import unicodedata # This script prepares the RDS charset conversion function # RDS code to UCS-2 charset = {} charset[0x24] = 0x00A4 # ¤ charset[0x5E] = 0x2015 # ― charset[0x60] = 0x2016 # ║ charset[0x7E] = 0x203E # ¯ charset[0x80] = 0x00E1 # á charset[0x81] = 0x00E0 # à charset[0x82] = 0x00E9 # é charset[0x83] = 0x00E8 # è charset[0x84] = 0x00ED # í charset[0x85] = 0x00EC # ì charset[0x86] = 0x00F3 # ó charset[0x87] = 0x00F2 # ò charset[0x88] = 0x00FA # ú charset[0x89] = 0x00F9 # ù charset[0x8A] = 0x00D1 # Ñ charset[0x8B] = 0x00C7 # Ç charset[0x8C] = 0x015E # Ş charset[0x8D] = 0x00DF # ß charset[0x8E] = 0x00A1 # ¡ charset[0x8F] = 0x0132 # IJ charset[0x90] = 0x00E2 # â charset[0x91] = 0x00E4 # ä charset[0x92] = 0x00EA # ê charset[0x93] = 0x00EB # ë charset[0x94] = 0x00EE # î charset[0x95] = 0x00EF # ï charset[0x96] = 0x00F4 # ô charset[0x97] = 0x00F6 # ö charset[0x98] = 0x00FB # û charset[0x99] = 0x00FC # ü charset[0x9A] = 0x00F1 # ñ charset[0x9B] = 0x00E7 # ç charset[0x9C] = 0x015F # ş charset[0x9D] = 0x011F # ğ charset[0x9E] = 0x0131 # ı charset[0x9F] = 0x0133 # ij charset[0xA0] = 0x00AA # ª charset[0xA1] = 0x03B1 # α charset[0xA2] = 0x00A9 # © charset[0xA3] = 0x2030 # ‰ charset[0xA4] = 0x011E # Ğ charset[0xA5] = 0x011B # ĕ charset[0xA6] = 0x0148 # ň charset[0xA7] = 0x0151 # ő charset[0xA8] = 0x03C0 # π charset[0xA9] = 0x20AC # € charset[0xAA] = 0x00A3 # ₤ charset[0xAB] = 0x0024 # $ charset[0xAC] = 0x2190 # ← charset[0xAD] = 0x2191 # ↑ charset[0xAE] = 0x2192 # → charset[0xAF] = 0x2193 # ↓ charset[0xB0] = 0x00BA # º charset[0xB1] = 0x00B9 # ¹ charset[0xB4] = 0x00B1 # ± charset[0xB5] = 0x0130 # İ charset[0xB6] = 0x0144 # ń charset[0xB7] = 0x0171 # ű charset[0xB8] = 0x00B5 # µ charset[0xB9] = 0x00BF # ¿ charset[0xBA] = 0x00F7 # ÷ charset[0xBB] = 0x00B0 # º charset[0xBF] = 0x00A7 # § charset[0xC0] = 0x00C1 # Á charset[0xC1] = 0x00C0 # À charset[0xC2] = 0x00C9 # É charset[0xC3] = 0x00C8 # È charset[0xC4] = 0x00CD # Í charset[0xC5] = 0x00CC # Ì charset[0xC6] = 0x00D3 # Ó charset[0xC7] = 0x00D2 # Ò charset[0xC8] = 0x00DA # Ú charset[0xC9] = 0x00D9 # Ù charset[0xCA] = 0x0158 # Ř charset[0xCB] = 0x010C # Č charset[0xCC] = 0x0160 # Š charset[0xCD] = 0x017D # Ž charset[0xCE] = 0x00D0 # Ð charset[0xCF] = 0x013F # Ŀ charset[0xD0] = 0x00C2 #  charset[0xD1] = 0x00C4 # Ä charset[0xD2] = 0x00CA # Ê charset[0xD3] = 0x00CB # Ë charset[0xD4] = 0x00CE # Î charset[0xD5] = 0x00CF # Ï charset[0xD6] = 0x00D4 # Ô charset[0xD7] = 0x00D6 # Ö charset[0xD8] = 0x00DB # Û charset[0xD9] = 0x00DC # Ü charset[0xDA] = 0x0159 # ř charset[0xDB] = 0x010D # č charset[0xDC] = 0x0161 # š charset[0xDD] = 0x017E # ž charset[0xDE] = 0x0111 # đ charset[0xDF] = 0x0140 # ŀ charset[0xE0] = 0x00C3 # à charset[0xE1] = 0x00C5 # Å charset[0xE2] = 0x00C6 # Æ charset[0xE3] = 0x0152 # Œ charset[0xE4] = 0x0177 # ŷ charset[0xE5] = 0x00DD # Ý charset[0xE6] = 0x00D5 # Õ charset[0xE7] = 0x00D8 # Ø charset[0xE8] = 0x00DE # Þ charset[0xE9] = 0x014A # Ŋ charset[0xEA] = 0x0154 # Ŕ charset[0xEB] = 0x0106 # Ć charset[0xEC] = 0x015A # Ś charset[0xED] = 0x0179 # Ź charset[0xEE] = 0x0166 # Ŧ charset[0xEF] = 0x00F0 # ð charset[0xF0] = 0x00E3 # ã charset[0xF1] = 0x00E5 # å charset[0xF2] = 0x00E6 # æ charset[0xF3] = 0x0153 # œ charset[0xF4] = 0x0175 # ŵ charset[0xF5] = 0x00FD # ý charset[0xF6] = 0x00F5 # õ charset[0xF7] = 0x00F8 # ø charset[0xF8] = 0x00FE # þ charset[0xF9] = 0x014B # ŋ charset[0xFA] = 0x0155 # ŕ charset[0xFB] = 0x0107 # ć charset[0xFC] = 0x015B # ś charset[0xFD] = 0x017A # ź charset[0xFE] = 0x0167 # ŧ table = {} import struct for rds_code, ucs2 in charset.items(): utf8 = struct.pack("!H", ucs2).decode("utf-16-be").encode() node = table for i, byte in enumerate(utf8): if i == len(utf8) - 1: # Last byte: store the RDS code node[byte] = rds_code else: # Intermediate byte: ensure a dict exists if byte not in node: node[byte] = {} node = node[byte] def generate_switch(node, indent=0): """ Recursively generates nested C switch statements from the table. `node` is the current dictionary level. `indent` is used for formatting the output. """ ind = " " * indent code_lines = [f"{ind}switch(*str) {{"] for byte, child in node.items(): if isinstance(child, dict): code_lines.append(f"{ind} case (char)0x{byte:02x}:") code_lines.append(f"{ind} str++;") code_lines.extend(generate_switch(child, indent + 2)) code_lines.append(f"{ind} break;") else: comment = unicodedata.name(struct.pack("!H", charset[child]).decode("utf-16-be")) code_lines.append(f"{ind} case (char)0x{byte:02x}: new_str[i] = (char)0x{child:02x}; break; // {comment}") code_lines.append(f"{ind} default: new_str[i] = *str; break;") code_lines.append(f"{ind}}}") return code_lines data = generate_switch(table) with open("switch.c", "w", encoding="utf-8") as f: for line in data: f.write(line + "\n")