def __init__(self, fp, prefix, isbmpmap):
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								        self.fp = fp
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								        self.prefix = prefix
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								        self.isbmpmap = isbmpmap
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								        self.filler = self.filler_class()
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								    def fillhints(self, hintfrom, hintto):
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								        name = f'{self.prefix}_phint_{hintfrom}'
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								        self.fp.write(f'static const unsigned char {name}[] = {{\n')
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								        for msbcode in range(hintfrom, hintto+1, 8):
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								            v = 0
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								            for c in range(msbcode, msbcode+8):
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								                v |= self.isbmpmap.get(c, 0) << (c - msbcode)
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								            self.filler.write('%d,' % v)
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								        self.filler.printout(self.fp)
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								        self.fp.write('};\n\n')
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								def main_hkscs():
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								    filename = f'python-mappings/hkscs-{HKSCS_VERSION}-big5-iso.txt'
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								    with open_mapping_file(filename, MAPPINGS_HKSCS) as f:
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								        table = parse_hkscs_map(f)
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								    hkscsdecmap, hkscsencmap_bmp, hkscsencmap_nonbmp, isbmpmap = (
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								        make_hkscs_map(table)
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								    )
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								    with open('mappings_hk.h', 'w') as fp:
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								        print('Generating BIG5HKSCS decode map...')
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								        print_autogen(fp, os.path.basename(__file__))
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								        writer = DecodeMapWriter(fp, 'big5hkscs', hkscsdecmap)
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								        writer.update_decode_map(BIG5HKSCS_C1, BIG5HKSCS_C2)
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								        writer.generate()
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								        print('Generating BIG5HKSCS decode map Unicode plane hints...')
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								        writer = HintsWriter(fp, 'big5hkscs', isbmpmap)
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								        writer.fillhints(bh2s(0x8740), bh2s(0xa0fe))
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								        writer.fillhints(bh2s(0xc6a1), bh2s(0xc8fe))
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								        writer.fillhints(bh2s(0xf9d6), bh2s(0xfefe))
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								        print('Generating BIG5HKSCS encode map (BMP)...')
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								        writer = EncodeMapWriter(fp, 'big5hkscs_bmp', hkscsencmap_bmp)
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								        writer.generate()
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								        print('Generating BIG5HKSCS encode map (non-BMP)...')
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								        writer = EncodeMapWriter(fp, 'big5hkscs_nonbmp', hkscsencmap_nonbmp)
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								 | 
							
								        writer.generate()
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								if __name__ == '__main__':
							 | 
						||
| 
								 | 
							
								    main_tw()
							 | 
						||
| 
								 | 
							
								    main_hkscs()
							 |